4.7 Review

Nanotherapeutic approach to tackle chemotherapeutic resistance of cancer stem cells

期刊

LIFE SCIENCES
卷 279, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.lfs.2021.119667

关键词

Chemotherapeutic resistance; Cancer battle; Tumor metastasis; Nanoparticles; Drug delivery; Biomedical

资金

  1. Consejo Nacional de Ciencia y Tecnologia (CONACYT) under Sistema Nacional de Investigadores (SNI) program [CVU: 735340]

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Cancer is projected to become the leading cause of mortality worldwide in the future, with tumorigenesis being a complex process involving cancer stem cells playing a significant role. Research on targeting CSCs in cancer treatment is on the rise, showing promising results in pathways and CSC-surface markers targeting.
Estimates indicate that cancer will become the leading cause of mortality worldwide in the future. Tumorigenesis is a complex process that involves self-sufficiency in signs of growth, insensitivity to anti-growth signals, prevention of apoptosis, unlimited replication, sustained angiogenesis, tissue invasion, and metastasis. Cancer stem cells (CSCs) have an important role in tumor development and resistance. Here we will approach phenotypic plasticity capacity, highly efficient DNA repair systems, anti-apoptotic machinery, sustained stemness features, interaction with the tumor microenvironment, and Notch, Wnt, and Hedgehog signaling pathways. The researches about CSCs as a target in cancer treatment has been growing. Many different options have pointed beneficial results, such as pathways and CSC-surface markers targeting. Besides its limitations, nanotherapeutics have emerged as a potential strategy in this context since they aim to improve pharmacokinetics, biodistribution, and reduce the side effects observed in traditional treatments. Nanoparticles have been studied in this field, mostly for drug delivery and a multitherapy approach. Another widely researched approaches in this area are related to heat therapy, such as photothermal therapy, photodynamic therapy and magnetic hyperthermia, besides molecular targeting. This review will contemplate the most relevant studies that have shown the effects of nanotherapeutics. In conclusion, although the studies analyzed are mostly preclinical, we believe that there is strong evidence that nanoparticles can increase the chances of a better prognosis to cancer in the future. It is also essential to transpose these findings to the clinic to confirm and better understand the role of nanotherapeutics in this context.

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