Evaluation of morphological evidence of Telocyte influence during skeletal muscle formation in rat using anti-CD34
Keywords:
Telocyte influence; skeletal muscle; anti-CD34Abstract
The word’’telocyte” was first used in the scientific press a few years ago to refer to a ’’new" cell type that Popescu and Faussone-Pellegrini had discovered in the connective tissue of various organs (2012). Since then, 368 papers have been published that use the term "telocyte," 261 of them in the last five years. These figures highlight the scientific community’s rising interest in this cell type and the widespread acceptance of the term "telocyte" to describe this interstitial cell.
Many tissues and organs from diverse species have TCs found in them Because TCs play a crucial role in tissue creation, repair, and regeneration as interstitial cells that help putative stem and progenitor cells in stem cell niches in a variety of tissues and organs, it is imperative to fully understand the role of these cells in muscle embryogenesis. Features of immunohistochemistry Recent years have seen the identification and isolation of myogenic cells based on the expression of the CD34 surface receptor, which has historically been utilized as a marker of hematopoietic stem cells.
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References
Alhabib, M.F.2000, Developmental Dynamics and
Histogensis in Regeneration of Skeletal Muscle
Ontogenic and Expevimental study Ph.D thesis
submitted medical collage /Al-nahrain university
Bojin FM, Gavriliuc Ol, Cristea Ml, Tanasie G, Tatu CS,
Panaitescu C, Paunescu V. 2011.Telocytes within human
skeletal muscle stem cell niche. J Cell Mol Med;15:2269-
Bojin FM, Gavriliuc Ol, Cristea Ml, Tanasie G, Tatu CS,
Panaitescu C, Paunescu V. 2011.Telocytes within human
skeletal muscle stem cell niche. J Cell Mol Med;15:2269-
Bojin FM, Gavriliuc Ol, Cristea Ml, Tanasie G, Tatu CS,
Panaitescu C, Paunescu V. 2011.Telocytes within human
skeletal muscle stem cell niche. J Cell Mol Med; 15 (10):
-72. doi: 10.1111/ j.1582-4934.2011. 01386.x.
Cretoiu SM, Popescu LM. 2014. Telocytes revisited. Biomol
Concepts;5(5):353-69. doi:10.1515/bmc-2014- 0029.
Cretoiu SM, Radu BM, Banciu A, Banciu DD, Cretoiu D,
Ceafalan LC, Popescu LM. 2014.lsolated human uterine
telocytes: immunocytochemistry and electrophysiology
of T-type calcium channels. Histochem Cell Biol; doi:
1007/s00418-014- 1268-0.
Cretoiu, D., Xu, J., Xiao, J. & Cretoiu, S. M. 2016. Telocytes
and their extracellular vesicles-evidence and
hypotheses. Int. J. Mol. Sci. 17, 1322.
Diaz-Flores, L.; Gutierrez, R.; Garcia, M.P.; Saez, F.J.; Diaz¬
Flores, L., Jr.; Valladares, F.; Madrid, J.F. 2014.CD34+
stromal cells/fibroblasts/fibrocytes/telocytes as a
tissue reserve and a principal source of mesenchymal
cells Location, morphology, function and role in
pathology. Histol. Histopathol, 29, 831-870. Diaz-Flores,
L. 2014.CD34+ stromal
cells/fbroblasts/fbrocytes/telocytes as a tissue reserve and a principal source of mesenchymal cells. Location,
morphology, function and role in pathology. Histol.
Histopathol. 29, 831- 870.
Faussone Pellegrini MS, Popescu LM. 2011. Telocytes.
Biomol Concepts.;2(6):481-9. doi:10.1515/BMC .2011.039
Faussone-Pellegrini MS, Gherghiceanu M. 2016.Telocyte's
contacts. Semin Cell Dev Biol. 2016; 55:3-8. doi:10
.1016/j.semcdb. 01.036
Faussone-Pellegrini MS. 2005. Interstitial cells of Cajal:
once negligible players, now blazing protagonists. Itai J
Anat Embryol;110: 11-31.
Gherghiceanu M, Manole CG, Popescu LM. 2010.Telocytes
in endocardium: electron microscope evidence. J Cell
Mol Med;14(9):2330-4.
Gherghiceanu M, Popescu LM. 2005. Interstitial Cajal-like
cells (ICLC) in human resting mammary gland stroma.
Transmission electron microscope (TEM) identification.
J Cell Mol Med; 9: 893-910
Manetti M, Tani A, Rosa 1, Chellini F, Squecco R, Idrizaj E,
Zecchi - Orlandini S, Ibba - Manneschi L. Sassoli C.
Morphological evidence for telocytes as stromal
cells supporting satellite cell activation in eccentric
contraction - induced skeletal muscle injury. Sci Rep; 9
(1): 14515. doi:
1038 / S41598-019 51078 - Z.
