中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Breaching the Hyaluronan Barrier with PH20-Fc Facilitates Intratumoral Permeation and Enhances Antitumor Efficiency: A Comparative Investigation of Typical Therapeutic Agents in Different Nanoscales

文献类型:期刊论文

作者Liu, Shan1,2; Wei, Wei1; Xie, Bo1; Yue, Hua1; Ni, Dezhi1,2; Bao, Yali1; Ma, Guanghui1,3; Su, Zhiguo G.1
刊名Advanced Healthcare Materials
出版日期2016-11-23
卷号5期号:22页码:2872-2881
关键词doxorubicin gold nanorods novel drug delivery systems trastuzumab tumor microenvironment and modification
ISSN号2192-2640
英文摘要

In contrast to traditional strategies based on external driving forces, an internal path for intratumoral delivery is explored by degrading the tumor microenvironment component hyaluronan. Natural hyaluronidase PH20 and constructed long-acting PH20-Fc have been used to achieve this objective. It has been then evaluated how these agents facilitate the diffusion of the following typical therapeutic agents varying in nanoscales: doxorubicin (approximate to 1.5 x 1.0 x 0.7 nm) chemotherapy, trastuzumab (10-15 nm) biotherapy, and gold nanorod (approximate to 100 x 35 nm) thermotherapy. In traditional 2D cultures, PH20 and PH20-Fc have little influence on cytotoxicity due to lack of a tumor microenvironment. However, the cytotoxicities of the three therapeutic agents in 3D tumor spheroids are all enhanced by PH20 or PH20-Fc because hyaluronan degradation facilitates therapeutic penetration and accumulation. Furthermore, in vivo evaluations reveal that the significantly prolonged circulation time of PH20-Fc leads to accumulation in the tumor and subsequent hyaluronan degradation. Consequently, PH20-Fc coadministration further inhibits tumor growth. The performance of PH20-Fc varies for the three therapeutic agents due to their different nanoscales. Trastuzumab benefits most from combination with PH20-Fc. The results provide here novel insights that can aid in the development of more effective hyaluronidase-based therapeutic systems.

WOS标题词Science & Technology ; Technology
类目[WOS]Engineering, Biomedical ; Nanoscience & Nanotechnology ; Materials Science, Biomaterials
研究领域[WOS]Engineering ; Science & Technology - Other Topics ; Materials Science
关键词[WOS]TUMOR INTERSTITIAL FLUID ; IN-VIVO ; EXTRACELLULAR-MATRIX ; DRUG-DELIVERY ; CANCER-CELLS ; SOLID TUMORS ; NANOPARTICLES ; PENETRATION ; MICROENVIRONMENT ; TISSUE
收录类别SCI
语种英语
WOS记录号WOS:000388999900004
源URL[http://ir.ipe.ac.cn/handle/122111/21824]  
专题过程工程研究所_生化工程国家重点实验室
作者单位1.Chinese Acad Sci, State Key Lab Biochem Engn, Inst Proc Engn, Beijing 100190, Peoples R China
2.Univ Chinese Acad Sci, Beijing 100049, Peoples R China
3.Jiangsu Natl Synerget Innovat Ctr Adv Mat SICAM, Nanjing 210009, Peoples R China
推荐引用方式
GB/T 7714
Liu, Shan,Wei, Wei,Xie, Bo,et al. Breaching the Hyaluronan Barrier with PH20-Fc Facilitates Intratumoral Permeation and Enhances Antitumor Efficiency: A Comparative Investigation of Typical Therapeutic Agents in Different Nanoscales[J]. Advanced Healthcare Materials,2016,5(22):2872-2881.
APA Liu, Shan.,Wei, Wei.,Xie, Bo.,Yue, Hua.,Ni, Dezhi.,...&Su, Zhiguo G..(2016).Breaching the Hyaluronan Barrier with PH20-Fc Facilitates Intratumoral Permeation and Enhances Antitumor Efficiency: A Comparative Investigation of Typical Therapeutic Agents in Different Nanoscales.Advanced Healthcare Materials,5(22),2872-2881.
MLA Liu, Shan,et al."Breaching the Hyaluronan Barrier with PH20-Fc Facilitates Intratumoral Permeation and Enhances Antitumor Efficiency: A Comparative Investigation of Typical Therapeutic Agents in Different Nanoscales".Advanced Healthcare Materials 5.22(2016):2872-2881.

入库方式: OAI收割

来源:过程工程研究所

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