Radical Prostatectomy: Evolution of Surgical Techniques from Laparoscopy to Robotics
Abstract
1. Introduction
2. Materials and Methods
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
LRP | Laparoscopic radical prostatectomy |
RARP | Robot-assisted radical prostatectomy |
UTI | Urinary tract infection |
IPSS | International Prostate Symptom Score Questionnaire |
IIEF-5 | International Index of Erectile Function |
References
- Zhou, C.K.; Check, D.P.; Lortet-Tieulent, J.; Laversanne, M.; Jemal, A.; Ferlay, J.; Bray, F.; Cook, M.B.; Devesa, S.S. Prostate cancer incidence in 43 populations worldwide: An analysis of time trends overall and by age group. Int. J. Cancer 2016, 138, 1388–1400. [Google Scholar] [CrossRef] [PubMed]
- Giona, S. The Epidemiology of Prostate Cancer. In Prostate Cancer [Internet]; Bott, S.R., Lim, N.K., Eds.; Exon Publications: Brisbane, Australia, 2021; pp. 1–16. Available online: https://exonpublications.com/index.php/exon/article/view/358 (accessed on 12 May 2025).
- Culp, M.B.; Soerjomataram, I.; Efstathiou, J.A.; Bray, F.; Jemal, A. Recent Global Patterns in Prostate Cancer Incidence and Mortality Rates. Eur. Urol. 2020, 77, 38–52. [Google Scholar] [CrossRef] [PubMed]
- Wojciechowska, U.; Barańska, K.; Miklewska, M.; Didkowska, J.A. Cancer incidence and mortality in Poland in 2020. Nowotw. J. Oncol. 2023, 73, 129–145. [Google Scholar] [CrossRef]
- Sekhoacha, M.; Riet, K.; Motloung, P.; Gumenku, L.; Adegoke, A.; Mashele, S. Prostate Cancer Review: Genetics, Diagnosis, Treatment Options, and Alternative Approaches. Molecules 2022, 27, 5730. [Google Scholar] [CrossRef] [PubMed]
- Moretti, T.B.C.; Magna, L.A.; Reis, L.O. Open, Laparoscopic, and Robot-Assisted Radical Prostatectomy Oncological Results: A Reverse Systematic Review. J. Endourol. 2023, 37, 521–530. [Google Scholar] [CrossRef]
- Köckerling, F. Robotic vs. Standard Laparoscopic Technique—What Is Better? Front. Surg. 2014, 1, 15. [Google Scholar] [CrossRef]
- Ma, J.; Li, X.; Zhao, S.; Zhang, R.; Yang, D. Robotic versus Laparoscopic Gastrectomy for Gastric Cancer: A Systematic Review and Meta-Analysis. World J. Surg. Onc. 2020, 18, 306. [Google Scholar] [CrossRef]
- Russo, P.; Bizzarri, F.P.; Filomena, G.B.; Marino, F.; Iacovelli, R.; Ciccarese, C.; Boccuto, L.; Ragonese, M.; Gavi, F.; Rossi, F.; et al. Relationship Between Loss of Y Chromosome and Urologic Cancers: New Future Perspectives. Cancers 2024, 16, 3766. [Google Scholar] [CrossRef]
- Mayer, E.K.; Winkler, M.H.; Aggarwal, R.; Karim, O.; Ogden, C.; Hrouda, D.; Darzi, A.W.; Vale, J.A. Robotic prostatectomy: The first UK experience. Int. J. Med. Robot. Comput. Assist Surg. 2006, 2, 321–328. [Google Scholar] [CrossRef]
- Amenta, M.; Oliva, F.; Barone, B.; Corsaro, A.; Arcaniolo, D.; Scarpato, A.; Mattiello, G.; Romano, L.; Sciorio, C.; Silvestri, T.; et al. Minimally invasive simple prostatectomy: Robotic-assisted versus laparoscopy. A comparative study. Arch. Ital. Urol. Androl. 2022, 94, 37–40. [Google Scholar] [CrossRef]
- Papachristos, A.; Basto, M.; Te Marvelde, L.; Moon, D. Laparoscopic versus robotic-assisted radical prostatectomy: An A ustralian single-surgeon series. ANZ J. Surg. 2015, 85, 154–158. [Google Scholar] [CrossRef] [PubMed]
