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Topic:Biotechnology

Biotechnology in horses encompasses the application of biological techniques and tools to enhance equine health, performance, and reproduction. This field includes genetic engineering, cloning, and the development of vaccines and therapeutics tailored to equine physiology. Techniques such as gene editing and stem cell therapy are explored for their potential to address genetic disorders, improve tissue regeneration, and enhance disease resistance in horses. Additionally, advancements in reproductive biotechnology, such as artificial insemination and embryo transfer, contribute to genetic diversity and breeding efficiency. This page compiles peer-reviewed research studies and scholarly articles that investigate the applications, methodologies, and implications of biotechnology in equine science.
Crystalline forms of myoglobin from horse heart.
Nature    May 19, 1951   Volume 167, Issue 4255 802-804 doi: 10.1038/167802a0
LAWRIE RA.No abstract available
[Employment of equine plasma as a substitute for human plasma].
Revista paulista de medicina    September 1, 1948   Volume 33, Issue 3 151 
MELLONE O, MONTENEGRO EB.No abstract available
Studies on the bioassay of hormones; the assay of pregnant mare’s serum chorionic gonadotrophin.
Endocrinology    February 1, 1948   Volume 42, Issue 2 93-97 doi: 10.1210/endo-42-2-93
DORFMAN RI.No abstract available
The steroids of pregnant mares’ urine; a method for the extraction of steroid sulphates and the isolation of allopregn-16-en-3(beta)-ol-20-one sulphate.
The Biochemical journal    January 1, 1948   Volume 43, Issue 2 231-234 
KLYNE W, SCHACHTER B, MARTIN GF.No abstract available
Allergenic and anaphylactogenic properties of vaccines prepared from embryonic tissues of developing chicks; anaphylactogenic properties of typhus fever vaccines and equine encephalomyelitic vaccines.
Journal of immunology (Baltimore, Md. : 1950)    August 1, 1946   Volume 53 321-342 
COULSON EJ, STEVENS H.No abstract available
Horse brain thromboplastin; stabilization of activity of dried brain preparations.
Archives of biochemistry    June 1, 1946   Volume 10 183-193 
KAZAL LA, HIGASHI A.No abstract available
Horse brain thromboplastin; stabilization of activity of suspensions.
Archives of biochemistry    June 1, 1946   Volume 10 173-182 
KAZAL LA, HIGASHI A.No abstract available
Hysteroscopic insemination of small numbers of spermatozoa at the uterotubal junction of preovulatory mares.
   March 21, 2026  
Mares were inseminated with motile spermatozoa suspended in 30-150 microliters Tyrode's medium directly onto the uterotubal papilla at the anterior tip of the uterine horn, ipsilateral to the ovary containing a dominant preovulatory follicle of > or = 35 mm in diameter, by means of a fine gamete intrafallopian transfer (GIFT) catheter passed through the working channel of a strobed light videoendoscope. Insemination of 10, 8, 25, 14, 11 and 10 mares with, respectively, 10.0, 5.0, 1.0, 0.5, 0.1 or 0.001 x 10(6) motile spermatozoa resulted in conception rates of, respectively, 60, 75, 64, 29,...
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