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1
The key role of growth hormone-insulin-IGF-1 signaling in aging and cancer.生长激素-胰岛素-IGF-1 信号通路在衰老和癌症中的关键作用。
Crit Rev Oncol Hematol. 2013 Sep;87(3):201-23. doi: 10.1016/j.critrevonc.2013.01.005. Epub 2013 Feb 21.
2
Cyclin A1 is essential for setting the pluripotent state and reducing tumorigenicity of induced pluripotent stem cells.细胞周期蛋白 A1 对于设定多能状态和降低诱导多能干细胞的致瘤性是必不可少的。
Stem Cells Dev. 2012 Oct 10;21(15):2891-9. doi: 10.1089/scd.2012.0190. Epub 2012 Jun 25.
3
Antiproliferative activity of N(6)-isopentenyladenosine on HCT-15 colon carcinoma cell line.N(6)-异戊烯基腺嘌呤对 HCT-15 结肠癌细胞系的抗增殖活性。
Nucleic Acid Ther. 2011 Oct;21(5):355-8. doi: 10.1089/nat.2011.0314.
4
Antiproliferative activity of novel derivative of thiopyran on breast and colon cancer lines and DNA binding.新型噻吩并嘧啶衍生物对乳腺癌和结肠癌系的抗增殖活性及 DNA 结合。
DNA Cell Biol. 2012 Jan;31(1):128-34. doi: 10.1089/dna.2011.1291. Epub 2011 Jun 28.
5
A protocol to assess cell cycle and apoptosis in human and mouse pluripotent cells.一种评估人类和小鼠多能细胞细胞周期和细胞凋亡的方案。
Cell Commun Signal. 2011 Apr 11;9(1):8. doi: 10.1186/1478-811X-9-8.
6
Antiproliferative activity and cell cycle analysis of 2-(3,5-dihydroxyphenyl)-6-hydroxybenzothiazole on MCF-7 breast and HCT-15 colon cancer cell lines.2-(3,5-二羟基苯基)-6-羟基苯并噻唑对 MCF-7 乳腺癌和 HCT-15 结肠癌细胞系的抗增殖活性和细胞周期分析。
DNA Cell Biol. 2011 Aug;30(8):617-21. doi: 10.1089/dna.2011.1220. Epub 2011 Mar 25.
7
Rem2 GTPase maintains survival of human embryonic stem cells as well as enhancing reprogramming by regulating p53 and cyclin D1.Rem2 GTPase 通过调节 p53 和细胞周期蛋白 D1 维持人类胚胎干细胞的存活并增强重编程。
Genes Dev. 2010 Mar 15;24(6):561-73. doi: 10.1101/gad.1876710.
8
Arabidopsis regeneration from multiple tissues occurs via a root development pathway.拟南芥可从多种组织再生,其再生过程通过根发育途径实现。
Dev Cell. 2010 Mar 16;18(3):463-71. doi: 10.1016/j.devcel.2010.02.004.
9
Generation of induced pluripotent stem cells from human cord blood using OCT4 and SOX2.利用OCT4和SOX2从人脐带血中生成诱导多能干细胞。
Cell Stem Cell. 2009 Oct 2;5(4):353-7. doi: 10.1016/j.stem.2009.09.008.
10
Dynamic changes in concentrations of auxin, cytokinin, ABA and selected metabolites in multiple genotypes of Douglas-fir (Pseudotsuga menziesii) during a growing season.花旗松(Pseudotsuga menziesii)多个基因型在生长季节中生长素、细胞分裂素、脱落酸和选定代谢物浓度的动态变化。
Tree Physiol. 2009 Feb;29(2):183-90. doi: 10.1093/treephys/tpn009. Epub 2008 Dec 3.

植物激素可提高将小鼠体细胞重编程为诱导多能干细胞的效率,并降低致瘤性。

Plant hormones increase efficiency of reprogramming mouse somatic cells to induced pluripotent stem cells and reduce tumorigenicity.

作者信息

Alvarez Palomo Ana Belén, McLenachan Samuel, Requena Osete Jordi, Menchón Cristina, Barrot Carme, Chen Fred, Munné-Bosch Sergi, Edel Michael J

机构信息

1 Molecular Genetics Research Group, Control of Pluripotency Laboratory, Department of Physiological Sciences I, Faculty of Medicine, University of Barcelona , Hospital Clinic, Barcelona, Spain .

出版信息

Stem Cells Dev. 2014 Mar 15;23(6):586-93. doi: 10.1089/scd.2013.0292. Epub 2014 Jan 7.

DOI:10.1089/scd.2013.0292
PMID:24251409
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3938913/
Abstract

Reprogramming of somatic cells into induced pluripotent stem (iPS) cells by defined pluripotency and self-renewal factors has taken stem cell technology to the forefront of regenerative medicine. However, a number of challenges remain in the field including efficient protocols and the threat of cancer. Reprogramming of plant somatic cells to plant embryonic stem cells using a combination of two plant hormones was discovered in 1957 and has been a routine university laboratory practical for over 30 years. The plant hormones responsible for cell reprogramming to pluripotency, indole-3-acetic acid (IAA) and isopentenyl adenosine (IPA), are present in human cells, leading to the exciting possibility that plant hormones might reprogram mammalian cells without genetic factors. We found that plant hormones on their own could not reprogram mammalian cells but increase the efficiency of the early formation of iPS cells combined with three defined genetic factors during the first 3 weeks of reprogramming by accelerating the cell cycle and regulating pluripotency genes. Moreover, the cytokinin IPA, a known human anticancer agent, reduced the threat of cancer of iPS cell in vitro by regulating key cancer and stem cell-related genes, most notably c-Myc and Igf-1. In conclusion, the plant hormones, auxin and cytokinin, are new small chemicals useful for enhancing early reprogramming efficiency of mammalian cells and reducing the threat of cancer from iPS cells. These findings suggest a novel role for plant hormones in the biology of mammalian cell plasticity.

摘要

通过特定的多能性和自我更新因子将体细胞重编程为诱导多能干细胞(iPS细胞),使干细胞技术处于再生医学的前沿。然而,该领域仍存在一些挑战,包括高效的方案以及癌症风险。1957年发现利用两种植物激素的组合可将植物体细胞重编程为植物胚胎干细胞,并且30多年来一直是大学实验室的常规实践。负责细胞重编程为多能性的植物激素,吲哚-3-乙酸(IAA)和异戊烯基腺苷(IPA),存在于人类细胞中,这引发了令人兴奋的可能性,即植物激素可能无需遗传因子就能重编程哺乳动物细胞。我们发现植物激素本身不能重编程哺乳动物细胞,但在重编程的前三周,与三种特定遗传因子联合使用时,通过加速细胞周期和调控多能性基因,可提高iPS细胞早期形成的效率。此外,细胞分裂素IPA是一种已知的人类抗癌剂,通过调控关键的癌症和干细胞相关基因,尤其是c-Myc和Igf-1,在体外降低了iPS细胞的癌症风险。总之,植物激素生长素和细胞分裂素是新型小分子化合物,有助于提高哺乳动物细胞的早期重编程效率,并降低iPS细胞的癌症风险。这些发现揭示了植物激素在哺乳动物细胞可塑性生物学中的新作用。