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基于 Janus 启发的核壳结构水凝胶程序性释放褪黑素用于重建术后骨肿瘤。

Janus-Inspired Core-Shell Structure Hydrogel Programmatically Releases Melatonin for Reconstruction of Postoperative Bone Tumor.

机构信息

State Key Laboratory of Oral Diseases & National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2023 Jan 18;15(2):2639-2655. doi: 10.1021/acsami.2c18545. Epub 2023 Jan 5.

Abstract

At present, surgery is one of the main treatments for bone tumor. However, the risk of recurrence and the large area of bone defects after surgery pose a great challenge. Therefore, a Janus-inspired core-shell structure bone scaffold was designed to achieve the self-programmed release of melatonin at different concentrations, clearing the residual tumor cells at early stage after resection and promoting bone repair later. The layered differential load designs inspired by Janus laid the foundation for the differential release of melatonin, where sufficient melatonin inhibited tumor growth as low dose promoted osteogenesis. Then, the automatically programmed delivery of melatonin is achieved by the gradient degradation of the core-shell structure. In the material characterization, scanning electron microscopy revealed the core-shell structure. The drug release experiment and degradation experiment reflected the programmed differential release of melatonin. In the biological experiment part, and experiments not only confirmed the significant inhibitory effect of the core-shell hydrogel scaffold on tumor but also confirmed its positive effect on osteogenesis. Our Janus-inspired core-shell hydrogel scaffold provides a safe and efficient means to inhibit tumor recurrence and bone repair after bone tumor, and it also develops a new and efficient tool for differential and programmed release of other drugs.

摘要

目前,手术是骨肿瘤的主要治疗方法之一。然而,手术后复发的风险和大面积的骨缺损仍然是一个巨大的挑战。因此,设计了一种灵感来源于 Janus 的核壳结构骨支架,以实现褪黑素的自编程释放,在切除后早期清除残留的肿瘤细胞,随后促进骨修复。受 Janus 启发的分层差分负载设计为褪黑素的差分释放奠定了基础,其中低剂量褪黑素可充分抑制肿瘤生长,而高剂量褪黑素则促进成骨。然后,通过核壳结构的梯度降解来实现褪黑素的自动编程递送。在材料特性方面,扫描电子显微镜揭示了核壳结构。药物释放实验和降解实验反映了褪黑素的编程差分释放。在生物学实验部分,体内和体外实验不仅证实了核壳水凝胶支架对肿瘤的显著抑制作用,也证实了其对成骨的积极作用。我们受 Janus 启发的核壳水凝胶支架为抑制骨肿瘤术后肿瘤复发和骨修复提供了一种安全有效的方法,也为其他药物的差分和编程释放开发了一种新的、高效的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8f0/9869893/7b05ed20e570/am2c18545_0002.jpg

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