تاثیر مایع فولیکولی گاوی و انسانی بر کیفیت منی تازه و یخ‌گشایی شده در گاوهای نر سیمنتال دومنظوره (فلک‌فی): روش جدید اضافه کردن مایع فولیکولی به منی گاو نر

نوع مقاله : مقاله کامل

نویسندگان

چکیده

پیشینه: مایع فولیکولی (FF) یک مایع بیولوژیکی است که حاوی ترکیبات زیادی مانند پروتئین‌ها، هورمون‌ها، متابولیت‌ها، آنتی اکسیدان‌ها و غیره است. هدف: هدف از این تحقیق بررسی اثرات افزودن مایع فولیکولی گاو و انسان بر کیفیت مایع منی گاو نر در طی فرآیند انجماد است. روش کار: نمونه‌گیری منی از 12 گاو نر سیمنتال در یک دوره 3 ماهه (36 انزال با سه انزال در هر گاو نر) انجام شد. هر انزال به چهار قسمت مساوی تقسیم شد. سه قسمت برای گروه‌های تجربی به عنوان شاهد (منی بدون مایع فولیکولی)، منی حاوی مایع فولیکولی انسانی، مایع منی حاوی مایع فولیکولی گاو. قسمت دیگر منی برای تهیه پلاسمای منی استفاده شد. ارزیابی کیفیت اسپرم در مایع منی منجمد تازه و ذوب شده (بلافاصله پس از ذوب، یک و دو ساعت پس از ذوب) انجام شد. نتایج: افزودن مایع فولیکولی انسان به مایع منی گاو نر می‌تواند روند کاهش تحرک اسپرم و تاخیر در افزایش درصد اسپرم مرده در منی منجمد-ذوب شده را کاهش دهد. نتیجه‌گیری: از آنجایی که مایع فولیکولی انسان زنده ماندن و تحرک اسپرم‌های گاو نر را بیشتر از گروه شاهد و مایع فولیکولی گاو حفظ می‌کند، احتمالا عواملی باعث این امر می‌شوند که شاید با دانستن آن‌ها بتوانیم به درک بهتری از متابولیسم سلول‌ها در طول فرآیند انجماد و ذوب برسیم و همچنین راه حل‌های جدید در اتخاذ پروتکل‌های انجماد اسپرم و تهیه رقیق‌کننده‌های انجماد مایع منی را بیابیم.