- Kuliš, T. Senhance Robotic Radical Prostatectomy; a Review of Literature. Acta Clin. Croat. 2022, 61, 45–50. [Google Scholar] [CrossRef] [PubMed]
- Tobias-Machado, M.; Mitre, A.I.; Rubinstein, M.; Costa EFda Hidaka, A.K. Robotic-assisted radical prostatectomy learning curve for experienced laparoscopic surgeons: Does it really exist? Int. Braz. J. Urol. 2016, 42, 83–89. [Google Scholar] [CrossRef]
- Rocha, R.; Fiorelli, R.K.A.; Buogo, G.; Rubistein, M.; Mattos, R.M.; Frota, R.; Coelho, R.F.; Palmer, K.; Patel, V. Robotic-assisted laparoscopic prostatectomy (RALP): A new way to training. J. Robot. Surg. 2016, 10, 19–25. [Google Scholar] [CrossRef]
- Marra, A.R.; Puig-Asensio, M.; Edmond, M.B.; Schweizer, M.L.; Nepple, K.G. Infectious Complications of Conventional Laparoscopic vs. Robotic Laparoscopic Prostatectomy: A Systematic Literature Review and Meta-Analysis. J. Endourol. 2019, 33, 179–188. [Google Scholar] [CrossRef]
- Tollefson, M.K.; Frank, I.; Gettman, M.T. Robotic-assisted Radical Prostatectomy Decreases the Incidence and Morbidity of Surgical Site Infections. Urology 2011, 78, 827–831. [Google Scholar] [CrossRef]
- Menon, M.; Shrivastava, A.; Tewari, A. Laparoscopic radical prostatectomy: Conventional and robotic. Urology 2005, 66, 101–104. [Google Scholar] [CrossRef]
- Lantz, A.; Bock, D.; Akre, O.; Angenete, E.; Bjartell, A.; Carlsson, S.; Modig, K.K.; Nyberg, M.; Kollberg, K.S.; Steineck, G.; et al. Functional and Oncological Outcomes After Open Versus Robot-assisted Laparoscopic Radical Prostatectomy for Localised Prostate Cancer: 8-Year Follow-up. Eur. Urol. 2021, 80, 650–660. [Google Scholar] [CrossRef]
- Björklund, J.; Stattin, P.; Rönmark, E.; Aly, M.; Akre, O. The 90-day cause-specific mortality after radical prostatectomy: A nationwide population-based study. BJU Int. 2022, 129, 318–324. [Google Scholar] [CrossRef]
- Basiri, A.; De La Rosette, J.J.; Tabatabaei, S.; Woo, H.H.; Laguna, M.P.; Shemshaki, H. Comparison of retropubic, laparoscopic and robotic radical prostatectomy: Who is the winner? World J. Urol. 2018, 36, 609–621. [Google Scholar] [CrossRef]
- Huang, X.; Wang, L.; Zheng, X.; Wang, X. Comparison of perioperative, functional, and oncologic outcomes between standard laparoscopic and robotic-assisted radical prostatectomy: A systemic review and meta-analysis. Surg Endosc. 2017, 31, 1045–1060. [Google Scholar] [CrossRef]
- Carbonara, U.; Srinath, M.; Crocerossa, F.; Ferro, M.; Cantiello, F.; Lucarelli, G.; Porpiglia, F.; Battaglia, M.; Ditonno, P.; Autorino, R. Robot-assisted radical prostatectomy versus standard laparoscopic radical prostatectomy: An evidence-based analysis of comparative outcomes. World J. Urol. 2021, 39, 3721–3732. [Google Scholar] [CrossRef] [PubMed]
- Miller, J.; Smith, A.; Kouba, E.; Wallen, E.; Pruthi, R.S. Prospective Evaluation of Short-Term Impact and Recovery of Health Related Quality of Life in Men Undergoing Robotic Assisted Laparoscopic Radical Prostatectomy Versus Open Radical Prostatectomy. J. Urol. 2007, 178, 854–859. [Google Scholar] [CrossRef] [PubMed]
- Ganzer, R.; Do, M.; Rai, B.P.; Dietel, A.; Stolzenburg, J.U. Laparoskopische radikale Prostatektomie. Der Urol. 2015, 54, 172–177. [Google Scholar] [CrossRef]
- Jackaman, F.R.; Chisholm, G.D. Urinary Infection and Prostatectomy. Br. J. Urol. 1975, 47, 545–548. [Google Scholar] [CrossRef]
