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http://krishi.icar.gov.in/jspui/handle/123456789/51717
Title: | Inorganic zinc supplementation modulates heat shock and immune response in heat stressed peripheral blood mononuclear cells of periparturient dairy cows |
ICAR Data Use Licennce: | http://krishi.icar.gov.in/PDF/ICAR_Data_Use_Licence.pdf |
Project Code: | Not Available |
Published/ Complete Date: | 2017-02-01 |
Division or Unit: | ANIMAL PHYSIOLOGY DIVISION |
PI Name: | Anjali Aggarwal |
Project Investigator Designation: | PS |
Project Investigator Email: | Anjuli.aggarwal@icar.gov.in |
CoPI Name: | Aasif Ahmed |
Co-Project Investigator Designation: | MVSc student |
Co-Project Investigator Email: | Not Available |
Co-Center PI/Any Collaborator: | Not Available |
Co-Center PI/Any Collaborator Designation: | Not Available |
Co-Center PI/Any Collaborator Email: | Not Available |
Current Location of Data : | Not Available |
Current Person's Email: | Not Available |
Since when: | 1001-01-01 |
Abstract/Description: | Thermal stress in India is one of the major constraints affecting dairy cattle productivity. Every attempt should be made to ameliorate the heat and calving related stress in high producing dairy cows for higher economic returns. In the current study, inorganic zinc was tried to alleviate the adverse effects of thermal stress in periparturient cows. Twelve cows, six each of Sahiwal and Karan Fries (KF) in their second parity with confirmed pregnancy were chosen for the experiment. The blood samples were collected peri parturiently on three occasions viz. 21, 0 and þ21 days relative to calving. The in vitro study was conducted after isolating peripheral blood mononuclear cells (PBMC) from whole blood. The cultured PBMC were subjected to three different levels of exposures viz. 37 C as control, 42 C to induce thermal stress and 42 C þ zinc to ameliorate the adverse effects of high temperature. Heat shock lead to a sig nificant (P<0.05) rise in the level of heat shock proteins (HSP). HSP was more on the day of calving as well. KF showed more HSP concentration than Sahiwal breed indicating the heat bearing capacity of later. Zinc treatment to thermally stressed PBMC caused a fall in the HSP concentration in both the breeds during periparturient period. Moreover, heat stress increased significantly (P<0.05) the Interleukin 6 (IL- 6) concentration which declined upon zinc supplementation to PBMC. IL-6 levels decreased peri parturiently. Heat and calving related stress caused a fall in the IL-12 levels which increased significantly (P<0.05) with zinc supplementation. These findings suggest that zinc supplementation attenuates the HSP response and augments immunity in PBMC of periparturient dairy cows. The study could help to alleviate the heat stress and potentiate immunity by providing mineral supplements in periparturient dairy cattle habituating tropics. |
Funding Type: | External |
Funding Source: | Not Available |
Subject: | Animal Physiology |
Keywords: | Inorganic zinc Periparturient Dairy cows Heat stress HSP Interleukin PBMC |
List of Attributes: | Not Available |
Available Data Format: | CSV |
Data Scale: | Not Available |
Language: | English |
Extent Time To: | 1001-01-01 |
Extent Time From: | 1001-01-01 |
Availability (Extent): | Not Available |
Data Location: | Co PI |
Source: | Not Available |
Relation: | Not Available |
URI: | http://krishi.icar.gov.in/jspui/handle/123456789/51717 |
Appears in Collections: | AS-NDRI-Data Inventory |
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