2022
DOI: 10.1016/j.bioactmat.2022.02.006
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Constructions of ROS-responsive titanium-hydroxyapatite implant for mesenchymal stem cell recruitment in peri-implant space and bone formation in osteoporosis microenvironment

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Cited by 42 publications
(29 citation statements)
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“…However, the classic markers of late osteogenesis, OPN and OCN showed significant difference between H 2 O 2 +PBS group and H 2 O 2 +Hydrogel group until the 14th day ( Figures 5G, H ). To sum up, the presence of H 2 O 2 will inhibit the osteogenic differentiation ability of rBMSCs, which is specifically manifested by the reduction of calcium nodule deposition and the downregulation of osteogenic markers, consistent with previous studies ( Chen M. et al, 2022 ; Shen et al, 2022 ). However, the introduction of EGCG-based hydrogel with ROS-scavenging capacity can reshape the oxidative stress microenvironment in order to facilitate the osteogenic differentiation of rBMSCs.…”
Section: Resultssupporting
confidence: 90%
See 1 more Smart Citation
“…However, the classic markers of late osteogenesis, OPN and OCN showed significant difference between H 2 O 2 +PBS group and H 2 O 2 +Hydrogel group until the 14th day ( Figures 5G, H ). To sum up, the presence of H 2 O 2 will inhibit the osteogenic differentiation ability of rBMSCs, which is specifically manifested by the reduction of calcium nodule deposition and the downregulation of osteogenic markers, consistent with previous studies ( Chen M. et al, 2022 ; Shen et al, 2022 ). However, the introduction of EGCG-based hydrogel with ROS-scavenging capacity can reshape the oxidative stress microenvironment in order to facilitate the osteogenic differentiation of rBMSCs.…”
Section: Resultssupporting
confidence: 90%
“…In addition, BMSCs also have a hand in the healing stages of inflammation, repair, and remodeling together with stromal cells, progenitor cells, pro-inflammatory (M1 phenotype) macrophages, and anti-inflammatory (M2 phenotype) macrophages ( Zou et al, 2021 ; Arostegui et al, 2022 ). After directional differentiation into osteoblasts, BMSCs secrete a series of components of extracellular bone matrix to enhance the deposition of calcium ions in situ , thus inducing the formation of mature bone tissues ( Grayson et al, 2015 ; Chen M. et al, 2022 ). Therefore, the quantity of BMSCs and their capacity to differentiate into osteoblasts in the injury microenvironment play a critical role in the early bone repair process.…”
Section: Introductionmentioning
confidence: 99%
“…Despite the fact that BMSCs have excellent regenerative capabilities in various tissues, the characteristics of BMSCs under pathological conditions differ significantly [32]. Previous in vitro studies of regenerative medicine mainly used normalstate BMSCs or MC3T3-E1 preosteoblast cell lines, ignoring the importance of directly studying BMSCs with impaired functions under pathological conditions [33,34]. Therefore, we first confirmed the successful establishment of aged osteoporosis (18-month-old male rats) by 3D reconstruction of micro-CT (Figures S2(a)).…”
Section: Isolation Identification and Characterization Of Bmscsmentioning
confidence: 99%
“…The released calcium and phosphate ions were assembled into amorphous calcium phosphate (ACP) in the endoplasmic reticulum and might be involved in the formation of new bone apatite. The binding of ACP and collagen promoted the formation of mineralized extracellular matrix, providing a favorable environment for further bone regeneration and osseointegration in vivo …”
Section: Resultsmentioning
confidence: 99%
“…It was found that PPENK3-PDA/P-HA and PPENK-PDA/P-HA reached higher expression of the ALP and Col-1 genes at day 7 and the Runx2 gene was able to show a significant increase at 14 days. The phosphonate-induced apatite coating was able to promote the upregulation of ALP and Col-1 in the early stage, which increased the expression of 55 Among the differentiation characteristics of the MC3T3-E1 preosteoblasts, we found significant differences between PPENK-PDA/P-HA and PPENK3-PDA/P-HA in terms of osteogenic differentiation. The samples were cocultured with cells for a longer period of time and were susceptible to loss of coating due to external forces on experimental manipulation.…”
Section: Osteogenic Differentiationmentioning
confidence: 96%