- Geraghty, K.; Keane, K.; Davis, N. Systematic review on urinary continence rates after robot-assisted laparoscopic radical prostatectomy. Ir. J. Med. Sci. 2024, 193, 1603–1612. [Google Scholar] [CrossRef]
- Ficarra, V.; Novara, G.; Rosen, R.C.; Artibani, W.; Carroll, P.R.; Costello, A.; Menon, M.; Montorsi, F.; Patel, V.R.; Stolzenburg, J.-U.; et al. Systematic Review and Meta-analysis of Studies Reporting Urinary Continence Recovery After Robot-assisted Radical Prostatectomy. Eur. Urol. 2012, 62, 405–417. [Google Scholar] [CrossRef]
- Cetin, T.; Yalcin, M.Y.; Karaca, E.; Ozbilen, M.H.; Ergani, B.; Koc, G.; Boyacioglu, H.; Ilbey, Y.O. Laparoscopic surgery experience does not influence oncological and functional results of robotic-assisted laparoscopic prostatectomy. Urol. J. 2021, 89, 240–243. [Google Scholar] [CrossRef]
- Willis, D.L.; Gonzalgo, M.L.; Brotzman, M.; Feng, Z.; Trock, B.; Su, L. Comparison of outcomes between pure laparoscopic vs robot-assisted laparoscopic radical prostatectomy: A study of comparative effectiveness based upon validated quality of life outcomes. BJU Int. 2012, 109, 898–905. [Google Scholar] [CrossRef]
- Ficarra, V.; Novara, G.; Artibani, W.; Cestari, A.; Galfano, A.; Graefen, M.; Guazzoni, G.; Guillonneau, B.; Menon, M.; Montorsi, F.; et al. Retropubic, Laparoscopic, and Robot-Assisted Radical Prostatectomy: A Systematic Review and Cumulative Analysis of Comparative Studies. Eur. Urol. 2009, 55, 1037–1063. [Google Scholar] [CrossRef]
- Berge, V.; Berg, R.E.; Hoff, J.R.; Wessel, N.; Diep, L.M.; Karlsen, S.J.; Eri, L.M. A Prospective Study of Transition From Laparoscopic to Robot-assisted Radical Prostatectomy: Quality of Life Outcomes After 36-Month Follow-up. Urology 2013, 81, 781–786. [Google Scholar] [CrossRef] [PubMed]
- Sooriakumaran, P.; John, M.; Wiklund, P.; Lee, D.; Nilsson, A.; Tewari, A.K. Learning Curve for Robotic Assisted Laparoscopic Prostatectomy: A Multi-Institutional Study of 3794 Patients. Minerva Urol. Nefrol. 2011, 63, 191–198. [Google Scholar]
- Bonet, X.; Moschovas, M.C.; Onol, F.F.; Bhat, K.R.; Rogers, T.; Ogaya-Pinies, G.; Rocco, B.; Sighinolfi, M.C.; Woodlief, T.; Vigués, F.; et al. The Surgical Learning Curve for Salvage Robot-Assisted Radical Prostatectomy: A Prospective Single-Surgeon Study. Minerva Urol. Nephrol. 2021, 73, 600–609. [Google Scholar] [CrossRef]
- Sciarra, A.; Frisenda, M.; Maggie, M.; Magliocca, F.M.; Ciardi, A.; Panebianco, V.; De Berardinis, E.; Salciccia, S.; Di Pierro, G.B.; Gentilucci, A.; et al. Prospective Comparative Trial on Nerve-Sparing Radical Prostatectomy Using a Robot-Assisted versus Laparoscopic Technique: Expectation versus Satisfaction and Impact on Surgical Margins. Cent. Eur. J. Urol. 2021, 74, 169–177. [Google Scholar] [CrossRef]
- Totaro, A.; Scarciglia, E.; Marino, F.; Campetella, M.; Gandi, C.; Ragonese, M.; Bientinesi, R.; Palermo, G.; Bizzarri, F.P.; Cretì, A.; et al. Robot-Assisted Radical Prostatectomy Performed with the Novel Surgical Robotic Platform HugoTM RAS: Monocentric First Series of 132 Cases Reporting Surgical, and Early Functional and Oncological Outcomes at a Tertiary Referral Robotic Center. Cancers 2024, 16, 1602. [Google Scholar] [CrossRef]
