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Hyaluronic acid functionalization improves dermal targeting of polymeric nanoparticles for management of burn wounds: In vitro, ex vivo and in vivo evaluations - 27/05/22

Doi : 10.1016/j.biopha.2022.112992 
Zahid Hussain a, b, , Manisha Pandey c, d, Hnin Ei Thu e, Taasjir Kaur f, Gan Wei Jia f, Pang Cheau Ying f, Tan Mei Xian f, Mohammad A.S. Abourehab g, h
a Department of Pharmaceutics & Pharmaceutical Technology, College of Pharmacy, University of Sharjah, Sharjah 27272, United Arab Emirates 
b Research Institute for Medical & Health Sciences, University of Sharjah, Sharjah 27272, United Arab Emirates 
c Department of Pharmaceutical Technology, School of Pharmacy, International Medical University-Bukit Jalil, 57000 Kuala Lumpur, Malaysia 
d Centre for Bioactive Molecules and Drug Delivery, Institute for Research, Development and Innovation, International Medical University, 57000, Kuala Lumpur, Malaysia 
e Research and Innovation Department, Lincoln University College, Petaling Jaya 47301, Selangor, Malaysia 
f Bachelor of Pharmacy Student, School of Pharmacy, International Medical University, Kuala Lumpur 57000, Malaysia 
g Department of Pharmaceutics, Faculty of Pharmacy, Umm Al-Qura University, Makkah 21955, Saudi Arabia 
h Department of Pharmaceutics and Industrial Pharmacy, College of Pharmacy, Minia University, Minia 61519, Egypt 

Corresponding author at: Department of Pharmaceutics & Pharmaceutical Technology, College of Pharmacy, University of Sharjah, Sharjah 27272, United Arab Emirates.Department of Pharmaceutics & Pharmaceutical Technology, College of Pharmacy, University of SharjahSharjah27272United Arab Emirates

Abstract

Owing to its intricate pathophysiology, impaired wound healing is one of the substantial challenges in the treatment of burn wounds (BWs). Despite the variety of conventional therapies available, morbidities associated with BWs have not subsided. Therefore, aim of the present study was to design an advanced nanotechnology-composited therapy for effectual management of BWs. Hyaluronic acid (HA)-functionalized curcumin (CUR) and quercetin (QUE) co-loaded nanoparticle (HA-CUR-QUE-CSNPs) were fabricated, optimized, characterized and evaluated for successful co-encapsulation of drugs, morphology, stability, drug release, cell proliferation, penetration across the skin, localization in the epidermis and dermis, and in vivo wound healing efficacy. Fabricated HA-functionalized CSNPs exhibited ultra-small size (177 ± 11 nm), good zeta potential (+37.0 ± 3.2 mV), high encapsulation efficiency (EE) (QUE ∼84% and CUR ∼64%) and loading capacity (LC) (QUE ∼38% and CUR ∼43%), and spherical shape with uniformly rough surface. HA-functionalized CSNPs showed a triphasic release pattern with Fickian diffusion kinetics, a time-mannered progression in MC3T3-E1 cells proliferation, improved penetration of CUR (2414 µg/cm2) and QUE (1984 µg/cm2) through stratum corneum, and good localization of drugs in the epidermis and dermis. A superior wound healing efficacy (98% wound closure rate at day 28) with marked histological signs of minimal infiltration of inflammatory cells, re-epithelization, ECM formation, fibroblast infiltration at wound site, granulation tissue formation, angiogenesis, and collagen deposition were also evidenced. This study concludes that HA-functionalization of polymeric NPs could be a promising approach to maximize skin penetration efficiency, localization of drugs in skin tissues, tissue regeneration and BWs healing.

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Graphical Abstract




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Highlights

Owing to its intricate pathophysiology, burn wound healing still remains a colossal challenge.
Polymeric nanoparticles are promising drug delivery devices due to their unique properties.
Functionalization of nanoparticles is a promising technique to improve their characteristics.
Curcumin and quercetin have been co-encapsulated in polymeric nanoparticles to synergize their biomedical potential.
Hyaluronic acid functionalization improves skin targeting and burn wound healing efficacy.

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Keywords : Functionalization, Hyaluronic acid, Polymeric nanoparticles, Curcumin, Quercetin, Burn wounds


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Vol 150

Article 112992- juin 2022 Retour au numéro
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