Surgical Burden of Breast Cancer Treatment: Implications of Mastectomy, Breast Conservation, and Reconstruction Choices
Abstract
1. Introduction
2. Breast-Conserving Therapy Versus Mastectomy: Surgical Burden Comparison
2.1. Number of Operations and Reintervention
2.2. Oncoplastic Surgical Techniques
2.3. Recovery and Treatment Timeline
2.4. Complication Profiles
2.5. Radiation and Its Downstream Effects
2.6. Long-Term Surveillance and Maintenance
2.7. Patient-Reported Outcomes and Functional Considerations
2.8. Reframing the Comparison
3. Axillary Management as a Component of Surgical Burden
4. Mastectomy and the Spectrum of Reconstruction
4.1. Divergent Surgical Trajectories
4.2. Interdependence of Early Decisions
4.3. Variability in Patient Priorities
4.4. Common Misconceptions
- •
- Reconstruction is optional, but not neutral: Choosing no reconstruction (AFC) still involves surgical decision-making and has aesthetic and functional consequences [40].
- •
- Implants are not a one-time solution: Many patients will require additional procedures over time, even in the absence of complications [5].
- •
- Autologous reconstruction is not a single surgery: Although often framed as definitive, it commonly includes staged revisions [46].
- •
- All reconstructive pathways are equally compatible with radiation: In reality, radiation disproportionately affects implant-based outcomes [29].
4.5. Implications for Surgical Counseling
- •
- Mastectomy does not eliminate the possibility of multiple future procedures
- •
- Reconstruction type significantly influences complication risk and long-term course
- •
- Anticipated adjuvant therapies, particularly radiation, may alter the optimal pathway
5. Aesthetic Flat Closure
5.1. Defining Aesthetic Flat Closure
5.2. Surgical Technique and Considerations
5.3. Complications and Revision Burden
5.4. Patient Selection and Counseling
- •
- The aesthetic result is a flat contour, not a restoration of breast volume
- •
- Residual asymmetry or contour irregularities may occur
- •
- Secondary revisions may be required to optimize appearance
5.5. Common Misconceptions and Sources of Dissatisfaction
5.6. Position Within the Surgical Burden Framework
6. Implant-Based Breast Reconstruction (IBBR)
6.1. Reconstructive Approaches: Staged vs. Direct-to-Implant
- •
- Two-stage reconstruction, involving placement of a tissue expander at the time of mastectomy followed by a second operation for exchange to a permanent implant
- •
- Direct-to-implant (DTI) reconstruction, in which a permanent implant is placed at the index operation in carefully selected patients
6.2. Role of Mesh and Soft Tissue Support
6.3. Complication Profile
6.4. Impact of Radiation Therapy
6.5. Revision Procedures and Long-Term Maintenance
6.6. Patient Selection and Tradeoffs
6.7. Position Within the Surgical Burden Framework
7. Autologous Breast Reconstruction
7.1. Operative Complexity and Initial Recovery
7.2. Donor-Site Morbidity
7.3. Complication Profile
7.4. Durability and Long-Term Outcomes
7.5. Revision Procedures
7.6. Patient Selection and Tradeoffs
7.7. Position Within the Surgical Burden Framework
8. Reconstruction Timing: Delayed Versus Immediate
8.1. Immediate Reconstruction
8.2. Delayed Reconstruction
8.3. Decisional Timing and Patient Burden
8.4. Position Within the Surgical Burden Framework
9. Shared Decision Making and Patient Counseling
9.1. Reframing the Clinical Conversation
9.2. Core Domains to Clarify Early
- Likelihood of Radiation TherapyAnticipated radiation is one of the most important determinants of reconstructive success and complication risk. Early assessment, based on tumor characteristics and nodal status, should inform both reconstructive modality and timing.
- Patient Priorities and Tolerance for Surgical BurdenPatients vary in their willingness to undergo multiple procedures, accept prolonged recovery, or tolerate the possibility of revision surgery [44]. The following clarifying preferences regarding can guide selection of the most appropriate pathway:
- Upfront versus staged procedures
- Long-term maintenance
- Aesthetic goals
- 3.
- Medical and Anatomic ConsiderationsComorbidities, body habitus, prior surgeries, and smoking status may influence eligibility for specific reconstructive options and associated risks [105].
- 4.
- Oncologic Timeline and UrgencyThe need for timely cancer treatment may limit reconstructive options or favor staged approaches.
9.3. Role and Timing of Plastic Surgery Consultation
9.4. Communicating Uncertainty and Risk
9.5. Practical Counseling Framework
- Define the Oncologic Context: Clarify eligibility for BCT versus mastectomy and assess likelihood of radiation.
- Introduce Reconstruction as a Spectrum: Present aesthetic flat closure, implant-based reconstruction, and autologous reconstruction as distinct pathways with different trajectories.
- Discuss Timing Options in Context: Integrate immediate versus delayed reconstruction into the broader discussion, particularly in relation to radiation risk.
- Elicit Patient Values Explicitly: Ask targeted questions to understand preferences regarding recovery, number of procedures, and long-term outcomes.
- Align Recommendations with Priorities: Tailor guidance based on the intersection of oncologic factors and patient values, rather than defaulting to a single reconstructive approach.
