S H Bartelmez
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Explore the profile of S H Bartelmez including associated specialties, affiliations and a list of published articles.
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Articles
22
Citations
432
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Recent Articles
1.
Hazra S, Jarajapu Y, Stepps V, Caballero S, Thinschmidt J, Sautina L, et al.
Diabetologia
. 2012 Nov;
56(3):644-53.
PMID: 23192694
Aims/hypothesis: We sought to determine the impact of long-standing type 1 diabetes on haematopoietic stem/progenitor cell (HSC) number and function and to examine the impact of modulating glycoprotein (GP)130 receptor...
2.
Ruscetti F, Bartelmez S
Int J Hematol
. 2001 Sep;
74(1):18-25.
PMID: 11530800
Transforming growth factor beta (TGF-beta) is a pleiotropic regulator of all stages of hematopoieis. Depending on the differentiation stage of the target cell, the local environment, and the concentration of...
3.
Sitnicka E, Ruscetti F, Priestley G, WOLF N, Bartelmez S
Blood
. 1996 Jul;
88(1):82-8.
PMID: 8704205
Hematopoiesis appears to be regulated, in part, by a balance between extracellular positive and negative growth signals. Transforming growth factor beta-1 (TGF-beta 1) has been shown to be a negative...
4.
Gross J, Appleby M, Chien S, Nada S, Bartelmez S, Okada M, et al.
J Exp Med
. 1995 Feb;
181(2):463-73.
PMID: 7836905
The csk gene encodes a nonreceptor protein tyrosine kinase that acts in part by regulating the activity of src-family protein tyrosine kinases. Since the src-family kinases p56lck and p59fyn play...
5.
Keller J, Bartelmez S, Sitnicka E, Ruscetti F, Ortiz M, Gooya J, et al.
Blood
. 1994 Oct;
84(7):2175-81.
PMID: 7919333
Both transforming growth factor beta (TGF beta) and macrophage inflammatory protein 1 alpha (MIP-1 alpha) have been shown to be multifunctional regulators of hematopoiesis that can either inhibit or enhance...
6.
WOLF N, Kone A, Priestley G, Bartelmez S
Exp Hematol
. 1993 May;
21(5):614-22.
PMID: 8513861
Subpopulations of very primitive hematopoietic cells were isolated by fluorescence-activated cell sorter (FACS) selection of density gradient-enriched, lineage-depleted marrow cells with blast cell light scatter characteristics that bound low levels...
7.
Andrews R, Bensinger W, Knitter G, Bartelmez S, Longin K, Bernstein I, et al.
Blood
. 1992 Dec;
80(11):2715-20.
PMID: 1280476
Recombinant human stem cell factor (SCF), the ligand for c-kit, has been shown to stimulate increased numbers of hematopoietic progenitor cells of multiple types to circulate in the blood of...
8.
Greinix H, Storb R, Bartelmez S
Blood
. 1992 Oct;
80(8):1950-6.
PMID: 1382714
In a previous study using a canine model, we reported that a certain anti-class II monoclonal antibody (MoAb H81.9), which recognizes an epitope formed by the alpha and beta subunits...
9.
Andrews R, Bryant E, Bartelmez S, Muirhead D, Knitter G, Bensinger W, et al.
Blood
. 1992 Oct;
80(7):1693-701.
PMID: 1382700
CD34+ cells devoid of detectable mature and immature T and B lymphocytes, expressing the CD2, CD10, and CD20 antigens, were isolated from marrows of three pairs of sex-mismatched, mixed lymphocyte...
10.
Andrews R, Bartelmez S, Knitter G, Myerson D, Bernstein I, Appelbaum F, et al.
Blood
. 1992 Aug;
80(4):920-7.
PMID: 1379853
The ligand for the human c-kit, recombinant human stem cell factor (SCF), was administered to baboons at doses of 200, 100, 50, 25, and 10 micrograms/kg/d. SCF induced a dose-dependent...