관련 논문
*정책원 미소장 자료이며 관련 논문 소개 게시판입니다. 게시물 관련링크를 눌러 소속기관에서 열람가능한지 확인해주시기 바랍니다. lib@nibp.kr
글 수 39
발행년 : 2013 
구분 : 국외학술지 
학술지명 : Cell Research 23:1–2 
관련링크 :  

Cell Research (2013) 23:1–2. doi:10.1038/cr.2013.4; published online 3 January 2013 

 

원문 : http://www.nature.com/cr/journal/v23/n1/pdf/cr20134a.pdf

 (해당 자료의 원문을 원하시면 메일로 신청해주시기 바랍니다. lib@nibp.kr)

 

 

저자 Dangsheng Li : 1Deputy Editor-in-Chief, Cell Research, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China
dsli@sibs.ac.cn

 

 

사이트 바로가기 : http://www.nature.com/cr/journal/v23/n1/full/cr20134a.html?WT.mc_id=TOC_CR_1301_stemcells

 

 

Stem cells hold the remarkable capacity of self-renewal and differentiation into more specialized cell lineages, and thus constitute a promising resource in regenerative medicine for the generation of appropriate cell types in cell replacement therapy. Stem cell research, accordingly, has become a highly vigorous and rapidly evolving field in life sciences, highlighted by the 2012 Nobel Prize in Physiology or Medicine awarded to Shinya Yamanaka and John Gurdon, for their ground-breaking works in reprogramming cell fates1. As a general interest life science journal, Cell Research has enjoyed a phase of rapid growth in the past several years, as shown by the dramatic improvement in the scientific quality of papers published in the journal as wells as its broadening impact within the scientific community. Along the way, the field of stem cell biology has naturally become an important research area covered by papers published in Cell Research2. For instance, in the past year of 2012, Cell Research has published a number of important papers related to the stem cell field, covering diverse aspects and topics such as induced pluripotent stem (iPS) cells3,4,5,6,7, mechanistic studies of pluripotency and differentiation8,9,10,11, modeling of human diseases using stem cell-based systems6,12, direct reprogramming of somatic cells to other cell types without passing through an pluripotent intermediate13,14,15,16, as well as neural crest stem cells17 and cancer stem cells18,19,20.

 

References

  1. Abbott A. Cell rewind wins medicine Nobel. Nature 2012; 490:151–152. | Article | PubMed |
  2. Li D. A special issue on cell signaling, disease, and stem cells. Cell Res 2012; 22:1–2. | Article | PubMed |
  3. Xu H, Yi BA, Wu H, et al. Highly efficient derivation of ventricular cardiomyocytes from induced pluripotent stem cells with a distinct epigenetic signature. Cell Res 2012; 22:142–154. | Article | PubMed |
  4. Panopoulos AD, Yanes O, Ruiz S, et al. The metabolome of induced pluripotent stem cells reveals metabolic changes occurring in somatic cell reprogramming. Cell Res 2012; 22:168–177. | Article | PubMed |
  5. Cao N, Liu Z, Chen Z, et al. Ascorbic acid enhances the cardiac differentiation of induced pluripotent stem cells through promoting the proliferation of cardiac progenitor cells. Cell Res 2012; 22:219–236. | Article | PubMed |
  6. Wang Y, Zheng CG, Jiang Y, et al. Genetic correction of β-thalassemia patient-specific iPS cells and its use in improving hemoglobin production in irradiated SCID mice. Cell Res 2012; 22:637–648. | Article | PubMed |
  7. Wang F, Yin Y, Ye X, et al. Molecular insights into the heterogeneity of telomere reprogramming in induced pluripotent stem cells. Cell Res 2012; 22:757–768. | Article | PubMed |
  8. Ding J, Xu H, Faiola F, Ma'ayan A, Wang J. Oct4 links multiple epigenetic pathways to the pluripotency network. Cell Res 2012; 22:155–167. | Article | PubMed |
  9. Patterson M, Chan DN, Ha I, et al. Defining the nature of human pluripotent stem cell progeny. Cell Res 2012; 22:178–193. | Article | PubMed |
  10. Wang C, Tang X, Sun X, et al. TGFβ inhibition enhances the generation of hematopoietic progenitors from human ES cell-derived hemogenic endothelial cells using a stepwise strategy. Cell Res 2012; 22:194–207. | Article | PubMed |
  11. Gwak J, Hwang SG, Park HS, et al. Small molecule-based disruption of the Axin/β-catenin protein complex regulates mesenchymal stem cell differentiation. Cell Res 2012; 22:237–247. | Article | PubMed |
  12. Bueno C, Montes R, Melen GJ, et al. A human ESC model for MLL-AF4 leukemic fusion gene reveals an impaired early hematopoietic-endothelial specification. Cell Res 2012; 22:986–1002. | Article | PubMed |
  13. Sheng C, Zheng Q, Wu J, et al. Direct reprogramming of Sertoli cells into multipotent neural stem cells by defined factors. Cell Res 2012; 22:208–218. | Article | PubMed | CAS |
  14. Liu X, Li F, Stubblefield EA, et al. Direct reprogramming of human fibroblasts into dopaminergic neuron-like cells. Cell Res 2012; 22:321–332. | Article | PubMed |
  15. Meng F, Chen S, Miao Q, et al. Induction of fibroblasts to neurons through adenoviral gene delivery. Cell Res 2012; 22:436–440. | Article | PubMed |
  16. Sheng C, Zheng Q, Wu J, et al. Generation of dopaminergic neurons directly from mouse fibroblasts and fibroblast-derived neural progenitors. Cell Res 2012; 22:769–772. | Article | PubMed |
  17. Achilleos A, Trainor PA. Neural crest stem cells: discovery, properties and potential for therapy. Cell Res 2012; 22:288–304. | Article | PubMed |
  18. Tang DG. Understanding cancer stem cell heterogeneity and plasticity. Cell Res 2012; 22:457–472. | Article | PubMed |
  19. Chen T, Yang K, Yu J, et al. Identification and expansion of cancer stem cells in tumor tissues and peripheral blood derived from gastric adenocarcinoma patients. Cell Res 2012; 22:248–258. | Article | PubMed |
  20. Hou Y, Zou Q, Ge R, Shen F, Wang Y. The critical role of CD133+CD44+/high tumor cells in hematogenous metastasis of liver cancers. Cell Res 2012; 22:259–272. | Article | PubMed |

