4.6 Review

Nanomedicine to Overcome Multidrug Resistance Mechanisms in Colon and Pancreatic Cancer: Recent Progress

期刊

CANCERS
卷 13, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/cancers13092058

关键词

drug resistance; colon cancer; pancreatic cancer; nanomedicine; cancer stem cells; PARP; miRNA; tumor microenvironment

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资金

  1. Consejeria de Salud de la Junta de Andalucia [PI-0102-2017, P18-HO-3882]
  2. CTS-107 Group
  3. Instituto de Salud Carlos III (ISCIII) (FEDER) [PI19/01478]

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Drug resistance is a major cause of cancer treatment failure, but nanotechnology has been identified as a potential alternative to overcome this issue, particularly in the treatment of colon and pancreatic cancers. Various nanotechnology-based therapies have shown efficacy in preclinical phases, offering new strategies to address drug resistance mechanisms in cancer cells.
Simple Summary The cellular mechanisms of drug resistance prevent the correct efficacy of the therapies used in various types of cancer and nanotechnology has been postulated as a possible alternative to avoid them. This review focuses on describing the different mechanisms of drug resistance and dis-covering which nanotechnology-based therapies have been used in recent years to evade them in colon (CRC) and pancreatic cancer (PAC). Here we summarize the use of different types of nanotechnology (mainly nanoparticles) that have shown efficacy in vitro and in vivo in preclinical phases, allowing future in-depth research in CRC and PAC and its translation to future clinical trials. The development of drug resistance is one of the main causes of cancer treatment failure. This phenomenon occurs very frequently in different types of cancer, including colon and pancreatic cancers. However, the underlying molecular mechanisms are not fully understood. In recent years, nanomedicine has improved the delivery and efficacy of drugs, and has decreased their side effects. In addition, it has allowed to design drugs capable of avoiding certain resistance mechanisms of tumors. In this article, we review the main resistance mechanisms in colon and pancreatic cancers, along with the most relevant strategies offered by nanodrugs to overcome this obstacle. These strategies include the inhibition of efflux pumps, the use of specific targets, the development of nanomedicines affecting the environment of cancer-specific tissues, the modulation of DNA repair mechanisms or RNA (miRNA), and specific approaches to damage cancer stem cells, among others. This review aims to illustrate how advanced nanoformulations, including polymeric conjugates, micelles, dendrimers, liposomes, metallic and carbon-based nanoparticles, are allowing to overcome one of the main limitations in the treatment of colon and pancreatic cancers. The future development of nanomedicine opens new horizons for cancer treatment.

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