Tamarind/β-CD-g-poly (MAA) pH responsive hydrogels for controlled delivery of Capecitabine: fabrication, characterization, toxicological and pharmacokinetic evaluation

被引:0
作者
Umaira Rehman
Rai Muhammad Sarfraz
Asif Mahmood
Tahir Mahmood
Nighat Batool
Bilal Haroon
Yacine Benguerba
机构
[1] University of Sargodha,Department of Pharmaceutics, College of Pharmacy
[2] University of Chakwal,Department of Pharmacy
[3] Laboratoire de Biopharmacie Et Pharmacotechnie (LBPT),undefined
来源
Journal of Polymer Research | 2023年 / 30卷
关键词
Controlled delivery; pH responsive; Hydrogels; Pharmacokinetic; Half life;
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学科分类号
摘要
The present study was aimed for controlled delivery of capecitabine, an anticancer drug used to treat colorectal cancer. Smart pH responsive tamarind/-CD-g-poly (MAA) hydrogels were developed using the free radical polymerization process to overcome the constraints of capecitabine such as short plasma half-life, low bioavailability, and high dose frequency. The developed network system was evaluated for different characterizations including equilibrium swelling (%), drug loading efficiency (%), thermal behavior, elemental composition, morphology, complexation of components and release kinetics. Furthermore, safety profile of developed network was validated by acute oral toxicity studies and pharmacokinetic parameters were determined by carrying in-vivo studies in healthy rabbits. The grafted system proved to be thermally stable as confirmed by DSC and TGA analysis. While successful grafting, compatibility of hydrogel components and amorphous dispersion of drug within the network were shown by FTIR analysis and XRD studies. Significantly higher swelling and drug release were observed at pH 7.4 than at pH 1.2, evidencing pH responsive character of hydrogels. Maximum drug release of 94.3% was shown over period of 30 h demonstrating the controlled release profile of polymeric network. Toxicity evaluations revealed good safety profile and biocompatibility of hydrogels. Moreover, in-vivo studies showed sustained release profile of capecitabine as proved by significant increase in its half-life (13 h) and AUC (42.88 µg.h/ml) when administered as hydrogels. Hence, tamarind/β-CD-g-poly (MAA) hydrogels are strongly recommended to be employed as biocompatible pH responsive carrier system and can be utilized for controlled and targeted delivery of drugs.
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  • [31] de Moura MR(2019)Gum ghatti based hydrogel: Microwave synthesis, characterization, 5-Fluorouracil encapsulation and ‘in vitro’drug release evaluation Carbohyd Polym 222 114979-1459
  • [32] Aouada FA(2021)Comparative effectiveness of beta-cyclodextrin based copolymeric hydrogel matrices for solubility and bioavailability enhancement of lovastatin: in vitro-in vivo evaluation LATIN Am J Pharm 40 822-393
  • [33] Jiang Q(2019)Floating molecularly imprinted polymers based on liquid crystalline and polyhedral oligomeric silsesquioxanes for capecitabine sustained release Int J Pharm 557 293-75
  • [34] Wang J(2000)Miscibility of poly (styrene-co-butyl acrylate) with poly (ethyl methacrylate): Existence of both UCST and LCST J Polym Sci, Part B: Polym Phys 38 369-210
  • [35] Tang R(1996)Analogue calorimetric studies of blends of poly (vinyl ester) s and polyacrylates Macromolecules 29 1579-314
  • [36] Zhang D(1996)Analogue calorimetry of polymer blends: poly (styrene-co-acrylonitrile) and poly (phenyl acrylate) or poly (vinyl benzoate) Polymer 37 2439-14
  • [37] Wang X(1993)Miscibility and phase diagrams of poly (phenyl acrylate) and poly (styrene-co-acrylonitrile) blends Polymer 34 1454-782
  • [38] Shaw GS(2019)β-Cyclodextrin based pH and thermo-responsive biopolymeric hydrogel as a dual drug carrier Materials chemistry frontiers 3 385-3363
  • [39] Uvanesh K(2017)Functional properties and physicochemical characteristics of tamarind (Tamarindus indica L.) seed mucilage powder as a novel hydrocolloid J Food Eng 209 68-201
  • [40] Gautham S(2019)Development and in vitro evaluation of (β-cyclodextrin-g-methacrylic acid)/Na+-montmorillonite nanocomposite hydrogels for controlled delivery of lovastatin Int J Nanomed 14 5397-undefined