کلیدواژه‌ها

موضوعات


Avrech, O; Fisch, B and Shalgi, R (1997). Acrosomal status of human spermatozoa after follicular fluid or calcium ionophore challenge in relation to semen parameters and fertilizing capacity in vitro. Andrologia. 29: 97-101.
Bahmanpour, S; Namavar, MR; Talaei-Khozani, T and Mazaheri, Z (2012). The effect of the follicular fluid on sperm chromatin quality in comparison with conventional media. Eur. Rev. Med. Pharmacol. Sci., 16: 1840-1846.
Baldi, E; Luconi, M; Muratori, M; Marchiani, S; Tamburrino, L and Forti, G (2009). Nongenomic activation of spermatozoa by steroid hormones: facts and fictions. Mol. Cell. Endocrinol., 308: 39-46.
Bianchi, L; Gagliardi, A; Landi, C; Focarelli, R; De Leo, V; Luddi, A; Bini, L and Piomboni, P (2016). Protein pathways working in human follicular fluid: the future for tailored IVF? Expert Rev. Mol. Med., 18: e9.
Brantmeier, S; Grummer, R and Ax, R (1987). Concentrations of high density lipoproteins vary among follicular sizes in the bovine. J. dairy Sci., 70: 2145-2149.
Briton-Jones, C; Yeung, QSY; Tjer, GCC; Chiu, TTY; Cheung, LP; Yim, SF; Lok, IH and Haines, C (2001). The effects of follicular fluid and platelet-activating factor on motion characteristics of poor-quality cryopreserved human sperm. J. Assist. Reprod. Genet., 18: 165-170.
Bruckdorfer, K; Graham, J and Green, C (1968). The incorporation of steroid molecules into lecithin sols, β-lipoproteins and cellular membranes. FEBS. J., 4: 512-518.
Calvo, L; Vantman, D; Banks, SM; Tezon, J; Koukoulis, GN; Dennison, L and Sherins, RJ (1989). Follicular fluid-induced acrosome reaction distinguishes a subgroup of men with unexplained infertility not identified by semen analysis. Fertil. Steril., 52: 1048-1054.
Caravaglios, R and Cilotti, R (1957). A study of the proteins in the follicular fluid of the cow. J. Endocrinol., 15: 273-278.
Cooper, RA; Leslie, MH; Fischkoff, S; Shinitzky, M and Shattil, SJ (1978). Factors influencing the lipid composition and fluidity of red cell membranes in vitro: production of red cells possessing more than two cholesterols per phospholipid. Biochemistry. 17: 327-331.
Cruz, MHC; Saraiva, NZ; Cruz, JFD; Oliveira, CS; Del Collado, M; Fernandes, H; Castro, FCD and Garcia, JM (2014). Effect of follicular fluid supplementation during in vitro maturation on total cell number in bovine blastocysts produced in vitro. R. Bras. Zootec., 43: 120-126.
David, A; Frenkel, G and Kraicer, PF (1973). Chemical composition of rabbit follicular fluid. Fertil. Steril., 24: 227-229.
Dorado-Silva, M; Bartolomé-Nebreda, J; Sánchez-Martín, P; Johnston, S and Gosálvez, J (2020). Co-incubation of spermatozoa with human follicular fluid reduces sperm DNA fragmentation by mitigating DNase activity in the seminal plasma. J. Assist. Reprod. Genet., 37: 63-69.
Edwards, R (1974). Follicular fluid. Reproduction. 37: 189-219.
Ehrenwald, E; Foote, RH and Parks, JE (1990). Bovine oviductal fluid components and their potential role in sperm cholesterol efflux. Mol. Reprod. Dev., 25: 195-204.
Esmaeilpour, T; Zarei, M; Bahmanpour, S; Aliabadi, E; Hosseini, A and Jaberipour, M (2014). Effect of follicular fluid and platelet-activating factor on lactate dehydrogenase c expression in human asthenozoospermic samples. Iran. J. Med. Sci., 39: 20-28.
Falcone, L; Gianni, S; Piffaretti-Yanez, A; Marchini, M; Eppenberger, U and Balerna, M (1991). Follicular fluid enhances sperm motility and velocity in vitro. Fertil Steril., 55: 619-623.
Funahashi, H and Day, B (1993). Effects of follicular fluid at fertilization in vitro on sperm penetration in pig oocytes. Reproduction. 99: 97-103.
Getpook, C and Wirotkarun, S (2007). Sperm motility stimulation and preservation with various concentrations of follicular fluid. J. Assist. Reprod. Genet., 24: 425-428.
Go, K and Wolf, D (1983). The role of sterols in sperm capacitation. Adv. Lipid. Res., 20: 317-330.
Hong, SJ; Jenny, YM; Ho, PC and Yeung, WSB (2003). Cumulus cells reduce the spermatozoa-zona binding inhibitory activity of human follicular fluid. Fertil. Steril., 79: 802-807.
Huang, WT; Lu, SG; Tang, PC; Wu, SC; Cheng, SP and Ju, JC (2002). Biochemical compositions of follicular fluid and the effects of culture conditions on the in vitro development of pig oocytes. Asian-Australas. J. Anim. Sci., 15: 1403-1411.