9.6. Position Within the Surgical Burden Framework
10. Future Directions
11. Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
References
- Veronesi, U.; Cascinelli, N.; Mariani, L.; Greco, M.; Saccozzi, R.; Luini, A.; Aguilar, M.; Marubini, E. Twenty-year follow-up of a randomized study comparing breast-conserving surgery with radical mastectomy for early breast cancer. N. Engl. J. Med. 2002, 347, 1227–1232. [Google Scholar] [CrossRef]
- Fisher, B.; Anderson, S.; Bryant, J.; Margolese, R.G.; Deutsch, M.; Fisher, E.R.; Jeong, J.H.; Wolmark, N. Twenty-year follow-up of a randomized trial comparing total mastectomy, lumpectomy, and lumpectomy plus irradiation for the treatment of invasive breast cancer. N. Engl. J. Med. 2002, 347, 1233–1241. [Google Scholar] [CrossRef]
- Litiere, S.; Werutsky, G.; Fentiman, I.S.; Rutgers, E.; Christiaens, M.R.; Van Limbergen, E.; Baaijens, M.H.; Bogaerts, J.; Bartelink, H. Breast conserving therapy versus mastectomy for stage I-II breast cancer: 20 year follow-up of the EORTC 10801 phase 3 randomised trial. Lancet Oncol. 2012, 13, 412–419. [Google Scholar] [CrossRef]
- Morrow, M.; Abrahamse, P.; Hofer, T.P.; Ward, K.C.; Hamilton, A.S.; Kurian, A.W.; Katz, S.J.; Jagsi, R. Trends in Reoperation After Initial Lumpectomy for Breast Cancer: Addressing Overtreatment in Surgical Management. JAMA Oncol. 2017, 3, 1352–1357. [Google Scholar] [CrossRef] [PubMed]
- Nelson, J.A.; Voineskos, S.H.; Qi, J.; Kim, H.M.; Hamill, J.B.; Wilkins, E.G.; Pusic, A.L. Elective Revisions after Breast Reconstruction: Results from the Mastectomy Reconstruction Outcomes Consortium. Plast. Reconstr. Surg. 2019, 144, 1280–1290. [Google Scholar] [CrossRef] [PubMed]
- Roberts, A.; Baxter, N.; Camacho, X.; Lau, C.; Zhong, T. Once is Rarely Enough: A Population-Based Study of Reoperations after Postmastectomy Breast Reconstruction. Ann. Surg. Oncol. 2015, 22, 3302–3307. [Google Scholar] [CrossRef]
- Wilke, L.G.; Czechura, T.; Wang, C.; Lapin, B.; Liederbach, E.; Winchester, D.P.; Yao, K. Repeat surgery after breast conservation for the treatment of stage 0 to II breast carcinoma: A report from the National Cancer Data Base, 2004-2010. JAMA Surg. 2014, 149, 1296–1305. [Google Scholar] [CrossRef] [PubMed]
- Havel, L.; Naik, H.; Ramirez, L.; Morrow, M.; Landercasper, J. Impact of the SSO-ASTRO Margin Guideline on Rates of Re-excision After Lumpectomy for Breast Cancer: A Meta-analysis. Ann. Surg. Oncol. 2019, 26, 1238–1244. [Google Scholar] [CrossRef]
- Lepomaki, M.; Karhunen-Enckell, U.; Tuominen, J.; Kronqvist, P.; Oksala, N.; Murtola, T.; Roine, A. Tumor margins that lead to reoperation in breast cancer: A retrospective register study of 4489 patients. J. Surg. Oncol. 2022, 125, 577–588. [Google Scholar] [CrossRef]
- Roberts, A.; Baxter, N.N.; Sutradhar, R.; Lau, C.; Zhong, T. Reoperation cascade in postmastectomy breast reconstruction and its associated factors: Results from a long-term population-based study. J. Surg. Oncol. 2020, 122, 1300–1306. [Google Scholar] [CrossRef]
- Kamali, P.; Koolen, P.G.L.; Ibrahim, A.M.S.; Paul, M.A.; Dikmans, R.E.; Schermerhorn, M.L.; Lee, B.T.; Lin, S.J. Analyzing Regional Differences over a 15-Year Trend of One-Stage versus Two-Stage Breast Reconstruction in 941,191 Postmastectomy Patients. Plast. Reconstr. Surg. 2016, 138, 1e–14e. [Google Scholar] [CrossRef]
- Enajat, M.; Smit, J.M.; Rozen, W.M.; Hartman, E.H.; Liss, A.; Kildal, M.; Audolfsson, T.; Acosta, R. Aesthetic refinements and reoperative procedures following 370 consecutive DIEP and SIEA flap breast reconstructions: Important considerations for patient consent. Aesthetic Plast. Surg. 2010, 34, 306–312. [Google Scholar] [CrossRef] [PubMed]
- Yesantharao, P.S.; Shaheen, M.S.; Hui, G.; Gombar, S.; Momeni, A. Oncoplastic Breast Surgery: Optimizing Resection Margins in Addition to Aesthetic Outcomes. Aesthetic Plast. Surg. 2025, 50, 1873–1880. [Google Scholar] [CrossRef]
- Nyirady, L.E.; Czebely-Lenart, A.; Hoferica, J.; Hegyi, P.; Fehervari, P.; Nyirady, P.; Riesz, P.; Acs, N.; Szijarto, A.; Klarik, Z. Evaluating oncoplastic breast-conserving surgery: Oncological safety, risks, and satisfaction-a systematic review and meta-analysis. Sci. Rep. 2025, 16, 444. [Google Scholar] [CrossRef] [PubMed]
- Waljee, J.F.; Hu, E.S.; Newman, L.A.; Alderman, A.K. Predictors of breast asymmetry after breast-conserving operation for breast cancer. J. Am. Coll. Surg. 2008, 206, 274–280. [Google Scholar] [CrossRef] [PubMed]
- Sorenson, T.J.; Boyd, C.J.; Lisk, R.; Karp, N.S. Personalized Breast Reconstruction After Breast-Conserving Therapy: Risk-Informed Approaches to Technique Selection and Timing. J. Pers. Med. 2026, 16, 197. [Google Scholar] [CrossRef]
- Salinas, H.M.; Ainuz, B.Y.; Pourmoussa, A.J.; Levitt, E.B.; Ali, A.; Bouz, A.; Treiser, M.D.; Medina, M.A. Oncoplastic Augmentation Mastopexy in Breast Conservation Therapy: Retrospective Study and Postoperative Complications. Ann. Plast. Surg. 2023, 90, 33–40. [Google Scholar] [CrossRef]
- Huynh, V.; Colborn, K.; Smith, S.; Bonnell, L.N.; Ahrendt, G.; Christian, N.; Kim, S.; Matlock, D.D.; Lee, C.; Tevis, S.E. Early Trajectories of Patient Reported Outcomes in Breast Cancer Patients Undergoing Lumpectomy Versus Mastectomy. Ann. Surg. Oncol. 2021, 28, 5677–5685. [Google Scholar] [CrossRef]
