1,734
Views
36
CrossRef citations to date
0
Altmetric
Research Article

Design of novel multifunctional targeting nano-carrier drug delivery system based on CD44 receptor and tumor microenvironment pH condition

, , , , , , , , & show all
Pages 798-803 | Received 27 Mar 2014, Accepted 17 Apr 2014, Published online: 03 Jun 2014

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

Chunjing Guo, Wei Zhang, Qiaoyun Zhang, Yanguo Su, Xiaoya Hou, Qiang Chen, Huimin Guo, Ming Kong & Daquan Chen. (2023) Novel dual CAFs and tumour cell targeting pH and ROS dual sensitive micelles for targeting delivery of paclitaxel to liver cancer. Artificial Cells, Nanomedicine, and Biotechnology 51:1, pages 170-179.
Read now
Chunjing Guo, Yanguo Su, Bingjie Wang, Qiang Chen, Huimin Guo, Ming Kong & Daquan Chen. (2022) Novel polysaccharide building hybrid nanoparticles: remodelling TAMs to target ERα-positive breast cancer. Journal of Drug Targeting 30:4, pages 450-462.
Read now
Yachao Ren, Bingchuan Yuan, Shenghua Hou, Yilei Sui, Tinghui Yang, Meilin Lv, Yulong Zhou, Hui Yu, Sen Li, Haisheng Peng, Naidan Chang & Yang Liu. (2021) Delivery of RGD-modified liposome as a targeted colorectal carcinoma therapy and its autophagy mechanism. Journal of Drug Targeting 29:8, pages 863-874.
Read now
Bingjie Wang, Wei Zhang, Xiudi Zhou, Mengna Liu, Xiaoya Hou, Ziting Cheng & Daquan Chen. (2019) Development of dual-targeted nano-dandelion based on an oligomeric hyaluronic acid polymer targeting tumor-associated macrophages for combination therapy of non-small cell lung cancer. Drug Delivery 26:1, pages 1265-1279.
Read now
Mengna Liu, Bingjie Wang, Chunjing Guo, Xiaoya Hou, Ziting Cheng & Daquan Chen. (2019) Novel multifunctional triple folic acid, biotin and CD44 targeting pH-sensitive nano-actiniaes for breast cancer combinational therapy. Drug Delivery 26:1, pages 1002-1016.
Read now
Rasha A. Khallaf, Heba F. Salem & Ahmed Abdelbary. (2016) 5-Fluorouracil shell-enriched solid lipid nanoparticles (SLN) for effective skin carcinoma treatment. Drug Delivery 23:9, pages 3452-3460.
Read now
Yueling Yuan, Tiange Cai, Xi Xia, Ronghua Zhang, Peter Chiba & Yu Cai. (2016) Nanoparticle delivery of anticancer drugs overcomes multidrug resistance in breast cancer. Drug Delivery 23:9, pages 3350-3357.
Read now
Yachao Ren, Yu Mu, Yanping Song, Jinxin Xie, Hui Yu, Sainan Gao, Sen Li, Haisheng Peng, Yulong Zhou & Weiyue Lu. (2016) A new peptide ligand for colon cancer targeted delivery of micelles. Drug Delivery 23:5, pages 1763-1772.
Read now
Daquan Chen, Jingfang Sun, Kaoxiang Sun, Wanhui Liu & Zimei Wu. (2016) In vivo evaluation of novel ketal-based oligosaccharides of hyaluronan micelles as multifunctional CD44 receptor-targeting and tumor pH-responsive carriers. Artificial Cells, Nanomedicine, and Biotechnology 44:3, pages 898-902.
Read now
Zhi Fang, Lin-Yan Wan, Liang-Yin Chu, Yan-Qiong Zhang & Jiang-Feng Wu. (2015) ‘Smart’ nanoparticles as drug delivery systems for applications in tumor therapy. Expert Opinion on Drug Delivery 12:12, pages 1943-1953.
Read now

Articles from other publishers (26)

