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https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4854254/
Apr 27, 2016 · Hydrophilic mesoporous carbon nanospheres with high drug-loading efficiency for doxorubicin delivery and cancer therapy Huan Wang , 1, 2, * Xiangui Li , 1, * Zhiqiang Ma , 1 Dan Wang , 3 Linzhao Wang , 1, 2 Jieqiong Zhan , 1, 4 Lan She , 1 and Feng Yang 1Author: Huan Wang, Xiangui Li, Zhiqiang Ma, Dan Wang, Linzhao Wang, Jieiqiong Zhan, Lan She, Feng Yang
https://www.sciencedirect.com/science/article/pii/S0928493119335350
1. Introduction. Controlled and targeted drug delivery systems have been widely noticed for the medical applications [].There are various nanocarriers that have been developed for controlled drug delivery systems [, , , , , , , , , , , ].In the last few years, the mesoporous carbon spheres and hollow mesoporous carbon spheres have received much attention in various applications since they have ...Author: Shadi Asgari, Ali Pourjavadi, Seyed Hassan Hosseini, Shima Kadkhodazadeh
https://www.sciencedirect.com/science/article/pii/S0008622317305420
We construct a novel amine-coated hollow carbon nanospheres (HCNs), which serve as a versatile platform for co-delivery of siRNA and chemotherapeutics (DOX or Cis) to fight drug-resistant cancers.The nanostructures exhibit enhanced nucleic acid and chemotherapeutics delivery, effective gene regulation, and synergistically inhibit drug-resistant cancers in vitro and in vivo.Author: Lingmin Zhang, Xinglong Yang, Ying Li, Wenfu Zheng, Xingyu Jiang, Xingyu Jiang
https://onlinelibrary.wiley.com/doi/full/10.1002/anie.201402002
Apr 24, 2014 · Dual‐Pore Mesoporous Carbon@Silica Composite Core–Shell Nanospheres for Multidrug Delivery † Yin Fang Department of Chemistry and Shanghai Key Lab of Molecular Catalysis and Innovative Materials, State Key Laboratory of Molecular Engineering of Polymers and Advanced Materials Laboratory, Fudan University, Shanghai 200433 (P.R. China)Author: Yin Fang, Gengfeng Zheng, Jianping Yang, Haosha Tang, Yafeng Zhang, Biao Kong, Yingying Lv, Congjian...
http://onlinelibrary.wiley.com/doi/10.1002/ange.201402002/full
May 14, 2014 · Dual-Pore Mesoporous Carbon@Silica Composite Core–Shell Nanospheres for Multidrug Delivery ... , Hongliang Zhang, Aibing Chen, Fe3O4 modified mesoporous carbon nanospheres: Magnetically separable adsorbent ... selective functionalization of hierarchically porous silica nanospheres for improved multi-drug delivery, Chemistry of ...
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2527668/
Nanoparticles and drug delivery. Drug delivery and related pharmaceutical development in the context of nanomedicine should be viewed as science and technology of nanometer scale complex systems (10–1000 nm), consisting of at least two components, one of which is a pharmaceutically active ingredient (Duncan 2003; Ferrari 2005), although nanoparticle formulations of the drug itself are also ...Author: Wim H De Jong, Paul Ja Borm
https://pubs.rsc.org/en/content/articlelanding/2015/cc/c5cc01759a
Nowadays, carbon nanospheres are attracting more and more attention worldwide due to their excellent performance in various fields: drug delivery, heterogeneous catalysis, encapsulation of support and electrode materials. Actually, spherical carbon is an old material, whereas controlling carbon spheres in the nanometer range is a recent story.Author: Pengfei Zhang, Zhen-An Qiao, Sheng Dai, Sheng Dai
https://www.dovepress.com/hydrophilic-mesoporous-carbon-nanospheres-with-high-drug-loading-effic-peer-reviewed-fulltext-article-IJN
Hydrophilic mesoporous carbon nanospheres with high drug-loading efficiency for doxorubicin delivery and cancer therapy Huan Wang,1,2,* Xiangui Li,1,* Zhiqiang Ma,1 Dan Wang,3 Linzhao Wang,1,2 Jieqiong Zhan,1,4 Lan She,1 Feng Yang1 1Department of Inorganic Chemistry, School of Pharmacy, Second Military Medical University, Shanghai, 2Department of Pharmacy, Fujian University of …
https://www.osti.gov/pages/biblio/1234994
Nowadays, carbon nanospheres are attracting more and more attention worldwide due to their excellent performance in various fields: drug delivery, heterogeneous catalysis, encapsulation of support and electrode materials.
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