- Jagsi, R.; Griffith, K.A.; Vicini, F.; Boike, T.; Burmeister, J.; Dominello, M.M.; Grills, I.; Hayman, J.A.; Moran, J.M.; Paximadis, P.; et al. Toward Improving Patients’ Experiences of Acute Toxicity From Breast Radiotherapy: Insights From the Analysis of Patient-Reported Outcomes in a Large Multicenter Cohort. J. Clin. Oncol. 2020, 38, 4019–4029. [Google Scholar] [CrossRef]
- Pusic, A.L.; Cordeiro, P.G. An accelerated approach to tissue expansion for breast reconstruction: Experience with intraoperative and rapid postoperative expansion in 370 reconstructions. Plast. Reconstr. Surg. 2003, 111, 1871–1875. [Google Scholar] [CrossRef]
- Ballance, L.; Wilson, R.L.; Kirwan, C.C.; Boundouki, G.; Taxiarchi, V.P.; Baker, B.G.; Rusius, V.; Rowland, M.; Henderson, J.R.; Marikakis, N.; et al. Return to Activities of Daily Living after Breast Cancer Surgery: An Observational Prospective Questionnaire-Based Study of Patients Undergoing Mastectomy with or without Immediate Reconstruction. Breast J. 2023, 2023, 9345780. [Google Scholar] [CrossRef]
- de Boniface, J.; Szulkin, R.; Johansson, A.L.V. Medical and surgical postoperative complications after breast conservation versus mastectomy in older women with breast cancer: Swedish population-based register study of 34 139 women. Br. J. Surg. 2023, 110, 344–352. [Google Scholar] [CrossRef]
- Becker, M.; Reese, M.; Yessaillian, A.; Lopes, K.; Harfouche, C.; Leach, G.; Blair, S.; Yashar, C.; Ojeda-Fournier, H.; Reid, C.M. A Quantitative Evaluation of the Effects of Radiation Therapy on the Postsurgical Breast. Plast. Reconstr. Surg. 2025, 155, 595–605. [Google Scholar] [CrossRef] [PubMed]
- Jimenez, R.B.; Packowski, K.; Horick, N.; Rosado, N.; Chinta, S.; Koh, D.J.; Sobti, N.; Specht, M.C.; Liao, E.C. The Timing of Acute and Late Complications Following Mastectomy and Implant-based Reconstruction. Ann. Surg. 2023, 278, e203–e208. [Google Scholar] [CrossRef] [PubMed]
- Du, F.; Liu, R.; Zhang, H.; Xiao, Y.; Long, X. Post-mastectomy adjuvant radiotherapy for direct-to-implant and two-stage implant-based breast reconstruction: A meta-analysis. J. Plast. Reconstr. Aesthetic Surg. 2022, 75, 3030–3040. [Google Scholar] [CrossRef]
- Wu, S.S.; Raymer, C.; Culbert, A.; Schafer, R.; Bernard, S.; Djohan, R.; Schwarz, G.; Bishop, S.N.; Gurunian, R. Predictors of Complications in Autologous Breast Reconstruction Using DIEP Flaps: Implications for Management. Plast. Reconstr. Surg. 2023, 152, 566e–577e. [Google Scholar] [CrossRef]
- Al-Hilli, Z.; Thomsen, K.M.; Habermann, E.B.; Jakub, J.W.; Boughey, J.C. Reoperation for Complications after Lumpectomy and Mastectomy for Breast Cancer from the 2012 National Surgical Quality Improvement Program (ACS-NSQIP). Ann. Surg. Oncol. 2015, 22, S459–S469. [Google Scholar] [CrossRef] [PubMed]
- Jimenez, R.B.; Abdou, Y.; Anderson, P.; Barry, P.; Bradfield, L.; Bradley, J.A.; Heras, L.D.; Khan, A.; Matsen, C.; Rabinovitch, R.; et al. Postmastectomy Radiation Therapy: An ASTRO-ASCO-SSO Clinical Practice Guideline. J. Clin. Oncol. 2025, 43, 3292–3311. [Google Scholar] [CrossRef]
- Magill, L.J.; Robertson, F.P.; Jell, G.; Mosahebi, A.; Keshtgar, M. Determining the outcomes of post-mastectomy radiation therapy delivered to the definitive implant in patients undergoing one- and two-stage implant-based breast reconstruction: A systematic review and meta-analysis. J. Plast. Reconstr. Aesthetic Surg. 2017, 70, 1329–1335. [Google Scholar] [CrossRef]
- von Glinski, M.; Holler, N.; Kummel, S.; Reinisch, M.; Wallner, C.; Wagner, J.M.; Dadras, M.; Sogorski, A.; Lehnhardt, M.; Behr, B. Autologous Reconstruction After Failed Implant-Based Breast Reconstruction: A Comparative Multifactorial Outcome Analysis. Ann. Plast. Surg. 2023, 91, 42–47. [Google Scholar] [CrossRef]
- Jagsi, R.; Momoh, A.O.; Qi, J.; Hamill, J.B.; Billig, J.; Kim, H.M.; Pusic, A.L.; Wilkins, E.G. Impact of Radiotherapy on Complications and Patient-Reported Outcomes After Breast Reconstruction. J. Natl. Cancer Inst. 2018, 110, 157–165. [Google Scholar] [CrossRef]
- Ren, Y.; Yu, Y.; Xu, K.; Li, Z.; Wang, X. Meta-Analysis of Immediate Implant-Based Breast Reconstruction Versus Autologous Breast Reconstruction in the Setting of PMRT. Aesthetic Plast. Surg. 2024, 48, 1940–1948. [Google Scholar] [CrossRef]
- Expert Panel on Breast, I.; Mehta, T.S.; Lourenco, A.P.; Niell, B.L.; Bennett, D.L.; Brown, A.; Chetlen, A.; Freer, P.; Ivansco, L.K.; Jochelson, M.S.; et al. ACR Appropriateness Criteria(R) Imaging After Breast Surgery. J. Am. Coll. Radiol. 2022, 19, S341–S356. [Google Scholar] [CrossRef]
- Johnson, L.; White, P.; Holcombe, C.; O’Donoghue, J.; Jeevan, R.; Browne, J.; Fairbrother, P.; MacKenzie, M.; Gulliver-Clarke, C.; Mohiuddin, S.; et al. Impact of procedure type on revisional surgery and secondary reconstruction after immediate breast reconstruction in a population-based cohort. Br. J. Surg. 2023, 110, 666–675. [Google Scholar] [CrossRef] [PubMed]
- Duraes, E.F.R.; Schwarz, G.S.; de Sousa, J.B.; Duraes, L.C.; Morisada, M.; Baker, T.; Djohan, R.S.; Bernard, S.L.; Moreira, A.A. Factors Influencing the Aesthetic Outcome and Quality of Life After Breast Reconstruction: A Cross-sectional Study. Ann. Plast. Surg. 2020, 84, 494–506. [Google Scholar] [CrossRef]
- Toyserkani, N.M.; Jørgensen, M.G.; Tabatabaeifar, S.; Damsgaard, T.; Sørensen, J.A. Autologous versus implant-based breast reconstruction: A systematic review and meta-analysis of Breast-Q patient-reported outcomes. J. Plast. Reconstr. Aesthetic Surg. 2020, 73, 278–285. [Google Scholar] [CrossRef]
