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Synthetic Biology-The Synthesis of Biology

机译:合成生物学 - 生物学的合成

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Synthetic biology concerns the engineering of man-made living biomachines from standardized components that can perform predefined functions in a (self-) controlled manner. Different research strategies and interdisciplinary efforts are pursued to implement engineering principles to biology. The "top-down" strategy exploits nature's incredible diversity of existing, natural parts to construct synthetic compositions of genetic, metabolic, or signaling networks with predictable and controllable properties. This mainly applicationdriven approach results in living factories that produce drugs, biofuels, biomaterials, and fine chemicals, and results in living pills that are based on engineered cells with the capacity to autonomously detect and treat disease states in vivo. In contrast, the "bottom-up" strategy seeks to be independent of existing living systems by designing biological systems from scratch and synthesizing artificial biological entities not found in nature. This more knowledge-driven approach investigates the reconstruction of minimal biological systems that are capable of performing basic biological phenomena, such as self-organization, self-replication, and self-sustainability. Moreover, the syntheses of artificial biological units, such as synthetic nucleotides or amino acids, and their implementation into polymers inside living cells currently set the boundaries between natural and artificial biological systems. In particular, the in vitro design, synthesis, and transfer of complete genomes into host cells point to the future of synthetic biology: the creation of designer cells with tailored desirable properties for biomedicine and biotechnology.
机译:合成生物学涉及来自标准组件的人造生物机的工程,可以以(自我)控制的方式执行预定义的功能。追求不同的研究策略和跨学科努力,以实施工程原则到生物学。 “自上而下”策略利用大自然的现有,自然零部件的令人难以置信的多样性,以构建具有可预测和可控性质的遗传,代谢或信令网络的合成组成。这主要是应用驱动的方法导致生物工厂,生产药物,生物燃料,生物材料和精细化学品,并导致基于工程细胞的生物丸,其能力自主检测和治疗体内疾病状态。相比之下,“自下而上”策略试图通过设计生物系统从划伤和合成本质上发现的人工生物实体来独立于现有的生活系统。这种更知识驱动的方法研究了能够进行基本生物现象的最小生物系统的重建,例如自组织,自我复制和自我可持续性。此外,人工生物单元的合成,例如合成核苷酸或氨基酸,以及它们在活细胞内的聚合物中的实施设定了天然和人工生物系统之间的界限。特别是,完全基因组的体外设计,合成和转移到宿主细胞中,指向合成生物学的未来:为生物医学和生物技术的定制理想性能的设计。

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