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用富含多酚的果渣提取物进行功能化处理,赋予陶瓷骨填充材料体外抗氧化、抗炎和成骨特性。

Functionalization with a Polyphenol-Rich Pomace Extract Empowers a Ceramic Bone Filler with In Vitro Antioxidant, Anti-Inflammatory, and Pro-Osteogenic Properties.

作者信息

Iviglia Giorgio, Torre Elisa, Cassinelli Clara, Morra Marco

机构信息

Nobil Bio Ricerche srl, Via Valcastellana 26, 14037 Portacomaro, AT, Italy.

出版信息

J Funct Biomater. 2021 May 5;12(2):31. doi: 10.3390/jfb12020031.

Abstract

Oral diseases and periodontitis in particular are a major health burden worldwide, because of their association with various systemic diseases and with conditions such as peri-implantitis. Attempts have been made over the years to reverse bone loss due to the host disproportionate inflammatory response and to prevent failure of dental implants. To this end, the use of biomaterials functionalized with molecules characterized by anti-inflammatory and antioxidant properties could represent a new frontier for regenerating functional periodontal tissues. In this study, a new ceramic granulated biomaterial, named Synergoss Red (SR), functionalized with a polyphenolic mixture extracted from pomace of the Croatina grape variety, is introduced. Following a preliminary in-depth characterization of the extract by HPLC analysis and of the biomaterial surface and composition, we performed evaluations of cytocompatibility and a biological response through in vitro assays. The anti-inflammatory and antioxidant properties of the identified phenolic molecules contained in SR were shown to downregulate inflammation in macrophages, to stimulate in osteoblast-like cells the expression of genes involved in deposition of the early bone matrix, and to mitigate bone remodeling by decreasing the RANKL/OPG ratio. Thanks to its cytocompatibility and assorted beneficial effects on bone regeneration, SR could be considered an innovative regenerative approach in periodontal therapy.

摘要

口腔疾病,尤其是牙周炎,是全球范围内的一项重大健康负担,因为它们与各种全身性疾病以及种植体周围炎等病症相关联。多年来,人们一直在尝试逆转因宿主过度炎症反应导致的骨质流失,并防止牙种植体失败。为此,使用具有抗炎和抗氧化特性分子功能化的生物材料可能成为功能性牙周组织再生的一个新前沿领域。在本研究中,引入了一种新型陶瓷颗粒生物材料,名为协同红(SR),它用从科拉蒂纳葡萄品种的果渣中提取的多酚混合物进行了功能化处理。在通过高效液相色谱分析对提取物以及生物材料表面和成分进行初步深入表征之后,我们通过体外试验进行了细胞相容性和生物学反应的评估。结果表明,SR中所含已鉴定酚类分子的抗炎和抗氧化特性可下调巨噬细胞中的炎症反应,刺激成骨样细胞中参与早期骨基质沉积的基因表达,并通过降低RANKL/OPG比值来减轻骨重塑。由于其细胞相容性以及对骨再生的各种有益作用,SR可被视为牙周治疗中的一种创新再生方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bb1/8167574/8b308c444a02/jfb-12-00031-g001.jpg

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