- Tyner, T.E.; Freysteinson, W.M.; Evans, S.C.; Woo, J. “My body, my choice”: A qualitative study of women’s mastectomy with flat closure experiences. Body Image 2023, 46, 419–433. [Google Scholar] [CrossRef] [PubMed]
- Brands-Appeldoorn, A.; Maaskant-Braat, S.; Schenk, K.; Roumen, R. Cosmetic Consequences of Breast-Conserving Treatment for Breast Cancer: Something Worth Talking About. Oncologist 2019, 24, 172–177. [Google Scholar] [CrossRef] [PubMed]
- Bubberman, J.M.; Op den Kamp, B.; van Kuijk, S.M.J.; van der Hulst, R.; Tuinder, S.M.H. Breast sensibility in a breast cancer population—Reference data for clinical practice. J. Plast. Reconstr. Aesthetic Surg. 2025, 110, 209–218. [Google Scholar] [CrossRef]
- Snee, I.A.; Rohrich, R.N.; Bekeny, J.C.; Lin, R.P.; Ferdousian, S.; Jabbour, S.; De La Cruz, L.; Fan, K.L. Aesthetic Flat Closure Following Mastectomy: A Systematic Review of Techniques, Outcomes, and Patient Perspectives. Aesthetic Plast. Surg. 2026, 50, 2515–2523. [Google Scholar] [CrossRef]
- Rocco, N.; Catanuto, G.F.; Accardo, G.; Velotti, N.; Chiodini, P.; Cinquini, M.; Privitera, F.; Rispoli, C.; Nava, M.B. Implants versus autologous tissue flaps for breast reconstruction following mastectomy. Cochrane Database Syst. Rev. 2024, 10, CD013821. [Google Scholar] [CrossRef]
- Kronowitz, S.J.; Kuerer, H.M. Advances and surgical decision-making for breast reconstruction. Cancer 2006, 107, 893–907. [Google Scholar] [CrossRef] [PubMed]
- Song, Y.; Wang, L.; Huang, W.; Guo, S.; Wu, X.; Zheng, H. Comparison of nipple sparing and skin sparing mastectomy with immediate reconstruction based on patient reported outcomes. Sci. Rep. 2025, 15, 14989. [Google Scholar] [CrossRef] [PubMed]
- Shammas, R.L.; Hung, A.; Mullikin, A.; Sergesketter, A.R.; Lee, C.N.; Reed, S.D.; Fish, L.J.; Greenup, R.A.; Hollenbeck, S.T. Patient Preferences for Postmastectomy Breast Reconstruction. JAMA Surg. 2023, 158, 1285–1292. [Google Scholar] [CrossRef]
- Raque, T.L.; Creegan, M.; McCullough, K.; Norling, H.; Fonseca, B.B.R.; Gummalla, S.; Anain, J. “Best for Me”: Decision-Making and Medical System Interactions When Going Flat After Bilateral Mastectomy. Psychooncology 2026, 35, e70468. [Google Scholar] [CrossRef]
- Moller, L.; Berner, J.E.; Dheansa, B. The reconstructive journey: Description of the breast reconstruction pathway in a high-volume UK-based microsurgical centre. J. Plast. Reconstr. Aesthetic Surg. 2019, 72, 1930–1935. [Google Scholar] [CrossRef]
- Alderman, A.K.; Hawley, S.T.; Waljee, J.; Morrow, M.; Katz, S.J. Correlates of referral practices of general surgeons to plastic surgeons for mastectomy reconstruction. Cancer 2007, 109, 1715–1720. [Google Scholar] [CrossRef] [PubMed]
- Morrison, K.A.; Karp, N.S. Not Just a Linear Closure: Aesthetic Flat Closure after Mastectomy. Plast. Reconstr. Surg. Glob. Open 2022, 10, e4327. [Google Scholar] [CrossRef]
- Djohan, M.; Knackstedt, R.; Leavitt, T.; Djohan, R.; Grobmyer, S. Technical considerations in nonreconstructive mastectomy patients. Breast J. 2020, 26, 702–704. [Google Scholar] [CrossRef]
- Knowles, A.J. Advocating for Enhanced Patient Engagement in Breast Cancer Care: Impact of Residual Increased Lateral Adiposity and Consideration of the Pursuit of “Living Flat”. Clin. Breast Cancer 2024, 24, e186–e194. [Google Scholar] [CrossRef]
- Lyons, L.; Martin, C.; Wyld, L.; King, N.; Brunsden, S.; Morgan, J. Insights Into ‘Living Flat’: A Qualitative Study of Patients Who Have Mastectomy Without Reconstruction. Psychooncology 2026, 35, e70436. [Google Scholar] [CrossRef]
- Al-Hilli, Z.; Wilkerson, A. Breast Surgery: Management of Postoperative Complications Following Operations for Breast Cancer. Surg. Clin. N. Am. 2021, 101, 845–863. [Google Scholar] [CrossRef]
- Baker, J.L.; Dizon, D.S.; Wenziger, C.M.; Streja, E.; Thompson, C.K.; Lee, M.K.; DiNome, M.L.; Attai, D.J. “Going Flat” After Mastectomy: Patient-Reported Outcomes by Online Survey. Ann. Surg. Oncol. 2021, 28, 2493–2505. [Google Scholar] [CrossRef]
- Soroudi, D.; Parmeshwar, N.; Gozali, A.; Piper, M. Post-Mastectomy Flat Closure: A Mixed-Methods Analysis of Patient Outcomes and Perspectives. Ann. Surg. Oncol. 2025, 32, 5827–5837. [Google Scholar] [CrossRef]
- Ketley, A.; Martin, C.; Wyld, L.; King, N.; Brunsden, S.; Morgan, J. What makes a ‘good’ mastectomy?—A national qualitative study of health care professionals opinions on mastectomy without reconstruction. Eur. J. Surg. Oncol. 2026, 52, 111333. [Google Scholar] [CrossRef] [PubMed]
- Baker, J.L.; Attai, D.J. ASO Author Reflections: Patients Who Go Flat After Mastectomy Deserve an Aesthetic Flat Closure. Ann. Surg. Oncol. 2021, 28, 2506. [Google Scholar] [CrossRef]
- Sorenson, T.J.; Boyd, C.J.; Karp, N.S. Hot Topics in Implant-Based Breast Reconstruction. J. Clin. Med. 2025, 15, 263. [Google Scholar] [CrossRef] [PubMed]
- Meshkin, D.H.; Firriolo, J.M.; Karp, N.S.; Salibian, A.A. Management of complications following implant-based breast reconstruction: A narrative review. Ann. Transl. Med. 2023, 11, 416. [Google Scholar] [CrossRef] [PubMed]
- Amro, C.; Sorenson, T.J.; Boyd, C.J.; Hemal, K.; Vernice, N.A.; Park, J.J.; Cohen, O.D.; Choi, M.; Karp, N.S. The Evolution of Implant-Based Breast Reconstruction: Innovations, Trends, and Future Directions. J. Clin. Med. 2024, 13, 7407. [Google Scholar] [CrossRef]
