Prediction Models for Successful Sperm Retrieval in Patients with Non-Obstructive Azoospermia Undergoing Microdissection Testicular Sperm Extraction: Is There Any Room for Further Studies?
Abstract
:1. Introduction
2. Clinical Factors
2.1. Klinefelter Syndrome
2.2. Y Chromosome Microdeletions
2.3. Cryptorchidism
2.4. Varicocele
2.5. Testis Volume
Author | Sample Size | Sperm Retrieval Rate | Predictive Factors |
---|---|---|---|
Ramasamy 2009 [26] | 68 KS undergoing 91 mTESE | 66% | Younger age associated with higher SRRs; normal T levels associated with better SRR (86%) |
Bakircioglu 2011 [27] | 106 KS vs. 379 nkNOA | 47% in KS and 50% in nkNOA | |
Sabbaghian 2014 [28] | 134 KS, 537 nkNOA | 28.4 in KS, 22.2% in nkNOA | T level significantly higher in patients with successful sperm retrieval |
Rohayem J 2015 [29] | 50 adolescent KS (13–19 years) and 85 adult KS (20–61 years) | 45% in adolescent vs. 31% in adults. | LH < 17.5 and T > 7.5 nmol/L associated with the best SRR (54%) |
Donker 2017 [30] | 176 KS, 1423 nkNOA | 28% in KS, 60% in nkNOA | |
Ozer 2018 [31] | 110 KS | 20% | |
Kizilcan 2019 [20] | 81 KS, 231 nkNOA | 19.7% in KS, 36.8% nkNOA (p = 0.006) | |
Chen 2019 [32] | 66 KS, 529 nkNOA | 45% in KS, 44.9% in nkNOA | |
Huang 2020 [33] | 66 KS | 36.4% | |
Guo F 2020 [34] | 184 KS | 43.5% | Preoperative T levels affected the SRR; 134 out of 184 patients received hCG |
Zhang 2021 [35] | 284 KS, 485 nkNOA | 44.7 in KS, 46.8% in nkNOA | |
Kocamanoglu F 2021 [36] | 121 KS vs. 178 nkNOA | 38% vs. 55.6% (p = 0.012) in KS and nkNOA respectively |
3. Hormonal Parameters
3.1. Follicle-Stimulating Hormone (FSH)
3.2. Testosterone
4. Testis Histology
5. Molecular Markers Expression in the Seminal Plasma
6. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Ishikawa, T.; Nose, R.; Yamaguchi, K.; Chiba, K.; Fujisawa, M. Learning curves of microdissection testicular sperm extraction for nonobstructive azoospermia. Fertil. Steril. 2010, 94, 1008–1011. [Google Scholar] [CrossRef] [PubMed]
- Dabaja, A.A.; Schlegel, P.N. Microdissection testicular sperm extraction: An update. Asian J. Androl. 2013, 15, 35–39. [Google Scholar] [CrossRef] [Green Version]
- Colpi, G.M.; Caroppo, E. Performing Microdissection Testicular Sperm Extraction: Surgical Pearls from a High-Volume Infertility Center. J. Clin. Med. 2021, 10, 4296. [Google Scholar] [CrossRef] [PubMed]
- Krausz, C.; Cioppi, F. Genetic Factors of Non-Obstructive Azoospermia: Consequences on Patients’ and Offspring Health. J. Clin. Med. 2021, 10, 4009. [Google Scholar] [CrossRef] [PubMed]
- Bojesen, A.; Juul, S.; Gravholt, C. Prenatal and Postnatal Prevalence of Klinefelter Syndrome: A National Registry Study. J. Clin. Endocrinol. Metab. 2003, 88, 622–626. [Google Scholar] [CrossRef]
- Masterson, T.A., III; Nassau, D.E.; Ramasamy, R. A clinical algorithm for management of fertility in adolescents with the Klinefelter syndrome. Curr. Opin. Urol. 2020, 30, 324–327. [Google Scholar] [CrossRef]
- Kang, C.; Punjani, N.; Schlegel, P. Reproductive Chances of Men with Azoospermia Due to Spermatogenic Dysfunction. J. Clin. Med. 2021, 10, 1400. [Google Scholar] [CrossRef]
