Cyclodextrin nanosponges based site-retentive controlled release system for treatment of rheumatic arthritis

被引:8
|
作者
Banjare, Nagma [1 ,2 ]
Gautam, Laxmikant [1 ]
Behera, Chittaranjan [2 ]
Gupta, Prem N. [2 ]
Vyas, Sonal [3 ]
Vyas, Suresh P. [1 ]
机构
[1] Dr Hari Singh Gour Vishwavidyalaya, Dept Pharmaceut Sci, Drug Delivery Res Lab, Sagar 470003, MP, India
[2] Indian Inst Integrat Med, CSIR, Formulat & Drug Delivery Div, Canal Rd, Jammu 180001, India
[3] Bundelkhand Med Coll, Sagar 470001, MP, India
关键词
Rheumatoid arthritis; Methotrexate; Nanosponges; Nanogel; RAW; 264.7; cell; Intra-articular; CELL-MIGRATION; METHOTREXATE; NANOPARTICLES; DELIVERY; INCLUSION; BIOAVAILABILITY; FORMULATION; EXPRESSION; INHIBITOR; HYDROGELS;
D O I
10.1016/j.jddst.2020.101973
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Rheumatoid arthritis (RA) is an autoimmune disorder characterized by chronic inflammatory disease of joints. Methotrexate (MTX) is the choice of drug in the treatment of RA due to its prominent immunosuppressant effect and anti-inflammatory effect via an increase in cyclic adenosine monophospate (cAMP) and adenosine-based activity. Our study investigated the local effect of MTX loaded nanosponges in the gel (nanogel) which could be of potential for solubility enhancement, prolonged drug release and retention time, reduced systemic adverse effect, and enhanced anti-arthritic activity. MTX loaded beta-cyclodextrin based nanosponges (MTX-NS) were successfully prepared and characterized by FTIR and NMR. Prepared MTX-NS was evaluated for drug loading, particle size, and morphology. Subsequently, MTX-NS was formulated in a gel-based system, which was evaluated for gelation time, gelation temperature, in-vitro cell line study, and in-vitro drug release. A sustained drug release profile was observed with the developed nanogel. The cell viability of the MTX-NS and nanogel was determined in macrophage cells (RAW264.7) which indicated that nanogel was found to be effective and safe compared to MTX-NS and MTX. The scratch assay indicated that cell migration was significantly inhibited with MTX-NS. Further, the in-vivo study of nanogel was performed using Freund's complete adjuvant-induced inflammation model that confirms the superior anti-arthritic activity of the developed formulation.
引用
收藏
页数:10
相关论文
共 50 条
  • [21] Design, synthesis, and in vitro evaluation of new amphiphilic cyclodextrin-based nanoparticles for the incorporation and controlled release of acyclovir
    Perret, Florent
    Duffour, Marine
    Chevalier, Yves
    Parrot-Lopez, Helene
    EUROPEAN JOURNAL OF PHARMACEUTICS AND BIOPHARMACEUTICS, 2013, 83 (01) : 25 - 32
  • [22] Application of starch-based nanoparticles and cyclodextrin for prebiotics delivery and controlled glucose release in the human gut: a review
    Liu, Yuwan
    Qiu, Chao
    Li, Xiaojing
    McClements, David Julian
    Wang, Chenxi
    Zhang, Zhiheng
    Jiao, Aiquan
    Long, Jie
    Zhu, Kunfu
    Wang, Jinpeng
    Jin, Zhengyu
    CRITICAL REVIEWS IN FOOD SCIENCE AND NUTRITION, 2023, 63 (23) : 6126 - 6137
  • [23] Cyclodextrin mediated controlled release of edaravone from pH-responsive sodium alginate and chitosan based nanocomposites
    Khushbu
    Jindal, Rajeev
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2022, 202 : 11 - 25
  • [24] In Vivo Evaluation of a Novel Chitosan-Polycaprolactone Based Mucoadhesive Gastro-Retentive Sustained Release Drug Delivery System for Milnacipran HCl
    Hussain, Talib
    Ijaz, Muhammad
    Shamim, Rahat
    Hussain, Khalid
    Abbas, Nasir
    Hussain, Amjad
    Griessinger, Julia Anita
    Bukhari, Nadeem Irfan
    AAPS PHARMSCITECH, 2020, 21 (02)
  • [25] Polysaccharide supramolecular hydrogel microparticles based on carboxymethyl β-cyclodextrin/chitosan complex and EDTA-chitosan for controlled release of protein drugs
    Zhang, WeiCong
    Wang, Ying
    Guo, Juan
    Huang, Chao
    Hu, Yong
    POLYMER BULLETIN, 2022, 79 (08) : 6087 - 6097
  • [26] Controlled drug release system based on cyclodextrin-conjugated poly(lactic acid)-b-poly(ethylene glycol) micelles
    He, Qin
    Wu, Wei
    Xiu, Kemao
    Zhang, Qian
    Xu, Fujian
    Li, Jianshu
    INTERNATIONAL JOURNAL OF PHARMACEUTICS, 2013, 443 (1-2) : 110 - 119
  • [27] Structure-Based Gastro-Retentive and Controlled-Release Drug Delivery with Novel 3D Printing
    Wen, Haoyang
    He, Bosai
    Wang, Haoyu
    Chen, Fen
    Li, Pingfei
    Cui, Mengsuo
    Li, Qijun
    Pan, Weisan
    Yang, Xinggang
    AAPS PHARMSCITECH, 2019, 20 (02)
  • [28] Based on functional materials and PLGA for the florfenicol controlled release system and its antibacterial properties
    Xie, Xiaodong
    Li, Shuqi
    Liu, Yanling
    Huang, Zhigang
    Yi, Jun
    Li, Xiaofang
    Gao, Chongkai
    Wu, Fang
    Guo, Bohong
    REACTIVE & FUNCTIONAL POLYMERS, 2022, 178
  • [29] Novel controlled drug release system engineered with inclusion complexes based on carboxylic graphene
    Xiao, Yinghong
    Zhang, Ming
    Fan, Yunting
    Zhang, Qicheng
    Wang, Yuli
    Yuan, Wenwen
    Zhou, Ninglin
    Che, Jianfei
    COLLOIDS AND SURFACES B-BIOINTERFACES, 2019, 175 : 18 - 25
  • [30] The effectiveness and safety of Tripterygium wilfordii glycosides combined with disease-modifying anti-rheumatic drugs in the treatment of rheumatoid arthritis: A systematic review and meta-analysis of 40 randomized controlled trials
    Zheng, Wenhao
    Mei, Yifan
    Chen, Chunhui
    Cai, Leyi
    Chen, Hua
    PHYTOTHERAPY RESEARCH, 2021, 35 (06) : 2902 - 2924