杰纳斯结构水凝胶:合成策略、生物医学微结构和(生物)应用的最新进展。

IF 5.7 3区 医学 Q1 MATERIALS SCIENCE, BIOMATERIALS
Taifu Zhu, Lei Wan, Ruiqi Li, Mu Zhang, Xiaoling Li, Yilong Liu, Dingjun Cai and Haibin Lu
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引用次数: 0

摘要

獐牙菜结构水凝胶(JSHs)作为一种新型材料,其主要制造方法和各种应用已被广泛报道。JSHs 主要由 Janus(JNPs)和多糖成分组成。由于其不对称结构,它们表现出两种不同的物理或化学性质,产生了耐人寻味的特性。粘合界面主要由多糖成分构成,主要起到良好的粘合作用。在另一面(功能表面),它们集成了多种功能,同时发挥着大量的协同功能。在生物医学领域,JSHs 被广泛应用于抗粘连、药物输送、伤口愈合等方面。它还具有海水淡化和运动传感的功能。因此,JSHs 具有广阔的应用前景,在纳米技术、环境科学、医疗保健等领域具有重要的研究价值。此外,本文还提出了这些领域面临的挑战和未来的工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Janus structure hydrogels: recent advances in synthetic strategies, biomedical microstructure and (bio)applications

Janus structure hydrogels: recent advances in synthetic strategies, biomedical microstructure and (bio)applications

Janus structure hydrogels (JSHs) are novel materials. Their primary fabrication methods and various applications have been widely reported. JSHs are primarily composed of Janus particles (JNPs) and polysaccharide components. They exhibit two distinct physical or chemical properties, generating intriguing characteristics due to their asymmetric structure. Normally, one side (adhesive interface) is predominantly constituted of polysaccharide components, primarily serving excellent adhesion. On the other side (functional surface), they integrate diverse functionalities, concurrently performing a plethora of synergistic functions. In the biomedical field, JSHs are widely applied in anti-adhesion, drug delivery, wound healing, and other areas. It also exhibits functions in seawater desalination and motion sensing. Thus, JSHs hold broad prospects for applications, and they possess significant research value in nanotechnology, environmental science, healthcare, and other fields. Additionally, this article proposes the challenges and future work facing these fields.

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来源期刊
Biomaterials Science
Biomaterials Science MATERIALS SCIENCE, BIOMATERIALS-
CiteScore
11.50
自引率
4.50%
发文量
556
期刊介绍: Biomaterials Science is an international high impact journal exploring the science of biomaterials and their translation towards clinical use. Its scope encompasses new concepts in biomaterials design, studies into the interaction of biomaterials with the body, and the use of materials to answer fundamental biological questions.
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