- Ramasamy, R.; Padilla, W.O.; Osterberg, E.C.; Srivastava, A.; Reifsnyder, J.E.; Niederberger, C.; Schlegel, P.N. A Comparison of Models for Predicting Sperm Retrieval before Microdissection Testicular Sperm Extraction in Men with Nonobstructive Azoospermia. J. Urol. 2013, 189, 638–642. [Google Scholar] [CrossRef]
- Corona, G.; Minhas, S.; Giwercman, A.; Bettocchi, C.; Dinkelman-Smit, M.; Dohle, G.; Fusco, F.; Kadioglou, A.; Kliesch, S.; Kopa, Z.; et al. Sperm recovery and ICSI outcomes in men with non-obstructive azoospermia: A systematic review and meta-analysis. Hum. Reprod. Update 2019, 25, 733–757. [Google Scholar] [CrossRef]
- Colaco, S.; Modi, D. Genetics of the human Y chromosome and its association with male infertility. Reprod. Biol. Endocrinol. 2018, 16, 1–24. [Google Scholar] [CrossRef] [Green Version]
- Yuen, W.; Golin, A.P.; Flannigan, R.; Schlegel, P.N. Histology and sperm retrieval among men with Y chromosome microdeletions. Transl. Androl. Urol. 2021, 10, 1442–1456. [Google Scholar] [CrossRef]
- Zhang, F.; Li, L.; Wang, L.; Yang, L.; Liang, Z.; Li, J.; Jin, F.; Tian, Y. Clinical characteristics and treatment of azoospermia and severe oligospermia patients with Y-chromosome microdeletions. Mol. Reprod. Dev. 2013, 80, 908–915. [Google Scholar] [CrossRef]
- Ozan, T.; Karakeci, A.; Kaplancan, T.; Pirincci, N.; Firdolas, F.; Orhan, I. Are predictive fators in sperm retrieval and pregnancy rates present in nonobstructive azoospermia patients by microdissection testicular sperm extraction on testicle with a history of orchidopexy operation? Andrologia 2019, 51, e12430. [Google Scholar] [CrossRef] [PubMed]
- Osaka, A.; Iwahata, T.; Kobori, Y.; Shimomura, Y.; Yoshikawa, N.; Onota, S.; Yamamoto, A.; Ide, H.; Sugimoto, K.; Okada, H. Testicular volume in non-obstructive azoospermia with a history of bilateral cryptorchidism may predict successful sperm retrieval by testicular sperm extraction. Reprod. Med. Biol. 2020, 19, 372–377. [Google Scholar] [CrossRef] [PubMed]
- Ayan, S.; Orhan, I.; Altay, B.; Aşci, R.; Akbay, E.; Ayas, B.; Yaman, Ő. Fertility outcomes and predictors for successful sperm retrieval and pregnancy in 327 azoospermic men with a history of cryptorchidism who underwent microdissection testicular sperm extraction. Andrology 2021, 9, 253–259. [Google Scholar]
- Elznaty, S. Varicocele repair in non-obstructive azoospermic men: Diagnostic value of testicular biopsy—A meta-analysis. Scand. J. Urol. 2014, 48, 494–498. [Google Scholar] [CrossRef]
- Practice Committee of the American Society for Reproductive Medicine. Management of nonobstructive azoospermia: A committee opinion. Fertil. Steril. 2018, 110, 1239–1245. [Google Scholar] [CrossRef]
- Esteves, S.C.; Miyaoka, R.; Roque, M.; Agarwal, A. Outcome of varicocele repair in men with nonobstructive azoospermia: Systematic review and meta-analysis. Asian J. Androl. 2016, 18, 246–253. [Google Scholar] [CrossRef] [PubMed]
- Schlegel, P.N.; Kaufmann, J. Role of varicocelectomy in men with nonobstructive azoospermia. Fertil. Steril. 2004, 81, 1585–1588. [Google Scholar] [CrossRef]
- Kizilkan, Y.; Toksoz, S.; Turunc, T.; Ozkardes, H. Parameters predicting sperm retrieval rates during microscopic testicular sperm extraction in nonobstructive azoospermia. Andrologia 2019, 51, e13441. [Google Scholar] [CrossRef]
