In Situ Magnetic Control of Macroscale Nanoligand Density Regulates the Adhesion and Differentiation of Stem Cells

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초록

Developing materials with remote controllability of macroscale ligand presentation can mimic extracellular matrix (ECM) remodeling to regulate cellular adhesion in vivo. Herein, we designed charged mobile nanoligands with superparamagnetic nanomaterials amine-functionalized and conjugated with poly-ethylene glycol linker and negatively charged RGD ligand. We coupled negatively a charged nanoligand to a positively charged substrate by optimizing electrostatic interactions to allow reversible planar movement. We demonstrate the imaging of both macroscale and in situ nanoscale nanoligand movement by magnetically attracting charged nanoligand to manipulate macroscale ligand density. We show that in situ magnetic control of attracting charged nanoligand facilitates stem cell adhesion, both in vitro and in vivo, with reversible control. Furthermore, we unravel that in situ magnetic attraction of charged nanoligand stimulates mechanosensing- mediated differentiation of stem cells. This remote controllability of ECM-mimicking reversible ligand variations is promising for regulating diverse reparative cellular processes in vivo.

키워드

charged nanoligandspatial ligand movementreversible ligand movementcell adhesionstem cell differentiationGROWTHMANIPULATIONMOTILITYIMPACTMATRIXORDER
제목
In Situ Magnetic Control of Macroscale Nanoligand Density Regulates the Adhesion and Differentiation of Stem Cells
저자
Khatua, ChandraMin, SunhongJung, Hee JoonShin, Jeong EunLi, NaJun, IndongLiu, Hui-WenBae, GunhyuChoi, HyojunKo, Min JunJeon, Yoo SangKim, Yu JinLee, JoonbumKo, MinjiShim, GyuboShin, HongchulLee, SangbumChung, SeokKim, Young KeunSong, Jae-JunDravid, Vinayak P.Kang, Heemin
DOI
10.1021/acs.nanolett.0c00559
발행일
2020-06-10
유형
Article
저널명
Nano Letters
20
6
페이지
4188 ~ 4196