Single-Port vs. Multi-Port Robotic Surgery in Urologic Oncology: A Comparative Analysis of Current Evidence and Future Directions
Simple Summary
Abstract
1. Introduction
2. Clinical Applications in Prostate, Kidney, and Bladder Cancer
2.1. Radical Prostatectomy
Author | Year | Journal | Description | Study Design | Sample Size |
---|---|---|---|---|---|
Kaouk et al. [7] | 2014 | European Urology | First clinical SP-RARP study | Prospective case series | 19 |
Abaza et al. [25] | 2020 | Journal of Endourology | Comparison of adoption methods by two surgeons | Prospective cohort | 74 |
Moschovas et al. [9] | 2021 | European Urology | SP vs. MP-RARP comparison | prospective cohort with propensity score matching | 142 |
Noh et al. [10] | 2022 | Journal of Endourology | SP vs. MP-RARP comparison | Retrospective cohort | 169 |
Abou Zeinab et al. [2] | 2023 | Urology | Extraperitoneal vs. transperitoneal SP-RARP | Retrospective cohort | 476 |
2.2. Partial and Radical Nephrectomy, and Nephroureterectomy
Author | Year | Journal | Description | Study Design | Sample Size |
---|---|---|---|---|---|
Glaser et al. [35] | 2022 | Journal of Robotic Surgery | SP vs. MP-RAPN outcomes and analgesia | Retrospective cohort | 78 |
Rich et al. [38] | 2023 | European Urology Focus | Transperitoneal vs. retroperitoneal SP-RAPN | Prospective cohort | 219 |
Fang et al. [39] | 2020 | Journal of Robotic Surgery | Initial experience with SP-RAPN and SP-RARN | Retrospective case series | 16 |
Bang et al. [43] | 2023 | Journal of Clinical Medicine | SP retroperitoneal RANU | Retrospective case series | 20 |
Pellegrino et al. [44] | 2023 | European Urology | SARA technique for SP renal surgery | Prospective cohort | 18 |
2.3. Radical Cystectomy
3. Technical Challenges and Learning Curve
4. Innovations and Future Perspectives
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Iadeluca, L.; Mardekian, J.; Chander, P.; Hopps, M.; Makinson, G.T. The burden of selected cancers in the US: Health behaviors and health care resource utilization. Cancer Manag. Res. 2017, 9, 721–730. [Google Scholar] [CrossRef]
- Abou Zeinab, M.; Beksac, A.T.; Ferguson, E.; Kaviani, A.; Moschovas, M.C.; Joseph, J.; Kim, M.; Crivellaro, S.; Nix, J.; Patel, V.; et al. Single-port Extraperitoneal and Transperitoneal Radical Prostatectomy: A Multi-Institutional Propensity-Score Matched Study. Urology 2023, 171, 140–145. [Google Scholar] [CrossRef]
- Okhawere, K.E.; Milky, G.; Razdan, S.; Shih, I.F.; Li, Y.; Zuluaga, L.; Badani, K.K. One-year healthcare costs after robotic-assisted and laparoscopic partial and radical nephrectomy: A cohort study. BMC Health Serv. Res. 2023, 23, 1099. [Google Scholar] [CrossRef]
- Bochner, B.H.; Kamat, A.M.; Bivalacqua, T.J. Open vs Robotic Cystectomy: Case Closed? J. Urol. 2024, 211, 473–475. [Google Scholar] [CrossRef]
- Cao, L.; Yang, Z.; Qi, L.; Chen, M. Robot-assisted and laparoscopic vs open radical prostatectomy in clinically localized prostate cancer: Perioperative, functional, and oncological outcomes: A Systematic review and meta-analysis. Medicine 2019, 98, e15770. [Google Scholar] [CrossRef]
