CD44: a stemness driver, regulator, and marker-all in one?

IF 4 2区 医学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY STEM CELLS Pub Date : 2024-12-06 DOI:10.1093/stmcls/sxae060
Steffen J Sonnentag, Nagwa S M Ibrahim, Veronique Orian-Rousseau
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Abstract

Although the concept of cancer stem cells is still controversial, previous studies have shown that blood cancers, as well as specific types of solid cancers such as colorectal cancer, rely on stem cells during the onset of tumor growth and further tumor development. Moreover, resistance to therapeutic treatment in leukemias such as acute myeloid leukemia and in colorectal cancer can be attributed to a small population of cells with stemness properties known as minimal residual disease. In this review, we look back on the discovery of cancer stem cells and the contribution of the findings in blood cancer to a parallel discovery in solid cancers. We focus on CD44 as a stem cell marker, both in blood cancers and in several types of solid cancers, particularly of the gastrointestinal tract. This review highlights newly discovered molecular mechanisms of action of CD44 which indicate that CD44 has indeed a function in stemness, stem cell maintenance, and drug resistance. We attempt here to make the link between the functions of CD44 isoforms in stemness and their involvement in specific steps of tumor growth and metastasis.

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CD44:集干性驱动因子、调节因子和标记因子于一身?
尽管癌症干细胞的概念仍有争议,但先前的研究表明,血液癌症以及结肠直肠癌等特定类型的实体癌在肿瘤开始生长和进一步发展过程中依赖干细胞。此外,白血病(如急性髓性白血病)和结直肠癌对治疗的抗药性可归因于一小部分具有干细胞特性的细胞,这部分细胞被称为 "最小残留病"。在这篇综述中,我们回顾了癌症干细胞的发现,以及在血癌中的发现对实体癌中类似发现的贡献。我们重点关注CD44作为干细胞标志物在血癌和几种实体癌,尤其是胃肠道癌症中的应用。本综述重点介绍新发现的CD44分子作用机制,这些机制表明CD44在干性、干细胞维持和耐药性方面确实具有功能。我们试图在此将CD44异构体的干性功能与它们参与肿瘤生长和转移的特定步骤联系起来。
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来源期刊
STEM CELLS
STEM CELLS 医学-生物工程与应用微生物
CiteScore
10.30
自引率
1.90%
发文量
104
审稿时长
3 months
期刊介绍: STEM CELLS, a peer reviewed journal published monthly, provides a forum for prompt publication of original investigative papers and concise reviews. STEM CELLS is read and written by clinical and basic scientists whose expertise encompasses the rapidly expanding fields of stem and progenitor cell biology. STEM CELLS covers: Cancer Stem Cells, Embryonic Stem Cells/Induced Pluripotent Stem (iPS) Cells, Regenerative Medicine, Stem Cell Technology: Epigenetics, Genomics, Proteomics, and Metabonomics, Tissue-Specific Stem Cells, Translational and Clinical Research.
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