Aim: The oral cavity has the particularity to host multiple hard and soft tissues, in this paper, we will discuss the current therapies that lead to cell differentiation by regenerative therapies and the future altern...Aim: The oral cavity has the particularity to host multiple hard and soft tissues, in this paper, we will discuss the current therapies that lead to cell differentiation by regenerative therapies and the future alternatives proposed by medicinal plants and all the regenerative potential of these different tissues. Material and Methods: A detailed review of the literature through the various search engines: Scopus, PubMed, google scholar, Cochrane, etc., uses the selected keywords to explore the effect of the regenerative potential of several medicinal plants. Results: Through our research, we have proceeded to sort different medicinal plants, according to their repairing and regenerative potential on the different tissues of the oral cavity. Conclusion: Future studies are conceivable to explore the opportunities and potential provided by medicinal plants in the field of regenerative dentistry.展开更多
背景:作为天然生物材料壳聚糖的一种衍生物,羧甲基壳聚糖具有独特的水溶性、成膜性、缓释性,在组织工程领域具有广阔的应用前景。目的:综述羧甲基壳聚糖相较于壳聚糖的优势以及在口腔组织再生方面的应用。方法:利用计算机检索PubMed、...背景:作为天然生物材料壳聚糖的一种衍生物,羧甲基壳聚糖具有独特的水溶性、成膜性、缓释性,在组织工程领域具有广阔的应用前景。目的:综述羧甲基壳聚糖相较于壳聚糖的优势以及在口腔组织再生方面的应用。方法:利用计算机检索PubMed、中国知网数据库相关文献,中文检索词“羧甲基壳聚糖AND组织工程,羧甲基壳聚糖AND口腔医学”,英文检索词“carboxymethyl chitosan AND tissue engineering,carboxymethyl chitosan AND(dentistry OR stomatology)”,检索时限为2006年1月至2021年10月,通过阅读和分析文献进行初步筛选,以排除重复文献和低相关性文献,最终纳入文献51篇进行结果分析。结果与结论:羧甲基壳聚糖作为一种具有良好生物相容性、可降解的无毒材料,在骨组织再生、牙体组织再生、牙周组织再生方面已取得理想的进展。羧甲基壳聚糖相比壳聚糖具有更好的水溶性、成膜性和离子结合性,这极大扩展了其在口腔组织工程的应用。羧甲基壳聚糖单独使用可发挥抗菌效果,促细胞增殖、分化,或是作为支架材料、水凝胶、改性材料与生物活性成分和生长因子联合使用均达到了预期的实验效果。展开更多
文摘Aim: The oral cavity has the particularity to host multiple hard and soft tissues, in this paper, we will discuss the current therapies that lead to cell differentiation by regenerative therapies and the future alternatives proposed by medicinal plants and all the regenerative potential of these different tissues. Material and Methods: A detailed review of the literature through the various search engines: Scopus, PubMed, google scholar, Cochrane, etc., uses the selected keywords to explore the effect of the regenerative potential of several medicinal plants. Results: Through our research, we have proceeded to sort different medicinal plants, according to their repairing and regenerative potential on the different tissues of the oral cavity. Conclusion: Future studies are conceivable to explore the opportunities and potential provided by medicinal plants in the field of regenerative dentistry.
文摘背景:作为天然生物材料壳聚糖的一种衍生物,羧甲基壳聚糖具有独特的水溶性、成膜性、缓释性,在组织工程领域具有广阔的应用前景。目的:综述羧甲基壳聚糖相较于壳聚糖的优势以及在口腔组织再生方面的应用。方法:利用计算机检索PubMed、中国知网数据库相关文献,中文检索词“羧甲基壳聚糖AND组织工程,羧甲基壳聚糖AND口腔医学”,英文检索词“carboxymethyl chitosan AND tissue engineering,carboxymethyl chitosan AND(dentistry OR stomatology)”,检索时限为2006年1月至2021年10月,通过阅读和分析文献进行初步筛选,以排除重复文献和低相关性文献,最终纳入文献51篇进行结果分析。结果与结论:羧甲基壳聚糖作为一种具有良好生物相容性、可降解的无毒材料,在骨组织再生、牙体组织再生、牙周组织再生方面已取得理想的进展。羧甲基壳聚糖相比壳聚糖具有更好的水溶性、成膜性和离子结合性,这极大扩展了其在口腔组织工程的应用。羧甲基壳聚糖单独使用可发挥抗菌效果,促细胞增殖、分化,或是作为支架材料、水凝胶、改性材料与生物活性成分和生长因子联合使用均达到了预期的实验效果。