Effects of panaxadiol saponins component as a new Chinese patent medicine on proliferation, differentiation and corresponding gene expression profile of megakaryocytes
Back to article page
OriginalPaper|Updated:2021-08-27
|
Effects of panaxadiol saponins component as a new Chinese patent medicine on proliferation, differentiation and corresponding gene expression profile of megakaryocytes
Effects of panaxadiol saponins component as a new Chinese patent medicine on proliferation, differentiation and corresponding gene expression profile of megakaryocytes
中国结合医学杂志(英文版)2016年22卷第1期 页码:28-35
Affiliations:
1. The Third People’s Hospital of Hangzhou,Hangzhou,China
2. Department of Oncology, Zhejiang Provincial People’s Hospital,Hangzhou,China
3. Institution of Hematology Research, the First Affiliated Hospital of Zhejiang Chinese Medical University,Hangzhou,China
Author bio:
Funds:
Supported by National Natural Science Foundation of China (No. 81373876), Zhejiang Provincial Natural Science Foundation (No. LY14H290004) and Science and Technology Program of Zhejiang Province (No. 2010C33098)
Wen, Ww., Sun, X., Zhuang, Hf. et al. Effects of panaxadiol saponins component as a new Chinese patent medicine on proliferation, differentiation and corresponding gene expression profile of megakaryocytes., Chin. J. Integr. Med. 22, 28–35 (2016). https://doi.org/10.1007/s11655-015-1970-3
Wei-wei Wen, Xin Sun, Hai-feng Zhuang, et al. Effects of panaxadiol saponins component as a new Chinese patent medicine on proliferation, differentiation and corresponding gene expression profile of megakaryocytes[J]. Chinese Journal of Integrative Medicine, 2016,22(1):28-35.
Wen, Ww., Sun, X., Zhuang, Hf. et al. Effects of panaxadiol saponins component as a new Chinese patent medicine on proliferation, differentiation and corresponding gene expression profile of megakaryocytes., Chin. J. Integr. Med. 22, 28–35 (2016). https://doi.org/10.1007/s11655-015-1970-3DOI:
Wei-wei Wen, Xin Sun, Hai-feng Zhuang, et al. Effects of panaxadiol saponins component as a new Chinese patent medicine on proliferation, differentiation and corresponding gene expression profile of megakaryocytes[J]. Chinese Journal of Integrative Medicine, 2016,22(1):28-35. DOI: 10.1007/s11655-015-1970-3.
Effects of panaxadiol saponins component as a new Chinese patent medicine on proliferation, differentiation and corresponding gene expression profile of megakaryocytes
摘要
To investigate the effects of panaxadiol saponins component (PDS-C) isolated from total saponins of panax ginseng on proliferation
differentiation and corresponding gene expression profile of megakaryocytes. Bone marrow culture of colony forming assay of megakaryocytic progenitor cells (CFU-MK) was observed for the promoting proliferation mediated by PDS-C
and differentiation of megakaryocytic blasts caused by PDS-C was analyzed with flow cytometry in CHRF-288 and Meg-01 cells
as well as proliferation
differentiation-related genes expression profile and protein expression levels were detected by human gene expression microarray and western blot. In response to PDS-C 10
20 and 50 mg/L
CFU-MK from 10 human bone marrow samples was increased by 28.9%±2.7%
41.0%±3.2% and 40.5%±2.6% over untreated control
respectively (P <0.01
each). Flow cytometry analysis showed that PDS-C treated CHRF-288 cells and Meg-01 cells significantly increased in CD42b
CD41
TSP and CD36 positive ratio
respectively. PDS-C induced 29 genes up-regulated more than two-fold commonly in both cells detected by human expression microarray representing 4000 known genes. The protein expression levels of ZNF91
c-Fos
BTF3a
GATA-1
RGS2
NDRG2 and RUNX1 were increased with western blot in correspond to microarray results. PDS-C as an effective component for hematopoiesis
play the role to enhance proliferation and differentiation of megakaryocytes
also up-regulated expression of proliferation
differentiation-related genes and proteins in vitro.
Abstract
To investigate the effects of panaxadiol saponins component (PDS-C) isolated from total saponins of panax ginseng on proliferation
differentiation and corresponding gene expression profile of megakaryocytes. Bone marrow culture of colony forming assay of megakaryocytic progenitor cells (CFU-MK) was observed for the promoting proliferation mediated by PDS-C
and differentiation of megakaryocytic blasts caused by PDS-C was analyzed with flow cytometry in CHRF-288 and Meg-01 cells
as well as proliferation
differentiation-related genes expression profile and protein expression levels were detected by human gene expression microarray and western blot. In response to PDS-C 10
20 and 50 mg/L
CFU-MK from 10 human bone marrow samples was increased by 28.9%±2.7%
41.0%±3.2% and 40.5%±2.6% over untreated control
respectively (P <0.01
each). Flow cytometry analysis showed that PDS-C treated CHRF-288 cells and Meg-01 cells significantly increased in CD42b
CD41
TSP and CD36 positive ratio
respectively. PDS-C induced 29 genes up-regulated more than two-fold commonly in both cells detected by human expression microarray representing 4000 known genes. The protein expression levels of ZNF91
c-Fos
BTF3a
GATA-1
RGS2
NDRG2 and RUNX1 were increased with western blot in correspond to microarray results. PDS-C as an effective component for hematopoiesis
play the role to enhance proliferation and differentiation of megakaryocytes
also up-regulated expression of proliferation
differentiation-related genes and proteins in vitro.
Gao RL, Xu CL, Jin JM. Effect of total saponins of panax ginseng on hematopoietic progenitor cells in normal human and aplastic anemia patients. Chin J Integr Tradit West Med (Chin) 1992;12:285–287.
