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A comprehensive review on lipid nanocarrier systems for cancer treatment: fabrication, future prospects and clinical trials

期刊

JOURNAL OF LIPOSOME RESEARCH
卷 -, 期 -, 页码 -

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TAYLOR & FRANCIS LTD
DOI: 10.1080/08982104.2023.2204372

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Lipid nanoparticles; lipid nanovesicles; solid lipid nanoparticles; nanostructured lipid carriers; cubosomes; lipid nanocapsules; emulsomes; nanoemulsions; cancer; clinical trials

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Cancer is a major cause of death worldwide, and chemotherapy is the most commonly used treatment. However, current chemotherapeutic treatments have limitations, including lack of specificity and adverse effects. Lipid nanoparticles (LNPs) offer a promising nanocarrier system to improve drug delivery and reduce side effects, potentially leading to better therapeutic outcomes.
Over the last few decades, cancer has been considered a clinical challenge, being among the leading causes of mortality all over the world. Although many treatment approaches have been developed for cancer, chemotherapy is still the most utilized in the clinical setting. However, the available chemotherapeutics-based treatments have several caveats including their lack of specificity, adverse effects as well as cancer relapse and metastasis which mainly explains the low survival rate of patients. Lipid nanoparticles (LNPs) have been utilized as promising nanocarrier systems for chemotherapeutics to overcome the challenges of the currently applied therapeutic strategies for cancer treatment. Loading chemotherapeutic agent(s) into LNPs improves drug delivery at different aspects including specific targeting of tumours, and enhancing the bioavailability of drugs at the tumour site through selective release of their payload, thus reducing their undesired side effects on healthy cells. This review article delineates an overview of the clinical challenges in many cancer treatments as well as depicts the role of LNPs in achieving optimal therapeutic outcomes. Moreover, the review contains a comprehensive description of the many LNPs categories used as nanocarriers in cancer treatment to date, as well as the potential of LNPs for future applications in other areas of medicine and research.

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