至今,GenScript的服务及产品已被Cell, Nature, Science, PNAS等1300多家生物医药类杂志引用近万次,处于行业领先水平。NIH、哈佛、耶鲁、斯坦福、普林斯顿、杜克大学等约400家全球著名机构使用GenScript的基因合成、多肽服务、抗体服务和蛋白服务等成功地发表科研成果,再次证明GenScript 有能力帮助业内科学家Make research easy.

Engineered Magneto-Piezoelectric Nanoparticles-Enhanced Scaffolds Disrupt Biofilms and Activate Oxidative Phosphorylation in Icam1+ Macrophages for Infectious Bone Defect Regeneration

ACS Nano. 2024-12; 
Hao Wu , Changcheng Chen , Jiangfeng Li , Dongmei Yu , Xun Wu , Hai Huang , Zhen Tang , Qi Wu , Shichao Yan , Ning Wang , Mo Wang , Feilong Wei , Yunlong Yu , Duan Wang , Mengting Shi , Xusong Yue , Pengfei Cao , Zenghui Zheng , Xiaokang Li , Baolin Guo , Lei Shi , Zheng Guo
Products/Services Used Details Operation
Proteins, Expression, Isolation and Analysis A total of 30 μg protein form each sample was subjected to SDS-PAGE electrophoresis (SurePAGETM, GenScript, Nanjing) and transferred to PVDF membrane (Merck Millipore, MA). Get A Quote

摘要

Infectious bone defects pose significant clinical challenges due to persistent infection and impaired bone healing. Icam1+ macrophages were identified as crucial and previously unrecognized regulators in the repair of bone defects, where impaired oxidative phosphorylation within this macrophage subset represents a significant barrier to effective bone regeneration. To address this challenge, dual-responsive iron-doped barium titanate (BFTO) nanoparticles were synthesized with magnetic and ultrasonic properties. These nanoparticles were further loaded with the anti-inflammatory agent curcumin and coated with engineered mesenchymal stem cell membranes (EMM) modified with γ3 peptide, creating BFTO-Cur@EMM nanopar... More

关键词

Icam1+ macrophages; antibacterial; bone regeneration; infectious bone defects; magneto-piezoelectric; oxidative phosphorylation.