- Piper, M.L.; Rios-Diaz, A.J.; Kimia, R.; Cunning, J.; Broach, R.; Wu, L.; Serletti, J.; Fosnot, J. Direct-to-Implant Versus 2-Stage Breast Reconstruction: Which Technique Is Better? An Analysis of 104 Patients at a Single Institution. Ann. Plast. Surg. 2022, 89, 159–165. [Google Scholar] [CrossRef] [PubMed]
- Hoque, S.S.; Zhou, J.; Gartoulla, P.; Hansen, J.; Farrell, G.; Hopper, I. Comparing Direct-to-Implant and Two-Stage Breast Reconstruction in the Australian Breast Device Registry. Plast. Reconstr. Surg. 2023, 151, 927–937. [Google Scholar] [CrossRef] [PubMed]
- Hammond, J.B.; Foley, B.M.; Kosiorek, H.E.; Cronin, P.A.; Rebecca, A.M.; Casey, W.J., III; Kruger, E.A.; Teven, C.M.; Pockaj, B.A. Seldom one and done: Characterizing rates of reoperation with direct-to-implant breast reconstruction after mastectomy. Am. J. Surg. 2022, 224, 141–146. [Google Scholar] [CrossRef]
- Reitsamer, R.; Peintinger, F.; Klaassen-Federspiel, F.; Sir, A. Prepectoral direct-to-implant breast reconstruction with complete ADM or synthetic mesh coverage—36-Months follow-up in 200 reconstructed breasts. Breast 2019, 48, 32–37. [Google Scholar] [CrossRef]
- Lisk, R.; Sorenson, T.J.; Boyd, C.J.; Karp, N.S. Soft Tissue Scaffolds in Breast Reconstruction: Evolution from Acellular Dermal Matrices to Synthetic Polymers. J. Clin. Med. 2026, 15, 3323. [Google Scholar] [CrossRef]
- Lisk, R.; Hemal, K.; Boyd, C.J.; Karp, N.S.; Choi, M.; Cohen, O. Soft Tissue Support Use in Implant-Based Breast Reconstruction: A Nationwide, Cross-Sectional Study of Postoperative Complications. Ann. Plast. Surg. 2026, 96, S338–S341. [Google Scholar] [CrossRef]
- Sorenson, T.J.; Boyd, C.J.; Hemal, K.; Park, J.J.; Amro, C.; Vernice, N.; Lakatta, A.; Cohen, O.; Choi, M.; Karp, N. Outcome of Prepectoral Direct-to-Implant Breast Reconstruction With the Poly-4-hydroxybutyrate Wrap. Plast. Reconstr. Surg. Glob. Open 2025, 13, e7268. [Google Scholar] [CrossRef] [PubMed]
- Karp, N.; Sorenson, T.J.; Boyd, C.J.; Hemal, K.; Lin, A.; Robinson, I.S.; Choi, M. The GalaFLEX “Empanada” for Direct-to-Implant Prepectoral Breast Reconstruction. Plast. Reconstr. Surg. 2025, 155, 488e–491e. [Google Scholar] [CrossRef]
- Murphy, D.; O’Donnell, J.P.; Ryan, E.J.; Lane O’Neill, B.; Boland, M.R.; Lowery, A.J.; Kerin, M.J.; McInerney, N.M. Immediate Breast Cancer Reconstruction with or without Dermal Matrix or Synthetic Mesh Support: A Review and Network Meta-Analysis. Plast. Reconstr. Surg. 2023, 151, 563e–574e. [Google Scholar] [CrossRef] [PubMed]
- Leroy, E.; Poirier, L.; Planque, H.; Le Brun, J.F.; Gaichies, L.; Martin Francoise, S.; Rouzier, R.; Harter, V.; Dolivet, E. Time to reconsider the use of synthetic mesh in immediate prepectoral implant-based breast reconstruction: Impact of their use on short-term outcomes. Eur. J. Surg. Oncol. 2025, 51, 108780. [Google Scholar] [CrossRef]
- Shammas, R.L.; Wang, J.; Boe, L.A.; Levy, J.; Graziano, F.D.; Allen, R.J.; Cordeiro, P.G.; Disa, J.J.; Mehrara, B.J.; Nelson, J.A. Radiation and Reconstructive Failure: Long-Term Outcomes in Two-Stage Flap Versus Implant Breast Reconstruction. Ann. Surg. Oncol. 2026, 33, 1981–1989. [Google Scholar] [CrossRef]
- Blok, Y.L.; Plat, V.D.; van der Hage, J.A.; Putter, H.; Krekel, N.M.A.; Mureau, M.A.M. Risk Prediction of Implant Loss following Implant-Based Breast Reconstruction: A Population-Based Study. Plast. Reconstr. Surg. 2025, 156, 1e–10e. [Google Scholar] [CrossRef] [PubMed]
- Berkane, Y.; Scarabosio, A.; Caputo, G.G.; Girard, P.; Albanese, R.; Tambasco, D.; Bertheuil, N.; Bodin, F.; Jacquinot, N.; Parodi, P.C. Machine Learning to Predict Implant-Based Breast Reconstruction Failure: A Bootstrap-Validated Elastic Net Model. Aesthetic Plast. Surg. 2026, 1, 1. [Google Scholar] [CrossRef]
- Muresan, H.; Lam, G.; Cooper, B.T.; Perez, C.A.; Hazen, A.; Levine, J.P.; Saadeh, P.B.; Choi, M.; Karp, N.S.; Ceradini, D.J. Impact of Evolving Radiation Therapy Techniques on Implant-Based Breast Reconstruction. Plast. Reconstr. Surg. 2017, 139, 1232e–1239e. [Google Scholar] [CrossRef] [PubMed]
- Chen, J.J.; von Eyben, R.; Gutkin, P.M.; Hawley, E.; Dirbas, F.M.; Lee, G.K.; Horst, K.C. Development of a Classification Tree to Predict Implant-Based Reconstruction Failure with or without Postmastectomy Radiation Therapy for Breast Cancer. Ann. Surg. Oncol. 2021, 28, 1669–1679. [Google Scholar] [CrossRef]
- Lin, A.M.; Christensen, J.M.; Liao, E.C.; Cetrulo, C.L., Jr.; Smith, B.L.; Austen, W.G., Jr.; Winograd, J.; Colwell, A.S. Postmastectomy Radiation Therapy on Permanent Implants or Tissue Expanders: Which is Better? Ann. Surg. 2021, 274, e974–e979. [Google Scholar] [CrossRef]
- Colwell, A.S. Correction of Suboptimal Results in Implant-Based Breast Reconstruction. Aesthetic Surg. J. 2020, 40, S38–S44. [Google Scholar] [CrossRef] [PubMed]
- Sorenson, T.J.; Boyd, C.J.; Hemal, K.; Cohen, O.; Choi, M.; Karp, N. Restoring Symmetry in Challenging Revision Breast Surgery: Outcomes of Pilot Study with Poly-4-Hydroxybutyrate Implant Construct. Plast. Reconstr. Surg. Glob. Open 2026, 14, e7549. [Google Scholar] [CrossRef]
- Mah, A.E.; Diffey, I.; Chai, B.; Tao, B.K.; Zhu, K.; Zhang, J. Systematic review and meta-analysis of revision surgery after immediate implant-based breast reconstruction: Re-implantation or converting to free tissue transfer? J. Plast. Reconstr. Aesthetic Surg. 2026, 115, 388–399. [Google Scholar] [CrossRef]
