Design of virus-based nanomaterials for medicine, biotechnology, and energy.

Design of virus-based nanomaterials for medicine, biotechnology, and energy.
复制标题

基于病毒的纳米材料的设计,用于医学,生物技术和能量。

DOI:
10.1039/c5cs00287g
复制
发表时间:
2016-07-25
影响因子:
46.2
通讯作者:
Steinmetz NF
Steinmetz NF
中科院分区:
化学1区
文献类型:
--
作者:
Wen AM;Steinmetz NF

文献摘要

参考文献

被引文献

相似文献

基于病毒的纳米材料是一种多功能材料,可以自然自组装,并与包括医学,生物技术和能源在内的广泛应用相关。本文综述了“化学病毒学”的最新进展。病毒作为材料,提供了独特的纳米尺度支架,其在化学生物学和纳米技术中具有相关性,具有不同的应用领域。与合成程序化材料相比,病毒的一些基本优势包括其亚基高度精确的空间排列成各种形状和大小,以及许多容易和可重复的修饰途径。在这里,我们将首先调查病毒的广泛分布和生产基于病毒的纳米颗粒的各种方法,以及用于赋予新功能的工程原理。然后,我们将研究基于病毒的材料的广泛应用和影响,重点是医疗,生物技术和能源部门。我们预计,这一领域将继续发展和增长,令人兴奋的新的可能性源于基于病毒的纳米材料的合理设计的进步。
Virus-based nanomaterials are versatile materials that naturally self-assemble and have relevance for a broad range of applications including medicine, biotechnology, and energy. This review provides an overview of recent developments in “chemical virology.” Viruses, as materials, provide unique nanoscale scaffolds that have relevance in chemical biology and nanotechnology, with diverse areas of applications. Some fundamental advantages of viruses, compared to synthetically programmed materials, include the highly precise spatial arrangement of their subunits into a diverse array of shapes and sizes and many available avenues for easy and reproducible modification. Here, we will first survey the broad distribution of viruses and various methods for producing virus-based nanoparticles, as well as engineering principles used to impart new functionalities. We will then examine the broad range of applications and implications of virus-based materials, focusing on the medical, biotechnology, and energy sectors. We anticipate that this field will continue to evolve and grow, with exciting new possibilities stemming from advancements in the rational design of virus-based nanomaterials.
DOI: 10.1056/nejmoa1411100
发表时间: 2014-10-16
期刊: The New England journal of medicine
影响因子: --
作者:
WHO Ebola Response Team;Aylward B;Barboza P;Bawo L;Bertherat E;Bilivogui P;Blake I;Brennan R;Briand S;Chakauya JM;Chitala K;Conteh RM;Cori A;Croisier A;Dangou JM;Diallo B;Donnelly CA;Dye C;Eckmanns T;Ferguson NM;Formenty P;Fuhrer C;Fukuda K;Garske T;Gasasira A;Gbanyan S;Graaff P;Heleze E;Jambai A;Jombart T;Kasolo F;Kadiobo AM;Keita S;Kertesz D;Koné M;Lane C;Markoff J;Massaquoi M;Mills H;Mulba JM;Musa E;Myhre J;Nasidi A;Nilles E;Nouvellet P;Nshimirimana D;Nuttall I;Nyenswah T;Olu O;Pendergast S;Perea W;Polonsky J;Riley S;Ronveaux O;Sakoba K;Santhana Gopala Krishnan R;Senga M;Shuaib F;Van Kerkhove MD;Vaz R;Wijekoon Kannangarage N;Yoti Z
通讯作者: Yoti Z
DOI: 10.1021/nn201397z
发表时间: 2011-07-26
期刊: ACS nano
影响因子: 17.1
作者:
Ashley CE;Carnes EC;Phillips GK;Durfee PN;Buley MD;Lino CA;Padilla DP;Phillips B;Carter MB;Willman CL;Brinker CJ;Caldeira Jdo C;Chackerian B;Wharton W;Peabody DS
通讯作者: Peabody DS
DOI: 10.1021/nl102889y
发表时间: 2010-12-08
期刊: Nano letters
影响因子: 10.8
作者:
Bardhan R;Chen W;Bartels M;Perez-Torres C;Botero MF;McAninch RW;Contreras A;Schiff R;Pautler RG;Halas NJ;Joshi A
通讯作者: Joshi A
DOI: 10.1007/s11248-006-9051-1
发表时间: 2007-10-01
影响因子: 3
作者:
Avesani, Linda;Marconi, Giampiero;Porceddu, Andrea
通讯作者: Porceddu, Andrea
DOI: 10.32607/20758251-2011-3-3-40-46
发表时间: 2011-07-01
期刊: ACTA NATURAE
影响因子: 2
作者:
Arkhipenko, M. V.;Petrova, E. K.;Atabekov, J. G.
通讯作者: Atabekov, J. G.