- Ehala-Aleksejev, K.; Punab, M. Relationship between total testicular volume, reproductive parameters and surrogate measures of adiposity in men presenting for couple’s infertility. Andrologia 2018, 50, e12952. [Google Scholar] [CrossRef]
- Schoor, R.A.; Elhanbly, S.; Niederberger, C.; Ross, L.S. The role of testicular biopsy in the modern management of male infertility. J. Urol. 2002, 167, 197–200. [Google Scholar] [CrossRef]
- Bryson, C.F.; Ramasamy, R.; Sheehan, M.; Palermo, G.D.; Rosenwaks, Z.; Schlegel, P.N. Severe Testicular Atrophy does not Affect the Success of Microdissection Testicular Sperm Extraction. J. Urol. 2014, 191, 175–178. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Bernie, A.M.; Shah, K.; Halpern, J.A.; Scovell, J.; Ramasamy, R.; Robinson, B.; Schlegel, P.N. Outcomes of microdissection testicular sperm extraction in men with nonobstructive azoospermia due to maturation arrest. Fertil. Steril. 2015, 104, 569–573. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Wang, T.; Li, H.; Chen, L.-P.; Yang, J.; Li, M.-C.; Chen, R.-B.; Lan, R.-Z.; Wang, S.; Liu, J.-H. Predictive value of FSH, testicular volume, and histopathological findings for the sperm retrieval rate of microdissection TESE in nonobstructive azoospermia: A meta-analysis. Asian J. Androl. 2018, 20, 30–36. [Google Scholar] [CrossRef] [PubMed]
- Ramasamy, R.; Ricci, J.A.; Palermo, G.D.; Gosden, L.V.; Rosenwaks, Z.; Schlegel, P.N. Successful fertility treatment for Klinefelter’s syndrome. J. Urol. 2009, 182, 1108–1113. [Google Scholar] [CrossRef]
- Bakircioglu, M.E.; Ulug, U.; Erden, H.F.; Tosun, S.; Bayram, A.; Ciray, N.; Bahceci, M. Klinefelter syndrome: Does it confer a bad prognosis in treatment of nonobstructive azoospermia? Fertil. Steril. 2011, 95, 1696–1699. [Google Scholar] [CrossRef]
- Sabbaghian, M.; Modarresi, T.; Hosseinifar, H.; Hosseini, J.; Farrahi, F.; Dadkhah, F.; Chehrazi, M.; Khalili, G.; Gilani, M.A.S. Comparison of Sperm Retrieval and Intracytoplasmic Sperm Injection Outcome in Patients with and without Klinefelter Syndrome. Urology 2014, 83, 107–110. [Google Scholar] [CrossRef] [PubMed]
- Rohayem, J.; Fricke, R.; Czeloth, K.; Mallidis, C.; Wistuba, J.; Krallmann, C.; Zitzmann, M.; Kliesch, S. Age and markers of Leydig cell function, but not of Sertoli cell function predict the success of sperm retrieval in adolescents and adults with Klinefelter’s syndrome. Andrology 2015, 3, 868–875. [Google Scholar] [CrossRef]
- Donker, R.B.; Vloeberghs, V.; Groen, H.; Tournaye, H.; van Ravenswaaij-Arts, C.M.A.; Land, J.A. Chromosomal abnormal-ities in 1663 infertile men with azoospermia: The clinical consequences. Hum. Reprod. 2017, 32, 2574–2580. [Google Scholar] [CrossRef]
- Ozer, C.; Caglar Aytac, P.; Goren, M.R.; Toksoz, S.; Gul, U.; Turunc, T. Sperm retrieval by microdissection testicular sperm extraction and intracytoplasmic sperm injection outcomes in nonobstructive azoospermic patients with Klinefelter syndrome. Andrologia 2018, 50, e12983. [Google Scholar] [CrossRef]