- Billah, M.S.; Stifelman, M.; Munver, R.; Tsui, J.; Lovallo, G.; Ahmed, M. Single port robotic assisted reconstructive urologic surgery-with the da Vinci SP surgical system. Transl. Androl. Urol. 2020, 9, 870–878. [Google Scholar] [CrossRef] [PubMed]
- Kaouk, J.H.; Haber, G.P.; Autorino, R.; Crouzet, S.; Ouzzane, A.; Flamand, V.; Villers, A. A novel robotic system for single-port urologic surgery: First clinical investigation. Eur. Urol. 2014, 66, 1033–1043. [Google Scholar] [CrossRef]
- Kaouk, J.; Bertolo, R.; Eltemamy, M.; Garisto, J. Single-Port Robot-Assisted Radical Prostatectomy: First Clinical Experience Using the SP Surgical System. Urology 2019, 124, 309. [Google Scholar] [CrossRef] [PubMed]
- Moschovas, M.C.; Bhat, S.; Sandri, M.; Rogers, T.; Onol, F.; Mazzone, E.; Roof, S.; Mottrie, A.; Patel, V. Comparing the Approach to Radical Prostatectomy Using the Multiport da Vinci Xi and da Vinci SP Robots: A Propensity Score Analysis of Perioperative Outcomes. Eur. Urol. 2021, 79, 393–404. [Google Scholar] [CrossRef]
- Noh, T.I.; Kang, Y.J.; Shim, J.S.; Kang, S.H.; Cheon, J.; Lee, J.G.; Kang, S.G. Single-Port vs Multiport Robot-Assisted Radical Prostatectomy: A Propensity Score Matching Comparative Study. J. Endourol. 2022, 36, 661–667. [Google Scholar] [CrossRef] [PubMed]
- Kaouk, J.; Beksac, A.T.; Abou Zeinab, M.; Duncan, A.; Schwen, Z.R.; Eltemamy, M. Single Port Transvesical Robotic Radical Prostatectomy: Initial Clinical Experience and Description of Technique. Urology 2021, 155, 130–137. [Google Scholar] [CrossRef]
- Lai, A.; Dobbs, R.W.; Talamini, S.; Halgrimson, W.R.; Wilson, J.O.; Vigneswaran, H.T.; Crivellaro, S. Single port robotic radical prostatectomy: A systematic review. Transl. Androl. Urol. 2020, 9, 898–905. [Google Scholar] [CrossRef]
- Ng, C.F.; Teoh, J.Y.; Chiu, P.K.; Yee, C.H.; Chan, C.K.; Hou, S.S.; Kaouk, J.; Chan, E.S. Robot-assisted single-port radical prostatectomy: A phase 1 clinical study. Int. J. Urol. 2019, 26, 878–883. [Google Scholar] [CrossRef]
- Agarwal, D.K.; Sharma, V.; Toussi, A.; Viers, B.R.; Tollefson, M.K.; Gettman, M.T.; Frank, I. Initial Experience with da Vinci Single-port Robot-assisted Radical Prostatectomies. Eur. Urol. 2020, 77, 373–379. [Google Scholar] [CrossRef]
- Vigneswaran, H.T.; Schwarzman, L.S.; Francavilla, S.; Abern, M.R.; Crivellaro, S. A Comparison of Perioperative Outcomes Between Single-port and Multiport Robot-assisted Laparoscopic Prostatectomy. Eur. Urol. 2020, 77, 671–674. [Google Scholar] [CrossRef]
- Ju, G.Q.; Wang, Z.J.; Shi, J.Z.; Zhang, Z.Q.; Wu, Z.J.; Yin, L.; Liu, B.; Wang, L.H.; Xu, D.L. A comparison of perioperative outcomes between extraperitoneal robotic single-port and multiport radical prostatectomy with the da Vinci Si Surgical System. Asian J. Androl. 2021, 23, 640–647. [Google Scholar] [CrossRef] [PubMed]
- Huang, M.M.; Patel, H.D.; Wainger, J.J.; Su, Z.T.; Becker, R.E.N.; Han, M.; Pierorazio, P.M.; Allaf, M.E. Comparison of Perioperative and Pathologic Outcomes Between Single-port and Standard Robot-assisted Radical Prostatectomy: An Analysis of a High-volume Center and the Pooled World Experience. Urology 2021, 147, 223–229. [Google Scholar] [CrossRef] [PubMed]
