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Self-assembly of surfactant-like peptides and their applications 被引量:1

Self-assembly of surfactant-like peptides and their applications
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摘要 Numerous peptides derived from naturally occurring proteins or de novo designed have been found to self-assemble into various nanostructures.These well-defined nanostructures have shown great potential for a variety of biomedical and biotechnological applications.In particular,surfactant-like peptides(SLPs)have distinctive advantages in their length,aggregating ability,and water solubility.In this article,we report recent advances in the mechanistic understanding of the self-assembly principles of SLPs and in their applications,most of which have been made in our laboratory.Hydrogen bonding between peptide backbones,hydrophobic interaction between hydrophobic side chains,and electrostatic repulsion between charged head groups all have roles in mediating the self-assembly of SLPs;the final self-assembled nanostructures are therefore dependent on their interplay.SLPs have shown diverse applications ranging from membrane protein stabilization and antimicrobial/anticancer agents to nanofabrication and biomineralization.Future advances in the self-assembly of SLPs will hinge on their large-scale production,the design of new functional SLPs with targeted properties,and the exploitation of new or improved applications. Numerous peptides derived from naturally occurring proteins or de novo designed have been found to self-assemble into various nanostructures.These well-defined nanostructures have shown great potential for a variety of biomedical and biotechnological applications.In particular,surfactant-like peptides(SLPs)have distinctive advantages in their length,aggregating ability,and water solubility.In this article,we report recent advances in the mechanistic understanding of the self-assembly principles of SLPs and in their applications,most of which have been made in our laboratory.Hydrogen bonding between peptide backbones,hydrophobic interaction between hydrophobic side chains,and electrostatic repulsion between charged head groups all have roles in mediating the self-assembly of SLPs;the final self-assembled nanostructures are therefore dependent on their interplay.SLPs have shown diverse applications ranging from membrane protein stabilization and antimicrobial/anticancer agents to nanofabrication and biomineralization.Future advances in the self-assembly of SLPs will hinge on their large-scale production,the design of new functional SLPs with targeted properties,and the exploitation of new or improved applications.
出处 《Science China Chemistry》 SCIE EI CAS 2014年第12期1634-1645,共12页 中国科学(化学英文版)
基金 supported by the National Natural Science Foundation of China(21373270,21033005) the Natural Science Foundation of Shandong Province(JQ201105). the support of the Program for New Century Excellent Talents in University(NCET-11-0735)
关键词 surfactant-like peptides SELF-ASSEMBLY MECHANISM APPLICATIONS 应用程序 表面活性剂 自组装 疏水相互作用 纳米结构 疏水性侧链 规模化生产
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  • 1Whitesides GM, Grzybowski B. Self-assembly at all scales. Science, 2002, 295:2418-2421.
  • 2Whitesides GM, Boncheva M. Beyond molecules: self-assembly of mesoscopic and macroscopic components. Proc Natl Acad Sci USA, 2002, 99:4769-4774.
  • 3Dobson CM. Protein folding and misfolding. Nature, 2003, 426: 884-890.
  • 4Winfree E, Liu F, Wenzler LA, Seeman NC. Design and self- assembly of two-dimensional DNA crystals. Nature, 1998, 394: 539- 544.
  • 5Rothemund PWK. Folding DNA to create nanoscale shapes and pat- terns. Nature, 2006, 440:297-302.
  • 6Ghadiri MR, Granja JR, Milligan RA, McRee DE, Khazanovich N. Self-assembling organic nanotubes based on a cyclic peptide archi-tecture. Nature, 1993, 366:324-347.
  • 7Zhang S, Holmes T, Lockshin C, Rich A. Spontaneous assembly of a self-complementary oligopeptide to form a stable macroscopic mem- brane. Proc Natl Acad Sci USA, 1993, 90:3334-3338.
  • 8Hartgerink JD, Beniash E, Stupp SI. Self-assembly and mineraliza- tion of peptide-amphiphile nanofibers. Science, 2001, 294: 1684- 1688.
  • 9Reches M, Gazit E. Casting metal nanowires within discrete self-assembled peptide nanotubes. Science, 2003, 300:625-627.
  • 10Zhang S. Fabrication of novel biomaterials through molecular self- assembly. Nat Biotech, 2003, 21 : 1171-1178.

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