- Costanzo, D.; Klinger, M.; Lisa, A.; Maione, L.; Battistini, A.; Vinci, V. The evolution of autologous breast reconstruction. Breast J. 2020, 26, 2223–2225. [Google Scholar] [CrossRef]
- Zhang, A.; Dayicioglu, D. Outcomes of 270 Consecutive Deep Inferior Epigastric Perforator Flaps for Breast Reconstruction. Ann. Plast. Surg. 2018, 80, S388–S394. [Google Scholar] [CrossRef]
- Kotha, V.S.; Abadeer, A.I.; Amdur, R.L.; Song, D.H.; Fan, K.L. A Critical Examination of Length of Stay in Autologous Breast Reconstruction: A National Surgical Quality Improvement Program Analysis. Plast. Reconstr. Surg. 2021, 147, 24–33. [Google Scholar] [CrossRef] [PubMed]
- Che Bakri, N.A.; Kwasnicki, R.M.; Giannas, E.; Dutta, T.; Hunter, J.E.; Henry, F.P.; Wood, S.; Ashrafian, H.; Darzi, A.; Leff, D.R. Delineating upper limb longitudinal recovery after simple mastectomy, implant or autologous breast reconstruction using wearable activity monitors. J. Plast. Reconstr. Aesthetic Surg. 2025, 104, 113–122. [Google Scholar] [CrossRef]
- Haddock, N.T.; Culver, A.J.; Teotia, S.S. Abdominal weakness, bulge, or hernia after DIEP flaps: An algorithm of management, prevention, and surgical repair with classification. J. Plast. Reconstr. Aesthetic Surg. 2021, 74, 2194–2201. [Google Scholar] [CrossRef] [PubMed]
- Wertenbroek, R.; Piatkowski, A.A. Long-term follow-up after DIEP flap breast reconstruction: Quality of life with a focus on donor-site morbidity. J. Plast. Reconstr. Aesthetic Surg. 2025, 108, 34–42. [Google Scholar] [CrossRef]
- Coriddi, M.; Myers, P.; Mehrara, B.; Nelson, J.; Cordeiro, P.G.; Disa, J.; Matros, E.; Dayan, J.; Allen, R.; McCarthy, C. Management of postoperative microvascular compromise and ischemia reperfusion injury in breast reconstruction using autologous tissue transfer: Retrospective review of 2103 flaps. Microsurgery 2022, 42, 109–116. [Google Scholar] [CrossRef]
- Heidekrueger, P.I.; Moellhoff, N.; Horch, R.E.; Lohmeyer, J.A.; Marx, M.; Heitmann, C.; Fansa, H.; Geenen, M.; Gabka, C.J.; Handstein, S.; et al. Overall Complication Rates of DIEP Flap Breast Reconstructions in Germany-A Multi-Center Analysis Based on the DGPRAC Prospective National Online Registry for Microsurgical Breast Reconstructions. J. Clin. Med. 2021, 10, 1016. [Google Scholar] [CrossRef] [PubMed]
- Frey, J.D.; Choi, M.; Salibian, A.A.; Karp, N.S. Comparison of Outcomes with Tissue Expander, Immediate Implant, and Autologous Breast Reconstruction in Greater Than 1000 Nipple-Sparing Mastectomies. Plast. Reconstr. Surg. 2017, 139, 1300–1310. [Google Scholar] [CrossRef]
- Musmann, R.J.; Andree, C.; Munder, B.; Hagouan, M.; Janku, D.; Daniels, M.; Aufmesser-Freyhardt, B.; Becker, K.; Oramary, A.; Bromba, A.; et al. Secondary solution for breast reconstruction following total DIEP flap loss: A single-center experience after 3270 DIEP flaps. J. Plast. Reconstr. Aesthetic Surg. 2024, 92, 11–25. [Google Scholar] [CrossRef]
- Sorenson, T.J.; Boyd, C.J.; Cohen, O.; Choi, M.; Karp, N. Microsurgical Strategies in Post-Radiation and Revision Breast Reconstruction: Optimizing Outcomes in High-Risk Patients. Cancers 2025, 17, 3831. [Google Scholar] [CrossRef]
- Santosa, K.B.; Qi, J.; Kim, H.M.; Hamill, J.B.; Wilkins, E.G.; Pusic, A.L. Long-term Patient-Reported Outcomes in Postmastectomy Breast Reconstruction. JAMA Surg. 2018, 153, 891–899. [Google Scholar] [CrossRef]
- Elameen, A.M.; Yassin, A.I. The Impact of Radiotherapy on the Outcomes of Deep Inferior Epigastric Artery Perforator Flaps for Breast Reconstruction: A Systematic Review and Meta-Analysis. Aesthetic Plast. Surg. 2026, 1, 1. [Google Scholar] [CrossRef]
- Gopie, J.P.; Hilhorst, M.T.; Kleijne, A.; Timman, R.; Menke-Pluymers, M.B.; Hofer, S.O.; Mureau, M.A.; Tibben, A. Women’s motives to opt for either implant or DIEP-flap breast reconstruction. J. Plast. Reconstr. Aesthetic Surg. 2011, 64, 1062–1067. [Google Scholar] [CrossRef] [PubMed]
- Massenburg, B.B.; Sanati-Mehrizy, P.; Ingargiola, M.J.; Rosa, J.H.; Taub, P.J. Flap Failure and Wound Complications in Autologous Breast Reconstruction: A National Perspective. Aesthetic Plast. Surg. 2015, 39, 902–909. [Google Scholar] [CrossRef] [PubMed]
- Luo, X.; Liu, X.; Xu, W.; Yu, K.; Luo, C.; Sun, Y.; Jin, Z.; Lian, T. Comparison of Complication Rates Between Immediate and Delayed Breast Reconstruction Following Mastectomy for Breast Cancer: A Systematic Review and Meta-Analysis. Ann. Plast. Surg. 2026, 96, 519–527. [Google Scholar] [CrossRef] [PubMed]
- Ter Stege, J.A.; Oldenburg, H.S.A.; Woerdeman, L.A.E.; Witkamp, A.J.; Kieffer, J.M.; van Huizum, M.A.; van Duijnhoven, F.H.; Hahn, D.E.E.; Gerritsma, M.A.; Kuenen, M.A.; et al. Decisional conflict in breast cancer patients considering immediate breast reconstruction. Breast 2021, 55, 91–97. [Google Scholar] [CrossRef]
- Ho, A.Y.; Hu, Z.I.; Mehrara, B.J.; Wilkins, E.G. Radiotherapy in the setting of breast reconstruction: Types, techniques, and timing. Lancet Oncol. 2017, 18, e742–e753. [Google Scholar] [CrossRef]
- Kooijman, M.M.L.; Hage, J.J.; Scholten, A.N.; van Duijnhoven, F.H.; Breugem, C.C.; Woerdeman, L.A.E. Advantages of immediate implant-based breast reconstruction over delayed breast reconstruction in women treated with postmastectomy radiotherapy for breast cancer. Breast Cancer Res. Treat. 2025, 212, 37–46. [Google Scholar] [CrossRef]
