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Journal of Zhejiang University SCIENCE B

ISSN 1673-1581(Print), 1862-1783(Online), Monthly

Hyaluronic acid derivative-modified nano-structured lipid carrier for cancer targeting and therapy

Abstract: To reduce the problems of poor solubility, high in vivo dosage requirement, and weak targeting ability of paclitaxel (PTX), a hyaluronic acid-octadecylamine (HA-ODA)-modified nano-structured lipid carrier (HA-NLC) was constructed. HA-ODA conjugates were synthesized by an amide reaction between HA and ODA. The hydrophobic chain of HA-ODA can be embedded in the lipid core of the NLC to obtain HA-NLC. The HA-NLC displayed strong internalization in cluster determinant 44 (CD44) highly expressed MCF-7 cells, and endocytosis mediated by the CD44 receptor was involved. The HA-NLC had an encapsulation efficiency of PTX of 72.0%. The cytotoxicity of the PTX-loaded nanoparticle HA-NLC/PTX in MCF-7 cells was much stronger than that of the commercial preparation Taxol®. In vivo, the HA-NLC exhibited strong tumor targeting ability. The distribution of the NLCs to the liver and spleen was reduced after HA modification, while more nanoparticles were aggregated to the tumor site. Our results suggest that HA-NLC has excellent properties as a nano drug carrier and potential for in vivo targeting.

Key words: Paclitaxel (PTX); Hyaluronic acid-octadecylamine (HA-ODA); Nano-structured lipid carrier (NLC); Tumor targeting; In vivo distribution

Chinese Summary  <20> 透明质酸衍生物修饰脂质纳米载体的抗肿瘤作用及体内靶向研究

关键词组:紫杉醇;透明质酸-硬脂胺;纳米结构脂质载体;肿瘤靶向;体内分布


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DOI:

10.1631/jzus.B1900624

CLC number:

R94; TB383

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On-line Access:

2020-07-07

Received:

2019-12-08

Revision Accepted:

2020-03-20

Crosschecked:

2020-06-05

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