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Cyclodextrin-Based Supramolecular Complexes of Osteoinductive Agents for Dental Tissue Regeneration

机译:基于环糊精的基于骨诱导剂的超分子复合物用于牙科组织再生

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摘要

Oral tissue regeneration has received growing attention for improving the quality of life of patients. Regeneration of oral tissues such as alveolar bone and widely defected bone has been extensively investigated, including regenerative treatment of oral tissues using therapeutic cells and growth factors. Additionally, small-molecule drugs that promote bone formation have been identified and tested as new regenerative treatment. However, treatments need to progress to realize successful regeneration of oral functions. In this review, we describe recent progress in development of regenerative treatment of oral tissues. In particular, we focus on cyclodextrin (CD)-based pharmaceutics and polyelectrolyte complexation of growth factors to enhance their solubility, stability, and bioactivity. CDs can encapsulate hydrophobic small-molecule drugs into their cavities, resulting in inclusion complexes. The inclusion complexation of osteoinductive small-molecule drugs improves solubility of the drugs in aqueous solutions and increases in vitro osteogenic differentiation efficiency. Additionally, various anionic polymers such as heparin and its mimetic polymers have been developed to improve stability and bioactivity of growth factors. These polymers protect growth factors from deactivation and degradation by complex formation through electrostatic interaction, leading to potentiation of bone formation ability. These approaches using an inclusion complex and polyelectrolyte complexes have great potential in the regeneration of oral tissues.
机译:口腔组织再生受到改善患者的生活质量的关注。已经广泛研究了肺泡骨和广泛偏转的骨的口腔组织的再生,包括使用治疗细胞和生长因子的口腔组织再生治疗。另外,已鉴定出促进骨形成的小分子药物作为新的再生治疗。但是,治疗需要进展,以实现成功的口语职能再生。在本文中,我们描述了最近在口腔组织进行再生治疗方面的进展。特别是,我们专注于基于环糊精(CD)的药物和生长因子的聚电解质络合,以提高它们的溶解度,稳定性和生物活性。 CD可以将疏水性小分子药物包封在其腔中,导致包含复合物。骨诱导小分子药物的包涵体络合改善了药物在水溶液中的溶解度,并增加了体外骨质化分化效率。另外,已经开发出各种阴离子聚合物如肝素及其模拟聚合物,以改善生长因子的稳定性和生物活性。这些聚合物通过静电相互作用通过复杂的形成保护生长因子和通过复杂的形成降解,导致骨形成能力的增强。使用包含复合物和聚电解质配合物的这些方法在口腔组织的再生中具有很大的潜力。

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