Chitosan Based Self-Assembled Nanoparticles in Drug Delivery

被引:236
作者
Quinones, Javier Perez [1 ]
Peniche, Hazel [2 ]
Peniche, Carlos [3 ]
机构
[1] Johannes Kepler Univ Linz, Inst Polymer Chem, Altenberger Str 69, A-4040 Linz, Austria
[2] Univ La Habana, Centro Biomat, Ave Univ S-N Entre G & Ronda, Havana 10400, Cuba
[3] Univ La Habana, Fac Quim, Zapata S-N Entre G & Carlitos Aguirre, Havana 10400, Cuba
关键词
chitosan; self-assembled; polyelectrolyte complex; nanoparticle; drug delivery; POLYELECTROLYTE COMPLEX NANOPARTICLES; MODIFIED GLYCOL CHITOSAN; DEXTRAN SULFATE NANOPARTICLES; ACID-MODIFIED CHITOSAN; CONTROLLED-RELEASE; IN-VITRO; ALGINATE/CHITOSAN NANOPARTICLES; SODIUM ALGINATE; AGGREGATED NANOPARTICLES; 5-BETA-CHOLANIC ACID;
D O I
10.3390/polym10030235
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Chitosan is a cationic polysaccharide that is usually obtained by alkaline deacetylation of chitin poly(N-acetylglucosamine). It is biocompatible, biodegradable, mucoadhesive, and nontoxic. These excellent biological properties make chitosan a good candidate for a platform in developing drug delivery systems having improved biodistribution, increased specificity and sensitivity, and reduced pharmacological toxicity. In particular, chitosan nanoparticles are found to be appropriate for non-invasive routes of drug administration: oral, nasal, pulmonary and ocular routes. These applications are facilitated by the absorption-enhancing effect of chitosan. Many procedures for obtaining chitosan nanoparticles have been proposed. Particularly, the introduction of hydrophobic moieties into chitosan molecules by grafting to generate a hydrophobic-hydrophilic balance promoting self-assembly is a current and appealing approach. The grafting agent can be a hydrophobic moiety forming micelles that can entrap lipophilic drugs or it can be the drug itself. Another suitable way to generate self-assembled chitosan nanoparticles is through the formation of polyelectrolyte complexes with polyanions. This paper reviews the main approaches for preparing chitosan nanoparticles by self-assembly through both procedures, and illustrates the state of the art of their application in drug delivery.
引用
收藏
页数:32
相关论文
共 192 条
[161]   Alginate polycation microcapsules .1. Interaction between alginate and polycation [J].
Thu, B ;
Bruheim, P ;
Espevik, T ;
Smidsrod, O ;
SoonShiong, P ;
SkjakBraek, G .
BIOMATERIALS, 1996, 17 (10) :1031-1040
[162]   Formulation and characterization of amphotericin B-chitosan-dextran sulfate nanoparticles [J].
Tiyaboonchai, Waree ;
Limpeanchob, Nanteetip .
INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2007, 329 (1-2) :142-149
[163]   Chitosan-gadopentetic acid complex nanoparticles for gadolinium neutron-capture therapy of cancer: Preparation by novel emulsion-droplet coalescence technique and characterization [J].
Tokumitsu, H ;
Ichikawa, H ;
Fukumori, Y .
PHARMACEUTICAL RESEARCH, 1999, 16 (12) :1830-1835
[164]   Antitumor Efficacy of Doxorubicin Released from Crosslinked Nanoparticulate Chondroitin Sulfate/Chitosan Polyelectrolyte Complexes [J].
Tsai, Hun-Yu ;
Chiu, Chien-Chih ;
Lin, Ping-Chih ;
Chen, Su-Hwei ;
Huang, Shih-Jer ;
Wang, Li-Fang .
MACROMOLECULAR BIOSCIENCE, 2011, 11 (05) :680-688
[165]   Evaluation of chitosan/γ-poly(glutamic acid) polyelectrolyte complex for wound dressing materials [J].
Tsao, Ching Ting ;
Chang, Chih Hao ;
Lin, Yu Yung ;
Wu, Ming Fung ;
Wang, Jaw Lin ;
Young, Tai Horng ;
Han, Jin Lin ;
Hsieh, Kuo Haung .
CARBOHYDRATE POLYMERS, 2011, 84 (02) :812-819
[166]   FORMATION OF INTERPOLYMER COMPLEXES [J].
TSUCHIDA, E ;
OSADA, Y ;
OHNO, H .
JOURNAL OF MACROMOLECULAR SCIENCE-PHYSICS, 1980, B17 (04) :683-714
[167]   Design of chondroitin sulfate-based polyelectrolyte nanoplexes: Formation of nanocarriers with chitosan and a case study of salmon calcitonin [J].
Umerska, Anita ;
Corrigan, Owen I. ;
Tajber, Lidia .
CARBOHYDRATE POLYMERS, 2017, 156 :276-284
[168]  
Wang H., 2017, AM J POLYM SCI TECHN, V3, P82, DOI DOI 10.11648/J.AJPST.20170305.11
[169]   Effect of Experimental Parameters on the Formation of Chitosan-Poly(acrylic acid) Nanofibrous Scaffolds and Evaluation of their Potential Application as DNA Carrier [J].
Wang, Jian-Wen ;
Chen, Ching-Yi ;
Kuo, Yi-Ming .
JOURNAL OF APPLIED POLYMER SCIENCE, 2010, 115 (03) :1769-1780
[170]   Mechanism of surface charge triggered intestinal epithelial tight junction opening upon chitosan nanoparticles for insulin oral delivery [J].
Wang, Juan ;
Kong, Ming ;
Zhou, Zhenjin ;
Yan, Dong ;
Yu, Xiaoping ;
Cheng, Xiaojie ;
Feng, Chao ;
Liu, Ya ;
Chen, Xiguang .
CARBOHYDRATE POLYMERS, 2017, 157 :596-602