Marini M, Rosa I, Guasti D, Gacci M, Sgambati E, Ibba -
Manneschi L, Manetti M. 2018: Reappraising the
microscopic anatomy of human testis: identifica tion of
telocyte networks in the peritubular and inter tubular
stromal space. Sci Rep; 8 (1): 14780 doi: 10.1038 /
s41598-018-33126-2.
Marini M, Rosa I, Ibba - Manneschi L, Manetti M. 2018:
Telocytes in skeletal, cardiac and smooth muscle inter
stitium : morphological and functional aspects . Histol
Histopathol; 33 (11): 1151-65. doi: 10.14670 / HH -11-994.
Marini M, Mencucci R, Rosa I, Favuzza E, Guasti D, Ibba -
Manneschi L, Manetti M. 2017: Telocytes in normal and
keratoconic human cornea: an immunohisto- 10x
chemical and transmission electron microscopy study. J
Cell Mol Med; 21 (12): 3602-11. doi: 10.1111/ jcmm.13270.
Marini M, Ibba-Manneschi L, Manetti M. Cardiac
telocyte-derived exosomes and their possible
implications in cardiovascular pathophysiology. Adv Exp
Med Biol. 998:237-54. doi:10.1007/978-981-10- 4397-
_16.
Marini M, Manetti M, Rosa 1, Ibba - Manneschi L, Sgambati
E. 2018.Telocytes in human fetal skeletal muscle
interstitium during early myogenesis. Acta Histochem;
(5): 397-404. doi: 10.1016 / j. acthis.2018.04.003.
Marini M, Rosa I, Ibba - Manneschi L, Manetti M.
Telocytes in skeletal, cardiac and smooth muscle
inter stitium: morphological and functional aspects.
Histol Histopathol.; 33 (11): 1151-65. doi: 10.14670 / HH -
-994.
Pieri L, Vannucchi MG, 2008. Faussone-Pellegrini MS.
Histochemical and ultrastructural characteristics of an
interstitial cell type different from ICC and resident in
the muscle coat of human gut. J Cell Mol Med; 12: 1944-
Popescu BO, Gherghiceanu M, Kostin S, Ceafalan L,
Popescu LM. 2012.Telocytes in meninges and choroid
plexus. Neurosci Lett; 516: 265-9
Popescu LM, 2010. Faussone-Pellegrini MS. Telocytes - a
case of serendipity: the winding way from interstitial
cells of Cajal (ICC), via interstitial Cajal-like cells (ICLC)
to TELOCYTES. J Cell Mol Med;14: 729- 40.
Popescu LM, Ciontea SM, Cretoiu D, 2005.Novel type of
interstitial cell (Cajal-like) in human fallopian tube. J
Cell Mol Med.; 9:479-523.
Popescu LM, 2OO5.The connective connection: interstitial
cells of Cajal (ICC) and ICC-like cells establish synapses
with immunoreactive cells. Electron microscope study in
situ. J Cell Mol Med;9(3):714-30.
Popescu LM, 2010.Telocytes in human epicardium. J Cell
Mol Med;14(8):2085-93.
Popescu LM, Faussone-Pellegrini MS. 2010.TELOCYTES - a
case of serendipity: the winding way from Interstitial
Cells of Cajal (ICC), via Interstitial Cajal-Like Cells
(ICLC) to TELOCYTES. J Cell Mol Med;14:729-40.
Suciu LC, Popescu BO, Kostin S, Popescu LM. 2012.Platelet
- derived growth factor receptor - B - positive telocytes
in skeletal muscle interstitium. J Cell Mol Med; 16 (4):
-7. doi: 10.1111/ j.1582-4934.2011. 01505.x.
Suciu LC, Popescu BO, Kostin S, Popescu LM. 2O12.Plateletderived growth factor receptor- -positive telocytes in
skeletal muscle interstitium. J Cell Mol Med;16: 701-7.
Suvarna, Christopher Layton & John Bancroft. 2018.
Bancroft 1 s Theory and Practice of Histological
Techniques 8th Edition.
Cretoiu SM, Popescu LM 2014: Telocytes revisited. Biomol
Concepts; 5 (5): 353-69. doi: 10.1515 / bmc - 2014 0029.
Marini M, Rosa I, Guasti D, Gacci M, Sgambati E, Ibba -
Manneschi L, Manetti M. 2018: Reappraising the
microscopic anatomy of human testis: identifica tion of
telocyte networks in the peritubular and inter tubular
stromal space. Sci Rep; 8 (1): 14780 doi: 10.1038 /
s41598-018-33126-2.
Marini M, Rosa I, Ibba - Manneschi L, Manetti M. 2018:
Telocytes in skeletal, cardiac and smooth muscle inter
stitium : morphological and functional aspects . Histol
Histopathol; 33 (11): 1151-65. doi: 10.14670 / HH -11-994.
Marini M, Mencucci R, Rosa I, Favuzza E, Guasti D, Ibba -Manneschi L, Manetti M. 2017: Telocytes in normal and keratoconic human cornea: an immunohisto- 10x chemical and transmission electron microscopy study. J Cell Mol Med; 21 (12): 3602-11. doi: 10.1111 / jcmm.13270.
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