Zhang Zhanping, Ma Hongwei, Hausner Douglas B, Chilkoti Ashutosh, Beebe Thomas P
Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.
Biomacromolecules. 2005 Nov-Dec;6(6):3388-96. doi: 10.1021/bm050446d.
New applications in regenerative biotechnology require the ability to understand and control protein-surface interactions on micrometer and submicrometer length scales. Evidence presented here shows that micropatterned amphiphilic comb polymer films exhibit a pretreatment-dependent behavior with respect to protein adsorption for the proteins fibronectin, laminin, and for serum. A micropatterned surface, consisting of protein-reactive regions, separated by comb polymer, was created and tested for protein adsorption using the surface-sensitive imaging tool TOF-SIMS. Immersion of micropatterned surfaces in solutions of fibronectin or laminin resulted in uniform protein coverage on both the comb polymer and protein-reactive regions. However, preimmersion of similarly patterned surfaces in water for 2 h prior to protein incubation was found to dramatically improve the protein-resistant properties of the comb polymer regions. These results are consistent with poly(ethylene glycol) (PEG) side chain reorientation and/or hydration and poly(methyl methacrylate) (PMMA) backbone segregation away from the interface region.
再生生物技术中的新应用需要具备在微米和亚微米长度尺度上理解和控制蛋白质-表面相互作用的能力。此处给出的证据表明,对于纤连蛋白、层粘连蛋白以及血清中的蛋白质而言,微图案化两亲梳状聚合物薄膜在蛋白质吸附方面呈现出预处理依赖性行为。创建了一个由梳状聚合物分隔的蛋白质反应区域组成的微图案化表面,并使用表面敏感成像工具飞行时间二次离子质谱(TOF-SIMS)对其蛋白质吸附情况进行测试。将微图案化表面浸入纤连蛋白或层粘连蛋白溶液中会导致梳状聚合物和蛋白质反应区域都被蛋白质均匀覆盖。然而,发现在蛋白质孵育前将类似图案化的表面预先在水中浸泡2小时可显著改善梳状聚合物区域的抗蛋白质特性。这些结果与聚乙二醇(PEG)侧链重新取向和/或水合以及聚甲基丙烯酸甲酯(PMMA)主链从界面区域分离一致。