Centre for Integrative Biology (CIBIO), University of Trento, Via Sommarive, 9 I-38123 Povo (TN), Italy.
Life (Basel). 2014 Dec 17;4(4):1038-49. doi: 10.3390/life4041038.
Over the past few decades, several protocell models have been developed that mimic certain essential characteristics of living cells. These protocells tend to be highly reductionist simplifications of living cells with prominent bilayer membrane boundaries, encapsulated metabolisms and/or encapsulated biologically-derived polymers as potential sources of information coding. In parallel with this conventional work, a novel protocell model based on droplets is also being developed. Such water-in-oil and oil-in-water droplet systems can possess chemical and biochemical transformations and biomolecule production, self-movement, self-division, individuality, group dynamics, and perhaps the fundamentals of intelligent systems and evolution. Given the diverse functionality possible with droplets as mimics of living cells, this system has the potential to be the first true embodiment of artificial life that is an orthologous departure from the one familiar type of biological life. This paper will synthesize the recent activity to develop droplets as protocell models.
在过去的几十年中,已经开发出了几种模拟活细胞某些基本特征的原代细胞模型。这些原代细胞往往是活细胞的高度简化,具有突出的双层膜边界、封装的新陈代谢和/或封装的生物衍生聚合物作为潜在的信息编码来源。与这种传统工作并行的是,也正在开发基于液滴的新型原代细胞模型。这种水包油和油包水的液滴系统可以具有化学和生化转化以及生物分子的产生、自运动、自分裂、个体性、群体动力学,甚至可能是智能系统和进化的基础。鉴于液滴作为活细胞模拟物具有多种功能,该系统有可能成为第一个真正体现人工生命的模型,与人们所熟悉的一种生物生命形式截然不同。本文将综合最近开发液滴作为原代细胞模型的相关活动。