Simona Serini, Sonia Trombino, Federica Curcio, Roberta Sole, Roberta Cassano & Gabriella Calviello. (2023) Hyaluronic Acid-Mediated Phenolic Compound Nanodelivery for Cancer Therapy. Pharmaceutics 15:6, pages 1751.
Crossref
Xiudi Zhou, Qiang Chen, Chunjing Guo, Yanguo Su, Huimin Guo, Min Cao, Zhongxin Liu, Dandan Zhang, Ningning Diao, Huaying Fan & Daquan Chen. (2022) CD44 Receptor-Targeted and Reactive Oxygen Species-Responsive H 2 S Donor Micelles Based on Hyaluronic Acid for the Therapy of Renal Ischemia/Reperfusion Injury . ACS Omega 7:46, pages 42339-42346.
Crossref
Manuela Curcio, Orazio Vittorio, Jessica Lilian Bell, Francesca Iemma, Fiore Pasquale Nicoletta & Giuseppe Cirillo. (2022) Hyaluronic Acid within Self-Assembling Nanoparticles: Endless Possibilities for Targeted Cancer Therapy. Nanomaterials 12:16, pages 2851.
Crossref
Tong-Xin Zong, Ariane Pandolfo Silveira, José Athayde Vasconcelos Morais, Marina Carvalho Sampaio, Luis Alexandre Muehlmann, Juan Zhang, Cheng-Shi Jiang & Shan-Kui Liu. (2022) Recent Advances in Antimicrobial Nano-Drug Delivery Systems. Nanomaterials 12:11, pages 1855.
Crossref
Samuel Bonnet, Rana Elfatairi, Florence Franconi, Emilie Roger & Samuel Legeay. (2021) Organic nanoparticle tracking during pharmacokinetic studies. Nanomedicine 16:28, pages 2539-2536.
Crossref
Fátima Fernández-Álvarez, Gracia García-García & José L. Arias. (2021) A Tri-Stimuli Responsive (Maghemite/PLGA)/Chitosan Nanostructure with Promising Applications in Lung Cancer. Pharmaceutics 13:8, pages 1232.
Crossref
Chunjing Guo, Xiaoya Hou, Yanhui Liu, Yanchun Zhang, Haiyu Xu, Feng Zhao & Daquan Chen. (2021) Novel Chinese Angelica Polysaccharide Biomimetic Nanomedicine to Curcumin Delivery for Hepatocellular Carcinoma Treatment and Immunomodulatory Effect. Phytomedicine 80, pages 153356.
Crossref
Xuejun Jiang, Mei Lin, Jianwen Huang, Mulan Mo, Houhe Liu, Yuan Jiang, Xiaowen Cai, Wingnang Leung & Chuanshan Xu. (2020) Smart Responsive Nanoformulation for Targeted Delivery of Active Compounds From Traditional Chinese Medicine. Frontiers in Chemistry 8.
Crossref
Elwira Lasoń. (2020) Topical Administration of Terpenes Encapsulated in Nanostructured Lipid-Based Systems. Molecules 25:23, pages 5758.
Crossref
Ziting Cheng, Hua Lin, Zhen Wang, Xiaoyu Yang, Mei Zhang, Xuechun Liu, Bingjie Wang, Zhenfeng Wu & Daquan Chen. (2020) Preparation and characterization of dissolving hyaluronic acid composite microneedles loaded micelles for delivery of curcumin. Drug Delivery and Translational Research 10:5, pages 1520-1530.
Crossref
Tingting Wang, Di Zhang, Dong Sun & Jingkai Gu. (2020) Current status of in vivo bioanalysis of nano drug delivery systems. Journal of Pharmaceutical Analysis 10:3, pages 221-232.
Crossref
Zhen Wang, Jinhua Hu, Jiakang Yu & Daquan Chen. (2020) Preparation and Characterization of Nano-Laponite/PLGA Composite Scaffolds for Urethra Tissue Engineering. Molecular Biotechnology 62:3, pages 192-199.
Crossref
Erandi Munasinghe, Maheshi Aththapaththu & Lakmal Jayarathne. 2020. Colloid Science in Pharmaceutical Nanotechnology. Colloid Science in Pharmaceutical Nanotechnology.
Yue Yang, Jinyu Li, Fen Chen, Sen Qiao, Yunjian Li & Weisan Pan. (2019) Synthesis, Formulation, and Characterization of Doxorubicin-Loaded Laponite/Oligomeric Hyaluronic Acid-Aminophenylboronic Acid Nanohybrids and Cytological Evaluation against MCF-7 Breast Cancer Cells. AAPS PharmSciTech 21:1.
