Hyaluronic acid-modified betamethasone encapsulated polymeric nanoparticles: fabrication, characterisation, in vitro release kinetics, and dermal targeting

被引:0
作者
Manisha Pandey
Hira Choudhury
Tarakini A. P. Gunasegaran
Saranyah Shanmugah Nathan
Shadab Md
Bapi Gorain
Minaketan Tripathy
Zahid Hussain
机构
[1] International Medical University-Bukit Jalil 57000,Department of Pharmaceutical Technology, School of Pharmacy
[2] Lincoln University College,Faculty of Pharmacy
[3] Universiti Teknologi MARA,Laboratory of Fundamentals of Pharmaceutics, Faculty of Pharmacy
[4] Universiti Teknologi MARA,Department of Pharmaceutics, Faculty of Pharmacy
来源
Drug Delivery and Translational Research | 2019年 / 9卷
关键词
Atopic dermatitis; Betamethasone valerate; Hyaluronic acid; Chitosan nanoparticles; Penetration across stratum corneum; Dermal targeting;
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摘要
Atopic dermatitis (AD) is a chronically relapsing eczematous skin disease characterised by frequent episodes of rashes, severe flares, and inflammation. Till date, there is no absolute therapy for the treatment of AD; however, topical corticosteroids (TCs) are the majorly prescribed class of drugs for the management of AD in both adults and children. Though, topical route is most preferable; however, limited penetration of therapeutics across the startum cornum (SC) is one of the major challenges for scientists. Therefore, the present study was attempted to fabricate a moderate-potency TC, betamethasone valerate (BMV), in the form of chitosan nanoparticles (CS-NPs) for optimum dermal targeting and improved penetration across the SC. To further improve the targeting efficiency of BMV and to potentiate its therapeutic efficacy, the fabricated BMV-CS-NPs were coated with hyaluronic acid (HA). The prepared NPs were characterised for particle size, zeta potential, polydispersity index (PDI), entrapment efficiency, loading capacity, crystallinity, thermal behaviour, morphology, in vitro release kinetics, drug permeation across the SC, and percentage of drug retained into various skin layers. Results showed that optimised HA-BMV-CS-NPs exhibited optimum physicochemical characteristics including finest particle size (< 300 ± 28 nm), higher zeta potential (+ 58 ± 8 mV), and high entrapment efficiency (86 ± 5.6%) and loading capacity (34 ± 7.2%). The in vitro release study revealed that HA-BMV-CS-NPs displayed Fickian diffusion-type mechanism of release in simulated skin surface (pH 5.5). Drug permeation efficiency of BMV was comparatively higher in case of BMV-CS-NPs; however, the amount of drug retained into the epidermis and the dermis was comparatively higher in case of HA-BMV-CS-NPs, compared to BMV-CS-NPs. Conclusively, we anticipate that HA-BMV-CS-NPs could be a promising nanodelivery system for efficient dermal targeting of BMV and improved anti-AD efficacy.
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页码:520 / 533
页数:13
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共 227 条
[1]  
Tay YK(2002)The prevalence and descriptive epidemiology of atopic dermatitis in Singapore school children Br J Dermatol 146 101-106
[2]  
Kong KH(2006)Pediatric atopic eczema: the impact of an educational intervention Pediatr Dermatol 23 428-436
[3]  
Khoo L(2017)Current and emerging topical therapies for atopic dermatitis Clin Dermatol 35 375-382
[4]  
Goh CL(2009)Epidermal barrier dysfunction in atopic dermatitis J Invest Dermatol 129 1892-1908
[5]  
Giam YC(2005)Prominent involvement of activated Th1-subset of T-cells and increased expression of receptor for IFN-gamma on keratinocytes in atopic dermatitis acute skin lesions Int Arch Allergy Immunol 137 125-133
[6]  
Grillo M(2016)Recent advances in pharmacotherapeutic paradigm of mild to recalcitrant atopic dermatitis Crit Rev Ther Drug Carrier Syst 33 213-263
[7]  
Gassner L(2013)Antidermatitic perspective of hydrocortisone as chitosan nanocarriers: an ex vivo and in vivo assessment using an NC/Nga mouse model J Pharm Sci 102 1063-1075
[8]  
Marshman G(2017)Recent advances in TPGS-based nanoparticles of docetaxel for improved chemotherapy Int J Pharm 529 506-522
[9]  
Dunn S(2017)Recent update on nanoemulgel as topical drug delivery system J Pharm Sci 106 1736-1751
[10]  
Hudson P(2017)Pharmacokinetic and pharmacodynamic features of nanoemulsion following oral, intravenous, topical and nasal route Curr Pharm Des 23 2504-2531