Immunogenic properties of class I molecules resulting from the association of mouse class I heavy chains with a xenogeneic beta 2-microglobulin (beta 2-m) were investigated by studying the antibody response of mice of injections to syngeneic Con A lymphoblasts, induced in conditions allowing the replacement of endogenous beta 2-m by exogenously added bovine beta 2-m provided by fetal calf serum (FCS-Con A blasts). Lymphocytotoxic antibodies were regularly produced and according to their specificities they could be divided into two types: antibodies whose reactivity was (1) dependent on and (2) independent of the presence of bovine beta 2-m on target cells. Although both types displayed an H-2 dependent polymorphic reaction pattern, only antibodies recognizing class I molecules without bovine beta 2-m can be considered as real H-2-specific antibodies. The others are only apparent H-2-specific antibodies: their polymorphic reaction pattern is dependent both on the presence of bovine beta 2-m on the surface of target cells and on their H-2 haplotype. A comparison of the antibody response of mice with various H-2 haplotypes to injections of syngeneic FCS-Con A blasts showed no significant difference in the induction of bovine beta 2-m-dependent antibodies (apparent H-2-specific) among the mice from all strains tested (H-2b, H-2p, H-2q, and H-2s). Unexpectedly, for most strains more than 60% of the immunized mice produced also beta 2-m-independent antibodies (real H-2-specific), with the exception of H-2q mice, in which only 30% of sera were positive. The real H-2-specific antibody response is of two types: some mice (H-2p and H-2s) produced antibodies only reactive with allogeneic target cells whereas others (H-2b and H-2q) produced in addition antibodies that were reactive with syngeneic cells. Thus H-2 appears to play an important role in the induction and specificity of the lymphocytotoxic H-2-specific antibodies induced upon immunization with cells expressing syngeneic class I heavy chains associated with bovine beta 2-m.
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http://dx.doi.org/10.1111/j.1744-313x.1991.tb00036.x | DOI Listing |
J Inorg Biochem
January 2025
Department of Chemistry, The University of Texas at Austin, Austin, TX 78712, USA. Electronic address:
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January 2025
Department of Pharmaceutical Sciences, College of Pharmacy and Health Sciences, Texas Southern University, Houston, TX 77004, USA.
Both hydrogen sulfide and endocannabinoids can protect the neural retina from toxic insults under in vitro and in vivo conditions. The aim of the present study was two-fold: (a) to examine the neuroprotective action of cannabinoids [methanandamide and 2-arachidonyl glycerol (2-AG)] against hydrogen peroxide (HO)-induced oxidative damage in the isolated bovine retina and (b) to evaluate the role of endogenously biosynthesized hydrogen sulfide (HS) in the inhibitory actions of cannabinoids on the oxidative stress in the bovine retina. Isolated neural retinas from cows were exposed to oxidative damage using HO (100 µM) for 10 min.
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January 2025
SEGES Innovation P/S, Agro Food Park, 8200 Aarhus, Denmark.
Although is a key cause of subclinical mastitis in Danish dairy cows, its sensitivity to antimicrobials remains unexplored. Here, we analyzed sixty isolates derived from 42 dairy cows across six conventional dairy herds in Denmark. Phenotypic resistance was measured by antimicrobial susceptibility testing and minimum inhibitory concentration (MIC) analysis, and genotypic resistance was examined through whole-genome sequencing and identification of antimicrobial resistance genes (ARGs).
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January 2025
College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China.
Background: Colostrum, abundant in immunoglobulins and growth factors, plays a vital role in supporting immunity. Both yak and buffalo milk are characterized by their high protein and fat content. However, the metabolomic profiles of yak colostrum (YC), buffalo colostrum (BC), and bovine colostrum (CC) remain largely unexplored.
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December 2024
Department of Food Safety and Quality, Faculty of Veterinary, Lithuanian University of Health Sciences, Tilzes Str. 18, LT-47181 Kaunas, Lithuania.
The degradation of zearalenone (ZEN) in the rumen of dairy cows is influenced by rumen pH, which is a key factor affecting this process. The aim of this study was to investigate the variation of ZEN in interaction with other mycotoxins at different ruminal pH environments (physiological (pH 6.5) and acidic (pH 5.
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