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Topic:Cells

The study of cells in horses encompasses the examination of various cell types and their functions within the equine body. Cells are the basic structural and functional units of life, and in horses, they contribute to numerous physiological processes, including growth, repair, and immune responses. Different cell types, such as red blood cells, white blood cells, and muscle cells, each perform specific roles that are vital for maintaining the health and homeostasis of the horse. This topic includes research on cellular mechanisms, cellular responses to disease or injury, and the application of cellular biology in equine medicine. This page compiles peer-reviewed research studies and scholarly articles that explore the structure, function, and significance of cells in equine biology and health.
Endocrine cells in the antro-pyloric mucosa of the stomach.
Zeitschrift fur Zellforschung und mikroskopische Anatomie (Vienna, Austria : 1948)    January 1, 1967   Volume 81, Issue 4 474-486 doi: 10.1007/BF00541009
Solcia E, Vassallo G, Sampietro R.No abstract available
[The activating effect of tetramethylammonium ions and acetylcholine on horse serum choline esterase].
Biokhimiia (Moscow, Russia)    January 1, 1967   Volume 32, Issue 1 3-12 
Brestkin AP, Brik IL.No abstract available
Propagation and titration of equine infectious anemia virus in horse leukocyte culture.
National Institute of Animal Health quarterly    January 1, 1967   Volume 7, Issue 1 8-20 
Kobayashi K, Kono Y.No abstract available
[Heterogeneity of horse spleen ferritin. I. Comparison of “free” apoferritin and alfa-ferritin].
Seikagaku. The Journal of Japanese Biochemical Society    January 1, 1967   Volume 39, Issue 1 23-28 
Shinjyo S, Kume M, Danjo T.No abstract available
Attempts to demonstrate 3-beta- and 17-beta-hydroxy-steroid dehydrogenases histochemically in the testes of the stallion, boar, ram and bull.
Journal of reproduction and fertility    December 1, 1966   Volume 12, Issue 3 551-560 doi: 10.1530/jrf.0.0120551
Hay MF, Deane HW.No abstract available
A method for determining total and differential WBC counts of equine uterine fluid. (A preliminary report).
Veterinary medicine, small animal clinician : VM, SAC    November 1, 1966   Volume 61, Issue 11 1087-1091 
Tobler EE, Miller DE.No abstract available
Studies on the proteins from chromaffin granules of ox, horse and pig.
Nature    August 27, 1966   Volume 211, Issue 5052 982-983 doi: 10.1038/211982a0
Winkler H, Ziegler E, Strieder N.No abstract available
Collection of uterine fluid and uterine biopsy.
Veterinary medicine, small animal clinician : VM, SAC    August 1, 1966   Volume 61, Issue 8 779-788 
Tobler EE.No abstract available
Biological and morphological aspects of the growth of equine abortion virus.
Journal of bacteriology    July 1, 1966   Volume 92, Issue 1 250-257 doi: 10.1128/jb.92.1.250-257.1966
Darlington RW, James C.Darlington, R. W. (St. Jude Children's Research Hospital, Memphis, Tenn.), and C. James. Biological and morphological aspects of the growth of equine abortion virus. J. Bacteriol. 92:250-257. 1966.-The growth of equine abortion virus (EAV) was studied by bioassay and electron microscopy in L-cell monolayer and suspension cultures, and in HeLa and BHK 21/13 cell monolayers. Results of virus assay (plaque-forming units) indicated that production of cell-associated virus (CAV) began at 6 to 9 hr after infection in all of the cell strains used. Virus release occurred 1 to 2 hr later. By 15 to 20 h...
Comparative studies on the soluble protein fractions of bovine, equine, porcine and ovine adrenal chromaffin granules.
The Biochemical journal    July 1, 1966   Volume 100, Issue 1 6C-7C doi: 10.1042/bj1000006c
Helle KB.No abstract available.
Progesterone biosynthesis by equine granulosa cells growing in tissue culture.
Nature    June 18, 1966   Volume 210, Issue 5042 1266 doi: 10.1038/2101266a0
Channing CP.OUR knowledge of the pathways of steroid biosynthesis in the ovary has been gained mainly by incubations of ovaries in vitro1,2. The tissues incubated have contained numerous cell types: granulosa cells, theca interna cells, stromal cells, interstitial cells, and sometimes luteal cells. Possibly such mixtures of two or more different cell types are able to secrete hormones that one cell type cannot secrete by itself3–9. Furthermore, during such incubations in vitro an exchange of precursors and products between different cell types may be facilitated because of breakdown of naturally occurri...
Electrophoretic behavior of mammalian-type cytochromes c.
The Journal of biological chemistry    April 10, 1966   Volume 241, Issue 7 1473-1477 
Barlow GH, Margoliash E.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
Some studies on cellular fractions of the adductor muscle of Pecten maximus.
Experimental cell research    February 1, 1966   Volume 41, Issue 2 227-243 doi: 10.1016/s0014-4827(66)80130-1
Mattisson AG, Beechey RB.No abstract available
Periodate oxidation of the mucoid from horse erythrocytes.
