Role of stromal-epithelial interaction in the formation and development of cancer cells.

Q2 Medicine Cancer Microenvironment Pub Date : 2013-12-01 Epub Date: 2013-02-22 DOI:10.1007/s12307-013-0131-5
Viktor Shtilbans
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引用次数: 8

Abstract

Identification of gene expression mechanisms began with works on embryonic induction. The same mechanism of cell-cell interactions also contributes to the process of oncogenesis. Damage to epithelial cells' genetic apparatus turns them into precancerous stem cells that are not yet capable of tumor growth. They can be transformed into cancer stem cells and undergo further progression as a result of epigenetic effects of apocrine secretion by surrounding activated stromal cells (mostly myofibroblasts). These factors may activate the damaged genetic information. On the contrary, the level of malignancy can be decreased by adding culture medium from non-activated stromal cells. One must not exclude the possibility that in a number of cases genetically altered bone marrow may migrate to damaged or inflamed tissues and become there a source of stromal cells, as well as of parenchymal stem cells in a damaged organ, where they may give rise to changed epithelial (precancerous) stem cells or to activated stromal cells, thus leading to malignant tumor growth. Cancer treatment should also affect activated stromal cells. It may prevent emergence and progression of cancerous stem cells.

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基质-上皮相互作用在癌细胞形成和发展中的作用。
基因表达机制的鉴定始于胚胎诱导的研究。细胞间相互作用的相同机制也有助于肿瘤发生的过程。对上皮细胞遗传器官的破坏会使它们变成癌前干细胞,而这些干细胞还不能生长肿瘤。它们可以转化为癌症干细胞,并由于周围活化的基质细胞(主要是肌成纤维细胞)分泌大汗液的表观遗传效应而进一步发展。这些因素可能激活受损的遗传信息。相反,加入未活化的基质细胞培养液可降低恶性肿瘤的水平。不能排除这样一种可能性,即在许多情况下,基因改变的骨髓可能迁移到受损或发炎的组织中,并成为受损器官中基质细胞和实质干细胞的来源,在那里它们可能产生改变的上皮(癌前)干细胞或激活的基质细胞,从而导致恶性肿瘤的生长。癌症治疗也应该影响活化的基质细胞。它可以防止癌症干细胞的出现和发展。
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来源期刊
Cancer Microenvironment
Cancer Microenvironment Medicine-Oncology
CiteScore
4.90
自引率
0.00%
发文量
0
期刊介绍: Cancer Microenvironment is the official journal of the International Cancer Microenvironment Society (ICMS). It publishes original studies in all aspects of basic, clinical and translational research devoted to the study of cancer microenvironment. It also features reports on clinical trials. Coverage in Cancer Microenvironment includes: regulation of gene expression in the cancer microenvironment; innate and adaptive immunity in the cancer microenvironment, inflammation and cancer; tumor-associated stroma and extracellular matrix, tumor-endothelium interactions (angiogenesis, extravasation), cancer stem cells, the metastatic niche, targeting the tumor microenvironment: preclinical and clinical trials.
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