- Chen, X.; Ma, Y.; Zou, S.; Wang, S.; Qiu, J.; Xiao, Q.; Zhou, L.; Ping, P. Comparison and outcomes of nonobstructive azoo-spermia patients with different etiology undergoing MicroTESE and ICSI treatments. Transl. Androl. Urol. 2019, 8, 366–373. [Google Scholar] [CrossRef] [PubMed]
- Huang, I.-S.; Fantus, R.; Chen, W.-J.; Wren, J.; Kao, W.-T.; Huang, E.Y.-H.; Bennett, N.E.; Brannigan, R.E.; Huang, W.J. Do partial AZFc deletions affect the sperm retrieval rate in non-mosaic Klinefelter patients undergoing microdissection testicular sperm extraction? BMC Urol. 2020, 20, 1–8. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Guo, F.; Fang, A.; Fan, Y.; Fu, X.; Lan, Y.; Liu, M.; Cao, S.; An, G. Role of treatment with human chorionic gonadotropin and clinical parameters on testicular sperm recovery with microdissection testicular sperm extraction and intracytoplasmic sperm injection outcomes in 184 Klinefelter syndrome patients. Fertil. Steril. 2020, 114, 997–1005. [Google Scholar] [CrossRef]
- Zhang, H.L.; Zhao, L.M.; Mao, J.M.; Liu, D.F.; Tang, W.H.; Lin, H.C.; Zhang, L.; Lian, Y.; Hong, K.; Jiang, H. Sperm retrieval rates and clinical outcomes for patients with different causes of azoospermia who undergo microdissection testicular sperm extraction-intracytoplasmic sperm injection. Asian J. Androl. 2021, 23, 59–63. [Google Scholar] [CrossRef]
- Kocamanoglu, F.; Ayas, B.; Bolat, M.S.; Abur, U.; Bolat, R.; Asci, R. Endocrine, sexual and reproductive functions in patients with Klinefelter syndrome compared to non-obstructive azoospermic patients. Int. J. Clin. Pract. 2021, 75, e14294. [Google Scholar] [CrossRef] [PubMed]
- Practice Committee of the American Society for Reproductive Medicine in collaboration with the Society for Male Reproduction and Urology. Evaluation of the azoospermic male: A committee opinion. Fertil. Steril. 2018, 109, 777–782. [Google Scholar] [CrossRef] [PubMed]
- Ramasamy, R.; Lin, K.; Gosden, L.V.; Rosenwaks, Z.; Palermo, G.D.; Schlegel, P.N. High serum FSH levels in men with nonobstructive azoospermia does not affect success of microdissection testicular sperm extraction. Fertil. Steril. 2009, 92, 590–593. [Google Scholar] [CrossRef]
- De Kretser, D.M.; Burger, H.G.; Hudson, B. The relationship between germinal cells and serum FSH levels in males with infertility. J. Clin. Endocrinol. Metab. 1974, 38, 787–793. [Google Scholar] [CrossRef]
- Caroppo, E.; Colpi, E.M.; D’Amato, G.; Gazzano, G.; Colpi, G.M. Prediction model for testis histology in men with non-obstructive azoospermia: Evidence for a limited predictive role of serum follicle-stimulating hormone. J. Assist. Reprod. Genet. 2019, 36, 2575–2582. [Google Scholar] [CrossRef]
- Caroppo, E.; Colpi, G.M. Hormonal treatment of men with nonobstructive azoospermia: What does the evidence suggest? J. Clin. Med. 2021, 10, 387. [Google Scholar] [CrossRef]
- Reifsnyder, J.E.; Ramasamy, R.; Husseini, J.; Schlegel, P.N. Role of Optimizing Testosterone Before Microdissection Testicular Sperm Extraction in Men with Nonobstructive Azoospermia. J. Urol. 2012, 188, 532–537. [Google Scholar] [CrossRef]
- Enatsu, N.; Miyake, H.; Chiba, K.; Fujisawa, M. Predictive factors of successful sperm retrieval on microdissection testicular sperm extraction in Japanese men. Reprod. Med. Biol. 2015, 15, 29–33. [Google Scholar] [CrossRef]
