Nanomaterials for cancer therapy: current progress and perspectives

Наноматериалы для терапии рака: современный прогресс и перспективы
Zhe Cheng, Maoyu Li, Raja Dey, Yongheng Chen
2021-05-31

cancer therapynanocarriersnanomaterialsprotein coronatargeted drug delivery
Cancer is a disease with complex pathological process. Current chemotherapy faces problems such as lack of specificity, cytotoxicity, induction of multi-drug resistance and stem-like cells growth. Nanomaterials are materials in the nanorange 1-100 nm which possess unique optical, magnetic, and electrical properties. Nanomaterials used in cancer therapy can be classified into several main categories. Targeting cancer cells, tumor microenvironment, and immune system, these nanomaterials have been modified for a wide range of cancer therapies to overcome toxicity and lack of specificity, enhance drug capacity as well as bioavailability. Although the number of studies has been increasing, the number of approved nano-drugs has not increased much over the years. To better improve clinical translation, further research is needed for targeted drug delivery by nano-carriers to reduce toxicity, enhance permeability and retention effects, and minimize the shielding effect of protein corona. This review summarizes novel nanomaterials fabricated in research and clinical use, discusses current limitations and obstacles that hinder the translation from research to clinical use, and provides suggestions for more efficient adoption of nanomaterials in cancer therapy.
1
Conventional chemotherapy is limited by poor specificity, systemic cytotoxicity, multidrug resistance, and stimulation of stem-like cancer cell growth.
2
Despite growing research activity, the number of clinically approved nanodrugs has increased only modestly, highlighting persistent translational barriers.
3
Improved clinical translation requires targeted nanocarriers that reduce toxicity, enhance permeability and retention, and minimize protein-corona shielding effects.
4
Nanomaterial modification can improve therapeutic specificity, drug-loading capacity, and bioavailability while potentially reducing toxicity.
5
Nanomaterials offer tunable optical, magnetic, and electrical properties for cancer therapies targeting tumor cells, the tumor microenvironment, and the immune system.

Nanomaterials used in cancer therapy

Their targeted drug-delivery capabilities, therapeutic efficacy, safety, and barriers to clinical translation

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2021-05-31
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Zhe Cheng
Maoyu Li
Raja Dey
Yongheng Chen
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