Journal of Shandong University (Health Sciences) ›› 2021, Vol. 59 ›› Issue (6): 86-93.doi: 10.6040/j.issn.1671-7554.0.2021.0253

Previous Articles     Next Articles

Correlation analysis of freezing methods with different sperm sources and pregnancy outcomes

ZHU Xuli, ZHOU Liang, WANG Yue, SUN Qingyun, CAO Mingya, DU Yuanjie, CAO Jinfeng, ZHAO Zhiming, HAO Guimin   

  1. Department of Reproductive Medicine, The Second Hospital of Hebei Medical University, Shijiazhuang 050000, Hebei, China
  • Published:2021-06-10

Abstract: Objective To investigate the relationship between the technical parameters of frozen micro-sperm and the clinical outcomes of in vitro fertilization(IVF)cycle. Methods A total of 118 cycles related to intracytoplasmic sperm microinjection(ICSI)after cryoresuscitation of rare spermatozoa during Jan. 2016 and Dec. 2020 were retrospectively analyzed. The cycles were divided into micro freezing group and conventional freezing group according to the method of freezing; husband ejaculation group, epididymal puncture group and testicular puncture group according to the source of sperm; types Ⅰ, Ⅱ and Ⅲ severe asthenia groups according to the quality of sperm. The general data, laboratory and clinical outcomes were compared. The effects of related parameters on the clinical outcomes were analyzed with multivariate binary Logistic regression. Results (1) General data: there were no significant differences in the age, body mass index(BMI), years of infertility, basal follicle stimulating hormone(FSH), anti-Mullerian hormone(AMH), Gn days, total dosage of Gn, E2 level on hCG day, number of oocytes retrieved, and number of MⅡ eggs among the groups when the cycles were grouped according to freezing method, sperm source and sperm quality. (2) Laboratory parameters and clinical outcomes: there were no significant differences in the transferable embryo rate or clinical pregnancy rate between the micro freezing and conventional freezing groups, but there were differences in the 2PN rate(P=0.002), 2PN cleavage rate(P=0.036), and the high quality embryo rate(P=0.002)(P<0.05). There were no significant differences in 2PN rate or clinical pregnancy rate among husband ejaculation, epididymal puncture and testicular puncture groups, but there were differences in 2PN cleavage rate(P<0.001), transferable embryo rate(P=0.048)and high quality embryo rate(P=0.002). There were no significant differences in 2PN rate, transferable embryo rate, and high quality embryo rate among the severe oligoasthenia types Ⅰ, Ⅱ, and Ⅲ, but there were significant differences in 2PN cleavage rate(P<0.001), implantation rate(P=0.005), and clinical pregnancy rate(P=0.048)among the three groups. (3) The multivariate binary Logistic regression analysis showed that the relative risk of a poor outcome was 0.287 in type Ⅲ versus type Ⅰ severe oligoasthenospermia groups(OR=0.259, 95%CI: 0.075-0.887, P<0.05). Conclusion Similar clinical pregnancy rates can be obtained by micro freezing and conventional freezing. The source of sperm does not affect the clinical pregnancy rate. A lower clinical pregnancy rate may be caused by very severe oligoasthenoteratozoospermia, and further confirmation with an expanded sample size is needed.

Key words: Frozen sperm, Scarce sperm, Male fertility preservation, Clinical outcomes, Assisted reproductive technology, Micro vitrification freezing

CLC Number: 

