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羧酸盐银-TiO/聚二甲基硅氧烷是一种安全有效的抗菌剂,具有显著的伤口护理潜力。

Silver carboxylate-TiO/polydimethyl siloxane is a safe and effective antimicrobial with significant wound care potential.

作者信息

Allu Sai, Whitaker Colin, Stone Benjamin, Vishwanath Neel, Clippert Drew, Jouffroy Elia, Antoci Valentin, Born Christopher, Garcia Dioscaris R

机构信息

Warren Alpert Medical School of Brown University, Providence, RI.

The Diane N. Weiss Center for Orthopaedic Research, Rhode Island Hospital, Providence, RI; and.

出版信息

OTA Int. 2024 Mar 11;7(2 Suppl):e299. doi: 10.1097/OI9.0000000000000299. eCollection 2024 Mar.

Abstract

INTRODUCTION

With the rise in antibiotic resistance, new methodologies are needed to combat musculoskeletal infections. Silver is an antimicrobial that can be synthesized in different forms, but its pharmacokinetics are difficult to control. This study details the antibacterial efficacy and cellular cytotoxicity of a formulation consisting of silver carboxylate (AgCar) released through a titanium dioxide/polydimethylsiloxane matrix with a predictable release profile on , , human-derived primary osteoblasts.

METHODS

Through an Institutional Animal Care and Use Committee and IRB-approved protocol, AgCar was applied to live Yucatan porcine skin and histologically analyzed for skin penetration. Graphite Furnace Atomic Absorption Spectroscopy (GFAAS) was used to measure elution of AgCar. Dose-response curves were generated through optical density to assess potency. Finally, 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay was used to quantify the cellular cytotoxicity of the novel formulation. The results were subject to statistical analysis using analysis of variance and post hoc Tukey tests.

RESULTS

The silver carboxylate coating demonstrated deep penetration into the epithelium at the level of the deep pilosebaceous glands in animal models. GFAAS testing demonstrated the extended elution profile of silver carboxylate over 96 hours, while 100% silver with no titanium dioxide-polydimethylsiloxane matrix fully eluted within 48 hours. 10x silver carboxylate demonstrated superior antimicrobial activity to antibiotics and other silver formulations and showed minimal cytotoxicity compared with other silver formulations.

DISCUSSION/CLINICAL RELEVANCE: Current antimicrobial therapies in wound care and surgical antisepsis, such as chlorhexidine gluconate, have pitfalls including poor skin penetration and short duration of efficacy. The broad antimicrobial activity, extended elution, and deep skin penetration of this AgCar formulation show great promise for surgical site infection and wound care treatment. Novel technology to fight the growing threat of microbial resistance should be at the forefront of orthopaedic surgical site infection prevention and treatment.

摘要

引言

随着抗生素耐药性的增加,需要新的方法来对抗肌肉骨骼感染。银是一种抗菌剂,可以以不同形式合成,但其药代动力学难以控制。本研究详细阐述了一种由羧酸银(AgCar)组成的制剂的抗菌功效和细胞毒性,该制剂通过二氧化钛/聚二甲基硅氧烷基质释放,对人源原代成骨细胞具有可预测的释放曲线。

方法

通过机构动物护理和使用委员会及IRB批准的方案,将AgCar应用于活的尤卡坦猪皮肤,并进行组织学分析以检测皮肤渗透情况。采用石墨炉原子吸收光谱法(GFAAS)测量AgCar的洗脱情况。通过光密度生成剂量反应曲线以评估效力。最后,使用3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四氮唑溴盐法来量化该新型制剂的细胞毒性。结果采用方差分析和事后Tukey检验进行统计分析。

结果

在动物模型中,羧酸银涂层在深部皮脂腺水平显示出深入上皮的渗透。GFAAS测试表明羧酸银在96小时内具有延长的洗脱曲线,而不含二氧化钛-聚二甲基硅氧烷基质的100%银在48小时内完全洗脱。10倍浓度的羧酸银显示出优于抗生素和其他银制剂的抗菌活性,并且与其他银制剂相比细胞毒性最小。

讨论/临床意义:伤口护理和手术消毒中的当前抗菌疗法,如葡萄糖酸氯己定,存在包括皮肤渗透差和疗效持续时间短等缺陷。这种AgCar制剂的广泛抗菌活性、延长的洗脱时间和深入的皮肤渗透在手术部位感染和伤口护理治疗方面显示出巨大潜力。对抗微生物耐药性日益增长的威胁的新技术应处于骨科手术部位感染预防和治疗的前沿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d57/10936150/205b510e9430/oi9-7-e299-g001.jpg

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