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基于海藻酸盐的气凝胶作为伤口敷料,用于高效捕获细菌和增强抗菌光动力治疗。

Alginate-based aerogels as wound dressings for efficient bacterial capture and enhanced antibacterial photodynamic therapy.

机构信息

Guangdong Key Laboratory for Research and Development of Natural Drugs, School of Pharmacy, Guangdong Medical University, Zhanjiang, China.

The Marine Biomedical Research Institute of Guangdong, Zhanjiang, China.

出版信息

Drug Deliv. 2022 Dec;29(1):1086-1099. doi: 10.1080/10717544.2022.2058650.

Abstract

The development of novel wound dressings, such as aerogels, with rapid hemostasis and bactericidal capacities for pre-hospital care is necessary. To prevent the occurrence of bacterial resistance, antibacterial photodynamic therapy (aPDT) with broad-spectrum antibacterial ability and negligible bacterial resistance has been intensively studied. However, photosensitizers often suffer from poor water solubility, short singlet oxygen (O) half-life and restricted O diffusion distance. Herein, sodium alginate was covalently modified by photosensitizers and phenylboronic acid, and cross-linked by Ca(II) ions to generate SA@TPAPP@PBA aerogel after lyophilization as an antibacterial photodynamic wound dressing. Afterwards, its photodynamic and bacterial capture activities were intensively evaluated. Furthermore, its hemostasis and bactericidal efficiency against were assessed via and assays. First, chemical immobilization of photosensitizers led to an enhancement of its solubility. Moreover, it showed an excellent hemostasis capacity. Due to the formation of reversible covalent bonds between phenylboronic acid and diol groups on bacterial cell surface, the aerogel could capture tightly and dramatically enhance aPDT. To sum up, the prepared aerogel illustrated excellent hemostasis capacity and antibacterial ability against . Therefore, they have great potential to be utilized as wound dressing in clinical trials.

摘要

新型伤口敷料的开发,如具有快速止血和杀菌能力的气凝胶,对于院前护理是必要的。为了防止细菌耐药性的发生,具有广谱抗菌能力和可忽略不计的细菌耐药性的抗菌光动力疗法(aPDT)已经得到了深入研究。然而,光敏剂通常存在水溶性差、单线态氧(O)半衰期短和 O 扩散距离受限等问题。在此,通过光功能化和硼酸化修饰海藻酸钠,再通过钙离子交联得到海藻酸钠@TPAPP@PBA 气凝胶,用作抗菌光动力伤口敷料。随后,对其光动力和细菌捕获活性进行了深入评估。此外,还通过 、 实验评估了其对 的止血和杀菌效率。首先,通过化学固定化光敏剂提高了其溶解度。此外,它还表现出良好的止血能力。由于硼酸和细菌表面二醇基团之间形成了可逆的共价键,气凝胶可以紧密捕获 ,并显著增强 aPDT。总之,所制备的气凝胶对 表现出良好的止血能力和抗菌能力。因此,它们有可能在临床试验中用作伤口敷料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1635/9048949/eb3c238e9239/IDRD_A_2058650_SCH0001_C.jpg

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