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碳化聚合物点-鞣酸纳米胶:用于正常和糖尿病伤口愈合的组织增强,具有荧光示踪、胰岛素传递和活性氧调节的功能。

Carbonized Polymer Dot-Tannic Acid Nanoglue: Tissue Reinforcement with Concurrent Fluorescent Tracking, Insulin Delivery, and Reactive Oxygen Species Regulation for Normal and Diabetic Wound Healing.

机构信息

Department of Chemistry, Indian Institute of Technology Patna, Patna, Bihar, 801103, India.

Department of Chemistry and Biochemistry, Thapar Institute of Engineering and Technology (TIET), Patiala, Punjab, 147004, India.

出版信息

Small. 2024 Nov;20(47):e2405531. doi: 10.1002/smll.202405531. Epub 2024 Aug 15.

Abstract

Nanotizing biosealant components offer a multitude of chemical functionalities for superior adhesion-cohesion, delivering unique properties for comprehensive wound healing that are otherwise impossible to achieve using commercial variants. For the first time, a two-step controlled hydrothermal pyrolysis is reported to nanotize dopamine, phloroglucinol, and glutaraldehyde into carbon dot (CD) to be subsequently converted into carbonized polymer dot (CPD) with gelatin as a co-substrate. Chemical crosslinking of CD with gelatin through Schiff base formation before the second pyrolysis step ensures a complex yet porous polymeric network. The retention of chemical functionalities indigenous to CD substrates and gelatin along with the preservation of CD photoluminescence in CPD for optical tracking is achieved. A unique nanoformulation is created with the CPD through tannic acid (TA) grafting evolving CPD-TA nanoglue demonstrating ≈1.32 MPa strength in lap shear tests conducted on porcine skin, surpassing traditional bioadhesives. CPD-TA nanoglue uploaded insulin as chosen cargo disbursal at the wound site for healing normal and in vitro diabetic wound models using HEKa cells with extraordinary biocompatibility. Most importantly, CPD-TA can generate reactive oxygen species (ROS) and scavenge simultaneously under ambient conditions (23 W white LED or dark) for on-demand sterilization or aiding wound recovery through ROS scavenging.

摘要

纳米化生物密封剂成分提供了多种化学功能,用于优异的黏附-内聚,为全面的伤口愈合提供独特的特性,这是使用商业变体无法实现的。首次报道了一种两步法控制水热热解,将多巴胺、根皮素和戊二醛纳米化为碳点(CD),然后用明胶作为共底物转化为碳化聚合物点(CPD)。在第二次热解之前,通过席夫碱形成将 CD 与明胶进行化学交联,以确保形成复杂但多孔的聚合物网络。保留了 CD 底物和明胶固有的化学功能,并在 CPD 中保留了 CD 光致发光,用于光学跟踪。通过单宁酸(TA)接枝,CPD 被制备成独特的纳米制剂,即 CPD-TA 纳米胶,在对猪皮进行的搭接剪切测试中表现出约 1.32 MPa 的强度,超过了传统的生物胶粘剂。CPD-TA 纳米胶上传胰岛素作为所选货物在伤口部位释放,用于治疗正常和体外糖尿病伤口模型,使用 HEKa 细胞具有极好的生物相容性。最重要的是,CPD-TA 可以在环境条件下(23 W 白色 LED 或黑暗)同时产生和清除活性氧(ROS),用于按需杀菌或通过清除 ROS 来辅助伤口恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ec1/11579962/b1d972403b03/SMLL-20-2405531-g003.jpg

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