Product References
Magnetic Field Boosts the Transmembrane Transport Efficiency of Magnesium Ions from PLLA Bone Scaffold.
Small (Weinheim an der Bergstrasse, Germany)
Yan Z,Sun T,Tan W,Wang Z,Yan J,Miao J,Wu X,Feng P,Deng Y
PA5-96529 was used in Immunocytochemistry to show that the magnetic magnesium-loaded scaffold, under the action of SMF, can accelerate the inflow of Mg2+ from surrounding microenvironment, which improved cellular activities, osteogenesis-related gene expression (ALP, Runx2, OCN, and OPN), and mineralization.
Sun Oct 01 00:00:00 UTC 2023
3D-printed NIR-responsive shape memory polyurethane/magnesium scaffolds with tight-contact for robust bone regeneration.
Bioactive materials
Zhang Y,Li C,Zhang W,Deng J,Nie Y,Du X,Qin L,Lai Y
PA5-96529 was used in Immunohistochemistry (Paraffin) to report a near-infrared-responsive and tight-contacting scaffold that comprises of shape memory polyurethane (SMPU) as the thermal-responsive matrix and magnesium (Mg) as the photothermal and bioactive component, which fabricated by the low temperature rapid prototyping (LT-RP) 3D printing technology.
Sat Oct 01 00:00:00 UTC 2022
Mechanics-driven nuclear localization of YAP can be reversed by N-cadherin ligation in mesenchymal stem cells.
Nature communications
Zhang C,Zhu H,Ren X,Gao B,Cheng B,Liu S,Sha B,Li Z,Zhang Z,Lv Y,Wang H,Guo H,Lu TJ,Xu F,Genin GM,Lin M
PA5-96529 was used in Immunocytochemistry to demonstrate that controlled storage and removal of proteins associated with mechanical memory in mesenchymal stem cells is possible through defined and programmable material systems.
Thu Oct 28 00:00:00 UTC 2021
Mechanics-driven nuclear localization of YAP can be reversed by N-cadherin ligation in mesenchymal stem cells.
Nature communications
Zhang C,Zhu H,Ren X,Gao B,Cheng B,Liu S,Sha B,Li Z,Zhang Z,Lv Y,Wang H,Guo H,Lu TJ,Xu F,Genin GM,Lin M
PA5-96529 was used in Immunocytochemistry to demonstrate that controlled storage and removal of proteins associated with mechanical memory in mesenchymal stem cells is possible through defined and programmable material systems.
Thu Oct 28 00:00:00 UTC 2021