Archivum immunologiae et therapiae experimentalis    January 1, 1966   Volume 14, Issue 4 484-490 
Lisowska E.No abstract available
Cell and Solution Velocity Constants for the Reaction CO + Hb –> COHb at Different Temperatures in Mammals with Different Red Cell Sizes.
The Journal of general physiology    November 1, 1965   Volume 49, Issue 2 199-220 doi: 10.1085/jgp.49.2.199
Holland RA.Using a double beam stopped-flow apparatus, measurements were made of the velocity constant of the reaction CO + Hb --> COHb in solution and in the red cells of human beings, rabbits, horses, and goats. The solution constant (l') at 37 degrees C for human beings was 362 mM(-1) sec.(-1); in other species l' was somewhat lower. Two rabbits, despite having apparently identical hemoglobins had significantly different values for l'. The energy of activation (E) of l' was between 8 and 11 kcal/mole in all cases. The cell reaction constant (l'(c)) at 37 degrees was between 61 and 73 mM(-1) sec.(-1...
Histological Studies on the Internal Lymphatic System of the Pancreas and Spleen.
Berliner und Munchener tierarztliche Wochenschrift    April 15, 1965   Volume 78 147-151 
GRAU H, TAHER E.No abstract available
Distribution of N-Acetyl-Aspartic and N-Acetyl-Aspartyl-Glutamic Acids in Nervous Tissue.
Journal of neurochemistry    April 1, 1965   Volume 12 339-342 doi: 10.1111/j.1471-4159.1965.tb06771.x
CURATOLO A, D ARCANGELO P, LINO A, BRANCATI A.No abstract available
Lipid Inclusions in L Cells Associated with Venezuelan Equine Encephalomyelitis Virus Infection.
Journal of bacteriology    April 1, 1965   Volume 89, Issue 4 1101-1103 doi: 10.1128/jb.89.4.1101-1103.1965
HARDY FM, ARBITER D.Hardy, Frank M. (Fort Detrick, Frederick, Md.), and David Arbiter. Lipid inclusions in L cells associated with Venezuelan equine encephalomyelitis virus infection. J. Bacteriol. 89:1101-1103. 1965.-Venezuelan equine encephalomyelitis (VEE) virus has been shown to induce changes of lipid components within the L cell. Lipid inclusions in the form of dark granular bodies were observed in the L cell after aqueous osmium tetroxide fixation and Sudan black staining. Microscopic examination of cells as early as 8 hr after infection with VEE virus showed an increase in the concentration of these inclu...
Neuronophagia in the Coeliacomesenteric Ganglia of Horses Affected with Grass Sickness.
The Veterinary record    March 13, 1965   Volume 77 323-324 
BROWNLEE A.No abstract available
Microstructure of the Peritubular Matrix in Horse Dentin.
The Bulletin of Tokyo Dental College    March 1, 1965   Volume 35 1-14 
EDA S, TAKUMA S.No abstract available
[Alkylation of histidine radicals in the active center of horse myoglobin].
Bulletin de la Societe de chimie biologique    January 1, 1965   Volume 47, Issue 11 2178-2182 
Dautrevaux M, Han K, Boulanger Y, Biserte G.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
[Morphology and histotopochemistry of the pi-granula (Reich) in the Schwann cells of man, domestic cattle and horses].
Gegenbaurs morphologisches Jahrbuch    January 1, 1965   Volume 108, Issue 1 71-121 
Bruchmüller W, Scharf JH.No abstract available
[Xanthochrome pigments and ergothioneine in the interstitial cells of equine fetal gonads].
Bollettino della Societa italiana di biologia sperimentale    December 31, 1964   Volume 40, Issue 24 2067-2071 
Pace E.No abstract available
[Electronic Structure of the Prosthetic Groups and Tertiary Structure in Hemoproteins: I. Magnetic and Optical Properties of Divalent Horse Hemoglobin and Myoglobin under Reversible Detergent Action].
Journal of molecular biology    December 1, 1964   Volume 10 475-487 doi: 10.1016/s0022-2836(64)80067-x
GERSONDE K, NETTER H.No abstract available
[Relationship between the potassium content of erythrocytes of some animal species and the sodium and potassium dependent adenosine triphosphatase activity of the red blood cells].
Archivio di scienze biologiche    October 1, 1964   Volume 48, Issue 4 409-415 
Lucaroni A, Millo A.No abstract available
Experiments on Immunization of Horses by HeLa Strain Cell Cultures.
Biulleten\' eksperimental\'noi biologii i meditsiny    August 1, 1964   Volume 57 85-87 
PODOPLELOV II, UGRIUMOV EP, ZAKHAROV AF, ROSLIAKOVA NA.No abstract available
On the Nature of Plant Agglutinin Receptors of Some Erythrocyte Mucoids in Man, Cattle, and Horses.
Zeitschrift fur Immunitats- und Allergieforschung    June 1, 1964   Volume 126 408-414 
KRUEPE M, UHLENBRUCK G.No abstract available
A Preliminary Note on the Respiratory Properties of Horse Eosinophile Granulocytes.
Journal of biochemistry    March 1, 1964   Volume 55 349-351 doi: 10.1093/oxfordjournals.jbchem.a127893
ANAN FK, OZAKI T.No abstract available