# Enzymatic control of intermolecular interactions for generating synthetic nanoarchitectures in cellular environment

https://mdr.nims.go.jp/datasets/0cd86919-f18f-46a3-91ec-64a3530f28cb

## File

- [Enzymatic control of intermolecular interactions for generating synthetic nanoarchitectures in cellular environment.pdf](https://mdr.nims.go.jp/filesets/7de959b4-202d-4d84-9d96-89b381a19463/download) ([Detail](https://mdr.nims.go.jp/filesets/7de959b4-202d-4d84-9d96-89b381a19463.md))

## Id

0cd86919-f18f-46a3-91ec-64a3530f28cb

## Local identifier



## Visibility

open_to_public

## State

published

## Created at

2024-07-02T02:38:30.214508Z

## Updated at

2024-07-04T07:32:18.868602Z

## Published at

2024-07-04T07:32:18.938722Z

## Doi

https://doi.org/10.48505/nims.4570

## First published url

https://doi.org/10.1080/14686996.2024.2373045

## Date published

2024-12-31

## Recorded date published

2024-12-31

## Resource type

journal_article

## Manuscript type

accepted_manuscript

## Collection



## Title

- title: Enzymatic control of intermolecular interactions for generating synthetic
    nanoarchitectures in cellular environment
  title_type: original
  lang: en

## Description

- description: Nanoarchitectonics, as a technology to arrange nano-sized structural
    units such as molecules in a desired configuration, requires nano-organization,
    which usually relies on intermolecular interactions. This review briefly introduces
    the development of using enzymatic reactions to control intermolecular interactions
    for generating artificial nanoarchitectures in a cellular environment. We begin
    the discussion with the early examples and uniqueness of enzymatically controlled
    self-assembly. Then, we describe examples of generating intracellular nanostructures
    and their relevant applications. Subsequently, we discuss cases of forming nanostructures
    on the cell surface via enzymatic reactions. Following that, we highlight the
    use of enzymatic reactions for creating intercellular nanostructures. Finally,
    we provide a summary and outlook on the promises and future direction of this
    strategy. Our aim is to give an updated introduction to the use of enzymatic reaction
    in regulating intermolecular interactions, a phenomenon ubiquitous in biology
    but relatively less explored by chemists and materials scientists. Our goal is
    to stimulate new developments in this simple and versatile approach for addressing
    societal needs.
  description_type: abstract
  lang: en

## Creator

- name: Weiyi Tan
  role: author
  organization: Empa, Swiss Federal Laboratories for Materials Science and Technology
  department: Laboratory for Joining  Technologies and Corrosion
- name: Qiuxin Zhang
  role: author
- name: Mikki Lee
  role: author
  organization: Malaysia–Japan International Institute of Technology
- name: William Lau
  role: author
  organization: Claudia Cancellieri
- name: Bing Xu
  role: author
  organization: Brandeis University
  department: Department of Chemistry

## Contact agent



## Publisher

organization: Taylor & Francis

## Managing organization



## Keyword

- subject: Supramolecular
  schema: not_defined
- subject: Organelles
  schema: not_defined
- subject: Self-assembly
  schema: not_defined
- subject: Enzyme
  schema: not_defined
- subject: Cellular nanostructure
  schema: not_defined

## Rights

- identifier: https://creativecommons.org/licenses/by-nc/4.0/

## Other identifier(s)



## Data origin

- data_origin_type: other

## Embargo



## Journal

- title: Science and Technology of Advanced Materials
  issn: '14686996'
  volume: '25'
  article_number: '2373045'

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## Specimen



## Chemical composition



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## Fileset

- id: 7de959b4-202d-4d84-9d96-89b381a19463
  filename: Enzymatic control of intermolecular interactions for generating synthetic
    nanoarchitectures in cellular environment.pdf
  content_type: application/pdf
  size: 6005767
  md5: c003c2dc94848115a3ef9427520f8b10

## Thumbnail

fileset_id: 7de959b4-202d-4d84-9d96-89b381a19463
filename: Enzymatic control of intermolecular interactions for generating synthetic
  nanoarchitectures in cellular environment.pdf