- Hershenhouse, K.S.; Bick, K.; Shauly, O.; Kondra, K.; Ye, J.; Gould, D.J.; Patel, K.M. Systematic review and meta-analysis of immediate versus delayed autologous breast reconstruction in the setting of post-mastectomy adjuvant radiation therapy. J. Plast. Reconstr. Aesthetic Surg. 2021, 74, 931–944. [Google Scholar] [CrossRef]
- Pittelkow, E.; DeBrock, W.; Christopher, L.; Mercho, R.; Suh, L.J.; Fisher, C.S.; Hartman, B.; Lester, M.; Hassanein, A.H. Advantages of the Delayed-Immediate Microsurgical Breast Reconstruction: Extending the Choice. J. Reconstr. Microsurg. 2022, 38, 579–584. [Google Scholar] [CrossRef]
- Jaffry, U.; Bienert, C.; Foster, D.G.; Siotos, C.; Manahan, M.A.; Sarmiento, S. Time to final breast reconstruction: Effect on quality of life and associated factors. J. Plast. Reconstr. Aesthetic Surg. 2025, 106, 203–212. [Google Scholar] [CrossRef]
- Parmeshwar, N.; Knox, J.A.; Piper, M.L. Evaluation of Pre-Pectoral Direct-to-Implant Breast Reconstruction with Post-Mastectomy Radiation: A Systematic Review and Meta-Analysis. J. Clin. Med. 2025, 14, 5004. [Google Scholar] [CrossRef]
- Heimes, A.S.; Stewen, K.; Hasenburg, A. Psychosocial Aspects of Immediate versus Delayed Breast Reconstruction. Breast Care 2017, 12, 374–377. [Google Scholar] [CrossRef]
- National Comprehensive Cancer Network. NCCN Clinical Practice Guidelines in Oncology (NCCN Guidelines®) for Breast Cancer v.2.2026. Available online: https://www.nccn.org/professionals/physician_gls/pdf/breast.pdf?utm (accessed on 1 February 2026).
- Herrera de la Muela, M.; Sanz Medrano, S.; Leyva, F.; Masa Jurado, I.; Membrilla Ortiz, A.I.; Brenes Sanchez, J.; de la Puente Yague, M.; Ruiz Rodriguez, J.; Buendia Perez, J. Shared Decision-making in Breast Cancer Reconstructive Surgery: Experience in a Leading Hospital. Plast. Reconstr. Surg. Glob. Open 2024, 12, e5846. [Google Scholar] [CrossRef] [PubMed]
- Shaheen, M.S.; McManus, B.T.; Cullen, C.M.; Chen, J.S.; Momeni, A.; Kuo, C.F.; Tsai, P.H.; Chung, K.C. Machine Learning Model to Predict Postmastectomy Breast Reconstruction Complications. JAMA Netw. Open 2026, 9, e267232. [Google Scholar] [CrossRef] [PubMed]
- Dobke, M.K.; Yee, B.; Mackert, G.A.; Zhu, W.Y.; Blair, S.L. The Influence of Patient Exposure to Breast Reconstruction Approaches and Education on Patient Choices in Breast Cancer Treatment. Ann. Plast. Surg. 2019, 83, 206–210. [Google Scholar] [CrossRef]
- Lee, C.N.; Ubel, P.A.; Deal, A.M.; Blizard, L.B.; Sepucha, K.R.; Ollila, D.W.; Pignone, M.P. How Informed Is the Decision About Breast Reconstruction After Mastectomy?: A Prospective, Cross-sectional Study. Ann. Surg. 2016, 264, 1103–1109. [Google Scholar] [CrossRef]
- Sharaf, B.; Seif, A.; Alawneh, F.; Bani Hani, H.; Sh Abrahim, M.; Jehad, S.; Abdallah, M.; Mahafdah, S. De-escalating breast and axillary surgery in breast cancer: Evidence, controversies, and future directions. Front. Oncol. 2026, 16, 1717340. [Google Scholar] [CrossRef] [PubMed]
- Dynarowicz, K.; Bartusik-Aebisher, D.; Czech, S.; Kawczyk-Krupka, A.; Aebisher, D. A Decade of Innovation in Breast Cancer (2015–2025): A Comprehensive Review of Clinical Trials, Targeted Therapies and Molecular Perspectives. Cancers 2026, 18, 361. [Google Scholar] [CrossRef]
- Gentile, D.; Martorana, F.; Karakatsanis, A.; Caruso, F.; Caruso, M.; Castiglione, G.; Di Grazia, A.; Pane, F.; Rizzo, A.; Vigneri, P.; et al. Predictors of mastectomy in breast cancer patients with complete remission of primary tumor after neoadjuvant therapy: A retrospective study. Eur. J. Surg. Oncol. 2024, 50, 108732. [Google Scholar] [CrossRef]
- Davies, C.F.; Macefield, R.; Avery, K.; Blazeby, J.M.; Potter, S. Patient-Reported Outcome Measures for Post-mastectomy Breast Reconstruction: A Systematic Review of Development and Measurement Properties. Ann. Surg. Oncol. 2021, 28, 386–404. [Google Scholar] [CrossRef]
- Fenton, A.; Downes, N.; Mendiola, A.; Cordova, A.; Lukity, K.; Imani, J. Multidisciplinary Management of Breast Cancer and Role of the Patient Navigator. Obstet. Gynecol. Clin. N. Am. 2022, 49, 167–179. [Google Scholar] [CrossRef] [PubMed]
- Joshi, S.; Ramarajan, L.; Ramarajan, N.; Lee, S.S.; Deshpande, O.; Fernandes, E.; Engineer, M.; Srivastava, G.; Vanmali, V.; Kannan, S.; et al. Effectiveness of a Decision Aid Plus Standard Care in Surgical Management Among Patients With Early Breast Cancer: A Randomized Clinical Trial. JAMA Netw. Open 2023, 6, e2335941. [Google Scholar] [CrossRef]
- Muntean, M.V.; Pop, I.C.; Ilies, R.A.; Pelleter, A.; Vlad, I.C.; Achimas-Cadariu, P. Exploring the Role of Autologous Fat Grafting in Implant-Based Breast Reconstruction: A Systematic Review of Complications and Aesthetic Results. J. Clin. Med. 2025, 14, 4073. [Google Scholar] [CrossRef] [PubMed]
- Efica, J.; Giuffre, M.T.; Tringale, G.; Seth, I.; McClure, V.; Lim, B.; Rozen, W.M.; Cuomo, R. Breast Reconstruction Through the Decades: A Review of Innovations and Surgical Trends. Aesthetic Plast. Surg. 2026, 50, 1836–1848. [Google Scholar] [CrossRef] [PubMed]
| Domain | Breast-Conserving Therapy (BCT) | Mastectomy with Aesthetic Flat Closure (AFC) | Mastectomy with IBBR | Mastectomy with Immediate ABR | Mastectomy with Delayed ABR |
|---|---|---|---|---|---|
