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Topic:Mesenchymal Cells

Mesenchymal cells are multipotent stromal cells found in horses that have the ability to differentiate into various cell types, including osteoblasts, chondrocytes, and adipocytes. These cells are present in multiple tissues, such as bone marrow, adipose tissue, and umbilical cord blood. Mesenchymal cells contribute to tissue repair and regeneration and are involved in modulating the immune response. Their potential for differentiation and self-renewal makes them a subject of interest in regenerative medicine and therapeutic applications in equine health. This page compiles peer-reviewed research studies and scholarly articles that explore the characteristics, differentiation potential, and therapeutic applications of mesenchymal cells in horses.
Effect of transforming growth factor beta1 on chondrogenic differentiation of cultured equine mesenchymal stem cells.
American journal of veterinary research    September 8, 2000   Volume 61, Issue 9 1003-1010 doi: 10.2460/ajvr.2000.61.1003
Worster AA, Nixon AJ, Brower-Toland BD, Williams J.To determine the morphologic and phenotypic effects of transforming growth factor beta1 (TGFbeta1) on cultured equine mesenchymal stem cells (MSC) and articular chondrocytes. Methods: Bone marrow aspirates and articular cartilage samples from a 2-year-old and two 8-month-old horses. Methods: After initial isolation and culture, MSC and chondrocytes were cultured in Ham's F-12 medium supplemented with TGF-beta1 at a concentration of 0, 1, 5, or 10 ng/ml. Medium was exchanged on day 2, and cells were harvested on day 4. Medium was assayed for proteoglycan (PG) content. Total RNA was isolated fro...
A unique exocelom-like space during early pregnancy in the horse.
Placenta    August 15, 2000   Volume 21, Issue 5-6 575-583 doi: 10.1053/plac.2000.0508
Enders AC, Liu IK.The free allantois and allantochorion of conceptuses from 17 mares between 20 and 90 days of gestation were examined to determine the manner in which the associated mesodermal derivatives differentiated. It was found that a robust basement membrane developed under the allantoic endoderm, and that this basement membrane was partially isolated from the vascular layer of the allantois by a mesothelial layer and an exocelom-like space. The exocelom-like space persisted until approximately the stage of villous formation, and remnants of the space persisted over larger allantoic vessels even later. ...
Isolation and chondrocytic differentiation of equine bone marrow-derived mesenchymal stem cells.
American journal of veterinary research    September 15, 1998   Volume 59, Issue 9 1182-1187 
Fortier LA, Nixon AJ, Williams J, Cable CS.To isolate mesenchymal stem cells from adult horses and determine specific monolayer culture conditions required to enhance biochemically and phenotypically defined chondrocytic differentiation. Methods: 2 adult horse bone marrow donors without skeletal or hematologic abnormalities. Methods: Bone marrow was aspirated from the sternebra, and mesenchymal stem cells were isolated by centrifugation and cultured in monolayers. Subcultures were established in 24-well plates on day 13. Culture medium was harvested every 2 days, and culture of 12 of the 24 wells was terminated on day 6 and of the rema...
[Ascites as a result of peritoneal mesotheliomas in a horse].
Tierarztliche Praxis    June 1, 1996   Volume 24, Issue 3 270-274 
Harps O, Brumhard J, Bartmann CP, Hinrichs U.An abdominal tumor was suspected after clinical evaluation in an eight-year-old, bay-coloured hannoveranian gelding. The diagnosis was based on the symptoms of ascites, on the results of the transcutaneous abdominal ultrasound examination and on the characteristic changes in the serum-electrophoresis. Postmortem a peritoneal mesothelioma was diagnosed. This primary tumor of the peritoneum is rarely described in horses.
Canine and equine mesangial cells in vitro.
In vitro cellular & developmental biology. Animal    September 1, 1995   Volume 31, Issue 8 574-578 doi: 10.1007/BF02634308
Ennulat D, Brown SA.No abstract available
Mesenteric tear of the distal jejunum as a periparturient complication in a mare.
Australian veterinary journal    December 1, 1994   Volume 71, Issue 12 427-428 doi: 10.1111/j.1751-0813.1994.tb00962.x
Dart AJ, Pascoe JR.No abstract available
Stromal cells from human long-term marrow cultures, but not cultured marrow fibroblasts, phagocytose horse serum constituents: studies with a monoclonal antibody that reacts with a species-specific epitope common to multiple horse serum proteins.
Experimental hematology    January 1, 1987   Volume 15, Issue 1 72-77 
Charbord P, Tippens D, Wight TS, Gown AM, Singer JW.This report describes an IgG1 mouse monoclonal antibody derived after immunization of mice with washed stromal cells from human, long-term bone marrow cultures. The antigen recognized by the antibody (BMS-1) is a carbohydrate-containing prosthetic group that is common to and specific for multiple horse serum proteins. These proteins are avidly ingested by stromal cells and concentrated in endocytic vesicles. Cultured smooth muscle cells took up the horse proteins in a similar manner to marrow stromal cells while cultured marrow fibroblasts, endothelial cells, and hepatoma cells did not. These ...
Cell morphology and collagen types in equine tendon scar.
Research in veterinary science    May 1, 1980   Volume 28, Issue 3 302-310 
Williams IF, Heaton A, McCullagh KG.The histological appearance of cells and tissues in the reparative scar tissue which forms in the equine superficial flexor tendon following partial rupture was compared to that of normal tendon. The repair fibroblasts were found to be larger and more basophilic than the tenocytes of normal tendon, to have large vesicular nuclei and to resemble the 'myofibroblasts' described in scar tissue elsewhere. The cell to matrix ratio in scarred zones of tendon was found to be increased and the concentration of collagen in these areas was less than in normal tendon. However, the scar tissue collagen was...
Distribution of total ferritin in intestine and mesenteric lymph nodes of horses after iron feeding.
Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine (New York, N.Y.)    October 1, 1950   Volume 75, Issue 1 124-127 doi: 10.3181/00379727-75-18121
GABRIO BW, SALOMON K.No abstract available
Equine Allogeneic Chondrogenic Induced Mesenchymal Stem Cells Are an Effective Treatment for Degenerative Joint Disease in Horses.
   March 19, 2026  
Degenerative joint disease is one of the main causes of equine early retirement from pleasure riding or a performance career. The disease is initially triggered by an abnormal loading of normal cartilage or a normal loading of abnormal cartilage. This primary insult is accompanied with joint inflammation, which leads to further progressive degeneration of the articular cartilage and changes in the surrounding tissues. Therefore, in search for an effective treatment, 75 adult horses with early signs of degenerative fetlock joint disease were enrolled in a randomized, multicenter, double-blinded...
Successful engraftment of cultured autologous mesenchymal stem cells in a surgically repaired soft palate defect in an adult horse.
   March 19, 2026  
The objective of this study was to graft autologous mesenchymal stem cells (MSCs) at the site of surgical repair of a soft palate defect in an adult horse in an attempt to improve wound healing and to investigate whether the transplanted MSCs would integrate into the soft palate structure and participate in regeneration. Bone marrow was collected from an adult horse with a full-thickness soft palate defect. The MSCs were isolated, cultured in monolayers, and labeled with 5-bromo-2-desoxymidine (BrdU) and chloromethylbenzamido-DiI-derived (cm-DiI) before transplantation. The soft palate defect ...
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