- Althakafi, S.A.; Mustafa, O.M.; Seyam, R.M.; Al-Hathal, N.; Kattan, S. Serum testosterone levels and other determinants of sperm retrieval in microdissection testicular sperm extraction. Transl. Androl. Urol. 2017, 6, 282–287. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Mehmood, S.; Alhathal, N.; Aldaweesh, S.; Junejo, N.N.; Altaweel, W.M.; Kattan, S.A. Microdissection testicular sperm extraction: Overall results and impact of preoperative testosterone level on sperm retrieval rate in patients with nonobstructive azoospermia. Urol. Ann. 2019, 11, 287–293. [Google Scholar] [CrossRef]
- Lima, T.F.N.; Patel, P.; Blachman-Braun, R.; Madhusoodanan, V.; Ramasamy, R. Serum 17-Hydroxyprogesterone is a Potential Biomarker for Evaluating Intratesticular Testosterone. J. Urol. 2020, 204, 551–556. [Google Scholar] [CrossRef] [PubMed]
- Flannigan, R.; Back, P.V.; Schlegel, P.N. Microdissection testicular sperm extraction. Transl. Urol. 2017, 6, 745–752. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Punjani, N.; Flannigan, R.; Kang, C.; Khani, F.; Schlegel, P.N. Quantifying Heterogeneity of Testicular Histopathology in Men with Nonobstructive Azoospermia. J. Urol. 2021, 206, 1268–1275. [Google Scholar] [CrossRef] [PubMed]
- Tsujimura, A.; Miyagawa, Y.; Takao, T.; Takada, S.; Koga, M.; Takeyama, M.; Matsumiya, K.; Fujioka, H.; Okuyama, A. Salvage Microdissection Testicular Sperm Extraction After Failed Conventional Testicular Sperm Extraction in Patients With Nonobstructive Azoospermia. J. Urol. 2006, 175, 1446–1449. [Google Scholar] [CrossRef]
- Kalsi, J.S.; Shah, P.; Thum, Y.; Muneer, A.; Ralph, D.J.; Minhas, S. Salvage micro-dissection testicular sperm extraction; Outcome in men with Non obstructive azoospermia with previous failed sperm retrievals. BJU Int. 2015, 116, 460–465. [Google Scholar] [CrossRef] [Green Version]
- Xu, T.; Peng, L.; Lin, X.; Li, J.; Xu, W. Predictors for successful sperm retrieval of salvage microdissection testicular sperm extraction (TESE) following failed TESE in nonobstructive azoospermia patients. Andrologia 2016, 49, e12642. [Google Scholar] [CrossRef]
- Caroppo, E.; Castiglioni, F.; Campagna, C.; Colpi, E.M.; Piatti, E.; Gazzano, G.; Colpi, G.M. Intrasurgical parameters associated with successful sperm retrieval in patients with non-obstructive azoospermia undergoing salvage microdissection testicular sperm extraction. Andrology 2021, 9, 1864–1871. [Google Scholar] [CrossRef]
- Bonaparte, E.; Moretti, M.; Colpi, G.M.; Nerva, F.; Contalbi, G.; Vaccalluzzo, L.; Tabano, S.M.; Grati, F.R.; Gazzano, G.; Sirchia, S.M.; et al. ESX1 gene expression as a robust marker of residual spermatogenesis in azoospermic men. Hum. Reprod. 2010, 25, 1398–1403. [Google Scholar] [CrossRef] [Green Version]
- Pansa, A.; Sirchia, S.M.; Melis, S.; Giacchetta, D.; Castiglioni, M.; Colapietro, P.; Fiori, S.; Falcone, R.; Paganini, L.; Bonaparte, E.; et al. ESX1 mRNA expression in seminal fluid is an indicator of residual spermatogenesis in non-obstructive azoospermic men. Hum. Reprod. 2014, 29, 2620–2627. [Google Scholar] [CrossRef] [Green Version]
