通过高度胀的光模式水凝的DNA序列定向的形状变化
Angelo Cangialosi1, ChangKyu Yoon2, Jiayu Liu3
1Department of Chemical and Biomolecular Engineering, Johns Hopkins University, Baltimore, MD 21218, USA.
概括
特定的DNA分子诱导显著的水凝扩张和形状变化. 这一突破为先进的机器人和智能医疗应用提供了可编程软材料.
科学领域:
- 生物材料科学
- 软机器人
- 合成生物学
背景情况:
- 改变形状的水凝对于软机器人,可编程物质和智能医药至关重要.
- 之前的形状变化方法依赖于温度,光或pH等全球性刺激.
研究的目的:
- 为了证明DNA诱导的体积水凝扩张和受控的形状变化.
- 探索DNA作为凝触发器的潜力.
主要方法:
- 使用特定的DNA分子通过交叉链扩展诱导水凝扩张.
- 采用光图形来创建具有多个不同域的厘米大小的水凝.
- 结合实验验证与计算模拟来建立设计规则.
主要成果:
- 实现了高达100倍的水凝体积扩张.
- 具有多个域响应不同DNA序列的光模式凝.
- 确定了可预测形状的简单设计规则
结论:
- DNA分子提供了一种精确的方法来控制水凝的形状和体积.
- 这种基于DNA的策略为响应生物化学输入的软件开辟了道路.
- 在响应的软材料中实现自主化学控制程序.
更多相关视频
12:07Fabricating Degradable Thermoresponsive Hydrogels on Multiple Length Scales via Reactive Extrusion, Microfluidics, Self-assembly, and Electrospinning
Published on: April 16, 2018
14.1K
09:19Patterning Bioactive Proteins or Peptides on Hydrogel Using Photochemistry for Biological Applications
Published on: September 15, 2017
7.7K
相关概念视频
The DNA Helix
130.1K
Overview
130.1K
Nucleosome Remodeling
8.8K
Nucleosomes are the basic units of chromatin compaction. Each nucleosome consists of the DNA bound tightly around a histone core, which makes the DNA inaccessible to DNA binding proteins such as DNA polymerase and RNA polymerase. Hence, the fundamental problem is to ensure access to DNA when appropriate, despite the compact and protective chromatin structure.
Nucleosome remodeling complex
Eukaryotic cells have specialized enzymes called ATP-dependent nucleosome remodeling enzymes. These enzymes...
Nucleosome remodeling complex
Eukaryotic cells have specialized enzymes called ATP-dependent nucleosome remodeling enzymes. These enzymes...
8.8K
DNA Helicases
19.5K
DNA unwinding helicase enzymes are a type of motor protein. Motor proteins can translocate along filaments or polymers using energy generated from ATP hydrolysis. Helicases are involved in all the important cellular processes where DNA unwinding is required, such as DNA replication, repair, recombination, and transcription. They are present in all living organisms, but vary in their structure, function, and mechanism of action. For example, in prokaryotes, DnaB helicase binds and translocates...
19.5K
