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光动力疗法对 HEMA-DMAEMA 水凝胶的黏弹性影响较小。

Photodynamic Therapy Minimally Affects HEMA-DMAEMA Hydrogel Viscoelasticity.

机构信息

Biomedical Engineering Department, Texas A&M University, 101 Bizzell St., College Station, TX, 77840, USA.

Mechanical Engineering Department, Texas A&M University, 242 Spence St., College Station, TX, 77840, USA.

出版信息

Macromol Biosci. 2023 Nov;23(11):e2300124. doi: 10.1002/mabi.202300124. Epub 2023 Jul 10.

Abstract

Soft matter implants are a rapidly growing field in medicine for reconstructive surgery, aesthetic treatments, and regenerative medicine. Though these procedures are efficacious, all implants carry risks associated with microbial infection which are often aggressive. Preventative and responsive measures exist but are limited in applicability to soft materials. Photodynamic therapy (PDT) presents a means to perform safe and effective antimicrobial treatments in proximity to soft implants. HEMA-DMAEMA hydrogels are prepared with the photosensitizer methylene blue included at 10 and 100 µM in solution used for swelling over 2 or 4 days. Thirty minutes or 5 h of LED illumination at is then used for PDT-induced generation of reactive oxygen species in direct contact with hydrogels to test viable limits of treatment. Frequency sweep rheological measurements reveal minimal overall changes in terms of loss modulus and loss factor but a statistically significant drop in storage modulus for some PDT doses, though within the range of controls and biological variation. These mild impacts suggest the feasibility of PDT application for infection clearing in proximity to soft implants. Future investigation with additional hydrogel varieties and current implant models will further detail the safety of PDT in implant applications.

摘要

软物质植入物在医学中的重建手术、美容治疗和再生医学领域是一个快速发展的领域。尽管这些手术非常有效,但所有植入物都存在与微生物感染相关的风险,而这些感染通常具有侵袭性。预防和应对措施是存在的,但在适用性方面,它们仅限于软材料。光动力疗法 (PDT) 提供了一种在靠近软植入物的地方进行安全有效的抗菌治疗的方法。HEMA-DMAEMA 水凝胶是通过将 10 和 100 μM 的亚甲蓝作为光敏剂包含在用于膨胀 2 或 4 天的溶液中来制备的。然后在 5 小时的 LED 照射下进行 PDT 诱导的活性氧生成,直接与水凝胶接触,以测试治疗的可行极限。频率扫描流变测量显示,在损耗模量和损耗因子方面,整体变化很小,但对于某些 PDT 剂量,存储模量有统计学意义的下降,尽管在对照和生物变化范围内。这些温和的影响表明 PDT 在靠近软植入物的情况下用于清除感染的应用是可行的。未来将对其他水凝胶品种和当前植入物模型进行进一步研究,详细说明 PDT 在植入物应用中的安全性。

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