Pramuan Virutamasen
Overview
Explore the profile of Pramuan Virutamasen including associated specialties, affiliations and a list of published articles.
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Articles
17
Citations
69
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0
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Recent Articles
1.
Rungsiwiwut R, Virutamasen P, Pruksananonda K
Reprod Med Biol
. 2021 Jan;
20(1):13-19.
PMID: 33488279
Background: Mesenchymal stem cells (MSCs) can be derived from several tissues such as bone marrow, placenta, adipose tissue, or endometrial tissue. MSCs gain a lot of attention for cell-based therapy...
2.
Pavarajarn W, Rungsiwiwut R, Numchaisrika P, Virutamasen P, Pruksananonda K
Reprod Fertil Dev
. 2020 Jun;
32(9):822-834.
PMID: 32527373
In a feeder-dependent culture system of human pluripotent stem cells (hPSCs), coculture with mouse embryonic fibroblasts may limit the clinical use of hPSCs. The aim of this study was to...
3.
Rungsiwiwut R, Pavarajarn W, Numchaisrika P, Virutamasen P, Pruksananonda K
Stem Cell Res
. 2016 Jun;
16(1):10-3.
PMID: 27345776
Transgene-free human HS5-SV.hiPS line was generated from human cesarean scar-derived fibroblasts using temperature-sensitive Sendai virus vectors carrying Oct4, Sox2, cMyc and Klf4 exogenous transcriptional factors. The viral constructs were eliminated...
4.
Rungsiwiwut R, Ingrungruanglert P, Numchaisrika P, Virutamasen P, Phermthai T, Pruksananonda K
Stem Cells Int
. 2016 Feb;
2016:4626048.
PMID: 26839561
Although human pluripotent stem cells (hPSCs) can proliferate robustly on the feeder-free culture system, genetic instability of hPSCs has been reported in such environment. Alternatively, feeder cells enable hPSCs to...
5.
Rungsiwiwut R, Numchaisrika P, Ahnonkitpanit V, Virutamasen P, Pruksananonda K
J Reprod Dev
. 2016 Jan;
62(2):167-76.
PMID: 26821869
Because the diploid human embryonic stem cells (hESCs) can be successfully derived from tripronuclear zygotes thus, they can serve as an alternative source of derivation of normal karyotype hESC lines....
6.
Rungsiwiwut R, Manolertthewan C, Numchaisrika P, Ahnonkitpanit V, Virutamasen P, Techakumphu M, et al.
Cells Tissues Organs
. 2013 Oct;
198(2):127-38.
PMID: 24158103
Human neural progenitor cells (hNPCs) are the starting material required for neuronal subtype differentiation. Proliferation of hNPCs allows researchers to study the mechanistic complexities and microenvironments present during neural differentiation...
7.
Pruksananonda K, Rungsiwiwut R, Numchaisrika P, Ahnonkitpanit V, Isarasena N, Virutamasen P
Biores Open Access
. 2013 Mar;
1(4):166-73.
PMID: 23514952
Human embryonic stem (hES) cells are considered to be a potential source for the therapy of human diseases, drug screening, and the study of developmental biology. In the present study,...
8.
Kobolak J, Bodo S, Rungsiwiwut R, Meng Q, Adorjan M, Virutamasen P, et al.
Cell Reprogram
. 2010 Feb;
12(1):105-13.
PMID: 20132018
Pluripotent stem cells would have great potential in cell therapies and drug development when genetically matched with the patient; thus, histocompatible cells could be used in transplantation therapy or as...
9.
Pruksananonda K, Rungsiwiwut R, Numchaisrika P, Ahnonkitpanich V, Virutamasen P
J Med Assoc Thai
. 2009 Apr;
92(4):443-50.
PMID: 19374291
Objective: To establish human embryonic stem (hES) cells from human embryos. Design: Experimental study. Setting: Reproductive Medicine Unit, Department of Obstetrics and Gynecology, Faculty of Medicine, Chulalongkorn University. Material And...
10.
Rungsiwiwut R, Rungarunlert S, Numchaisrika P, Pruksananonda K, Techakumphu M, Virutamasen P
J Med Assoc Thai
. 2008 Aug;
91(5):608-14.
PMID: 18672620
Objective: To determine the effect of leukemia inhibitory factor (LIF) on the quality of in vitro produced mouse blastocyst and the efficiency of embryonic stem (ES) cell derivation. Design: Experimental...