TY - JOUR T1 - Arı Sperması (Apis mellifera anatoliaca) ve İnsülin Etkileşiminin Soya Lesitini Temelli Kriyoprezervasyon Sulandırıcılarında Flow Sitometri Olarak incelenmesi TT - Flow Cytometric Examination of The Interaction Between Drone Sperm (Apis Mellifera Anatoliaca) and Insulin in Soybean Lecithin-Based Cryopreservation Extenders AU - Toker, Mehmed Berk AU - Aktar, Ahmet AU - Seven-çakmak, Selvinar AU - Çakmak, İbrahim AU - Akkaşoğlu, Mustafa AU - Alçay, Selim PY - 2024 DA - September Y2 - 2024 DO - 10.30782/jrvm.1420188 JF - Journal of Research in Veterinary Medicine JO - J Res Vet Med PB - Bursa Uludağ University WT - DergiPark SN - 2667-6745 SP - 46 EP - 54 VL - 43 IS - 1 LA - tr AB - Gen havuzlarının istenen yönde gelişimine katkıda bulunan üreme kontrolü, spermanın dondurması ile alakalı biyoteknolojik yöntemleri önemli bir noktaya koymaktadır. Sperma dondurmaya yöntelik çalışmalar özellikle memelilerde yoğun olarak çalışılmış olmasına rağmen, arı sperması açısından başlangıç aşamasındadır. İnsülinin seminal plazmada bulunduğu ve çeşitli sperma parametreleri üzerine etkilerinin olduğu güncel çalışmalarla desteklenmiştir. Ayrıca, soya lesitini uzun süredir, özellikle yumurta sarısına alternatif, güvenilir bir kaynak olarak sperma dondurma sulandırıcılarında tercih edilen maddelerden biridir. Bu çalışma, soya lesitini (%2) temelli arı sperma dondurma sulandırıcılarına farklı dozlarda insülin (5, 10 ve 15 IU dozda) eklenmesi sonucunda elde edilecek sonuçların, flow sitometri veya mikroskopik incelemeler aracılığıyla önemli sperma parametreleri üzerindeki etkileri değerlendirmek amacıyla gerçekleştirişmiştir. Cinsel olgunluğa ulaşmış arılardan elde edilen örnekler bireysel farklılığı engellemek adına birleştirildi (pooling). Dondurma işlemi, üç doz insülin destekli ve bir insülin içermeyen kontrol grubu olacak şekilde düzenlendi ve yöntem planlandığı şekilde uygulandı. Dondurulup çözülen örnekler; motilite, plazma membran (hipo-osmotik şişme testi) ve DNA bütünlüğü (TUNEL testi) değerlendirmelerine, floresan ataçmanı olan bir faz kontrast mikroskobu kullanılarak gerçekleştirildi. Ayrıca, akrozomal bütünlük (PNA-FITC), nitrik oksit seviyeleri (DAF-2/DA) ve mitokondriyal membran potansiyeli (JC-1), bir flow sitometri cihazı aracılığıyla araştırıldı. Beklendiği gibi, tüm sperma parametreleri dondurma işleminin doğası gereği etkilendi, ancak insülin eklenmiş çalışma grupları, kontrol grubuna kıyasla pozitif yönde bir istatistiki farkı ortaya koyamadı. Bu sonuçlar ışığında, soya lesitini temelli arı sperması dondurma sulandırıcılarında kullanılan insülin takviyesinin tercih edilen dozlarda kullanılmasının, yardımcı biyoteknolojik yöntemler aracılığıyla daha yüksek verimli arı kolonileri elde edilmesi ve arı ürünleri konusunda ülke veriminin istenilen düzeye çıkartılması konusunda olumlu bir etkiye sahip olmadığı tespit edildi. KW - Apis mellifera anatoliaca KW - Arı sperması KW - Flow-sitometri KW - İnsülin KW - Soya lesitini KW - Sperma dondurma N2 - This study was conducted to evaluate the effects of different doses of insulin (5, 10, and 15 IU) added to soybean lecithin-based drone sperm freezing extenders on