 

 

 

원문  : http://www.nature.com/cr/journal/v23/n1/pdf/cr20134a.pdf 

 

 

(해당 자료의 원문을 워하시면 메일로 신청해주시기 바랍니다. lib@nibp.kr)

 

 

 

List of Articles
번호 제목 발행년 조회 수sort
공지 ! 논문 정보 제공 게시판입니다.   11462
» 18 인체실험 Editorial: The 2013 special issue on stem cell biology / Dangsheng Li 2013  3952
38 18 인체실험 배아복제 기술의 윤리적 문제와 줄기세포 연구의 한계 / 김광연 2015  2283
37 18 인체실험 Stem cell research policies around the world / Deepali Dhar and John Hsi-en Ho 2009  1997
36 18 인체실험 인간배아줄기세포의 특허보호에 관한 유럽의 최신 동향 : 유럽사법재판소의 Brüstle v. Greenpeace 판결을 중심으로 / 한지영 2014  1223
35 18 인체실험 물리적 인장 자극에 의한 줄기세포의 분화에 동반되는 미토콘드리아의 특성 변화에 관한 고찰 / 신지원 외 2015  1172
34 18 인체실험 인간배아복제 연구에 관한 헌법학적 고찰 / 민경식 외 2014  938
33 18 인체실험 배아줄기세포 연구에 대한 불교적 관점 / 윤종갑 2012  915
32 18 인체실험 수컷 생식줄기세포를 이용한 생식독성 동물대체시험법 개발 / 전혜련 외 2015  685
31 18 인체실험 재생의학 기술 개발을 위한 세포접착 제어를 통한 중간엽 줄기세포의 기능 조절 연구 / 강정미 2016  547
30 18 인체실험 줄기세포연구와 중개연구에 있어서 연구대상자보호의 규제에 관한 고찰 / 박수헌 2014  534
29 18 인체실험 영국, 미국, 한국의 줄기세포연구에 관한 정책변동 비교 분석 : Advocacy Coalition Framework 모형의 적용 / 배그린, 강민아 2013  517
28 18 인체실험 배아줄기세포연구의 생명윤리담론 분석 : 한국 기독교와 불교를 중심으로 / 박상언 2012  498
27 18 인체실험 줄기세포주 등록제도에 대한 고찰 / 김현철 2014  462
26 18 인체실험 미국에서의 특허적격(Patent Eligibility) 판단에 대한 연구 - 인간배아줄기세포와 컴퓨터 프로그램을 중심으로 - / 이창화 2014  418
25 18 인체실험 줄기세포 유래 세포치료제의 개발 전략 및 임상화 과정 / 조명수 외 2012  398
24 18 인체실험 인간 배아줄기세포 유래의 혈액모세포 및 기능성 혈관세포 분화 방법과 특성 연구/ 길창현 2016  358
23 18 인체실험 과학기술 연구기록 신뢰성보장을 위한 기록관리 방안 : - 우수연구실운영규정(GLP)을 중심으로 - / 염경은 2007  330
22 18 인체실험 첨단의료보조생식에 근거한 민법 제844조 친생자 추정에 관한 고찰 / 유지홍 2015  329
21 18 인체실험 임상등급 인간 배아줄기세포주 확립 연구 동향 / 설혜원 외 2014  316
20 18 인체실험 한국 줄기세포연구정책 거버넌스의 특성 / 김명심 2015  310