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- W4288461325 abstract "Schematic illustration of several nuclear-targeted drug delivery strategies, such as charge conversion, size ladder, dual targeting, light irradiation and stimulated responsive, for enhanced gene therapy, chemotherapy, phototherapy, combination therapy and CRISPE genome editing based therapy. • Recent advances of functional nanomaterials in cancer therapy are overviewed. • Many nuclear targeting ligands are introduced to understand nuclear entry mechanism. • The robust strategies are summarized to improve the nuclear delivery of nanocarriers. • Current challenges in the clinical applications and future perspectives are discussed. Nucleus, as the machinery for genome transcription, play prominent roles to support the fundamental cellular functions, the destruction of any of these specific parts would significantly modulate the cell function. Therefore, troumendous drug delivery systems with enhanced nucleus targeting ability have been studied for nucleus-related disease regulation. The purpose of this review is to sort out the fundamental nuclear targeting strategy, especially the active mechanism of various nuclear targeting ligands and their extensive applications based on cancer targeting therapy. Various nuclear targeting ligands are first introduced to understand their nuclear entry mechanism. Next, to overcome biological barriers and avoid the serum protein absorption, diverse robust delivery strategies based on different nuclear targeting ligands are discussed. Moreover, other sophisticated carrier systems with enhanced nuclear entry, while without nuclear targeting ligands are also assembled. At the end the challenges and future opportunities in the field of nuclear targeting nanotherapeutics are tentatively proposed, to speed up their clinical translation." @default.
- W4288461325 created "2022-07-29" @default.
- W4288461325 creator A5024179677 @default.
- W4288461325 creator A5030686271 @default.
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- W4288461325 creator A5049078993 @default.
- W4288461325 creator A5086547633 @default.
- W4288461325 creator A5090567275 @default.
- W4288461325 date "2022-09-01" @default.
- W4288461325 modified "2023-10-16" @default.
- W4288461325 title "Robust strategies in nuclear-targeted cancer therapy based on functional nanomaterials" @default.
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