sperm parameters through flow cytometry or microscopic examinations. Samples obtained from sexually mature bees were pooled to eliminate individual variation. The freezing process was organized with three insulin supplemented doses and one insulin-free control group, and the method was implemented as planned. Thawed samples were evaluated for motility, plasma membrane (hypo-osmotic swelling test), and DNA integrity (TUNEL assay) using a phase-contrast microscope with fluorescent attachment. Additionally, acrosomal integrity (PNA-FITC), nitric oxide levels (DAF-2/DA), and mitochondrial membrane potential (JC-1) were investigated using a flow cytometer. As expected, all sperm parameters were affected by the freezing process inherently, however, the insulin-supplemented experimental groups did not demonstrate a statistically significant positive difference compared to the control group. In light of these results, it was determined that the use of insulin supplementation, in preferred doses, in soybean lecithin-based drone sperm cryopreservation extenders did not have a positive effect on achieving higher productive honeybee colonies and elevating the country's yield in bee products through auxiliary biotechnological methods as desired. CR - Henry LC, Álvaro D rebolledo, Karen C medina, Jorge V rodríguez, Francisco E valente. Effect of egg yolk on sperm cryopreservation of drone (Apis mellifera). Abanico Vet. 2019;9(December):1-11. doi:10.21929/ abavet2019.921 CR - Stankus T. A review and bibliography of the literature of honey bee colony collapse disorder: A poorly understood epidemic that Clearly Threatens the successful pollination of billions of dollars of crops in America. J Agric Food Inf. 2008;9(2):115-143. doi:10.1080/10496500802173939 CR - Gül A, Şahinler N, Onal AG, Hopkins BK, Sheppard WS. Effects of diluents and plasma on honey bee (Apis mellifera L.) drone frozen-thawed semen fertility. Theriogenology. 2017;101:109-113. doi:10.1016/j. theriogenology.2017.06.020 CR - Woyke J, Jasinski Z. Influence of Age of Drones on the Results of Instrumental Insemination of Honeybee Queens. Apidologie. 1978;9(3):203-212. doi:10.1051/ apido:19780304 CR - Cobey SW. Comparison studies of instrumentally inseminated and naturally mated honey bee queens and factors affecting their performance. Apidologie. 2007;38(4):390-410. doi:10.1051/apido:2007029 CR - Alçay S, Üstüner B, Çakmak İ, Çakmak S, Nur Z. Effects of Various Cryoprotective Agents on Post-Thaw Drone Semen Quality. Kafkas Univ Vet Fak Derg. 2015;21(1):31-35. doi:10.9775/kvfd.2014.11515 CR - Almadaly EA, Tawfik FS, El-Kon II, Heleil BA, Fattouh ESM. Effect of different cryoprotectants on the post-thaw sperm characteristics and in vivo fertility of buffalo (Bubalus bubalis) bull semen. Slov Vet Res. 2019;56(February):541-551. doi:10.26873/SVR-792-2019 CR - Tonieto RA, Goularte KL, Gastal GDA, Schiavon RS, Deschamps JC, Lucia T. Cryoprotectant effect of trehalose and low-density lipoprotein in extenders for frozen ram semen. Small Rumin Res. 2010;93(2-3):206- 209. doi:10.1016/j.smallrumres.2010.05.003 CR - Abdelkader F Ben, Kairo G, Bonnet M, Barbouche N, Belzunces