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Topic:Cell Proliferation

Cell proliferation in horses refers to the process by which cells divide and multiply, contributing to growth, development, and tissue repair. This biological process is fundamental to maintaining normal physiological functions and responding to injuries or diseases. In equine research, cell proliferation is studied to understand its role in various contexts such as wound healing, regenerative medicine, and cancer. Factors influencing cell proliferation in horses include genetic, environmental, and nutritional elements. This page assembles peer-reviewed research studies and scholarly articles that explore the mechanisms, regulation, and implications of cell proliferation in equine health and disease management.
Kinetics of viral deoxyribonucleic acid, protein, and infectious particle production and alterations in host macromolecular syntheses in equine abortion (herpes) virus-infected cells.
Journal of virology    August 1, 1968   Volume 2, Issue 8 793-804 doi: 10.1128/JVI.2.8.793-804.1968
O'Callaghan DJ, Hyde JM, Gentry GA, Randall CC.Infection of exponential-phase suspension cultures of mouse fibroblast cells (L-M) with equine abortion virus (EAV) resulted in inhibition of cell growth and marked alterations in host metabolic processes. The synthesis of deoxyribonucleic acid (DNA) and ribonucleic acid was inhibited within 4 hr after infection and was suppressed by more than 90% by the time of maximal virus replication (14 to 18 hr). The overall rate of protein synthesis, however, was similar in uninfected and virus-producing cells as determined by measurements of net protein and isotope incorporation. The time course of vir...
The resolution of mixtures of viable mammalian cells into homogeneous fractions by zonal centrifugation.
The Journal of cell biology    February 1, 1968   Volume 36, Issue 2 369-378 doi: 10.1083/jcb.36.2.369
Boone CW, Harell GS, Bond HE.Large-scale separation of mixtures of mammalian cells was obtained with the A-1X zonal centrifuge rotor and density gradients consisting of Ficoll dissolved in modified Eagle's MEM suspension-culture medium. The cells remained viable as tested by plating efficiency or by motility observed with time-lapse photography. Rabbit thymocyte and HeLa cell mixtures were separated with 99 and 89 per cent purity, respectively. Mixtures of thymocytes and suspension-cultured, human acute leukemia cells (Roswell Park strain LKID) were separated with 93 and 91% purity, respectively. HeLa cells were isolated ...
The effect of phytohemagglutinin on ribonucleic acid synthesis and histone acetylation in equine leukocytes.
The Journal of cell biology    November 1, 1967   Volume 35, Issue 2 477-482 doi: 10.1083/jcb.35.2.477
Pogo BG, Allfrey VG, Mirsky AE.No abstract available
[The changes in the cell number and some biochemical data on the blood of race horses in walk, trot and gallop].
Archiv fur experimentelle Veterinarmedizin    April 1, 1966   Volume 20, Issue 2 417-426 
Verter W, Mix H, Müller J.No abstract available
Cholesterol formation by granulosa and thecal cells of equine follicle.
Endocrinology    January 1, 1966   Volume 78, Issue 1 214-216 doi: 10.1210/endo-78-1-214
Ryan KJ, Short RV.No abstract available
Formation of Estradiol by Granulosa and Theca Cells of the Equine Ovarian Follicle.
Endocrinology    January 1, 1965   Volume 76 108-114 doi: 10.1210/endo-76-1-108
RYAN KJ, SHORT RV.No abstract available
A Study on the Antigenicity of a Human Cell Line Propagated in a Heterologous Medium.
Experientia    December 15, 1963   Volume 19 628-629 doi: 10.1007/BF02151286
SWAEN GJ.No abstract available
[Effect of the products of enzymatic hydrolysis of foal serum on the growth of HeLa cells].
Annales de l'Institut Pasteur    December 1, 1957   Volume 93, Issue 6 766-771 
DANIEL P, SLIZEWICZ P, LEPINE P.No abstract available
[Division of cerebral cells in horse].
Doklady Akademii nauk SSSR    August 21, 1953   Volume 91, Issue 5 1211-1212 
PAS'KO SG.No abstract available
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