- Marino, F.; Moretto, S.; Rossi, F.; Bizzarri, F.P.; Gandi, C.; Filomena, G.B.; Gavi, F.; Russo, P.; Campetella, M.; Totaro, A.; et al. Robot-Assisted Radical Prostatectomy with the Hugo RAS and Da Vinci Surgical Robotic Systems: A Systematic Review and Meta-Analysis of Comparative Studies. Eur. Urol. Focus, 2024; ahead of print. [Google Scholar] [CrossRef]
Parameter | Laparoscopic Method | Robotic Method | p-Value | 95% CI | Passed Normality? | Used Test |
---|---|---|---|---|---|---|
Age [years], median [IQR] | 70 [54–86] | 69 [53–80] | 0.0981 | −3.464 to 0.2969 | No | Unpaired t-test |
Hospitalization duration [days], median [IQR] | 5 [4–14] | 5 [3–9] | 0.3637 | −0.8986 to 0.3319 | No | Unpaired t-test |
Surgery duration [min], median [IQR] | 203.5 [86–278] | 150.5 [84–172] | <0.0001 | −54.00 to −28.10 | No | Unpaired t-test |
Wound complications [Y/N], n (%) | 8/52 (13.3) | 2/58 (3.3) | 0.0946 | Not relevant | Not relevant | Fisher’s exact test |
Recovery room [days], median [IQR] | 1 [1–3] | 1 [1–4] | 0.8155 | −0.1578 to 0.1245 | No | Unpaired t-test |
Re-surgery [Y/N], n (%) | 2/58 (3.3) | 1/59 (1.7) | >0.9999 | Not relevant | Not relevant | Fisher’s exact test |
Transfusion of red blood cell units [Y/N], n (%) | 1/59 (1.7) | 1/59 (1.7) | >0.9999 | Not relevant | Not relevant | Fisher’s exact test |
Complications [Y/N], n (%) | 12/48 (20) | 10/50 (16.7) | 0.8140 | Not relevant | Not relevant | Fisher’s exact test |
IPSS [au], mean/median | 15.48/15 | 7.65/7 | <0.0001 | −10.30 to −5.377 | Yes | Unpaired t-test |
IIEF-5 [au], mean/median | 4.95/0 | 3.21/0 | 0.4828 | −6.711 to 3.232 | No | Unpaired t-test |
Catheterization duration [days], median [IQR] | 7 [0–183] | 7 [0–30] | 0.1521 | −21.74 to 3.456 | No | Unpaired t-test |
UTI [Y/N], n (%) | 6/27 (18.2) | 1/33 (2.9) | 0.0544 | Not relevant | Not relevant | Fisher’s exact test |
Urinary incontinence [Y/N], n (%) | 21/12 (63.3) | 9/25 (26.5) | 0.0032 | Not relevant | Not relevant | Fisher’s exact test |
Parameter A | Parameter B | R Squared | p-Value |
---|---|---|---|
Age | Surgery duration | 0.242 | 0.062 |
IIEF-5 | IPSS | –0.839 | <0.0001 |
UTI | Catheterization duration | 0.356 | 0.042 |
UTI | IPSS | 0.438 | 0.011 |
Parameter A | Parameter B | R Squared | p-Value |
---|---|---|---|
Hospitalization Time | IPSS | 0.307 | 0.078 |
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Syryło, T.; Ząbkowski, T.; Kamiński, T.W.; Skiba, R.; Krzepkowski, H.A. Radical Prostatectomy: Evolution of Surgical Techniques from Laparoscopy to Robotics. J. Clin. Med. 2025, 14, 3444. https://doi.org/10.3390/jcm14103444
Syryło T, Ząbkowski T, Kamiński TW, Skiba R, Krzepkowski HA. Radical Prostatectomy: Evolution of Surgical Techniques from Laparoscopy to Robotics. Journal of Clinical Medicine. 2025; 14(10):3444. https://doi.org/10.3390/jcm14103444
Chicago/Turabian StyleSyryło, Tomasz, Tomasz Ząbkowski, Tomasz Waldemar Kamiński, Ryszard Skiba, and Hubert Andrzej Krzepkowski. 2025. "Radical Prostatectomy: Evolution of Surgical Techniques from Laparoscopy to Robotics" Journal of Clinical Medicine 14, no. 10: 3444. https://doi.org/10.3390/jcm14103444
APA StyleSyryło, T., Ząbkowski, T., Kamiński, T. W., Skiba, R., & Krzepkowski, H. A. (2025). Radical Prostatectomy: Evolution of Surgical Techniques from Laparoscopy to Robotics. Journal of Clinical Medicine, 14(10), 3444. https://doi.org/10.3390/jcm14103444