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Production Physiology and Biology

Impact of parity on carcase and metabolic markers associated with oxidative stress during uterine involution in periparturient goat

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Pages 84-94 | Received 14 Jul 2022, Accepted 13 Dec 2022, Published online: 11 Jan 2023

References

  • Ababneh MM, Degefa T. 2005. Ultrasonic assessment of puerperal uterine involution in Balady goats. J Vet Med A Physiol Pathol Clin Med. 52(5):244–248.
  • Bordoloi J, Ozah D, Bora T, Kalita J, Manna P. 2019. Gamma-glutamyl carboxylated Gas6 mediates the beneficial effect of vitamin K on lowering hyperlipidemia via regulating the AMPK/SREBP1/PPARα signaling cascade of lipid metabolism. J Nutr Biochem. 70:174–184.
  • Camacho LE, Lemley CO, Dorsam ST, Swanson KC, Vonnahme KA. 2018. Effects of maternal nutrient restriction followed by realimentation during early and mid-gestation in beef cows. II. Placental development, umbilical blood flow, and uterine blood flow responses to diet alterations. Theriogenology. 116:1–11.
  • Celi P, Di Trana A, Claps S. 2008. Effects of perinatal nutrition on lactational performance, metabolic and hormonal profiles of dairy goats and respective kids. Small Rumin Res. 79(2-3):129–136.
  • Celi P, Di Trana A, Claps S. 2010. Effects of plane of nutrition on oxidative stress in goats during the peripartum period. Vet J. 184(1):95–99.
  • Cheong SH, Filho OGS, Absalón-Medina VA, Pelton SH, Butler WR, Gilbert RO. 2016. Metabolic and endocrine differences between dairy cows that do or do not ovulate first postpartum dominant follicles. Biol Reprod. 94(1):18–11.
  • Chilliard Y, Ferlay A, Rouel J, Lamberet G. 2003. A review of nutritional and physiological factors affecting goat milk lipid synthesis and lipolysis. J Dairy Sci. 86(5):1751–1770.
  • Elmetwally M, Bollwein H. 2017. Uterine blood flow in sheep and goats during the peri-parturient period assessed by transrectal Doppler sonography. Anim Reprod Sci. 176:32–39.
  • Ferreira MFdL, Rennó LN, Rodrigues II, Detmann E, Paulino MF, de Campos Valadares Filho S, Martins HC, Moreira SS, de Lana DS. 2021. Effects of parity order on performance, metabolic, and hormonal parameters of grazing beef cows during pre-calving and lactation periods. BMC Vet Res. 17(1):311.
  • Fuentes T, Ara I, Guadalupe-Grau A, Larsen S, Stallknecht B, Olmedillas H, Santana A, Helge JW, Calbet JAL, Guerra B. 2010. Leptin receptor 170 kDa (OB‐R170) protein expression is reduced in obese human skeletal muscle: a potential mechanism of leptin resistance. Exp Physiol. 95(1):160–171.
  • Goff JP, Horst RL. 1997. Physiological changes at parturition and their relationship to metabolic disorders. J Dairy Sci. 80(7):1260–1268.
  • Gray CA, Stewart MD, Johnson GA, Spencer TE. 2003. Postpartum uterine involution in sheep: histoarchitecture and changes in endometrial gene expression. Reproduction. 125(2):185–198.
  • Grummer RR. 1993. Etiology of lipid-related metabolic disorders in periparturient dairy cows. J Dairy Sci. 76(12):3882–3896.
  • Härter CJ, Silva HGO, Lima LD, Castagnino DS, Rivera AR, Neto OB, Gomes RA, Canola JC, Resende KT, Teixeira IAMA. 2014. Ultrasonographic measurements of kidney fat thickness and Longissimus muscle area in predicting body composition of pregnant goats. Anim Prod Sci. 54(9):1481–1485.
  • Heppelmann M, Krüger L, Leidl S, Bollwein H. 2013. Transrectal Doppler sonography of uterine blood flow during the first two weeks after parturition in Simmenthal heifers. J Vet Sci. 14(3):323–327.
  • Huang Y, Wen J, Kong Y, Zhao C, Liu S, Liu Y, Li L, Yang J, Zhu X, Zhao B, et al. 2021. Oxidative status in dairy goats: periparturient variation and changes in subclinical hyperketonemia and hypocalcemia. BMC Vet Res. 17(1):1–12.
  • Krueger L, Koerte J, Tsousis G, Herzog K, Flachowsky G, Bollwein H. 2009. Transrectal Doppler sonography of uterine blood flow during the first 12 weeks after parturition in healthy dairy cows. Anim Reprod Sci. 114(1-3):23–31.
  • Nicastro H, Da Luz CR, Chaves DFS, Bechara LRG, Voltarelli VA, Rogero MM, Lancha AH. 2012. Does branched-chain amino acids supplementation modulate skeletal muscle remodeling through inflammation modulation? Possible mechanisms of action. J Nutr Metab. 2012:136937.
  • [NRC] National Research Council. 2007. Nutrient requirements of small ruminants: sheep, goats, cervids, and new world camelids. 6th ed. Washington (DC): National Academy Press.
  • Radin L, Šimpraga M, Vince S, Kostelić A, Milinković-Tur S. 2015. Metabolic and oxidative status of Saanen goats of different parity during the peripartum period. J Dairy Res. 82(4):426–433.
  • Schäff C, Börner S, Hacke S, Kautzsch U, Sauerwein H, Spachmann SK, Schweigel-Röntgen M, Hammon HM, Kuhla B. 2013. Increased muscle fatty acid oxidation in dairy cows with intensive body fat mobilization during early lactation. J Dairy Sci. 96(10):6449–6460.
  • Sheldon IM, Dobson H. 2004. Postpartum uterine health in cattle. Anim Reprod Sci. 82-83:295–306.
  • Teixeira A, Joy M, Delfa R. 2008. In vivo estimation of goat carcass composition and body fat partition by real-time ultrasonography. J Anim Sci. 86(9):2369–2376.
  • Van der Drift SGA, Houweling M, Schonewille JT, Tielens AGM, Jorritsma R. 2012. Protein and fat mobilization and associations with serum β-hydroxybutyrate concentrations in dairy cows. J Dairy Sci. 95(9):4911–4920.
  • Van Schoubroeck D, Van den Bosch T, Scharpe K, Lu C, Van Huffel S, Timmerman D. 2004. Prospective evaluation of blood flow in the myometrium and uterine arteries in the puerperium. Ultrasound Obstet Gynecol. 23(4):378–381.
  • Zongo M, Traore M, Ababneh M, Hanzen C, Sawadogo L. 2015. Ultrasonographic assessment of uterine involution and ovarian activity in West Africa Sahelian goats. J Vet Med Anim Health. 7(2):71–76.
  • Zou D, Liu R, Shi S, Du J, Tian M, Wang X, Hou M, Duan Z, Ma Y. 2021. BHBA regulates the expressions of lipid synthesis and oxidation genes in sheep hepatocytes through the AMPK pathway. Res Vet Sci. 140:153–163.