화학공학소재연구정보센터
학회 한국고분자학회
학술대회 2019년 봄 (04/10 ~ 04/12, 부산컨벤션센터(BEXCO))
권호 44권 1호
발표분야 의료용 고분자 부문위원회 I (영어발표)
제목 Dynamic biomaterials for mechanobiology
초록 We developed a method of polymerization control in whinch the differential diffusion distance of unreacted cross-linker and monomer into a prepolymerized hydrogel sink results in a tunable stiffness gradient at the cell-matrix interface. This simple, low-cost, robust method was used to produce polyacrylamide hydrogels with stiffness gradients, spanning the invivo physiological and pathological mechanical landscape. Importantly, three of gradients were found to be nondurotactic for human adipose-derived stem cells(hASCs), allowing the presentation of a continuous range of stiffnesses in a single well without the confounding effect of differential cell migration. Using these nondurotactic gradient gels, stiffness-dependent hASC morphology, migraion, and differentiation were studied. Finally, the mechanosensitive proteins YAP, Lamin A/C, Lamin B, MRTF-A, and MRTF-B were analyzed on these gradients, providing higher-resolution data on stiffness-dependent expression and localization.
저자 Yu Suk Choi1, William J Hadden2, Jennifer L Young3, Andrew W Holle3, Joachim Spatz3, Adam Engler4
소속 1Univ. of Western Australia, 2Sydney Medical School, 3Max-Planck-Institute for Intelligent Systems, 4Univ. of California
키워드 biomaterial; hydrogel; stem cell
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