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1Menthol-modified casein nanoparticles loading 10-hydroxycamptothecin for glioma targeting therapy显示文摘Chemotherapy outcomes for the treatment of glioma remains unsatisfactory due to the inefficient drug transport across the blood–brain barrier(BBB) and insufficient drug accumulation in the tumor region. Although many approaches, including various nanosystems, have been developed to promote the distribution of chemotherapeutics in the brain tumor, the delivery efficiency and the possible damage to the normal brain function still greatly restrict the clinical application of the nanocarriers.Therefore, it is urgent and necessary to discover more safe and effective BBB penetration and gliomatargeting strategies. In the present study, menthol, one of the strongest BBB penetration enhancers screened from traditional Chinese medicine, was conjugated to casein, a natural food protein with brain targeting capability. Then the conjugate self-assembled into the nanoparticles to load anti-cancer drugs.The nanoparticles were characterized to have appropriate size, spheroid shape and high loading drug capacity. Tumor spheroid penetration experiments demonstrated that penetration ability of mentholmodified casein nanoparticles(M-CA-NP) into the tumor were much deeper than that of unmodified nanoparticles. In vivo imaging further verified that M-CA-NPs exhibited higher brain tumor distribution than unmodified nanoparticles. The median survival time of glioma-bearing mice treated with HCPT-MCA-NPs was significantly prolonged than those treated with free HCPT or HCPT-CA-NPs. HE staining ofthe organs indicated the safety of the nanoparticles. Therefore, the study combined the advantages of traditional Chinese medicine strategy with modern delivery technology for brain targeting, and provide a safe and effective approach for glioma therapy.Caifang Gao Jianming Liang Ying Zhu Chengli Ling Zhekang Cheng Ruixiang Li Jing Qin Weigen Lu Jianxin Wang 2019Acta Pharmaceutica Sinica B2019,9,4:12
2Lipoic acid effects on established atherosclerosis显示文摘Zhekang Ying Nisharahmed Kherada Britten Farrar Thomas Kampfrath Yiucho Chung Orlando Simonetti Jeffrey Deiuliis Rajagopal Desikan Bobby Khan Frederick Villamena Qinghua Sun Sampath Parthasarathy Sanjay Rajagopalan 2009Life Sciences2009,,3:1
3Chronic Fine Particulate Matter Exposure Induces Systemic Vascular Dysfunction via NADPH Oxidase and TLR4 Pathways显示文摘Thomas Kampfrath Andrei Maiseyeu Zhekang Ying Zubair Shah Jeffrey A. Deiuliis Xiaohua Xu Nisharahmed Kherada Robert D. Brook Kongara M. Reddy Nitin P. Padture Sampath Parthasarathy Lung Chi Chen Susan Moffatt-Bruce Qinghua Sun Henning Morawietz Sanjay Raj 2011Circulation Research2011,,6:1
4Long-Term Dipeptidyl-Peptidase 4 Inhibition Reduces Atherosclerosis and Inflammation via Effects on Monocyte Recruitment and Chemotaxis显示文摘Zubair Shah Thomas Kampfrath Jeffrey A. Deiuliis Jixin Zhong Colleen Pineda Zhekang Ying Xiaohua Xu Bo Lu Susan Moffatt-Bruce Rekha Durairaj Qinghua Sun Georgeta Mihai Andrei Maiseyeu Sanjay Rajagopalan 2011Circulation2011,,21:1
5Reconfigurable logic circuit design for stateful Boolean logic computing显示文摘Dear editor,The conventional von Neumann computer system has the memory wall problem[1],which limits the computation speed and causes high energy and latency of the computing system.To realize computing systems able to process massive data and complex computing tasks with high efficiency,a key and viable approach is in-memory computing.Memristor-based stateful logic design is a promising candidate for realizing the in-memory logic computing[2].Li LUO Zhekang DONG Xiaofang HU Lidan WANG Shukai DUAN 2021Science China(Information Sciences)2021,64,8:0
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