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Hierarchical self-assembly of a collagen mimetic peptide (PKG)n(POG)2n(DOG)n via electrostatic interactions

Hierarchical self-assembly of a collagen mimetic peptide (PKG)n(POG)2n(DOG)n via electrostatic interactions
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摘要 A new type of collagen mimetic peptide, (PKG)n(POG)2n(DOG)n, with charged-domain ends had been designed and successfully prepared in this work, which self-assembled into collagen-like triple helices homotrimers. The collagen-like homo- trimers underwent higher level of self-assembly via static electrical interaction between positive and negative domains. Transmission electron microscope (TEM) examinations showed three typical morphologies of homotrimer assembly, which were defined as film, bicontinuous and fibril morphology in this paper. The film was formed in the initial stage and gradually transformed to bicontinuous or fibril morphology to improve stability of the assemblies or decrease surface energy. Furthermore, mechanism of assembly process was proposed based on TEM observations and theoretical analyses of packing equation. A new type of collagen mimetic peptide, (PKG)n(POG)2n(DOG)n, with charged-domain ends had been designed and successfully prepared in this work, which self-assembled into collagen-like triple helices homotrimers. The collagen-like homo- trimers underwent higher level of self-assembly via static electrical interaction between positive and negative domains. Transmission electron microscope (TEM) examinations showed three typical morphologies of homotrimer assembly, which were defined as film, bicontinuous and fibril morphology in this paper. The film was formed in the initial stage and gradually transformed to bicontinuous or fibril morphology to improve stability of the assemblies or decrease surface energy. Furthermore, mechanism of assembly process was proposed based on TEM observations and theoretical analyses of packing equation.
出处 《Frontiers of Computer Science》 SCIE EI CSCD 2011年第3期293-300,共8页 中国计算机科学前沿(英文版)
关键词 collagen mimetic peptide assembly morphology collagen mimetic, peptide assembly, morphology
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