Chen XH, Gao RL, Xu WH. Effect of ginsenosides in inducing proliferation and transcription factor of erythrocytic, granulo-monocytic and megakarocytic cell lines. Chin J Integr Tradit West Med (Chin) 2001;21:40–42.
Jin J, Tao H, Gao R. Effect of ginsenosides on proliferation and differentiation of human CD34+ hematopoietic stem/progenitor cells. Chin J Integr Tradit West Med (Chin) 2000;20:673–676.
Fang GL, Gao RL, Lin XJ, Jin JM. Effects of ginseng panaxadiol saponin on proliferation and differentiation of human bone marrow CD34+ cells. J Exp Hematol (Chin) 2007;15:776–779.
Gao RL, Chen XH, Lin XJ, Qian XD, Xu WH, Chong BH. Effects of notoginosides on proliferation and up-regulation of GRnuclear tanscription factor in hematopoietic cells. Acta Pharmacol Sin 2007;28:703–707.
Schena M, Shalon D, Dais RW, Brown PO. Quantitative monitoring of gene expression patterns with a complementary DNA microarray. Science 1995; 270(20):467–470.
Sun X, Gao RL, Lin XJ, Xu WH, Chen XH. Panax notoginseng saponins induced up-regulation, phosphorylation and binding activity of MEK, ERK, AKT, PI-3K protein kinases and GATA transcription factors in hematopoietic cells. Chin J Integr Med 2013;19:112–118.
Zuo G, Guan T, Chen D, Li C, Jiang R, Luo C, et al. Total saponins of Panax ginseng induces K562 cell differentiation by promoting internalization of the erythropoietin receptor. Am J Chin Med 2009;37:747–757.
Wang JW, Wang YP, Wang SL, Jiang R. Synergistic effects of total saponins of Panax ginseng in combination with hematopoietic growth factor on proliferation and differentiation of CD34(+) cells ex vivo. J Exp Hematol (Chin) 2006;14:959–963.
Gao RL, Chong BH. Research and development of the effective components of panaxadiol saponin as new Chinese patent medicine for treating hemocytopenia. Chin J Integr Med 2012;18:892–902.
Goldfarb AN. Megakaryocytic programming by a transciptional regulatory loop: a circle connecting RUNX1, GATA-1, and P-TEFb. J Cell Biochem 2009;107:377–382.
Krumsiek J, Marr C, Timm Schroeder T, Theis FJ. Hierarchical differentiation of myeloid progenitors is encoded in the transcription factor network. Plos One 2011;6:e22649.
Elagib KE, Mihaylov IS, Delephanty LL, Bullock GC, Ouma KD, Caronia JF, et al. Cross-talk of GATA-1 and P-TEFb in megakaryocyte differentiation. Blood 2008;112:4884–4894.
Unoki M, Okutsu J, Nakamura Y. Identification of a novel human gene, ZFP91, involved in acute myelogenous leukemia. Int J Oncol 2003;22:1217–1223.
Li R, Liu XL, Du QF, Zhang S, Luo RC, Zhou SY. Proteome analysis of apoptotic K562 cells induced by harringtonine. Chin J Hematol (Chin) 2004;25:323–327.
Kang K, Jung H, Nam S, Lim JS. NDRG2 promotes GATA-1 expression through regulation of the JAK2/STAT pathway in PMA-stimulated U937 cells. Immune Netw 2011;11:348–357.
Schwäble J, Choudhary C, Thiede C, Tickenbrock L, Sargin B, Steur C, et al. RGS2 is an important target gene of Flt3-ITD mutations in AML and functions in myeloid differentiation and leukemic transformation. Blood 2005;105:2107–2114.
Tijssen MR, Cvejic A, Joshi A, Hannah RL, Ferreira R, Forrai A, et al. Genome-wide analysis of simultaneous GATA1/2, RUNX1, FLI1, and SCL binding in megakaryocytes identifies hematopoietic regulators. Dev Cell 2011;20:597–609.
Gao R, Wu C, Chong BH. The intracellular signaling pathway initiated by ginsenosides in hematopoietic cells. Chin J Hematol (Chin) 1999;20:292–295.
Gao RL, Xu WH, Chen XH, Qian XD, Wu CQ. Up-regulation of transcription factors NF-E2, c-jun and c-fos of AP-1 family induced by panax notoginosides in hematopoietic cells. J Exp Hematol (Chin) 2004; 12:16–19.
Gao RL, Xu WH, Lin XJ, Chen XH, Wu CQ. Up-regulation of transcription factors GATA-1 and GATA-2 induced by Panax notoginosides in hematopoietic cells. Chin J Hematol (Chin) 2004;25:281–284.
Effects of sodium copper chlorophyllin on mesenchymal stem cell function in aplastic anemia mice
The ethanol extract isolated from Weiqi Decoction (胃祺饮) induces G2/M arrest and apoptosis in AGS cells
Effects of Danshen Injection (丹参注射液) on inhibiting proliferation and inducing apoptosis through down-regulation of mutant JAK2 gene and its protein phosphorylation in human erythroid leukemic cells
Icariin promotes self-renewal of neural stem cells: An involvement of extracellular regulated kinase signaling pathway
Effects and mechanisms of the functional parts of Dahuang Zhechong Pill (大黄 虫丸) containing serum on platelet-derived growth factor-stimulated proliferation of vascular smooth muscle cells
相关作者
暂无数据
相关机构
Tongde Hospital of Zhejiang Province
Research Institute of Hematopathy, the First Affiliated Hospital, Zhejiang Chinese Medical University
Chinese Medicine Hospital of Shanxi Province
Shanghai Key Laboratory of Complex Prescription
Institute of Chinese Materia Medica, Shanghai University of Traditional Chinese Medicine