可持续生物制造:从生物打印到人工智能驱动的预测方法。

IF 14.3 1区 工程技术 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Trends in biotechnology Pub Date : 2024-07-27 DOI:10.1016/j.tibtech.2024.07.002
Miriam Filippi, Manuel Mekkattu, Robert K Katzschmann
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引用次数: 0

摘要

生物制造是以嵌入细胞群落的生物材料为基础的生物混合系统的一种潜在的可持续制造工艺。这些生物混合系统有望增强各种人类活动的可持续性,从组织工程和机器人技术到土木工程和生态学,不一而足。然而,由于常规的生物制造方法既费力又耗能,我们的社会必须完善生物制造的生产和验证过程。本观点强调了可持续材料选择和生物制造技术的研究趋势。通过对复杂的生物系统建模,计算预测将使生物制造从误差试验方法转变为高效的目标优化方法,最大限度地减少资源和能源消耗。我们设想,在生物制造中实施仿生合理性将使生物杂交产品为人类的绿色活动带来丰硕成果。
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Sustainable biofabrication: from bioprinting to AI-driven predictive methods.

Biofabrication is potentially an inherently sustainable manufacturing process of bio-hybrid systems based on biomaterials embedded with cell communities. These bio-hybrids promise to augment the sustainability of various human activities, ranging from tissue engineering and robotics to civil engineering and ecology. However, as routine biofabrication practices are laborious and energetically disadvantageous, our society must refine production and validation processes in biomanufacturing. This opinion highlights the research trends in sustainable material selection and biofabrication techniques. By modeling complex biosystems, the computational prediction will allow biofabrication to shift from an error-trial method to an efficient, target-optimized approach with minimized resource and energy consumption. We envision that implementing bionomic rationality in biofabrication will render bio-hybrid products fruitful for greening human activities.

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来源期刊
Trends in biotechnology
Trends in biotechnology 工程技术-生物工程与应用微生物
CiteScore
28.60
自引率
1.20%
发文量
198
审稿时长
1 months
期刊介绍: Trends in Biotechnology publishes reviews and perspectives on the applied biological sciences, focusing on useful science applied to, derived from, or inspired by living systems. The major themes that TIBTECH is interested in include: Bioprocessing (biochemical engineering, applied enzymology, industrial biotechnology, biofuels, metabolic engineering) Omics (genome editing, single-cell technologies, bioinformatics, synthetic biology) Materials and devices (bionanotechnology, biomaterials, diagnostics/imaging/detection, soft robotics, biosensors/bioelectronics) Therapeutics (biofabrication, stem cells, tissue engineering and regenerative medicine, antibodies and other protein drugs, drug delivery) Agroenvironment (environmental engineering, bioremediation, genetically modified crops, sustainable development).
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