- Hashemi, M.-S.; Mozdarani, H.; Ghaedi, K.; Nasr-Esfahani, M.H. Could analysis of testis-specific genes, as biomarkers in seminal plasma, predict presence of focal spermatogenesis in non-obstructive azoospermia? Andrologia 2020, 52, e13483. [Google Scholar] [CrossRef] [PubMed]
- Aslani, F.; Modarresi, M.H.; Soltanghoraee, H.; Akhondi, M.M.; Shabani, A.; Lakpour, N.; Sadeghi, M.R. Seminal molecular markers as a non-invasive diagnostic tool for the evaluation of spermatogenesis in non-obstructive azoospermia. Syst. Biol. Reprod. Med. 2011, 57, 190–196. [Google Scholar] [CrossRef]
- Zarezadeh, R.; Nikanfar, S.; Oghbaei, H.; Rezaei, Y.R.; Jafari-Gharabaghlou, D.; Ahmadi, Y.; Nouri, M.; Fattahi, A.; Dittrich, R. Omics in Seminal Plasma: An Effective Strategy for Predicting Sperm Retrieval Outcome in Non-obstructive Azoospermia. Mol. Diagn. Ther. 2021, 25, 315–325. [Google Scholar] [CrossRef] [PubMed]
- Muñoz, X.; Mata, A.; Bassas, L.; Larriba, S. Altered miRNA Signature of Developing Germ-cells in Infertile Patients Relates to the Severity of Spermatogenic Failure and Persists in Spermatozoa. Sci. Rep. 2015, 5, 17991. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Barceló, M.; Mata, A.; Bassas, L.; Larriba, S. Exosomal microRNAs in seminal plasma are markers of the origin of azoospermia and can predict the presence of sperm in testicular tissue. Hum. Reprod. 2018, 33, 1087–1098. [Google Scholar] [CrossRef]
- Xie, Y.; Yao, J.; Zhang, X.; Chen, J.; Gao, Y.; Zhang, C.; Chen, H.; Wang, Z.; Zhao, Z.; Chen, W.; et al. A panel of extracellular vesicle long noncoding RNAs in seminal plasma for predicting testicular spermatozoa in nonobstructive azoospermia patients. Hum. Reprod. 2020, 35, 2413–2427. [Google Scholar] [CrossRef]
- Hong, S.H.; Kwon, J.T.; Kim, J.; Jeong, J.; Kim, J.; Lee, S.; Cho, C. Profiling of testis-specific long noncoding RNAs in mice. BMC Genom. 2018, 19, 539. [Google Scholar] [CrossRef] [PubMed] [Green Version]
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2021 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
Caroppo, E.; Colpi, G.M. Prediction Models for Successful Sperm Retrieval in Patients with Non-Obstructive Azoospermia Undergoing Microdissection Testicular Sperm Extraction: Is There Any Room for Further Studies? J. Clin. Med. 2021, 10, 5538. https://doi.org/10.3390/jcm10235538
Caroppo E, Colpi GM. Prediction Models for Successful Sperm Retrieval in Patients with Non-Obstructive Azoospermia Undergoing Microdissection Testicular Sperm Extraction: Is There Any Room for Further Studies? Journal of Clinical Medicine. 2021; 10(23):5538. https://doi.org/10.3390/jcm10235538
Chicago/Turabian StyleCaroppo, Ettore, and Giovanni Maria Colpi. 2021. "Prediction Models for Successful Sperm Retrieval in Patients with Non-Obstructive Azoospermia Undergoing Microdissection Testicular Sperm Extraction: Is There Any Room for Further Studies?" Journal of Clinical Medicine 10, no. 23: 5538. https://doi.org/10.3390/jcm10235538
APA StyleCaroppo, E., & Colpi, G. M. (2021). Prediction Models for Successful Sperm Retrieval in Patients with Non-Obstructive Azoospermia Undergoing Microdissection Testicular Sperm Extraction: Is There Any Room for Further Studies? Journal of Clinical Medicine, 10(23), 5538. https://doi.org/10.3390/jcm10235538