LP, Brunet JL. Effects of clothianidin on antioxidant enzyme activities and malondialdehyde level in honey bee drone semen. J Apic Res. 2019;58(5):740- 745. doi:10.1080/00218839.2019.1655182 CR - Kulaksiz R, Daskin AD. In vitro evaluation of Saanen buck semen frozen in different extenders supplemented with various antioxidants. Ankara Üniv Vet Fak Derg. 2010;57:151-156. doi:10.1501/Vetfak_0000002369 CR - Borsuk G, Kozłowska M, Anusiewicz M, Paleolog J. Nosema ceranae changes semen characteristics and damages sperm DNA in honeybee drones. Invertebr Surviv J. 2018;15:197-202. CR - Ciereszko A, Wilde J, Dietrich GJ, et al. Sperm parameters of honeybee drones exposed to imidacloprid. Apidologie. 2017;48(2):211-222. doi:10.1007/s13592- 016-0466-2 CR - Toker MB, Alcay S, Gokce E, Ustuner B. Cryopreservation of ram semen with antioxidant supplemented soybean lecithin-based extenders and impacts on incubation resilience. Cryobiology. 2016;72(3):205-209. doi:10.1016/j.cryobiol.2016.05.001 CR - Alcay S, Toker MB, Onder NT, Gokce E. Royal jelly supplemented soybean lecithin-based extenders improve post-thaw quality and incubation resilience of goat spermatozoa. Cryobiology. 2017;74:81-85. doi:10.1016/j.cryobiol.2016.11.011 CR - Taylor MA, Guzmán-Novoa E, Morfin N, Buhr MM. Improving viability of cryopreserved honey bee (Apis mellifera L.) sperm with selected diluents, cryoprotectants, and semen dilution ratios. Theriogenology. 2009;72(2):149-159. doi:10.1016/j.theriogenology. 2009.02.012 CR - Forouzanfar M, Sharafi M, Hosseini SM, et al. In vitro comparison of egg yolk-based and soybean lecithin-based extenders for cryopreservation of ram semen. Theriogenology. 2010;73(4):480-487. doi:10.1016/j.theriogenology.2009.10.005 CR - Vidal AH, Batista AM, da Silva ECB, et al. Soybean lecithin- based extender as an alternative for goat sperm cryopreservation. Small Rumin Res. 2013;109(1):47-51. doi:10.1016/j.smallrumres.2012.07.022 CR - Aktar A, Alçay S. L-Karnitin İlave Edilmiş Sulandırıcıların Dondurma-Çözdürme Sonrası Teke Spermasının Spermatolojik Parametleri Üzerine Etkisi. J Res Vet Med. 2022;41(1):37-42. doi:10.30782/jrvm.999299 CR - Andò S, Aquila S. Arguments raised by the recent discovery that insulin and leptin are expressed in and secreted by human ejaculated spermatozoa. Mol Cell Endocrinol. 2005;245(1-2):1-6. doi:10.1016/j. mce.2005.09.011 CR - Pinto SCC, Souza FA, Arruda RP, et al. Impact of adding different concentrations of IGF-I and insulin to the semen extender on bull sperm quality post-cryopreservation. Arq Bras Med Vet e Zootec. 2023;75(5):771- 786. doi:10.1590/1678-4162-12946 CR - van Tilburg MF, de Oliveira RV, Gadelha CRF, et al. Effects of insulin on sperm cell quality in ram semen cooled at 5°C. Semin Agrar. 2021;42(6):3802-3812. doi:10.5433/1679-0359.2021v42n6Supl2p3803 CR - Önder NT, Gökdemir T, Kiliç MC, et al. Insulin and Bull Sperm Interactions During Cryopreservation. Kafkas Univ Vet Fak Derg. 2023;29(4):401-405. doi:10.9775/kvfd.2023.29623 CR - Aquila S, Gentile M, Middea E, Catalano S, Andò S. Autocrine regulation of insulin secretion in human ejaculated spermatozoa. Endocrinology. 