  • R714.23
[1] Bernie AM, Mata DA, Ramasamy R, et al. Comparison of microdissection testicular sperm extraction, conventional testicular sperm extraction, and testicular sperm aspiration for nonobstructive azoospermia: a systematic review and meta-analysis [J]. Fertil Steril, 2015, 104(5): 1099-103.e1-3.
[2] Valli-Pulaski H, Peters KA, Gassei K, et al. Testicular tissue cryopreservation: 8 years of experience from a coordinated network of academic centers [J]. Human Reproduction, 2019, 34(6): 966-977.
[3] 周亮. 玻璃化冷冻对人微量精子冷冻复苏效果、DNA完整性和线粒体膜电位的影响[D].石家庄: 河北医科大学, 2016. 1-10.
[4] 朱序理, 曹金凤, 孙庆云, 等. 卵母细胞玻璃化冷冻对临床妊娠结局的影响[J]. 生殖医学杂志, 2020,29(9): 1143-1147. ZHU Xuli, CAO Jinfeng, SUN Qingyun, et al. Effect of oocyte vitrification on clinical pregnancy outcome [J]. Journal of Reproductive Medicine, 2020, 29(9): 1143-1147
[5] 董俏言, 石慧. 人类精子冷冻损伤与保护的相关研究[J]. 中国计划生育学杂志, 2019, 27(9): 1259-1263. DONG Qiaoyan, SHI Hui. Cryopreservation of human sperm [J]. Chinese Journal of Family Planning, 2019, 27(9): 1259-1263.
[6] 王荣祥, 喻乔, 彭秋平, 等. 自制冷冻片微型载体(Strawtop)微量精液冻存效果的实验研究[J]. 中华生殖与避孕杂志, 2020, 40(12): 1006-1012. WANG Rongxiang, YU Qiao, PENG Qiuping, et al. Experimental study on the cryopreservation effect of micro semen with homemade strawtop [J]. Chinese Journal of Reproduction and Contraception, 2020, 40(12): 1006-1012.
[7] Romero-Aguirregomezcorta J, Laguna-Barraza R, Fernández-González R, et al. Sperm selection by rheotaxis improves sperm quality and early embryo development [J]. Reproduction, 2021, 161(3): 343-352.
[8] Coria-Gómez CR, Torres-Rodríguez P, Villar-Muñoz LG, et al. Comparative study of fertility parameters in vitrified human spermatozoa in the presence or absence of EmbryORP®: a novel antioxidant [J]. Andrologia, 2021, 53(4): e13886. doi: 10.1111/and.13886.
[9] Pennings G, Couture V, Ombelet W. Social sperm freezing [J]. Human Reproduction, 2021, 36(4): 833-839.
[10] Prell MJ, McCue PM, Moffett PD, et al. Motility and fertility evaluation of thawed frozen stallion semen after 24 hours of cooled storage [J]. J Equine Vet Sci, 2020, 90: 102983. doi: 10.1016/j.jevs.2020.102983.
[11] 中国男性生育力保存专家共识编写组.中国男性生育力保存专家共识[J]. 中华生殖与避孕杂志, 2021, 41(3): 191-198.
[12] 靳镭, 郑家凤, 刘群, 等. 微滴无保护剂玻璃化法冷冻附睾微量精子的研究[J]. 中华男科学杂志, 2010, 16(12): 1089-1094. JIN Lei, ZHENG Jiafeng, LIU Qun, et al. Cryopreservation of epididymal sperm by microdrop vitrification without protective agent [J]. Chinese Journal of andrology, 2010, 16(12): 1089-1094.
[13] 朱杰. 不同浓度的蔗糖溶液玻璃化冷冻人类精子的研究[D]. 合肥: 安徽医科大学, 2013. 1-7.
[14] Li YX, Zhou L, Lv MQ, et al. Vitrification and conventional freezing methods in sperm cryopreservation: A systematic review and meta-analysis [J]. Eur J Obstet Gynecol Reprod Biol, 2019, 233: 84-92. doi: 10.1016/j.ejogrb.2018.
[15] Berkovitz A, Miller N, Silberman M, et al. A novel solutionfor freezing small numbers of spermatozoa using a sperm vitrification device[J]. Hum Reprod, 2018, 33(11):1975-1983.
[16] 曹晓敏, 刘丽, 方祺, 等. 非梗阻性无精子症患者显微取精术联合单精子冷冻技术助孕1例报告[J]. 中国计划生育学杂志, 2019, 27(10): 1408-1410. CAO Xiaomin, LIU Li, FANG Qi, et al. A case report of assisted pregnancy by microsection and single sperm cryotherapy in patients with non obstructive azoospermia [J]. Chinese Journal of Family Planning, 2019, 27(10): 1408-1410.
[17] 汤友苗, 王兴玲, 娄华, 等. 不同来源精子应用于ICSI治疗的早期临床结局[J]. 中国医学创新, 2018, 15(5): 22-25. TANG Youmiao, WANG Xingling, LOU Hua, et al. Early clinical outcomes of ICSI treatment with sperm from different sources [J]. China Medical Innovation, 2018, 15(5): 22-25.
