Self-assembly of hierarchically ordered structures in DNA nanotube systems

被引:24
|
作者
Glaser, Martin [1 ,2 ]
Schnauss, Joerg [1 ,2 ]
Tschirner, Teresa [1 ,2 ]
Schmidt, B. U. Sebastian [1 ]
Moebius-Winkler, Maximilian [2 ]
Kaes, Josef A. [1 ]
Smith, David M. [2 ]
机构
[1] Univ Leipzig, Inst Expt Phys 1, Fac Phys & Earth Sci, Linnestr 5, D-04103 Leipzig, Germany
[2] Fraunhofer Inst Cell Therapy & Immunol IZI, DNA Nanodevices Grp, Perlickstr 1, D-04103 Leipzig, Germany
来源
NEW JOURNAL OF PHYSICS | 2016年 / 18卷
关键词
self-assembly; DNA; DNA nanotubes; aster; depletion forces; persistence length; F-ACTIN; ORGANIZATION; DELIVERY; PHASE; CRYSTALLIZATION; MICROTUBULES; NETWORKS; VEHICLES; ORIGAMI; MOTORS;
D O I
10.1088/1367-2630/18/5/055001
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
The self-assembly of molecular and macromolecular building blocks into organized patterns is a complex process found in diverse systems over a wide range of size and time scales. The formation of star-or aster-like configurations, for example, is a common characteristic in solutions of polymers or other molecules containing multi-scaled, hierarchical assembly processes. This is a recurring phenomenon in numerous pattern-forming systems ranging from cellular constructs to solutions of ferromagnetic colloids or synthetic plastics. To date, however, it has not been possible to systematically parameterize structural properties of the constituent components in order to study their influence on assembled states. Here, we circumvent this limitation by using DNA nanotubes with programmable mechanical properties as our basic building blocks. A small set of DNA oligonucleotides can be chosen to hybridize into micron-length DNA nanotubes with a well-defined circumference and stiffness. The self-assembly of these nanotubes to hierarchically ordered structures is driven by depletion forces caused by the presence of polyethylene glycol. This trait allowed us to investigate self-assembly effects while maintaining a complete decoupling of density, self-association or bundling strength, and stiffness of the nanotubes. Our findings show diverse ranges of emerging structures including heterogeneous networks, aster-like structures, and densely bundled needle-like structures, which compare to configurations found in many other systems. These show a strong dependence not only on concentration and bundling strength, but also on the underlying mechanical properties of the nanotubes. Similar network architectures to those caused by depletion forces in the low-density regime are obtained when an alternative hybridization-based bundling mechanism is employed to induce self-assembly in an isotropic network of pre-formed DNA nanotubes. This emphasizes the universal effect inevitable attractive forces in crowded environments have on systems of self-assembling soft matter, which should be considered for macromolecular structures applied in crowded systems such as cells.
引用
收藏
页数:13
相关论文
共 50 条
  • [1] Ordered self-assembly of DNA-modified nanoparticles in salt solutions
    Yu, Qiuyan
    Chen, Jiwei
    Shi, Dongjian
    Chen, Mingqing
    COLLOIDS AND SURFACES A-PHYSICOCHEMICAL AND ENGINEERING ASPECTS, 2023, 671
  • [2] Self-assembly of DNA on a gapped carbon nanotube
    Bobadilla, Alfredo D.
    Seminario, Jorge M.
    JOURNAL OF MOLECULAR MODELING, 2012, 18 (07) : 3291 - 3300
  • [3] Self-assembly of DNA on a gapped carbon nanotube
    Alfredo D. Bobadilla
    Jorge M. Seminario
    Journal of Molecular Modeling, 2012, 18 : 3291 - 3300
  • [4] Electric Field Controlled Self-Assembly of Hierarchically Ordered Membranes
    Velichko, Yuri S.
    Mantei, Jason R.
    Bitton, Ronit
    Carvajal, Daniel
    Shull, Kenneth R.
    Stupp, Samuel I.
    ADVANCED FUNCTIONAL MATERIALS, 2012, 22 (02) : 369 - 377
  • [5] Self-assembly of SnO2 quantum dots into hierarchically ordered structures assisted by oriented attachment
    Zhuang, Zanyong
    Xue, Xiaogang
    Lin, Zhang
    PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2015, 17 (07) : 4845 - 4848
  • [6] Self-Assembly of Nanocellulose and Indomethacin into Hierarchically Ordered Structures with High Encapsulation Efficiency for Sustained Release Applications
    Gao, Jiali
    Li, Qing
    Chen, Wenshuai
    Liu, Yixing
    Yu, Haipeng
    CHEMPLUSCHEM, 2014, 79 (05): : 725 - 731
  • [7] Materials design by DNA programmed self-assembly
    Knorowski, C.
    Travesset, A.
    CURRENT OPINION IN SOLID STATE & MATERIALS SCIENCE, 2011, 15 (06) : 262 - 270
  • [8] Formation of macroscopically ordered carbon nanotube membranes by self-assembly
    Shimoda, H
    Fleming, L
    Horton, K
    Zhou, O
    PHYSICA B-CONDENSED MATTER, 2002, 323 (1-4) : 135 - 136
  • [9] Nanoscale Structures and Materials from the Self-assembly of Polypeptides and DNA
    Bernal-Chanchavac, Julio
    Al-Amin, Md
    Stephanopoulos, Nicholas
    CURRENT TOPICS IN MEDICINAL CHEMISTRY, 2022, 22 (08) : 699 - 712
  • [10] Formation of Ordered Biomolecular Structures by the Self-assembly of Short Peptides
    Yuran, Sivan
    Reches, Meital
    JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, 2013, (81): : e50946