2005;146(2):552- 557. doi:10.1210/en.2004-1252 CR - Lampiao F, Du Plessis SS. Insulin and leptin enhance human sperm motility, acrosome reaction and nitric oxide production. Asian J Androl. 2008;10(5):799-807. doi:10.1111/j.1745-7262.2008.00421.x CR - Shokri S, Ebrahimi SM, Ziaeipour S, Nejatbakhsh R.Effect of insulin on functional parameters of human cryopreserved sperms. Cryobiology. 2019;87(February):68-73. doi:10.1016/j.cryobiol.2019.02.002 CR - Alcay S, Cakmak S, Cakmak I, et al. L-carnitine supplemented extenders improve post-thawing quality of honey bee drone (Apis mellifera) spermatozoa[1]. Kafkas Univ Vet Fak Derg. 2021;27(4):489-493. doi:10.9775/kvfd.2021.25756 CR - Alçay S, Çakmak S, Çakmak İ, et al. Drone semen cryopreservation with protein supplemented TLhepes based extender. Kafkas Univ Vet Fak Derg. 2019;25(4):553-557. doi:10.9775/kvfd.2018.21311 CR - Nur Z, Seven Çakmak S, Çakmak İ, et al. Effects of Trehalose Supplementation on Post-Thaw Sperm Quality of Honey Bee Drones. Online J Anim Feed Res. 2020;10(5):191-196. doi:10.51227/ojafr.2020.27 CR - Alcay S, Cakmak S, Cakmak I, et al. Successful cryopreservation of honey bee drone spermatozoa with royal jelly supplemented extenders. Cryobiology. 2019;87(October 2018):28-31. doi:10.1016/j.cryobiol. 2019.03.005 CR - Wegener J, May T, Kamp G, Bienefeld K. A successful new approach to honeybee semen cryopreservation. Cryobiology. 2014;69(2):236-242. doi:10.1016/j.cryobiol. 2014.07.011 CR - Gürler H, Malama E, Heppelmann M, et al. Effects of cryopreservation on sperm viability, synthesis of reactive oxygen species, and DNA damage of bovine sperm. Theriogenology. 2015;86(2):562-571. doi:10.1016/j. theriogenology.2016.02.007 CR - Nur Z, Zik B, Ustuner B, Sagirkaya H, Ozguden CG. Effects of different cryoprotective agents on ram sperm morphology and DNAintegrity. Theriogenology. 2010;73(9):1267-1275. doi:10.1016/j.theriogenology. 2009.12.007 CR - Alçay S, Toker MB, Gökçe E, Önder NT, Üstüner B, Nur Z. Long term incubation resilience of post-thaw ram semen diluted with lecithin-based extender supplemented with bovine serum albumin. Kafkas Univ Vet Fak Derg. 2019;25(3):291-297. doi:10.9775/kvfd.2018.20843 CR - Çakmak İ. Beekeeping and Recent Colony Losses in Turkey. Uludağ Arıcılık Derg. 2016;16(1):31-48. doi:10.31467/uluaricilik.379276 CR - Yániz JL, Silvestre MA, Santolaria P. Sperm quality assessment in honey bee drones. Biology (Basel). 2020;9(7):1-16. doi:10.3390/biology9070174 CR - Baumgard LH, Hausman GJ, Sanz Fernandez MV Insulin: Pancreatic secretion and adipocyte regulation. Domest Anim Endocrinol. 2016;54:76-84. doi:10.1016/j.domaniend.2015.07.001 CR - Önder NT, Gökdemir T, Kılıç MC, Yıldız S, Öztürkler Y. Effects of Insulin Lispro on Ram Semen Cryopreservation. Kocatepe Vet J. 2023;10:204-212. doi:10.30607/kvj.1347383 CR - Vazquez JM, Martinez EA, Martinez P, Garcia-Artiga C, Roca J. Hypoosmotic swelling of boar spermatozoa compared to other methods for analysing the sperm membrane. Theriogenology. 