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Articles

Transcription pattern of key molecular chaperones in heat shocked caprine cardiac fibroblasts

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References

  • Sejian V, Gaughan JB, Bhatta R, Naqvi SM. Impact of climate change on livestock productivity. Feedipedia-Animal Feed Resources Information System-INRA CIRAD AFZ and FAO 2016;2016:1–4.
  • Rashamol VP, Sejian V, Pragna P, et al. Prediction models, assessment methodologies and biotechnological tools to quantify heat stress response in ruminant livestock. Int J Biometeorol 2019;63(9):1265–1281.
  • Mishra SR. Behavioural, physiological, neuro-endocrine and molecular responses of cattle against heat stress: an updated review. Trop Anim Health Prod. 2021;53(3):400. https://doi.org/10.1007/s11250-021-02790-4.
  • Mishra SR. Significance of molecular chaperones and micro RNAs in acquisition of thermo-tolerance in dairy cattle. Animal Biotechnol. 2020;2020:1–11. https://doi.org/10.1080/10495398.2020.1830788.
  • Mishra SR. Thermoregulatory responses in riverine buffaloes against heat stress: an updated review. J Therm Biol. 2021a;96:102844.
  • Palai TP, Mishra SR. Caspases: an apoptosis mediator. J Adv Vet Anim Res. 2015;2(1):18–22.
  • Latchman DS. Heat shock proteins and cardiac protection. Cardiovasc Res. 2001;51(4):637–646.
  • Cheng Y, Sun J, Chen H, et al. Expression and location of HSP60 and HSP10 in the heart tissue of heat-stressed rats. Exp Ther Med. 2016;12(4):2759–2765.
  • Knowlton AA, Brecher P, Apstein CS. Rapid expression of heat shock protein in the rabbit after brief cardiac ischemia. J Clin Invest. 1991;87(1):139–147.
  • Parkunan T, Das AK, Banerjee D, et al. Changes in expression of monocarboxylate transporters, heat shock proteins and meat quality of Large White Yorkshire and Ghungroo pigs during hot summer period. Asian-Australas J Anim Sci. 2017;30(2):246–253.
  • Sahu S, Mishra SR, Kundu AK. Impact of thermal stress on expression dynamics of HSP60 in cardiac fibroblast cells of goat. Anim Biotechnol. 2021;32(3):327–333.
  • Maibam U, Hooda O, Sharma P, et al. Expression of HSP70 genes in skin of zebu (Tharparkar) and crossbred (Karan Fries) cattle during different seasons under tropical climatic conditions. J Therm Biol. 2017;63:58–64.
  • Priyadarshini L, Aggarwal A. HSP70s expression in peripheral blood mononuclear cells in pre and postpartum murrah buffaloes during summer and winter seasons with astaxanthin supplementation. J Anim Res. 2018;8(4):561–570.
  • Manee MM, Alharbi SN, Algarni AT, et al. Molecular cloning, bioinformatics analysis, and expression of small heat shock protein beta-1 from Camelus dromedarius, Arabian camel. PLoS One. 2017;12(12):e0189905.
  • Kumar S, Vaid RK, Sagar RL. Contribution of goats to livelihood security of small ruminant farmers in semiarid region. Indian J Small Ruminants. 2006;12(1):61–66.
  • Nair MRR, Sejian V, Silpa MV, et al. Goat as the ideal climate-resilient animal model in tropical environment: revisiting advantages over other livestock species. Int J Biometeorol. 2021;65(12):2229–2240.
  • Mohanarao GJ, Mukherjee A, Banerjee D, et al. Hsp70 family gene and Hsp27 expression in response to heat and cold stress in vitro in peripheral blood mononuclear cells of goat (Capra hircus). Small Rumin Res. 2014;116(2–3):94–99.
  • Silanikove N, Koluman N. Impact of climate change on the dairy industry in temperate zones: predications on the overall negative impact and on the positive role of dairy goats in adaptation to earth warming. Small Rumin Res. 2015;123(1):27–34.
  • Heads RJ, Yellon DM, Latchman DS. Differential cytoprotection against heat stress or hypoxia following expression of specific stress protein genes in myogenic cells. J Mol Cell Cardiol. 1995;27(8):1669–1678.
  • Yu J, Bao E, Yan J, Lei L. Expression and localization of Hsps in the heart and blood vessel of heat-stressed broilers. Cell Stress Chaperones. 2008;13(3):327–335.
  • Yan J, Bao E, Yu J. Heat shock protein 60 expression in heart, liver and kidney of broilers exposed to high temperature. Res Vet Sci. 2009;86(3):533–538.
  • Koelkebeck KW, Odom TW. Laying hen response to acute heat stress and carbon dioxide supplementation: II changes in plasma enzymes, metabolites and electrolytes. Comp Biochem Physiol. 1995;122:119–122.
  • Mishra SR, Palai TK. Importance of HSP70 in livestock – at cellular level. J Mol Pathophysiol. 2014;3(2):30–32.