- Ge, S.; Zeng, Z.; Li, Y.; Gan, L.; Meng, C.; Li, K.; Wang, Z.; Zheng, L. Comparing the safety and efficacy of single-port versus multi-port robotic-assisted techniques in urological surgeries: A systematic review and meta-analysis. World J. Urol. 2024, 42, 18. [Google Scholar] [CrossRef] [PubMed]
- Shiang, A.L.; Palka, J.K.; Balasubramanian, S.; Figenshau, R.S.; Smith, Z.L.; Kim, E.H. Comparison of single-port and multi-port Retzius-sparing robot-assisted laparoscopic prostatectomy. J. Robot. Surg. 2023, 17, 835–840. [Google Scholar] [CrossRef]
- Nguyen, T.T.; Basilius, J.; Ali, S.N.; Dobbs, R.W.; Lee, D.I. Single-Port Robotic Applications in Urology. J. Endourol. 2023, 37, 688–699. [Google Scholar] [CrossRef]
- Harrison, R.; Stifelman, M.; Billah, M.; Zaifman, J.; Lulla, T.; Sanchez De La Rosa, R.; Koster, H.; Lovallo, G.; Ahmed, M. Propensity-Score Matched Analysis Between Extraperitoneal Single Port and Intraperitoneal Multiport Radical Prostatectomy: A Single-Institutional Experience. Urology 2022, 165, 198–205. [Google Scholar] [CrossRef]
- Soputro, N.A.; Chavali, J.S.; Ramos-Carpinteyro, R.; Mikesell, C.; Pedraza, A.M.; Kaouk, J.H. Perioperative Complications of Single-Port and Multiport Robotic Radical Prostatectomy: A Single Institutional Comparison Analysis. J. Endourol. 2024, 38, 450–457. [Google Scholar] [CrossRef]
- Wei, Y.; Ji, Q.; Zuo, W.; Wang, S.; Wang, X.; Zhu, Q. Efficacy and safety of single port robotic radical prostatectomy and multiport robotic radical prostatectomy: A systematic review and meta-analysis. Transl. Androl. Urol. 2021, 10, 4402–4411. [Google Scholar] [CrossRef]
- Li, K.; Yu, X.; Yang, X.; Huang, J.; Deng, X.; Su, Z.; Wang, C.; Wu, T. Perioperative and Oncologic Outcomes of Single-Port vs Multiport Robot-Assisted Radical Prostatectomy: A Meta-Analysis. J. Endourol. 2022, 36, 83–98. [Google Scholar] [CrossRef] [PubMed]
- Abaza, R.; Martinez, O.; Murphy, C.; Urkmez, A.; Davis, J. Adoption of Single-Port Robotic Prostatectomy: Two Alternative Strategies. J. Endourol. 2020, 34, 1230–1234. [Google Scholar] [CrossRef] [PubMed]
- Lenfant, L.; Sawczyn, G.; Aminsharifi, A.; Kim, S.; Wilson, C.A.; Beksac, A.T.; Schwen, Z.; Kaouk, J. Pure Single-site Robot-assisted Radical Prostatectomy Using Single-port Versus Multiport Robotic Radical Prostatectomy: A Single-institution Comparative Study. Eur. Urol. Focus. 2021, 7, 964–972. [Google Scholar] [CrossRef] [PubMed]
- Zhou, X.; Fu, B.; Zhang, C.; Liu, W.; Guo, J.; Chen, L.; Lei, E.; Zhang, X.; Wang, G. Transvesical robot-assisted radical prostatectomy: Initial experience and surgical outcomes. BJU Int. 2020, 126, 300–308. [Google Scholar] [CrossRef]
- Kaouk, J.; Garisto, J.; Eltemamy, M.; Bertolo, R. Pure Single-Site Robot-Assisted Partial Nephrectomy Using the SP Surgical System: Initial Clinical Experience. Urology 2019, 124, 282–285. [Google Scholar] [CrossRef]
- Okhawere, K.E.; Beksac, A.T.; Wilson, M.P.; Korn, T.G.; Meilika, K.N.; Harrison, R.; Morgantini, L.; Ahmed, M.; Mehrazin, R.; Abaza, R.; et al. A Propensity-Matched Comparison of the Perioperative Outcomes Between Single-Port and Multi-Port Robotic Assisted Partial Nephrectomy: A Report from the Single Port Advanced Research Consortium (SPARC). J. Endourol. 2022, 36, 1526–1531. [Google Scholar] [CrossRef]
