Peptide Design and Self-assembly into Targeted Nanostructure and Functional Materials

被引:164
|
作者
Sinha, Nairiti J. [1 ]
Langenstein, Matthew G. [1 ]
Pochan, Darrin J. [1 ]
Kloxin, Christopher J. [1 ,2 ]
Saven, Jeffery G. [3 ]
机构
[1] Univ Delaware, Dept Mat Sci & Engn, Newark, DC 19716 USA
[2] Univ Delaware, Dept Chem & Biomol Engn, Newark, DC 19716 USA
[3] Univ Penn, Dept Chem, Philadelphia, PA 19104 USA
关键词
ALPHA-HELICAL PEPTIDE; COILED-COIL PEPTIDE; ANGLE NEUTRON-SCATTERING; NOVO PROTEIN DESIGN; RATIONAL DESIGN; COMPUTATIONAL DESIGN; POLYPEPTIDE VESICLES; SECONDARY STRUCTURE; BETA-SHEET; DNA;
D O I
10.1021/acs.chemrev.1c00712
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Peptides have been extensively utilized to construct nanomaterials that display targeted structure through hierarchical assembly. The self-assembly of both rationally designed peptides derived from naturally occurring domains in proteins as well as intuitively or computationally designed peptides that form beta-sheets and helical secondary structures have been widely successful in constructing nanoscale morphologies with well-defined 1-d, 2-d, and 3-d architectures. In this review, we discuss these successes of peptide self-assembly, especially in the context of designing hierarchical materials. In particular, we emphasize the differences in the level of peptide design as an indicator of complexity within the targeted self-assembled materials and highlight future avenues for scientific and technological advances in this field.
引用
收藏
页码:13915 / 13935
页数:21
相关论文
共 50 条
  • [21] Nanoparticle Self-Assembly: From Design Principles to Complex Matter to Functional Materials
    Rao, Anish
    Roy, Sumit
    Jain, Vanshika
    Pillai, Pramod P.
    ACS APPLIED MATERIALS & INTERFACES, 2023, 15 (21) : 25248 - 25274
  • [22] Peptide self-assembly in functional polymer science and engineering
    Zhang, SG
    Altman, M
    REACTIVE & FUNCTIONAL POLYMERS, 1999, 41 (1-3): : 91 - 102
  • [23] Liquid crystals: materials design and self-assembly
    Dierking, Ingo
    LIQUID CRYSTALS TODAY, 2015, 24 (04) : 116 - 118
  • [24] Materials design by DNA programmed self-assembly
    Knorowski, C.
    Travesset, A.
    CURRENT OPINION IN SOLID STATE & MATERIALS SCIENCE, 2011, 15 (06): : 262 - 270
  • [25] Self-assembly of bioactive peptides, peptide conjugates, and peptide mimetic materials
    Edwards-Gayle, Charlotte J. C.
    Hamley, Ian W.
    ORGANIC & BIOMOLECULAR CHEMISTRY, 2017, 15 (28) : 5867 - 5876
  • [26] Inverse design of grafted nanoparticles for targeted self-assembly
    Chao, Huikuan
    Riggleman, Robert A.
    MOLECULAR SYSTEMS DESIGN & ENGINEERING, 2018, 3 (01): : 214 - 222
  • [27] Rational design of polyfluorinated peptide-based materials: self-assembly of an amphiphilic motif
    Iannuzzi, Maurizio
    Fiedler, Holly
    Chowdhary, Suvrat
    Thuenemann, Andreas
    Schade, Boris
    Quaas, Elisa
    Netz, Roland
    Koksch, Beate
    JOURNAL OF PEPTIDE SCIENCE, 2024, 30
  • [28] Self-assembly and nanostructure formation of multi-functional organic π-donors
    Iyoda, Masahiko
    Hasegawa, Masashi
    Enozawa, Hideo
    CHEMISTRY LETTERS, 2007, 36 (12) : 1402 - 1407
  • [29] A Review on Inorganic Nanostructure Self-Assembly
    Wang, Yuehui
    Zhou, Weidong
    JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2010, 10 (03) : 1563 - 1583
  • [30] Photoinduced self-assembly of nanostructure in glass
    Shimotsuma, Y.
    Asai, T.
    Sakakura, M.
    Hirao, K.
    Miura, K.
    Kazansky, P. G.
    PROGRESS IN ULTRAFAST LASER MODIFICATIONS OF MATERIALS, 2013, 8