Huyser, C; Fourie, FLR and Moolman, H (1997). The influence of sera, follicular fluids and seminal plasma on human sperm-zona pellucida binding. Hum. Reprod., 12: 792-799.
Ijab, R; Ayen, E; Khaki, A and Soleimanzadeh, A (2022). Evaluation of dietary betaine on post-thawed semen quality in mature bulls during summer heat stress. Vet. Res. Forum., 13: 61-70.
Jaspard, B; Fournier, N; Vieitez, G; Atger, V; Barbaras, R; Vieu, C; Manent, J; Chap, H; Perret, B and Collet, X (1997). Structural and functional comparison of HDL from homologous human plasma and follicular fluid. Arterioscler. Thromb. Vasc. Biol., 17: 1605-1613.
Juneja, R; Kadam, P; Kadam, A and Koide, S (1993). Inhibition of progesterone action by a factor in human follicular fluid. Horm. Metab. Res., 25: 298-300.
Kadam, AL and Koide, S (1991). A follicular fluid factor inhibiting Xenopus oocyte maturation. Endocr. Res., 17: 343-355.
Lange, Y and Ramos, B (1983). Analysis of the distribution of cholesterol in the intact cell. J. Biol. Chem., 258: 15130-15134.
Liu, X; Mai, H; Chen, P; Zhang, Z; Wu, T; Chen, J; Sun, P; Zhou, C; Liang, X and Huang, R (2022). Comparative analyses in transcriptome of human granulosa cells and follicular fluid micro-environment between poor ovarian responders with conventional controlled ovarian or mild ovarian stimulations. Reprod. Biol. Endocrinol., 20: 54.
Mbizvo, MT; Burkman, LJ and Alexander, NJ (1990). Human follicular fluid stimulates hyperactivated motility in human sperm. Fertil. Steril., 54: 708-712.
Moubasher, AED (1986). The effect of exogenous cholesterol on human sperm function in vitro. J. Androl., 7: 22.
Parks, JE; Meacham, T and Saacke, R (1981). Cholesterol and phospholipids of bovine spermatozoa. I. Selection of a PIPES-buffered diluent for evaluating the effect of egg yolk lipoproteins on sperm cholesterol and phospholipids. Biol. Reprod., 24: 393-398.
Revelli, A; Delle Piane, L; Casano, S; Molinari, E; Massobrio, M and Rinaudo, P (2009). Follicular fluid content and oocyte quality: from single biochemical markers to metabolomics. J. Endocrinol. Reprod., 7: 1-13.
Rusco, G; Di Iorio, M; Esposito, S; Antenucci, E; Roncarati, A and Iaffaldano, N (2023). The use of ovarian fluid as natural fertilization medium for cryopreserved semen in mediterranean brown trout: the effects on sperm swimming performance. Vet. Sci., 13: 219.
Sun, XH; Zhu, YY; Wang, L; Liu, HL; Ling, Y; Li, ZL and Sun, LB (2017). The Catsper channel and its roles in male fertility: a systematic review. Reprod. Biol. Endocrinol., 15: 1-12.
Tahmasbian, H; Ayen, E and Khaki, A (2022). Evaluation of the effects of hesperidin on fresh and frozen-thawed semen quality using two different cryopreservation methods in Simmental bull. Anim. Reprod., 19: e20220042.
Tesaăík, J (1985). Comparison of acrosome reaction-inducing activities of human cumulus oophorus, follicular fluid and ionophore A23187 in human sperm populations of proven fertilizing ability in vitro. Reproduction. 74: 383-388.
Vanderkooi, J; Fischkoff, S; Chance, B and Cooper, RA (1974). Fluorescent probe analysis of the lipid architecture of natural and experimental cholesterol-rich membranes. Biochemistry. 13: 1589-1595.
Wen-Xian, Z; Naoki, I and Takato, T (2001). Effects of exposure to bovine follicular fluid before freezing on cryoresistance of boar spermatozoa. Nihon Chikusan Gakkaiho., 72: 291-298.
Yao, Y; Yeung, W and Ho, P (1996). Fertilization and early embryology: Human follicular fluid inhibits the binding of
human spermatozoa to zona pellucida in vitro. Hum. Reprod., 11: 2674-2680.
Yeung, WS; Lee, KF; Koistinen, R; Koistinen, H; Seppälä, M and Chiu, PC (2009). Effects of glycodelins on functional competence of spermatozoa. J. Reprod. Immunol., 83: 26-30.
Zeng, WX; Isobe, N and Terada, T (2001). Effects of exposure to bovine follicular fluid before freezing on cryoresistance of boar spermatozoa. Nihon Chikusan Gakkaiho., 72: 291-298.
Zhou, JB; Yue, KZ; Luo, MJ; Chang, ZL; Liang, H; Wang, ZY and Tan, JH (2004). Effect of extenders and temperatures on sperm viability and fertilizing capacity of harbin white boar semen during long-term liquid storage. Asian-Australas. J. Anim. Sci., 17: 1501-1508.