Nanoparticle-Based Drug Delivery in Cancer Therapy and Its Role in Overcoming Drug Resistance
Доставка лекарственных препаратов на основе наночастиц в терапии рака и ее роль в преодолении лекарственной устойчивости
2020-08-20
SCID: 54.1/2jnt82c5
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cancer drug resistancecancer immunotherapyhybrid nanoparticlesmultidrug resistancenanoparticle-based drug delivery
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Abstract (AI)
Nanotechnology has been extensively studied and exploited for cancer treatment as nanoparticles can play a significant role as a drug delivery system. Compared to conventional drugs, nanoparticle-based drug delivery has specific advantages, such as improved stability and biocompatibility, enhanced permeability and retention effect, and precise targeting. The application and development of hybrid nanoparticles, which incorporates the combined properties of different nanoparticles, has led this type of drug-carrier system to the next level. In addition, nanoparticle-based drug delivery systems have been shown to play a role in overcoming cancer-related drug resistance. The mechanisms of cancer drug resistance include overexpression of drug efflux transporters, defective apoptotic pathways, and hypoxic environment. Nanoparticles targeting these mechanisms can lead to an improvement in the reversal of multidrug resistance. Furthermore, as more tumor drug resistance mechanisms are revealed, nanoparticles are increasingly being developed to target these mechanisms. Moreover, scientists have recently started to investigate the role of nanoparticles in immunotherapy, which plays a more important role in cancer treatment. In this review, we discuss the roles of nanoparticles and hybrid nanoparticles for drug delivery in chemotherapy, targeted therapy, and immunotherapy and describe the targeting mechanism of nanoparticle-based drug delivery as well as its function on reversing drug resistance.
Key Findings
1
As additional mechanisms of tumor drug resistance are identified, nanoparticle systems are increasingly designed to target these mechanisms.
2
Hybrid nanoparticles combine the properties of different nanoparticle types, expanding the capabilities of cancer drug-carrier systems.
3
Nanoparticle-based drug delivery offers improved stability, biocompatibility, enhanced permeability and retention, and more precise tumor targeting than conventional drugs.
4
Nanoparticles are being investigated for drug delivery in chemotherapy, targeted therapy, and immunotherapy, including emerging applications in cancer immunotherapy.
5
Nanoparticles can help reverse multidrug resistance by targeting drug efflux transporters, defective apoptotic pathways, and tumor hypoxia.
Research Object
Nanoparticle-based drug delivery systems for cancer therapy
Research Subject
Their drug-delivery roles, targeting mechanisms, and effectiveness in overcoming cancer-related multidrug resistance across chemotherapy, targeted therapy, and immunotherapy
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2020-08-20
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