自愈水凝胶
纳米颗粒
渗透(战争)
PLGA公司
生物物理学
药物输送
粘液
材料科学
纳米技术
化学
高分子化学
生态学
运筹学
工程类
生物
作者
Miaorong Yu,Lu Xu,Falin Tian,Qian Su,Nan Zheng,Yiwei Yang,Jiuling Wang,Aohua Wang,Chunliu Zhu,Shiyan Guo,Xinxin Zhang,Yong Gan,Xinghua Shi,Huajian Gao
标识
DOI:10.1038/s41467-018-05061-3
摘要
Abstract To optimally penetrate biological hydrogels such as mucus and the tumor interstitial matrix, nanoparticles (NPs) require physicochemical properties that would typically preclude cellular uptake, resulting in inefficient drug delivery. Here, we demonstrate that (poly(lactic-co-glycolic acid) (PLGA) core)-(lipid shell) NPs with moderate rigidity display enhanced diffusivity through mucus compared with some synthetic mucus penetration particles (MPPs), achieving a mucosal and tumor penetrating capability superior to that of both their soft and hard counterparts. Orally administered semi-elastic NPs efficiently overcome multiple intestinal barriers, and result in increased bioavailability of doxorubicin (Dox) (up to 8 fold) compared to Dox solution. Molecular dynamics simulations and super-resolution microscopy reveal that the semi-elastic NPs deform into ellipsoids, which enables rotation-facilitated penetration. In contrast, rigid NPs cannot deform, and overly soft NPs are impeded by interactions with the hydrogel network. Modifying particle rigidity may improve the efficacy of NP-based drugs, and can be applicable to other barriers.
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