Different applications of temperature responsive nanogels as a new drug delivery system mini review

被引:12
作者
Sam, Reyhaneh [1 ,2 ]
Kermani, Mahsan Divanbeigi [1 ]
Ohadi, Mandana [3 ]
Salarpour, Soodeh [2 ,3 ]
Dehghannoudeh, Gholamreza [2 ,3 ]
机构
[1] Kerman Univ Med Sci, Student Res Comm, Kerman, Iran
[2] Kerman Univ Med Sci, Fac Pharm, Dept Pharmaceut, Kerman, Iran
[3] Kerman Univ Med Sci, Inst Neuropharmacol, Pharmaceut Res Ctr, Kerman, Iran
关键词
Nanogels; temperature responsive; drug delivery system; cancer therapy; tissue repair; MESOPOROUS BIOACTIVE GLASS; BONE REGENERATION; HYBRID HYDROGELS; IN-VITRO; RELEASE; SCAFFOLDS; EFFICACY; SKIN;
D O I
10.1080/10837450.2023.2209796
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Temperature-sensitive drug delivery systems (TSDDS) are one of the systems that have received more attention in medical science these days due to their advantages. As these systems are sensitive to temperature, drug delivery to the target becomes more specific. Temperature-sensitive nanogels have many applications, including microbial infections, cancer therapy, transdermal use, and tissue repair. These systems are characterized by minimal toxicity, improved therapeutic efficacy, and reduced exposure to normal cells. This mini-review is prepared with different types of temperature-sensitive nanogel formation, release mechanisms, and their different applications. Various systems reported under these categories for targeted and controlled delivery of different classes of drugs, such as anti-cancer and antibiotic drugs with special emphasis on anti-cancer drugs and tissue healing, are discussed in this mini-review.
引用
收藏
页码:492 / 500
页数:9
相关论文
共 50 条
[31]   Biopolymer-based microgels/nanogels for drug delivery applications [J].
Oh, Jung Kwon ;
Lee, Do Ik ;
Park, Jong Myung .
PROGRESS IN POLYMER SCIENCE, 2009, 34 (12) :1261-1282
[32]   Hybrid Nanogels: Stealth and Biocompatible Structures for Drug Delivery Applications [J].
Eslami, Parisa ;
Rossi, Filippo ;
Fedeli, Stefano .
PHARMACEUTICS, 2019, 11 (02)
[33]   Tumor Microenvironment-Responsive Polypeptide Nanogels for Controlled Antitumor Drug Delivery [J].
Liu, Yanhong ;
Chen, Linjiao ;
Shi, Qingyang ;
Zhao, Qing ;
Ma, Hongshuang .
FRONTIERS IN PHARMACOLOGY, 2021, 12
[34]   ATP responsive DNA nanogels grown on biocompatible branches for anticancer drug delivery [J].
Zhao, Meihui ;
Zhang, Yu ;
Yuan, Shirui ;
Xu, Xiang ;
Wu, Ziheng ;
Wu, Zhenghong ;
Qi, Xiaole .
SOFT MATTER, 2019, 15 (18) :3655-3658
[35]   Nanogels as target drug delivery systems in cancer therapy: A review of the last decade [J].
Attama, Anthony A. ;
Nnamani, Petra O. ;
Onokala, Ozioma B. ;
Ugwu, Agatha A. ;
Onugwu, Adaeze L. .
FRONTIERS IN PHARMACOLOGY, 2022, 13
[36]   SYNTHESIS AND CHARACTERISATIONS OF TEMPERATURE-RESPONSIVE DRUG DELIVERY HYDROGEL FOR MEDICAL APPLICATIONS [J].
Lin, Wei Chih ;
Kotsuchibashi, Yohei ;
Liou, Sin Han .
2017 19TH INTERNATIONAL CONFERENCE ON SOLID-STATE SENSORS, ACTUATORS AND MICROSYSTEMS (TRANSDUCERS), 2017, :1406-1409
[37]   Redox/pH dual-stimuli responsive camptothecin prodrug nanogels for "on-demand" drug delivery [J].
Qu, Ying ;
Chu, Bingyang ;
Wei, Xiawei ;
Lei, Minyi ;
Hu, Danrong ;
Zha, Ruoyu ;
Zhong, Lin ;
Wang, Mengyao ;
Wang, Fangfang ;
Qian, Zhiyong .
JOURNAL OF CONTROLLED RELEASE, 2019, 296 (93-106) :93-106
[38]   Platinum-Coordinated Dual-Responsive Nanogels for Universal Drug Delivery and Combination Cancer Therapy [J].
Duan, Qiu-Yi ;
Zhu, Ya-Xuan ;
Jia, Hao-Ran ;
Guo, Yuxin ;
Zhang, Xinping ;
Gu, Ruihan ;
Li, Chengcheng ;
Wu, Fu-Gen .
SMALL, 2022, 18 (46)
[39]   Near-Infrared Light-Responsive Core-Shell Nanogels for Targeted Drug Delivery [J].
Kang, Huaizhi ;
Trondoli, Anna Carolina ;
Zhu, Guizhi ;
Chen, Yan ;
Chang, Ya-Jen ;
Liu, Haipeng ;
Huang, Yu-Fen ;
Zhang, Xiaoling ;
Tan, Weihong .
ACS NANO, 2011, 5 (06) :5094-5099
[40]   Review on Different Vesicular Drug Delivery Systems (VDDSs) and Their Applications [J].
Alenzi, Asma M. ;
Albalawi, Sana A. ;
Alghamdi, Shatha G. ;
Albalawi, Rawan F. ;
Albalawi, Hadeel S. ;
Qushawy, Mona .
RECENT PATENTS ON NANOTECHNOLOGY, 2023, 17 (01) :18-32