- Harrison, R.; Ahmed, M.; Billah, M.; Sheckley, F.; Lulla, T.; Caviasco, C.; Sanders, A.; Lovallo, G.; Stifelman, M. Single-port versus multiport partial nephrectomy: A propensity-score-matched comparison of perioperative and short-term outcomes. J. Robot. Surg. 2023, 17, 223–231. [Google Scholar] [CrossRef]
- Palacios, A.R.; Morgantini, L.; Trippel, R.; Crivellaro, S.; Abern, M.R. Comparison of Perioperative Outcomes Between Retroperitoneal Single-Port and Multiport Robot-Assisted Partial Nephrectomies. J. Endourol. 2022, 36, 1545–1550. [Google Scholar] [CrossRef]
- Mehrazin, R.; Ranti, D.; Altschuler, J. Early perioperative outcomes of single-port compared to multi-port robot-assisted laparoscopic partial nephrectomy. J. Robot. Surg. 2023, 17, 2409–2414. [Google Scholar] [CrossRef] [PubMed]
- Hu, A.; Lv, Z.; Chen, G.; Lin, Y.; Zhu, X.; Li, J.; Yu, X. Comparison of single-port versus multi-port robotic assisted partial nephrectomy: A systematic review and meta-analysis of perioperative and oncological outcomes. J. Robot. Surg. 2024, 18, 321. [Google Scholar] [CrossRef] [PubMed]
- Lv, Z.; Huang, C.; Lin, S.; Tang, W.; Peng, K.; Zeng, L.; Li, X.; Zhang, L. A comparative analysis of perioperative outcomes in single-port and multi-port retroperitoneal robot-assisted partial nephrectomy: A systematic review and meta-analysis. J. Robot. Surg. 2025, 19, 184. [Google Scholar] [CrossRef] [PubMed]
- Glaser, Z.A.; Burns, Z.R.; Fang, A.M.; Saidian, A.; Magi-Galluzzi, C.; Nix, J.W.; Rais-Bahrami, S. Single- versus multi-port robotic partial nephrectomy: A comparative analysis of perioperative outcomes and analgesic requirements. J. Robot. Surg. 2022, 16, 695–703. [Google Scholar] [CrossRef]
- Nguyen, T.T.; Ngo, X.T.; Duong, N.X.; Dobbs, R.W.; Vuong, H.G.; Nguyen, D.D.; Basilius, J.; Onder, N.K.; Mendiola, D.F.; Hoang, T.D.; et al. Single-Port vs Multiport Robot-Assisted Partial Nephrectomy: A Meta-Analysis. J. Endourol. 2024, 38, 253–261. [Google Scholar] [CrossRef]
- Abaza, R.; Murphy, C.; Bsatee, A.; Brown, D.H., Jr.; Martinez, O. Single-port Robotic Surgery Allows Same-day Discharge in Majority of Cases. Urology 2021, 148, 159–165. [Google Scholar] [CrossRef]
- Rich, J.M.; Okhawere, K.E.; Nguyen, C.; Ucpinar, B.; Zuluaga, L.; Razdan, S.; Saini, I.; Tuna Beksac, A.; Nguyen, J.; Calvo, R.S.; et al. Transperitoneal Versus Retroperitoneal Single-port Robotic-assisted Partial Nephrectomy: An Analysis from the Single Port Advanced Research Consortium. Eur. Urol. Focus. 2023, 9, 1059–1064. [Google Scholar] [CrossRef]
- Fang, A.M.; Saidian, A.; Magi-Galluzzi, C.; Nix, J.W.; Rais-Bahrami, S. Single-port robotic partial and radical nephrectomies for renal cortical tumors: Initial clinical experience. J. Robot. Surg. 2020, 14, 773–780. [Google Scholar] [CrossRef]
- Berry, J.M.; Hill, H.; Vetter, J.M.; Bhayani, S.B.; Henning, G.M.; Pickersgill, N.A.; Sivaraman, A.; Figenshau, R.S.; Kim, E.H. Single-port vs multi-port robot-assisted renal surgery: Analysis of perioperative outcomes for excision of high and low complexity renal masses. J. Robot. Surg. 2023, 17, 2149–2155. [Google Scholar] [CrossRef]
