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新兴二维纳米材料-水凝胶复合材料:用于骨再生和疾病治疗的治疗再生材料设计的进展。

Emerging 2D Nanomaterials-Integrated Hydrogels: Advancements in Designing Theragenerative Materials for Bone Regeneration and Disease Therapy.

机构信息

Institute of Inorganic Chemistry, Department of Chemistry, Faculty of Mathematics and Natural Sciences, University of Cologne, Greinstraße 6, 50939, Cologne, Germany.

Department of Biotechnology, National Institute of Animal Biotechnology, Hyderabad, 500 049, India.

出版信息

Adv Sci (Weinh). 2024 Aug;11(31):e2403204. doi: 10.1002/advs.202403204. Epub 2024 Jun 14.

Abstract

This review highlights recent advancements in the synthesis, processing, properties, and applications of 2D-material integrated hydrogels, with a focus on their performance in bone-related applications. Various synthesis methods and types of 2D nanomaterials, including graphene, graphene oxide, transition metal dichalcogenides, black phosphorus, and MXene are discussed, along with strategies for their incorporation into hydrogel matrices. These composite hydrogels exhibit tunable mechanical properties, high surface area, strong near-infrared (NIR) photon absorption and controlled release capabilities, making them suitable for a range of regeneration and therapeutic applications. In cancer therapy, 2D-material-based hydrogels show promise for photothermal and photodynamic therapies, and drug delivery (chemotherapy). The photothermal properties of these materials enable selective tumor ablation upon NIR irradiation, while their high drug-loading capacity facilitates targeted and controlled release of chemotherapeutic agents. Additionally, 2D-materials -infused hydrogels exhibit potent antibacterial activity, making them effective against multidrug-resistant infections and disruption of biofilm generated on implant surface. Moreover, their synergistic therapy approach combines multiple treatment modalities such as photothermal, chemo, and immunotherapy to enhance therapeutic outcomes. In bio-imaging, these materials serve as versatile contrast agents and imaging probes, enabling their real-time monitoring during tumor imaging. Furthermore, in bone regeneration, most 2D-materials incorporated hydrogels promote osteogenesis and tissue regeneration, offering potential solutions for bone defects repair. Overall, the integration of 2D materials into hydrogels presents a promising platform for developing multifunctional theragenerative biomaterials.

摘要

本文重点介绍了 2D 材料集成水凝胶在合成、加工、性能和应用方面的最新进展,特别是它们在与骨骼相关的应用中的性能。讨论了各种合成方法和类型的二维纳米材料,包括石墨烯、氧化石墨烯、过渡金属二卤化物、黑磷和 MXene ,以及将它们纳入水凝胶基质的策略。这些复合水凝胶具有可调的机械性能、高比表面积、强近红外(NIR)光子吸收和控制释放能力,适用于多种再生和治疗应用。在癌症治疗中,基于 2D 材料的水凝胶在光热和光动力治疗以及药物输送(化疗)方面显示出应用前景。这些材料的光热特性使得在近红外辐射下能够选择性地消融肿瘤,而其高载药能力则有利于化疗药物的靶向和控制释放。此外,2D 材料注入水凝胶具有强大的抗菌活性,能够有效对抗多药耐药感染和破坏植入物表面形成的生物膜。此外,它们的协同治疗方法结合了多种治疗模式,如光热、化疗和免疫治疗,以提高治疗效果。在生物成像中,这些材料可用作多功能对比剂和成像探针,使其能够在肿瘤成像过程中进行实时监测。此外,在骨再生中,大多数 2D 材料掺入水凝胶促进成骨和组织再生,为骨缺损修复提供了潜在的解决方案。总之,将 2D 材料集成到水凝胶中为开发多功能治疗性生物材料提供了一个很有前途的平台。

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