Hostname: page-component-78c5997874-94fs2 Total loading time: 0 Render date: 2024-11-03T01:07:57.718Z Has data issue: false hasContentIssue false

The effects of Trolox on the quality of sperm from captive squirrel monkey during liquefaction in the extender ACP-118™

Published online by Cambridge University Press:  02 October 2018

D. V. C. Almeida
Affiliation:
Laboratory of Wild Animal Biology and Medicine, Federal University of Pará, Castanhal, Pará, Brazil
J. S. Lima
Affiliation:
Laboratory of Wild Animal Biology and Medicine, Federal University of Pará, Castanhal, Pará, Brazil
D. L. Leão
Affiliation:
Laboratory of Wild Animal Biology and Medicine, Federal University of Pará, Castanhal, Pará, Brazil
K. G. Oliveira
Affiliation:
Laboratory of Wild Animal Biology and Medicine, Federal University of Pará, Castanhal, Pará, Brazil
R. R. Santos*
Affiliation:
Laboratory of Wild Animal Biology and Medicine, Federal University of Pará, Castanhal, Pará, Brazil Faculty of Veterinary Medicine, Federal University of Pará, Castanhal, Pará, Brazil
S. F. S. Domingues
Affiliation:
Laboratory of Wild Animal Biology and Medicine, Federal University of Pará, Castanhal, Pará, Brazil Schothorst Feed Research, Lelystad, The Netherlands
M. S. Miranda
Affiliation:
Laboratory of Wild Animal Biology and Medicine, Federal University of Pará, Castanhal, Pará, Brazil Schothorst Feed Research, Lelystad, The Netherlands
*
Author for correspondence: R. R. Santos. Universidade Federal do Pará (UFPA), Faculdade de Ciências Biológicas, Programa de Pós-Graduação Biotecnologia (PPGBiotec), Laboratório de Citogenética; Rua Augusto Corrêa, 01, Guamá; Belém, PA, CEP 66075-110, Caixa Postal 479, Brazil. Tel: (UFPA) +55 91 32017000/(LabCitogen) +55 91 32018423. E-mail: [email protected]

Summary

The aim of this study was to evaluate the effect of incubating semen for different periods (90, 270 or 450 min) with or without Trolox® (100 or 150 µM) on the quality of sperm from Saimiri collinsi. Sperm motility, vigour, and plasma membrane integrity (PMI) were evaluated in both fresh semen and semen incubated for different time periods, i.e. 90, 270 or 450 min of incubation. Supplementation of semen extender with Trolox® 100 µM improved sperm motility, vigour and PMI for up to 270 min of incubation.

Type
Short Communication
Copyright
© Cambridge University Press 2018 

Access options

Get access to the full version of this content by using one of the access options below. (Log in options will check for institutional or personal access. Content may require purchase if you do not have access.)

References

Benzie, IF (1996) Lipid peroxidation: a review of causes consequences measurements and dietary influences. Int J Food Sci Nutr 47, 233261.Google Scholar
Cao, G Cutler, RG (1997) High concentrations of antioxidants may not improve defense against oxidative stress. Arch Gerontol Geriatr 17, 189201.Google Scholar
Celeghini, EC, de Arruda, RO, de Andrade, AF, Nascimeto, J Raphael, CF (2007) Practical techniques for bovine sperm simultaneous fluorimetric assessment of plasma acrosomal and mitochondrial membranes. Reprod Domest Anim 42, 479488.Google Scholar
Chatterjee, S Gagnon, C (2001) Production of reactive oxygen species by spermatozoa undergoing cooling freezing and thawing. Mol Reprod Dev 59, 451458.Google Scholar
Dong, Q, Tollner, TL, Rodenburg, SE, Hill, DL VandeVoort, CA (2010) Antioxidants oxyrase and mitochondrial uncoupler 2,4-dinitrophenol improved postthaw survival of rhesus monkey sperm from ejaculates with low cryosurvival. Fertil Steril 94, 23592361.Google Scholar
Donnelly, ET, McClure, N Lewis, SE (1999) Antioxidant supplementation in vitro does not improve human sperm motility. Fertil Steril 72, 484486.Google Scholar
Lima, JS, Leão, DL, Oliveira, KG, Brito, AB, Sampaio, WV Domingues, SF (2017) Seminal coagulation and sperm quality in different social contexts in captive tufted capuchin monkeys (Sapajus apella). Am J Primatol 79, e22643.Google Scholar
Minaei, MB, Barbarestani, M, Nekoonam, S, Abdolvahabi, MA, Takzare, N, Asadi, MH, Hedayatpour, A Amidi, F (2012) Effect of Trolox addition to cryopreservation media on human sperm motility. Iran J Reprod Med 10, 99104.Google Scholar
Oliveira, KG, Miranda, SA, Leão, DL, Brito, AB, Santos, RR Domingues, SF (2011) Semen coagulum liquefaction sperm activation and cryopreservation of capuchin monkey (Cebus apella) in coconut water solution (CWS) and TES-TRIS. Anim Reprod Sci 123, 7585.Google Scholar
Oliveira, KG, Leão, DL, Almeida, DVC, Santos, RR Domingues, SF (2015) Seminal characteristics and cryopreservation of sperm from the squirrel monkey Saimiri collinsi . Theriogenology 84, 743749.Google Scholar
Oliveira, KG, Santos, RR, Leão, DL, Brito, AB, Lima, JS, Sampaio, WV Domingues, SF (2016a) Cooling and freezing of sperm from captive free-living and endangered squirrel monkey species. Cryobiology 72, 283289.Google Scholar
Oliveira, KG, Santos, RR, Leão, DL, Queiroz, HL, Paim, FP, Vianez-Junior, JL Domingues, SF (2016b ) Testicular biometry and semen characteristics in captive and wild squirrel monkey species (Saimiri sp.). Theriogenology 86, 879887.Google Scholar
Sarlós, P, Molnár, A, Kókai, M, Gabor, G Ratky, J (2002) Comparative evaluation of the effect of antioxidants in the conservation of ram semen. Acta Vet Hung 50, 235245.Google Scholar
Shannon, P Curson, B (1972) Toxic effect and action of dead sperm on diluted bovine semen. J Dairy Sci 55, 614620.Google Scholar
Thuwanut, P, Chatdarong, K, Techakumphu, M Axner, E (2008) The effect of antioxidants on motility viability acrosome integrity and DNA integrity of frozen–thawed epididymal cat spermatozoa. Theriogenology 70, 233240.Google Scholar