Directed self-Assembly of proteins into discrete radial patterns

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Abstract

Unlike physical patterning of materials at nanometer scale, manipulating soft matter such as biomolecules into patterns is still in its infancy. Self-Assembled monolayer (SAM) with surface density gradient has the capability to drive biomolecules in specific directions to create hierarchical and discrete structures. Here, we report on a two-step process of self-Assembly of the human serum albumin (HSA) protein into discrete ring structures based on density gradient of SAM. The methodology involves first creating a 2-dimensional (2D) polyethylene glycol (PEG) islands with responsive carboxyl functionalities. Incubation of proteins on such pre-patterned surfaces results in direct self-Assembly of protein molecules around PEG islands. Immobilization and adsorption of protein on such structures over time evolve into the self-Assembled patterns.

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Thakur, G., Prashanthi, K., & Thundat, T. (2013). Directed self-Assembly of proteins into discrete radial patterns. Scientific Reports, 3. https://doi.org/10.1038/srep01923

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