1997;47(4):913-922. doi:10.1016/S0093-691X(97)00046-0 CR - Fraser L, Gorszczaruk K, Strzezek J. Relationship between motility and membrane integrity of boar spermatozoa in media varying in osmolality. Reprod Domest Anim. 2001;36(6):325-329. doi:10.1046/ j.1439-0531.2001.00310.x CR - Yániz J, Palacín I, Vicente-Fiel S, Gosalvez J, López-Fernández C, Santolaria P. Comparison of membrane-permeant fluorescent probes for sperm viability assessment in the ram. Reprod Domest Anim. 2013;48(4):598-603. doi:10.1111/rda.12132 CR - Önder NT, Gökdemir T, Kiliç MC, Yildiz S, Öztürkler Y. Effects of Insulin Lispro on Ram Semen During Cryopreservation. Kocatepe Vet J. 2017;10:204-212. doi:10.30607/kvj. CR - Cappello AR, Guido C, Santoro A, et al. The mitochondrial citrate carrier (CIC) is present and regulates insulin secretion by human male gamete. Endocrinology. 2012;153(4):1743-1754. doi:10.1210/en.2011-1562 CR - Watson PF. The causes of reduced fertility with cryopreserved semen. Anim Reprod Sci. 2000;60-61:481- 492. doi:10.1016/S0378-4320(00)00099-3 CR - Neild DM, Gadella BM, Chaves MG, Miragaya MH, Colenbrander B, Agüero A. Membrane changes during different stages of a freeze-thaw protocol for equine semen cryopreservation. Theriogenology. 2003;59(8):1693-1705. doi:10.1016/S0093-691X(02)01231-1 CR - Ustuner B, Gokce E, Toker MB, et al. Effect of sperm pooling with seminal plasma collected in breeding or nonbreeding season on Saanen goat sperm cryosurvival. Andrologia. 2018;50(4). doi:10.1111/and.12968 CR - Salamon S, Maxwell WMC. Frozen storage of ram semen I. Processing, freezing, thawing and fertility after cervical insemination. Anim Reprod Sci. 1995;37(3-4):185-249. doi:10.1016/0378-4320(94)01327-I CR - Sharafi M, Zhandi M, Shahverdi A, Shakeri M. Beneficial effects of nitric oxide induced mild oxidative stress on post-thawed bull semen quality. Int J Fertil Steril. 2015;9(2):230-237. CR - Ball BA. Oxidative stress, osmotic stress and apoptosis: Impacts on sperm function and preservation inthe horse. Anim Reprod Sci. 2008;107(3-4):257-267. doi:10.1016/j.anireprosci.2008.04.014 CR - Ortega Ferrusola C, González Fernandez L, Macías García B, et al. Effect of cryopreservation on nitric oxide production by stallion spermatozoa. Biol Reprod.2009;81(6):1106-1111. doi:10.1095/biolreprod.109.078220 CR - Herrero MB, Gagnon C. Nitric oxide: A novel mediator of sperm function. J Androl. 2001;22(3):349-356. doi:10.1002/j.1939-4640.2001.tb02188.x CR - Rosselli M, Keller PJ, Dubey RK. Role of nitric oxide in the biology, physiology and pathophysiology of reproduction. Hum Reprod Update. 1998;4(1):3-24. doi:10.1093/humupd/4.1.3 CR - Monnier L, Hanefeld M, Schnell O, Colette C, Owens D. Insulin and atherosclerosis: How are they related? Diabetes Metab. 2013;39(2):111-117. doi:10.1016/j.diabet. 2013.02.001 CR - López-Fernández C, Fernández JL, Gosálbez A, et al. Dynamics of sperm DNA fragmentation in domestic animals. III. Ram. Theriogenology. 2008;70(6):898-908. doi:10.1016/j.theriogenology.2008.04.055 CR - Corona M, Velarde RA, Remolina S, et al. Vitellogenin, juvenile hormone, insulin signaling, and queen honey bee longevity. Proc Natl Acad Sci U S A. 2007;104(17):7128-7133. doi:10.1073/pnas.0701909104 UR - https://doi.org/10.30782/jrvm.1420188 L1 - https://dergipark.org.tr/en/download/article-file/3661604 ER -