  • Bharati J, Dangi SS, Chouhan VS, et al. Expression dynamics of HSP70 during chronic heat stress in Tharparkar cattle. Int J Biometeorol. 2017;61(6):1017–1027.
  • Parida S, Mishra SR, Mishra C, et al. Impact of heat stress on transcriptional abundance of HSP70 in cardiac cells of goat. Anim Biotechnol. 2020;31(3):223–228.
  • Chen H, Adam A, Cheng Y, et al. Localization and expression of heat shock protein 70 with rat myocardial cell damage induced by heat stress in vitro and in vivo. Mol Med Rep. 2015;11(3):2276–2284.
  • Yu J, Bao E. Effect of acute heat stress on heat shock protein 70 and Its corresponding mRNA expression in the heart, liver, and kidney of broilers. Asian Australas J Anim Sci. 2008;21(8):1116–1126.
  • Mahmoud KZ, Edens FW, Eisen EJ, Havenstein GB. The effect of dietary phosphorus on heat shock protein mRNAs during acute heat stress in male broiler chickens (Gallus gallus). Comp Biochem Physiol. 2004;137(1):11–18.
  • Gabriel JE, Da Mota AF, Boleli IC, et al. Effect of moderate and severe heat stress on avian embryonic hsp70 gene expression. Growth Dev Aging. 2002;66(1):27–33.
  • Mondal T, Paul A, Dangi SS, et al. Expression kinetics of heat-induced genes and possible crosstalk between them in black Bengal goat. Biol Rhythm Res. 2020;51(8):1243–1258.
  • Mondal T, Banjare CS, Madhusoodan AP, et al. The effect of exogenous HSP70 on expression kinetics of HSP70, TLR2, and TLR4 in peripheral blood mononuclear cells and possible crosstalk between them in Black Bengal goat. Biol Rhythm Res. 2021;52(2):186–198.
  • Mondal T, Banjare CS, Dangi SS, et al. The effect of exogenous HSP70 on expression kinetics of HSP70, HSP90, HSP110 and IL2 and IL6 in peripheral blood mononuclear cells and possible crosstalk between them in black bengal goat. IntJCurrMicrobiolAppSci. 2018;7(08):506–517.
  • Dangi SS, Gupta M, Nagar V, et al. Impact of short-term heat stress on physiological responses and expression profile of HSPs in Barbari goats. Int J Biometeorol. 2014;58(10):2085–2093.
  • Shilja S, Sejian V, Bagath M, et al. Adaptive capability as indicated by behavioral and physiological responses, plasma HSP70 level, and PBMC HSP70 mRNA expression in Osmanabadi goats subjected to combined (heat and nutritional) stressors. Int J Biometeorol. 2016;60(9):1311–1323.
  • Aleena J, Sejian V, Bagath M, et al. Resilience of three indigenous goat breeds to heat stress based on phenotypic traits and PBMC HSP70 expression. Int J Biometeorol. 2018;62(11):1995–2005.
  • Kumar D, Yadav B, Choudhury S, et al. Evaluation of adaptability to different seasons in goat breeds of semi-arid region in India through differential expression pattern of heat shock protein genes. Biol Rhythm Res. 2018;49(3):466–478.
  • Rout PK, Kaushik R, Ramachandran N. Differential expression pattern of heat shock protein 70 gene in tissues and heat stress phenotypes in goats during peak heat stress period. Cell Stress Chaperones. 2016;21(4):645–651.
  • Niyas PAA, Sejian V, Bagath M, et al. Effect of heat and nutritional stress on growth and testicular HSP70 expression in goats. J Agrometeorol. 2017;19(3):189–194.
  • Madhusoodan AP, Bagath M, Sejian V, et al. Summer season induced changes in quantitative expression patterns of different heat shock response genes in Salem black goats. Trop Anim Health Prod. 2020;52(5):2725–2730.
  • Afsal A, Bagath M, Sejian V, et al. Effect of heat stress on HSP70 gene expression pattern in different vital organs of Malabari goats. Biol Rhythm Res. 2021;52(3):380–394.
  • Hu W, Fang M, Yang Y, et al. Detection of heat shock protein 27, 70, 90 expressions in primary parenchymatous organs of goats after transport stress by real-time PCR and ELISA. Vet Med Sci. 2020;6(4):788–795.
  • Hu W, Ye T, Yang Y, et al. Effects of transport stress on pathological injury and expression of main heat shock proteins in the caprine stomach. BMC Vet Res. 2020a;16(1):347.
  • Chaidanya K, Soren NM, Sejian V, et al. Impact of heat stress, nutritional stress and combined (heat and nutritional) stresses on rumen associated fermentation characteristics, histopathology and HSP70 gene expression in goats. J Anim Behav Biometeorol. 2017;5(2):36–48.
  • Sahu S, Mishra SR, Behera SS, et al. Impact of heat challenge on expression dynamics of HSP90 in cardiac cells of goat. Biol Rhythm Res. 2019;2019:1–7. https://doi.org/10.1080/09291016.2019.1672018.

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