- Okhawere, K.E.; Razdan, S.; Bamby, J.; Saini, I.; Zuluaga, L.; Sauer, R.C.; Soputro, N.; Eun, D.D.; Bhandari, A.; Hemal, A.K.; et al. Comparison of outcomes between single-port and multi-port robotic radical nephrectomy. J. Robot. Surg. 2024, 18, 407. [Google Scholar] [CrossRef]
- Pellegrino, A.A.; Mima, M.; Crivellaro, S. Application of the single-port robotic platform during radical nephroureterectomy for upper tract urothelial carcinoma: Feasibility of the single-port robot in the multi-quadrant setting. Transl. Androl. Urol. 2023, 12, 1469–1474. [Google Scholar] [CrossRef]
- Bang, S.; Cho, H.J.; Ha, U.S.; Lee, J.Y.; Hong, S.H. Retroperitoneal Single-Port Robot-Assisted Nephroureterectomy with Bladder Cuff Excision: Initial Experience and Description of the Technique. J. Clin. Med. 2023, 12, 6091. [Google Scholar] [CrossRef]
- Pellegrino, A.A.; Chen, G.; Morgantini, L.; Calvo, R.S.; Crivellaro, S. Simplifying Retroperitoneal Robotic Single-port Surgery: Novel Supine Anterior Retroperitoneal Access. Eur. Urol. 2023, 84, 223–228. [Google Scholar] [CrossRef] [PubMed]
- Kaouk, J.; Garisto, J.; Eltemamy, M.; Bertolo, R. Step-by-step technique for single-port robot-assisted radical cystectomy and pelvic lymph nodes dissection using the da Vinci(®) SP™ surgical system. BJU Int. 2019, 124, 707–712. [Google Scholar] [CrossRef] [PubMed]
- Zhang, M.; Thomas, D.; Salama, G.; Ahmed, M. Single port robotic radical cystectomy with intracorporeal urinary diversion: A case series and review. Transl. Androl. Urol. 2020, 9, 925–930. [Google Scholar] [CrossRef]
- Gross, J.T.; Vetter, J.M.; Sands, K.G.; Palka, J.K.; Bhayani, S.B.; Figenshau, R.S.; Kim, E.H. Initial Experience with Single-Port Robot-Assisted Radical Cystectomy: Comparison of Perioperative Outcomes Between Single-Port and Conventional Multiport Approaches. J. Endourol. 2021, 35, 1177–1183. [Google Scholar] [CrossRef]
- Ali, D.; Sawhney, R.; Billah, M.; Harrison, R.; Stifelman, M.; Lovallo, G.; Gopal, N.; Zaifman, J.; Ahsanuddin, S.; Lama-Tamang, T.; et al. Single-Port Robotic Radical Cystectomy with Intracorporeal Bowel Diversion: Initial Experience and Review of Surgical Outcomes. J. Endourol. 2022, 36, 216–223. [Google Scholar] [CrossRef]
- Fang, A.M.; Hayek, O.; Kaylor, J.M.; Peyton, C.C.; Ferguson, J.E., 3rd; Nix, J.W.; Rais-Bahrami, S. Postoperative Outcomes and Analgesic Requirements of Single-Port vs Multiport Robotic-Assisted Radical Cystectomy. J. Endourol. 2024, 38, 438–443. [Google Scholar] [CrossRef] [PubMed]
- Pellegrino, A.A.; Pellegrino, F.; Cannoletta, D.; Calvo, R.S.; Anguiano, J.T.; Morgantini, L.; Briganti, A.; Montorsi, F.; Crivellaro, S. Learning Curve for Single-port Robot-assisted Urological Surgery: Single-center Experience and Implications for Adoption. Eur. Urol. Focus. 2025, 11, 136–141. [Google Scholar] [CrossRef]
- Özkan, A.; Liakos, N.; Moritz, R.; Janssen, M.; Kayaci-Güner, Ö.; Grabbert, M.; Bründl, J.; Ubrig, B.; Siemer, S.; Gratzke, C.; et al. Evaluation of robot-assisted surgery simulation skills after three days of intensive exposure—Experience from intensive hands-on training courses. Front. Surg. 2025, 12, 1564027. [Google Scholar] [CrossRef]
