Suppr超能文献

当前和先进的纳米材料在牙科再生剂中的应用:更新。

Current and Advanced Nanomaterials in Dentistry as Regeneration Agents: An Update.

机构信息

Research Center for Prevention of Oral and Dental Diseases, Baqiyatallah University of Medical Sciences, Tehran, Iran.

Dental Materials Research Center, Health Research Institute, Babol University of Medical Sciences, Babol, Iran.

出版信息

Mini Rev Med Chem. 2021;21(7):899-918. doi: 10.2174/1389557520666201124143449.

Abstract

In modern dentistry, nanomaterials have strengthened their foothold among tissue engineering strategies for treating bone and dental defects due to a variety of reasons, including trauma and tumors. Besides their finest physiochemical features, the biomimetic characteristics of nanomaterials promote cell growth and stimulate tissue regeneration. The single units of these chemical substances are small-sized particles, usually between 1 to 100 nm, in an unbound state. This unbound state allows particles to constitute aggregates with one or more external dimensions and provide a high surface area. Nanomaterials have brought advances in regenerative dentistry from the laboratory to clinical practice. They are particularly used for creating novel biomimetic nanostructures for cell regeneration, targeted treatment, diagnostics, imaging, and the production of dental materials. In regenerative dentistry, nanostructured matrices and scaffolds help control cell differentiation better. Nanomaterials recapitulate the natural dental architecture and structure and form functional tissues better compared to the conventional autologous and allogenic tissues or alloplastic materials. The reason is that novel nanostructures provide an improved platform for supporting and regulating cell proliferation, differentiation, and migration. In restorative dentistry, nanomaterials are widely used in constructing nanocomposite resins, bonding agents, endodontic sealants, coating materials, and bioceramics. They are also used for making daily dental hygiene products such as mouth rinses. The present article classifies nanostructures and nanocarriers in addition to reviewing their design and applications for bone and dental regeneration.

摘要

在现代牙科中,纳米材料由于多种原因,包括创伤和肿瘤,在治疗骨和牙齿缺损的组织工程策略中站稳了脚跟。除了最精细的物理化学特性外,纳米材料的仿生特性还促进了细胞生长并刺激了组织再生。这些化学物质的单个单元是小尺寸的颗粒,通常在 1 到 100nm 之间,处于无结合状态。这种无结合状态允许颗粒与一个或多个外部维度构成聚集体,并提供高表面积。纳米材料将再生牙科领域的研究从实验室推进到临床实践。它们特别用于为细胞再生、靶向治疗、诊断、成像和牙科材料的生产创造新型仿生纳米结构。在再生牙科中,纳米结构的基质和支架有助于更好地控制细胞分化。与传统的自体和同种异体组织或同种异体材料相比,纳米材料再现了天然的牙齿结构和结构,并更好地形成功能性组织。原因是新型纳米结构为支持和调节细胞增殖、分化和迁移提供了更好的平台。在修复牙科中,纳米材料广泛用于构建纳米复合材料树脂、粘结剂、根管封闭剂、涂层材料和生物陶瓷。它们还用于制造日常口腔卫生产品,如漱口液。本文对纳米结构和纳米载体进行了分类,并对其用于骨和牙齿再生的设计和应用进行了综述。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验