[18] 管群, 于艳, 张琪瑶,等. 不同来源精子对卵胞浆内单精子注射治疗结局的影响[J]. 中国男科学杂志, 2011, 25(6): 22-25. GUAN Qun, YU Yan, ZHANG Qiyao, et al. Effect of sperm from different sources on the outcome of intracytoplasmic sperm injection [J]. Chinese Journal of Andrology, 2011, 25(6): 22-25.
[19] ONeill CL, Chow S, Rosenwaks Z, et al. Development of ICSI [J]. Reproduction, 2018, 156(1): F51-F58.
[20] 孙庆云, 曹金凤, 杜元杰,等. 不同来源精子行ICSI助孕临床结局分析[J]. 生殖医学杂志, 2020, 29(9): 1224-1227. SUN Qingyun, CAO Jinfeng, DU Yuanjie, et al. Analysis of clinical outcomes of ICSI assisted pregnancy with sperm from different sources [J]. Journal of reproductive medicine, 2020, 29(9): 1224-1227.
[21] Caroppo E, Campagna C, Colpi EM, et al. Sperm source does not affect the ICSI outcome of patients with severely compromised spermatogenesis [J]. Andrologia, 2020, 52(11): e13884.
[22] 倪晓蓓, 王珊珊, 徐志鹏, 等. 父方年龄及精子来源对ICSI周期临床结局的影响[J]. 生殖医学杂志, 2017, 26(1): 29-33. NI Xiaobei, WANG Shanshan, XU Zhipeng, et al. Effect of fathers age and sperm source on clinical outcome of ICSI cycle [J]. Journal of Reproductive Medicine, 2017, 26(1): 29-33.
[23] 董瑞娜, 郭艺红, 苏迎春, 等. 精子来源对卵胞浆内单精子注射临床结局及子代出生缺陷的影响[J]. 现代妇产科进展, 2013, 22(5): 388-392. DONG Ruina, GUO Yihong, SU Yingchun, et al. Effect of sperm source on clinical outcome of intracytoplasmic sperm injection and birth defects of offspring [J]. Progress in Modern Obstetrics and Gynecology, 2013, 22(5): 388-392.
[24] 钟惠娴, 陈培林, 熊风, 等. 不同来源冷冻复苏精子ICSI后对囊胚培养结局的影响[J]. 生殖医学杂志, 2020, 29(7): 887-892. ZHONG Huixian, CHEN Peilin, XIONG Feng, et al. Effect of ICSI on blastocyst culture outcome of cryopreserved sperm from different sources [J]. Journal of Reproductive Medicine, 2020, 29(7): 887-892.
[25] 李定明, 刘博, 鲜泱, 等. 不同浓度稀少精子冷冻技术效果的观察[J]. 中华男科学杂志, 2018, 24(8): 705-707. LI Dingming, LIU Bo, XIAN Yang, et al. Observation on the effect of different concentrations of sparsely frozen sperm [J]. Chinese Journal of andrology, 2018, 24(8): 705-707.
[1] Guimin HAO,Zhuoye LUO,Yizhuo WANG. Ethical issues and considerations in fertility preservation [J]. Journal of Shandong University (Health Sciences), 2022, 60(9): 47-52.
[2] Yuhua SHI,Ye PAN,Yanqiu XIE. Latest advances of embryo cryopreservation technology [J]. Journal of Shandong University (Health Sciences), 2022, 60(9): 12-18.
[3] Lei YAN,Caixin YUE,Yichun LIU. Fertility preservation in patients with endometriosis [J]. Journal of Shandong University (Health Sciences), 2022, 60(9): 31-34.
[4] Yuhua SHI,Qiumin WANG,Dan QI. Frontier research hotspot and progress in assisted reproductive technology [J]. Journal of Shandong University (Health Sciences), 2021, 59(9): 97-102.
[5] ZHAO Bingqing, GAO Xuan, LI Jiangxia. A retrospective analysis of chromosome karyotypes in RSA couples from assisted reproductive population [J]. Journal of Shandong University (Health Sciences), 2021, 59(7): 26-31.
[6] CAO Mingya, ZHAO Hanjie, FENG Tengfei, JIA Rui, ZHAO Zhiming, HAO Guimin. Effect of fetal reduction in early pregnancy on perinatal mothers and infants after embryo transfer [J]. Journal of Shandong University (Health Sciences), 2020, 58(11): 65-70.
[7] TAN Jichun, DONG Meng, LI Pingping. Common ethical issues on assisted reproductive technology and their management [J]. Journal of Shandong University (Health Sciences), 2019, 57(10): 60-66.
[8] HUANG Wei, ZHU Huili. Prevention and treatment of ectopic pregnancy after assisted reproductive technology [J]. Journal of Shandong University (Health Sciences), 2019, 57(10): 27-32.