- Brian, R.; Murillo, A.; Gomes, C.; Alseidi, A. Artificial intelligence and robotic surgical education. Glob. Surg. Educ. J. Assoc. Surg. Educ. 2024, 3, 60. [Google Scholar] [CrossRef]
- Valente, D.; Brasil, L.; Spinelli, L.; Vilela, M.; Rhoden, E. A narrative review of transforming surgical education with artificial intelligence: Opportunities and challenges. AME Surg. J. 2025, 5, 1. [Google Scholar] [CrossRef]
- Katsimperis, S.; Tzelves, L.; Feretzakis, G.; Bellos, T.; Tsikopoulos, I.; Kostakopoulos, N.; Skolarikos, A. Innovations in Robot-Assisted Surgery for Genitourinary Cancers: Emerging Technologies and Clinical Applications. Appl. Sci. 2025, 15, 6118. [Google Scholar] [CrossRef]
- Zheng, J.; Wang, Y.; Zhang, J.; Guo, W.; Yang, X.; Luo, L.; Jiao, W.; Hu, X.; Yu, Z.; Wang, C.; et al. 5G ultra-remote robot-assisted laparoscopic surgery in China. Surg. Endosc. 2020, 34, 5172–5180. [Google Scholar] [CrossRef] [PubMed]
- Yang, X.; Wang, Y.; Jiao, W.; Li, J.; Wang, B.; He, L.; Chen, Y.; Xuesong, G.; Li, Z.; Zhang, Y.; et al. Application of 5G technology to conduct tele-surgical robot-assisted laparoscopic radical cystectomy. Int. J. Med. Robot. 2022, 18, e2412. [Google Scholar] [CrossRef] [PubMed]
- Li, J.; Yang, X.; Chu, G.; Feng, W.; Ding, X.; Yin, X.; Zhang, L.; Lv, W.; Ma, L.; Sun, L.; et al. Application of Improved Robot-assisted Laparoscopic Telesurgery with 5G Technology in Urology. Eur. Urol. 2023, 83, 41–44. [Google Scholar] [CrossRef] [PubMed]
- Ebihara, Y.; Hirano, S.; Kurashima, Y.; Takano, H.; Okamura, K.; Murakami, S.; Shichinohe, T.; Morohashi, H.; Oki, E.; Hakamada, K.; et al. Tele-robotic distal gastrectomy with lymph node dissection on a cadaver. Asian J. Endosc. Surg. 2024, 17, e13246. [Google Scholar] [CrossRef]
- Takahashi, Y.; Hakamada, K.; Morohashi, H.; Wakasa, Y.; Fujita, H.; Ebihara, Y.; Oki, E.; Hirano, S.; Mori, M. Effects of communication delay in the dual cockpit remote robotic surgery system. Surg. Today 2024, 54, 496–501. [Google Scholar] [CrossRef]
Author | Year | Journal | Description | Study Design | N | Key Findings |
---|---|---|---|---|---|---|
Kaouk et al. [45] | 2019 | BJU International | SP-RARC with intracorporeal diversion | Prospective case series | 4 | SP-RARC with PLND and ileal conduit was feasible and safe in 4 patients, with no conversions, negative margins, acceptable blood loss, and discharge by day 5. |
Zhang et al. [46] | 2020 | Translational Andrology and Urology | SP-RARC with intracorporeal diversion | Prospective case series | 4 | SP-RARC with intracorporeal ileal conduit was feasible and safe in 4 patients, with mean operative time 270 min, EBL 250 mL, mean nodal yield 12.5, LOS ~5.5 days, and only one Clavien II complication. |
Gross et al. [47] | 2021 | Journal of Endourology | SP vs. MP-RARC comparison | Retrospective cohort | 96 | In a matched analysis (12 SP vs. 24 MP RARC), SP was feasible with comparable operative time, EBL, complications, readmissions, and PSM rates, though lymph node yield was lower (11.9 vs. 17.1). |
