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Cancer stem cell impact on clinical oncology 被引量:4

Cancer stem cell impact on clinical oncology
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摘要 Cancer is a widespread worldwide chronic disease. In most cases, the high mortality rate from cancer correlates with a lack of clear symptoms, which results in late diagnosis for patients, and consequently, advanced tumor disease with poor probabilities for cure, since many patients will show chemo-and radio-resistance. Several mechanisms have been studied to explain chemo-and radio-resistance to anti-tumor therapies, including cell signaling pathways, anti-apoptotic mechanisms, stemness, metabolism, and cellular phenotypes. Interestingly, the presence of cancer stem cells(CSCs), which are a subset of cells within the tumors, has been related to therapy resistance. In this review, we focus on evaluating the presence of CSCs in different tumors such as breast cancer, gastric cancer, lung cancer, and hematological neoplasias, highlighting studies where CSCs were identified in patient samples. It is evident that there has been a great drive to identify the cell surface phenotypes of CSCs so that they can be used as a tool for anti-tumor therapy treatment design. We also review the potential effect of nanoparticles, drugs, natural compounds, aldehyde dehydrogenase inhibitors, cell signaling inhibitors, and antibodies to treat CSCs from specific tumors. Taken together, we present an overview of the role of CSCs in tumorigenesis and how research is advancing to target these highly tumorigenic cells to improve oncology patient outcomes. Cancer is a widespread worldwide chronic disease. In most cases, the high mortality rate from cancer correlates with a lack of clear symptoms, which results in late diagnosis for patients, and consequently, advanced tumor disease with poor probabilities for cure, since many patients will show chemo-and radio-resistance. Several mechanisms have been studied to explain chemo-and radio-resistance to anti-tumor therapies, including cell signaling pathways, anti-apoptotic mechanisms, stemness, metabolism, and cellular phenotypes. Interestingly, the presence of cancer stem cells(CSCs), which are a subset of cells within the tumors, has been related to therapy resistance. In this review, we focus on evaluating the presence of CSCs in different tumors such as breast cancer, gastric cancer, lung cancer, and hematological neoplasias, highlighting studies where CSCs were identified in patient samples. It is evident that there has been a great drive to identify the cell surface phenotypes of CSCs so that they can be used as a tool for anti-tumor therapy treatment design. We also review the potential effect of nanoparticles, drugs, natural compounds, aldehyde dehydrogenase inhibitors, cell signaling inhibitors, and antibodies to treat CSCs from specific tumors. Taken together, we present an overview of the role of CSCs in tumorigenesis and how research is advancing to target these highly tumorigenic cells to improve oncology patient outcomes.
出处 《World Journal of Stem Cells》 SCIE CAS 2018年第12期183-195,共13页 世界干细胞杂志(英文版)(电子版)
基金 Supported by Institutional funding at Instituto Nacional de Cancerología
关键词 CANCER TARGETED THERAPY CLINICAL OUTCOME DRUG resistance CANCER stem cells Cancer Targeted therapy Clinical outcome Drug resistance Cancer stem cells
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  • 1Correa P. Piazuelo MB, Wiluon KT Pathology of gastric in, testinal mctaplasia: clinical implications. Am J Gastroenterol 2010; 105:493-498.
  • 2Khan FA, Shukla AN. Pathogenesis and treatment of gastric carcinoma: "an up-date with brief review". J Cancer Res Ther 2006; 2:196-199.
  • 3Anderson WF, Camargo MC, Fraumeni JF, et al. Age-specific trends in incidence of noncardia gastric cancer in US adults. Jama-JAm MedAssoc 2010; 303:1723-1728.
  • 4Chen CY, Hsu JS, Wu DC, et al. Gastric cancer: preoperative local staging with 3D multi-detector row CT - correlation with surgical and histopathologic results. Radiology 2007; 242:472-482.
  • 5House MG, Brennan MF. Neoadjuvant therapy for gastric cancer. Adv Surg 2008; 42:151-168.
  • 6Reya T, Morrison S J, Clarke MF, Weissman IL. Stem cells, cancer, and cancer stem cells. Nature 2001; 414:105-111.
  • 7Bonnet D, Dick JE. Human acute myeloid leukemia is organized as a hierarchy that originates from a primitive hematopoietie cell. Nat Med 1997; 3:730-737.
  • 8Polyak K, Hahn WC. Roots and stems: stem cells in cancer. Nat Med 2006; 12:296-300.
  • 9Eaves CJ. Cancer stem cells: Here, there, everywhere? Nature 2008; 456:581-582.
  • 10AI-Hajj M, Wicha MS, Benito-Hemandez A, Morrison S J, Clarke MF. Prospective identification of tumorigenic breast cancer cells. Proc Natl Acad Sci USA 2003; 100:3983-3988.

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