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将磺胺嘧啶银浸渍到细菌纤维素中,用于制备具有抗菌和生物相容性的伤口敷料。

Impregnation of silver sulfadiazine into bacterial cellulose for antimicrobial and biocompatible wound dressing.

机构信息

School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, People's Republic of China.

出版信息

Biomed Mater. 2012 Dec;7(6):065006. doi: 10.1088/1748-6041/7/6/065006. Epub 2012 Nov 26.


DOI:10.1088/1748-6041/7/6/065006
PMID:23182757
Abstract

Silver sulfadiazine (SSD) is a useful antimicrobial agent for wound treatment. However, recent findings indicate that conventional SSD cream has several drawbacks for use in treatments. Bacterial cellulose (BC) is a promising material for wound dressing due to its outstanding properties of holding water, strength and degradability. Unfortunately, BC itself exhibits no antimicrobial activity. A combination of SSD and BC is envisaged to form a new class of wound dressing with both antimicrobial activity and biocompatibility, which has not been reported to date. To achieve antimicrobial activity, SSD particles were impregnated into BC by immersing BC into SSD suspension after ultrasonication, namely SSD-BC. Parameters influencing SSD-BC impregnation were systematically studied. Optimized conditions of sonication time for no less than 90 min and the proper pH value between 6.6 and 9.0 were suggested. The absorption of SSD onto the BC nanofibrous network was revealed by XRD and SEM analyses. The SSD-BC membranes exhibited significant antimicrobial activities against Pseudomonas aeruginosa, Escherichia coli and Staphylococcus aureus evaluated by the disc diffusion method. In addition, the favorable biocompatibility of SSD-BC was verified by MTT colorimetry, epidermal cell counting method and optical microscopy. The results demonstrate the potential of SSD-BC membranes as a new class of antimicrobial and biocompatible wound dressing.

摘要

磺胺嘧啶银(SSD)是一种用于伤口处理的有用的抗菌剂。然而,最近的发现表明,传统的 SSD 乳膏在治疗中有几个缺点。细菌纤维素(BC)由于其出色的保水、强度和可降解性,是一种有前途的伤口敷料材料。不幸的是,BC 本身没有抗菌活性。预计将 SSD 和 BC 结合形成一类具有抗菌活性和生物相容性的新型伤口敷料,迄今为止尚未有报道。为了获得抗菌活性,通过将 BC 浸入 SSD 悬浮液中超声处理后将 SSD 颗粒浸渍到 BC 中,即 SSD-BC。系统研究了影响 SSD-BC 浸渍的参数。建议超声时间不少于 90 分钟和适当的 pH 值在 6.6 到 9.0 之间的优化条件。通过 XRD 和 SEM 分析揭示了 SSD 在 BC 纳米纤维网络上的吸收。通过圆盘扩散法评估,SSD-BC 膜对铜绿假单胞菌、大肠杆菌和金黄色葡萄球菌表现出显著的抗菌活性。此外,通过 MTT 比色法、表皮细胞计数法和光学显微镜验证了 SSD-BC 的良好生物相容性。结果表明 SSD-BC 膜作为一种新型的抗菌和生物相容的伤口敷料具有潜力。

相似文献

[1]
Impregnation of silver sulfadiazine into bacterial cellulose for antimicrobial and biocompatible wound dressing.

Biomed Mater. 2012-11-26

[2]
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[3]
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[4]
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[5]
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[6]
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[7]
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[8]
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[9]
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[10]
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Int J Mol Sci. 2025-2-9

[2]
Bacterial Cellulose: A Sustainable Source for Hydrogels and 3D-Printed Scaffolds for Tissue Engineering.

Gels. 2024-6-5

[3]
Three-Dimensional Printed Cellulose for Wound Dressing Applications.

3D Print Addit Manuf. 2023-10-1

[4]
An introductory review on advanced multifunctional materials.

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[5]
Hybrid Silver-Containing Materials Based on Various Forms of Bacterial Cellulose: Synthesis, Structure, and Biological Activity.

Int J Mol Sci. 2023-4-21

[6]
Bacterial Cellulose-Based Materials as Dressings for Wound Healing.

Pharmaceutics. 2023-1-27

[7]
Development and evaluation of ciprofloxacin-bacterial cellulose composites produced through in situ incorporation method.

Biotechnol Rep (Amst). 2022-3-26

[8]
Cellulose-Based Nanomaterials Advance Biomedicine: A Review.

Int J Mol Sci. 2022-5-12

[9]
Green electrochemical synthesis of silver sulfadiazine microcrystals.

RSC Adv. 2019-8-5

[10]
Bacterial Cellulose Membrane Containing L. Extract as a Promising Material for the Topical Delivery of Antioxidants to the Skin.

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