[9] ZHANG Yingchun. Safety of human assisted reproductive technology offspring [J]. Journal of Shandong University (Health Sciences), 2019, 57(10): 52-59.
[10] WU Qiongfang. Possible causes and treatment of postoperative bleeding after transvaginal oocyte retrieval in assisted reproductive therapy [J]. Journal of Shandong University (Health Sciences), 2019, 57(10): 33-37.
[11] ZHAO Junli, YUAN Yingying. Prevention and treatment of multiple pregnancy in assisted reproductive therapy [J]. Journal of Shandong University (Health Sciences), 2019, 57(10): 20-26.
[12] SHI Yuhua, JIANG Qi. Prevention and treatment of ovarian hyperstimulation syndrome in assisted reproductive therapy [J]. Journal of Shandong University (Health Sciences), 2019, 57(10): 13-19.
[13] HAO Guimin, LUO Zhuoye, CUI Na. Hazards of common complications in assisted reproductive technology [J]. Journal of Shandong University (Health Sciences), 2019, 57(10): 7-12.
[14] SHI Juanzi, CHEN Lijuan. Progress in assisted reproductive technology [J]. Journal of Shandong University (Health Sciences), 2019, 57(10): 1-6.
[15] SHI Yuhua, LI Jing. Strategies for infertility treatment in elderly women [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2017, 55(1): 22-25.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] SHI Shuang, LI Juan, MI Qi, WANG Yunshan, DU Lutao, WANG Chuanxin. Construction and application of a miRNAs prognostic risk assessment model of gastric cancer[J]. Journal of Shandong University (Health Sciences), 2020, 1(7): 47 -52 .
[2] HUANG Fei,WANG Huaijing,XING Yi,GAO Wei,LI Yonggang,XING Ziying,LI Zhenzhong. Protective effects of NGF and GM1 on primary sensory neurons in SD rat with sciatic nerve injury[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2006, 44(4): 332 -335 .
[3] LYU Longfei, LI Lin, LI Shuhai, QI Lei, LU Ming, CHENG Chuanle, TIAN Hui. Application of laparoscopic fine needle catheter jejunostomy in minimally invasive McKeown resection of esophageal cancer[J]. Journal of Shandong University (Health Sciences), 2020, 1(7): 77 -81 .
[4] SHAO Haigang, WANG Xuan, WANG Qing. Anatomy of the root canal system of mandibular first premolar in population of Shandong Province[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2014, 52(9): 85 -89 .
[5] JIANG Bao-dong,MA Xiang-xing,WANG Qing,WANG Qian,FENG Xiao-yuan,LI Ke,YU Fu-hua. Imaging parameters of multislice spiral CT venography in cerebral veins[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2008, 46(11): 1084 -1086 .
[6] LI Wei,LI Dao-wei,YE Qian,GAO Shun-cui,JIANG Shu-juan.

Diagnostic value of transbronchial needle aspiration in paratracheal mediastinal lesions

[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2008, 46(11): 1063 -1065 .
[7] TANG Fang1,2, ZHANG Yingqian3, WANG Zhiqiang4, KANG Dianmin4,
WANG Jiezhen1, XUE Fuzhong1
. A 2D minimal spanning tree model of the spatial structures of natural focal disease[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2009, 47(01): 106 -110 .
[8] WANG Xu-ping,ZHAO Ling,FENG Yu-xin,SHANG Lin-shan,LIU Jin-cheng,. [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2006, 44(6): 564 -567 .
[9] WANG Xue-ping,YANG Hong-ling. [J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2007, (2): 213 .
[10] LI Yu-liang,WANG Yong-zheng,WANG Xiao-hua,ZHANG Fu-jun,ZHU Li-dong,ZHANG Wang-ming,LI Zheng,LI Zhen-jia,ZHANG Kai-xian. I implantation combined with Gemcitabine in the treatment of advanced pancreatic cancer[J]. JOURNAL OF SHANDONG UNIVERSITY (HEALTH SCIENCES), 2007, 45(4): 393 -396 .