4.5 Article

Optically Transparent Recombinant Silk-Elastinlike Protein Polymer Films

Journal

JOURNAL OF PHYSICAL CHEMISTRY B
Volume 115, Issue 7, Pages 1608-1615

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jp109764f

Keywords

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Funding

  1. NIBIB [R21EB009160]
  2. NSF [CMMI0856215]
  3. Div Of Civil, Mechanical, & Manufact Inn
  4. Directorate For Engineering [0856215] Funding Source: National Science Foundation

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Recombinant protein polymers, evaluated extensively as biomaterials for applications in drug delivery and tissue engineering, are rarely reported as being optically transparent. Here we report the notable optical transparency of films composed of a genetically engineered silk-elastinlike protein polymer SELP-47K. SELP-47K films of 100 pm. in thickness display a c transmittance of 93% in the wavelength range of 350-800 nm. While covalent cross-linking of SELP-47K via glutaraldehyde decreases its transmittance to 77% at the wavelength of 800 nm, noncovalent cross-linking using methanol slightly increases it to 95%. Non- and covalent cross-linking of SELP-47K films also influences their secondary structures and water contents. Cell viability and proliferation analyses further reveal the excellent cytocompatibility of both non- and covalently cross-linked SELP-47K films. The combination of high optical transparency and cytocompatibility of SELP-47K films, together with their previously reported outstanding mechanical properties, suggests that this protein polymer may be useful in unique, new biomedical applications.

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