Crossref
Yueming Yu, Bingjie Wang, Chunjing Guo, Feng Zhao & Daquan Chen. (2019) Protoporphyrin IX-loaded laminarin nanoparticles for anticancer treatment, their cellular behavior, ROS detection, and animal studies. Nanoscale Research Letters 14:1.
Crossref
Zhijun Liu, Pengyun Huang, Siukan Law, Haiyan Tian, Wingnang Leung & Chuanshan Xu. (2018) Preventive Effect of Curcumin Against Chemotherapy-Induced Side-Effects. Frontiers in Pharmacology 9.
Crossref
Shahzeb Khan, Muhammad Imran, Tariq Tahir Butt, Syed Wadood Ali Shah, Muhammad Sohail, Arif Malik, Srijit Das, Hnin Ei Thu, Aishah Adam & Zahid Hussain. (2018) Curcumin based nanomedicines as efficient nanoplatform for treatment of cancer: New developments in reversing cancer drug resistance, rapid internalization, and improved anticancer efficacy. Trends in Food Science & Technology 80, pages 8-22.
Crossref
Chunjing Guo, Jungang Yin & Daquan Chen. (2018) Co-encapsulation of curcumin and resveratrol into novel nutraceutical hyalurosomes nano-food delivery system based on oligo-hyaluronic acid-curcumin polymer. Carbohydrate Polymers 181, pages 1033-1037.
Crossref
Daquan Chen, Xiaoyan Song, Kaili Wang, Chunjing Guo, Yueming Yu, Huaying Fan & Feng Zhao. (2017) Design and evaluation of dual CD44 receptor and folate receptor-targeting double-smart pH-response multifunctional nanocarrier. Journal of Nanoparticle Research 19:12.
Crossref
Ahad Mokhtarzadeh, Soodabeh Hassanpour, Zahra Farajzadeh Vahid, Maryam Hejazi, Maryam Hashemi, Javad Ranjbari, Maryam Tabarzad, Saeed Noorolyai & Miguel de la Guardia. (2017) Nano-delivery system targeting to cancer stem cell cluster of differentiation biomarkers. Journal of Controlled Release 266, pages 166-186.
Crossref
Lydia Ramzy, Maha Nasr, Abdelkader A. Metwally & Gehanne A.S. Awad. (2017) Cancer nanotheranostics: A review of the role of conjugated ligands for overexpressed receptors. European Journal of Pharmaceutical Sciences 104, pages 273-292.
Crossref
Haseeb Zubair, Shafquat Azim, Aamir Ahmad, Mohammad Khan, Girijesh Patel, Seema Singh & Ajay Singh. (2017) Cancer Chemoprevention by Phytochemicals: Nature’s Healing Touch. Molecules 22:3, pages 395.
Crossref
Ruizhi Wang, Yu Luo, Shuohui Yang, Jiang Lin, Dongmei Gao, Yan Zhao, Jinguo Liu, Xiangyang Shi & Xiaolin Wang. (2016) Hyaluronic acid-modified manganese-chelated dendrimer-entrapped gold nanoparticles for the targeted CT/MR dual-mode imaging of hepatocellular carcinoma. Scientific Reports 6:1.
Crossref
Jijin Gu, Xinyi Chen, Xiaoqing Ren, Xiulei Zhang, Xiaoling Fang & Xianyi Sha. (2016) CD44-Targeted Hyaluronic Acid-Coated Redox-Responsive Hyperbranched Poly(amido amine)/Plasmid DNA Ternary Nanoassemblies for Efficient Gene Delivery. Bioconjugate Chemistry 27:7, pages 1723-1736.
Crossref
Murali M. Yallapu, Prashanth K. Bhusetty Nagesh, Meena Jaggi & Subhash C. Chauhan. (2015) Therapeutic Applications of Curcumin Nanoformulations. The AAPS Journal 17:6, pages 1341-1356.
Crossref
Daquan Chen, Guohua Wang, Weiguo Song & Qiang Zhang. (2015) Novel CD44 receptor targeting multifunctional “nano-eggs” based on double pH-sensitive nanoparticles for co-delivery of curcumin and paclitaxel to cancer cells and cancer stem cells. Journal of Nanoparticle Research 17:10.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.