immune system physiology
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2020 ◽  
Vol 50 (9) ◽  
Author(s):  
Luana Oliveira Leite ◽  
Belise Maria Oliveira Bezerra ◽  
Themis Regina Kogitzki ◽  
Gina Polo ◽  
Vicente José de Figueirêdo Freitas ◽  
...  

ABSTRACT: Considering the benefits that massage can promote, this research aimed to apply the stroking massage in five adult goats (G1-G5) assessed in group and individually for ten days. Parameters related to massage, immune system, physiology and behavior of goats were observed. There was only significant difference (P<0.05) regarding behavior expressed in the presence of the masseur in G4 and G5, between week 1 and 2. Most goats accepted massage, except G2, with greater demonstrations of positive than negative behavior towards the masseur. Therefore, stroking massage promoted positive interactions between the masseur and goats, and should be explored as an alternative method to those existing in improving the relationship between humans and farm animals.


Author(s):  
Helen F. Galley ◽  
Heather M. Wilson

The immune system provides protection against invading pathogens, foreign cells including tumour cells, and macromolecules. It comprises an early, non-specific, innate immune response and a later, specific, adaptive immune response that helps prevent disease or recurrence of disease. Innate and adaptive immune systems work together with mutual interactivity distinguishing ‘self’ from ‘non-self components’ to provide effective immune responses and prevent infection. This chapter describes the basic processes involved in immune responses and illustrates the particular relevance for some disease processes as well as highlighting stresses associated with anaesthesia and surgery that can modulate responses.


2012 ◽  
Vol 64 (5) ◽  
pp. 1302-1308
Author(s):  
R.A. Prioli ◽  
R.A. Curi ◽  
L.A. Chardulo ◽  
V.N. Gomes ◽  
S.M.A.P. Prioli ◽  
...  

The objectives of this study were to standardize a PCR-RFLP genotyping method for the AY_731081:g.1900T>C SNP of the equine CD14 gene, and to characterize this SNP and two other polymorphisms (AY_005808: c.1530A>G of the TLR4 gene and AX_463789: g.133T>C of the Cε gene) in Mangalarga horses, in order to contribute to future studies investigating the association between DNA markers and traits related to immune system physiology in this breed. A total of 151 Mangalarga horses of both sexes and variable ages, representative of the population of São Paulo State, were used. PCR-RFLP was found to be adequate for genotyping of the AY_731081: g.1900T>C SNP of the equine CD14 gene. However, this polymorphism is probably not present in Mangalarga horses, thus impairing association studies using this marker in the breed. The population genetic parameters obtained for the TLR4 AY_005808:c.1530A>G and Cε AX_463789:g.133T>C polymorphisms suggest the use of these markers in association studies with immune system-related traits in Mangalarga horses.


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