Ali et al. [48] | 2022 | Journal of Endourology | SP vs. MP-RARC with diversion | Prospective cohort | 34 | In 34 patients (20 MP vs. 14 SP RARC with ICUD), outcomes were broadly comparable; SP was associated with less narcotic use and faster bowel recovery, while operative times and complications were similar. |
Fang et al. [49] | 2024 | Journal of Endourology | SP vs. MP-RARC with diversion | Retrospective cohort | 36 | In 96 patients (47 SP vs. 49 MP RARC), SP was associated with shorter operative time and faster bowel recovery, while LOS, narcotic use, complications, readmissions, and oncologic outcomes were similar. |
Domain | Findings (SP vs. MP) | Notes/Explanations |
---|---|---|
Perioperative outcomes | Similar operative times after learning curve; some reports of modestly reduced blood loss with SP | Early SP series often showed longer operative times due to learning curve; differences narrow with experience |
Oncologic efficacy | Comparable oncologic control (positive surgical margins, recurrence, survival); slightly lower lymph node yields in SP | Lower nodal yields reflect surgeon planning, learning curve, risk stratification, and approach (extraperitoneal vs. transperitoneal), not platform limitation |
Postoperative recovery | Shorter hospital stay, earlier catheter removal, and reduced opioid use frequently reported with SP | Variability depends on institutional discharge criteria and ERAS protocols; earlier recovery more pronounced in extraperitoneal/transvesical SP approaches |
Complication rates | Overall complication rates comparable between SP and MP platforms | Most differences minor and concentrated in early learning curve; major complications similar across platforms |
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. |
© 2025 by the authors. 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 (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Katsimperis, S.; Tzelves, L.; Feretzakis, G.; Bellos, T.; Douroumis, K.; Kostakopoulos, N.; Skolarikos, A. Single-Port vs. Multi-Port Robotic Surgery in Urologic Oncology: A Comparative Analysis of Current Evidence and Future Directions. Cancers 2025, 17, 2847. https://doi.org/10.3390/cancers17172847
Katsimperis S, Tzelves L, Feretzakis G, Bellos T, Douroumis K, Kostakopoulos N, Skolarikos A. Single-Port vs. Multi-Port Robotic Surgery in Urologic Oncology: A Comparative Analysis of Current Evidence and Future Directions. Cancers. 2025; 17(17):2847. https://doi.org/10.3390/cancers17172847
Chicago/Turabian StyleKatsimperis, Stamatios, Lazaros Tzelves, Georgios Feretzakis, Themistoklis Bellos, Konstantinos Douroumis, Nikolaos Kostakopoulos, and Andreas Skolarikos. 2025. "Single-Port vs. Multi-Port Robotic Surgery in Urologic Oncology: A Comparative Analysis of Current Evidence and Future Directions" Cancers 17, no. 17: 2847. https://doi.org/10.3390/cancers17172847
APA StyleKatsimperis, S., Tzelves, L., Feretzakis, G., Bellos, T., Douroumis, K., Kostakopoulos, N., & Skolarikos, A. (2025). Single-Port vs. Multi-Port Robotic Surgery in Urologic Oncology: A Comparative Analysis of Current Evidence and Future Directions. Cancers, 17(17), 2847. https://doi.org/10.3390/cancers17172847