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Metalloproteins / Posttranslational modification / Biomimetic materials / Matrix metalloproteinase / Tissue inhibitor of metalloproteinases / Self-assembling peptide / Fibrin scaffold / Proteolysis / Insulin-degrading enzyme / Chemistry / Biology / Peptides


Available online at www.sciencedirect.com Biomaterials[removed]1713e1719 www.elsevier.com/locate/biomaterials Incorporation of a matrix metalloproteinase-sensitive substrate into
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Document Date: 2009-03-16 01:55:58


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Massachusetts General Hospital / One Bowdoin Square / University of Hong Kong / The Hong Kong University of Science / Peking University / Biopolymers Laboratory / Massachusetts Institute of Technology / /

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peptide solutions / power-law viscoelastic effects / peptide-amphiphile nanofiber networks / online version / cleavage products / peptide product / degradation products / imaging / crude product / mechanical energy storage / potential applications / target site / energy dissipation / chemical syntheses / viscous solutions / peptide solution / fluorescamine solution / tissue engineering applications / enzyme solution / glycineeglycine solution / nanotechnological applications / /

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Harvard Medical School / Center for Bits and Atoms / Department of Biomedical Engineering / Center for Biomedical Engineering / Advisory Board Foundation / China Department of Chemical Engineering / Hong Kong University of Science and Technology / Massachusetts General Hospital / Center for Laryngeal Surgery and Voice Rehabilitation / Massachusetts Institute of Technology / Eugene B. Casey Foundation / Department of Chemical Engineering / Peking University / Hong Kong Research Grants Council / University of Hong Kong / Oxford University / Department of Surgery / /

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