Impact of Carbon Source on Bacterial Cellulose Network Architecture and Prolonged Lidocaine Release

被引:0
|
作者
Amorim, Julia [1 ,2 ]
Liao, Kuotian [2 ]
Mandal, Aban [2 ]
Costa, Andrea Fernanda de Santana [3 ,4 ]
Roumeli, Eleftheria [2 ]
Sarubbo, Leonie Asfora [3 ,5 ]
机构
[1] Univ Fed Rural Pernambuco UFRPE, Rede Nordeste Biotecnol RENORBIO, Rua Dom Manuel Medeiros,S-n Dois Irmaos, BR-52171900 Recife, PE, Brazil
[2] Univ Washington UW, Dept Mat & Sci & Engn, 2110 Mason Rd,Roberts Hall 302, Seattle, WA 98195 USA
[3] Inst Avancado Tecnol & Inovacao IATI, Rua Potyra, 31, Prado, BR-50751310 Recife, PE, Brazil
[4] Univ Fed Pernambuco UFPE, Ctr Design Comunicacao, Campus Academ Regiao Agreste,Av Marielle Franco,s-, BR-50670900 Caruaru, PE, Brazil
[5] Univ Catolica Pernambuco UNICAP, Escola Icam Tech, Rua Principe 526, BR-50050900 Boa Vista, Recife, Brazil
基金
美国国家科学基金会;
关键词
biomaterials; bacterial cellulose; nanocellulose; drug delivery; hydrogel; green nanomaterials; GLUCONACETOBACTER-XYLINUS; STATIC CONDITIONS; L-ARABINOSE; X-RAY; FT-IR; STRAIN; DIFFRACTION; CULTURE; SPECTROSCOPY; CULTIVATION;
D O I
10.3390/polym16213021
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
The biosynthesis of bacterial cellulose (BC) is significantly influenced by the type of carbon source available in the growth medium, which in turn dictates the material's final properties. This study systematically investigates the effects of five carbon sources-raffinose (C18H32O16), sucrose (C12H22O11), glucose (C6H12O6), arabinose (C5H10O5), and glycerol (C3H8O3)-on BC production by Komagataeibacter hansenii. The varying molecular weights and structural characteristics of these carbon sources provide a framework for examining their influence on BC yield, fiber morphology, and network properties. BC production was monitored through daily measurements of optical density and pH levels in the fermentation media from day 1 to day 14, providing valuable insights into bacterial growth kinetics and cellulose synthesis rates. Scanning electron microscopy (SEM) was used to elucidate fibril diameter and pore size distribution. Wide-angle X-ray scattering (WAXS) provided a detailed assessment of crystallinity. Selected BC pellicles were further processed via freeze-drying to produce a foam-like material that maximally preserves the natural three-dimensional structure of BC, facilitating the incorporation and release of lidocaine hydrochloride (5%), a widely used local anesthetic. The lidocaine-loaded BC foams exhibited a sustained and controlled release profile over 14 days in simulated body fluid, highlighting the importance of the role of carbon source selection in shaping the BC network architecture and its impact on drug release profile. These results highlight the versatility and sustainability of BC as a platform for wound healing and drug delivery applications. The tunable properties of BC networks provide opportunities for optimizing therapeutic delivery and improving wound care outcomes, positioning BC as an effective material for enhanced wound management strategies.
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页数:19
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