我的酵母之旅。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-06-22 DOI:10.1093/femsyr/foad035
Charles Abbas
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引用次数: 0

摘要

酵母生物技术的进步依赖于利用现代生物技术工具获得的知识来利用已经详细研究过的各种酵母属的代谢库。在我的工作中,我试图将从学术研究中获得的知识与工业技术结合起来,以实际经济有效的方式将商业酵母发酵从10万升扩大到100万升以上。在我扩大和/或优化生产规模的过程中,包括生物燃料、化学品、食品和饲料添加剂。在长达30多年的工业生涯中,我利用了许多学术、政府和工业科学家参与合作研究的挑战性工作,以确保取得成功。这些合作者中的许多人都以同样的方式回应了我,并成为了这个故事的一部分。在很多方面,我的旅程也是他们的。然而,在我的本科学习中,我更早地获得了科学基础或起点,从伟大的教授那里学习,帮助我理解科学的复杂性,同时让我相信追求研究作为一种职业的价值。
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My Journey with Yeast.

Advances in yeast biotechnology rely on the application of knowledge gained using modern biotechnological tools to harness the metabolic repertoire of various yeast genera that have been studied in detail. In my work, I have attempted to combine knowledge gained from academic research with industrial knowhow in practical cost-effective ways to scale up commercial yeast fermentations from one hundred thousand to greater than one million liters. Among the processes I scaled up and/or optimized to production scale include biofuels, chemicals, food and feed additives. During a long industrial career that spanned over three decades, I leveraged what was often very challenging work with many academic, government, and industrial scientists engaging them in collaborative research to ensure a successful outcome. Many of these collaborators responded in kind and are part of this narrative. In many ways, my journey was also theirs. However, I acquired the scientific foundation or starting point much earlier during my undergraduate studies learning from great professors that helped me understand the complexity of science while convincing me of the value of pursuing research as a career.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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