| Initial Operation | Lumpectomy | Mastectomy | Mastectomy + expander (“2-stage” or implant (“DTI”) placement | Mastectomy + free flap reconstruction | Mastectomy + expander placement |
| Number of Planned Operations | One minor | One major | - DTI: one major + possible minor - 2-stage: one major + guaranteed minor | One major + possible minor | Two major + possible minor |
| Reoperation/Revision Rates | - Possible re-excision - Possible conversion to mastectomy - Possible aesthetic revisions | Low, if performed correctly | Higher for refinement (fat grafting, symmetry) | Higher for refinement (fat grafting, symmetry) | Higher for refinement (fat grafting, symmetry) |
| Recovery (Initial) | Short (one week) | Moderate (few weeks) | Moderate (staged recovery) | Prolonged (weeks to months) | Prolonged (weeks to months) |
| Adjuvant Therapy Burden | Radiation required in most patients | Selective radiation | Radiation significantly increases complications | More tolerant of radiation (aesthetic impact possible) | More tolerant of radiation (aesthetic impact possible) |
| Complication Profile | - Lower acute surgical complications - Radiation-related fibrosis with asymmetry | Surgical complications (infection, wound, seroma) | - Surgical complications - Implant loss - Capsular contracture | - Surgical complications - Flap loss, fat necrosis - Donor-site morbidity | - Surgical complications - Expander loss - Flap loss, fat necrosis - Donor-site morbidity |
| Long-Term Maintenance | Ongoing imaging and possible biopsies | Minimal | - Device related maintenance - Possible revisions (implant exchange, fat grafting, nipple reconstruction) | - Possible revisions (fat grafting, mastopexy/skin excision, nipple reconstruction) | - Possible revisions (fat grafting, mastopexy/skin excision, nipple reconstruction) |
| Total Surgical Burden Pattern | Lower upfront surgery, ongoing surveillance and radiation burden | Lowest procedural burden overall | Moderate upfront, higher longitudinal procedural burden | Higher upfront burden, lower long-term procedural maintenance | Higher upfront burden, lower long-term procedural maintenance |
| Patient Priority/Clinical Scenario | Favored Pathway(s) | Key Advantages | Key Tradeoffs/Risks |
|---|---|---|---|
| Minimize total number of surgeries | AFC | - Single-stage approach if done correctly - Minimal long-term maintenance | - Potential for contour dissatisfaction |
| Avoid implants or foreign materials | AFC or ABR | - No implant-related complications or maintenance | - AFC: no breast mound - ABR: higher upfront burden, donor-site morbidity |
| Shortest surgery | IBBR (DTI or 2-stage) | - Faster early recovery - No donor site morbidity | - DTI: long-term maintenance of implants - 2-stage: at least two operations, long-term maintenance of implants |
| Minimize maintenance | AFC or ABR | - No implant-related complications or maintenance - Long-term natural feel | - AFC: no breast mound - ABR: higher upfront burden, donor-site morbidity |
| Strong preference to avoid period without breast mound | DTI or immediate ABR | - Maintains body image continuity | DTI: long-term maintenance of implants ABR: higher upfront burden, donor-site morbidity |
| Wants substantially larger reconstructed breasts | 2-stage IBBR | - Size per patient preference | - At least two operations - Requires serial expansions - Longer time to reconstruction completion |
| Significant comorbidities/poor surgical candidate | AFC or simple IBBR | - Shortest surgery with lowest physiologic stress | - May limit reconstructive options or aesthetic outcomes |
| Desire for most natural feel/appearance | ABR | - More natural contour and feel - Ages with patient | - Higher upfront burden - May require revision if body habitus changes |
| Low BMI or unavailable abdomen donor site | IBBR or nonabdominal ABR | - Allows for breast reconstruction even with poor ABR donor sites | - IBBR: long term maintenance of implants - Nonabdominal ABR: requires more specialized surgeons, higher upfront burden, donor-site morbidity |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2026 by the authors. Published by MDPI on behalf of the Lithuanian University of Health Sciences. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license.
Share and Cite
Wojtalik, L.; Sorenson, T.J.; Verma, A.; Karp, N.; Shapiro, R. Surgical Burden of Breast Cancer Treatment: Implications of Mastectomy, Breast Conservation, and Reconstruction Choices. Medicina 2026, 62, 1016. https://doi.org/10.3390/medicina62061016
Wojtalik L, Sorenson TJ, Verma A, Karp N, Shapiro R. Surgical Burden of Breast Cancer Treatment: Implications of Mastectomy, Breast Conservation, and Reconstruction Choices. Medicina. 2026; 62(6):1016. https://doi.org/10.3390/medicina62061016
Chicago/Turabian StyleWojtalik, Luke, Thomas J. Sorenson, Amitesh Verma, Nolan Karp, and Richard Shapiro. 2026. "Surgical Burden of Breast Cancer Treatment: Implications of Mastectomy, Breast Conservation, and Reconstruction Choices" Medicina 62, no. 6: 1016. https://doi.org/10.3390/medicina62061016
APA StyleWojtalik, L., Sorenson, T. J., Verma, A., Karp, N., & Shapiro, R. (2026). Surgical Burden of Breast Cancer Treatment: Implications of Mastectomy, Breast Conservation, and Reconstruction Choices. Medicina, 62(6), 1016. https://doi.org/10.3390/medicina62061016

