牙周炎
牙槽
牙周膜干细胞
破骨细胞
化学
牙周纤维
再生(生物学)
活性氧
骨吸收
细胞生物学
材料科学
牙科
碱性磷酸酶
生物化学
医学
体外
生物
内科学
酶
作者
Piaoye Ming,Yunfei Liu,Peiyang Yu,Xueyu Jiang,Linlin Yuan,Shuyu Cai,Pengcheng Rao,Rui Cai,Xiaorong Lan,Gang Tao,Jingang Xiao
出处
期刊:Small
[Wiley]
日期:2023-10-18
被引量:17
标识
DOI:10.1002/smll.202305490
摘要
Abstract Accumulation of reactive oxygen species (ROS) in periodontitis exacerbates the destruction of alveolar bone. Therefore, scavenging ROS to reshape the periodontal microenvironment, alleviate the inflammatory response and promote endogenous stem cell osteogenic differentiation may be an effective strategy for treating bone resorption in periodontitis. In this study, sericin‐hydroxyapatite nanoparticles (Se‐nHA NPs) are synthesized using a biomimetic mineralization method. Se‐nHA NPs and proanthocyanidins (PC) are then encapsulated in sericin/sodium alginate (Se/SA) using an electrostatic injection technique to prepare Se‐nHA/PC microspheres. Microspheres are effective in scavenging ROS, inhibiting the polarization of macrophages toward the M1 type, and inducing the polarization of macrophages toward the M2 type. In normal or macrophage‐conditioned media, the Se‐nHA/PC microspheres effectively promoted the osteogenic differentiation of human periodontal ligament stem cells (hPDLSCs). Furthermore, the Se‐nHA/PC microspheres demonstrated anti‐inflammatory effects in a periodontitis rat model by scavenging ROS and suppressing pro‐inflammatory cytokines. The Se‐nHA/PC microspheres are also distinguished by their capacity to decrease alveolar bone loss, reduce osteoclast activity, and boost osteogenic factor expression. Therefore, the biomimetic Se‐nHA/PC composite microspheres have efficient ROS‐scavenging, anti‐inflammatory, and osteogenic abilities and can be used as a multifunctional filling material for inflammatory periodontal tissue regeneration.
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