Fundamentals and Application of New Bioproduction Systems

Artikelnummer: 978-3-662-51100-8
Einband: Kartonierter Einband (Kt)
Verfügbarkeit: Lieferbar in ca. 20-45 Arbeitstagen
CHF 239.00
decrease increase

Printing Peptide Arrays with a Complementary Metal Oxide Semiconductor Chip

Felix F. Loeffler, Yun-Chien Cheng, Bastian Muenster, Jakob Striffler, Fanny C. Liu, F. Ralf Bischoff, Edgar Doersam, Frank Breitling and Alexander Nesterov-Mueller

Protein Engineering as a Tool for the Development of Novel Bioproduction Systems

Uwe T. Bornscheuer

Compartmentalization and Metabolic Channeling for Multienzymatic

Biosynthesis: Practical Strategies and Modeling Approaches

U. Jandt, C. You, Y. H.-P. Zhang and A.-P. Zeng

Cell-Free Systems: Functional Modules for Synthetic and Chemical Biology

Marlitt Stech, Andreas K. Brödel, Robert B. Quast, Rita Sachse and Stefan Kubick

New Bioproduction Systems: From Molecular Circuits to Novel Reactor Concepts in Cell-Free Biotechnology

Steffen Rupp

Cell-free Biosystems in the Production of Electricity and Bioenergy

Zhiguang Zhu, Tsz Kin Tam and Y.-H. Percival Zhang

In Vitro Multienzymatic Reaction Systems for Biosynthesis

Inés Ardao, Ee Taek Hwang and An-Ping Zeng

Directed Multistep Biocatalysis Using Tailored Permeabilized Cells

SteffenKrauser, Christian Weyler, Lisa Katharina Blaß and Elmar Heinzle


EUDR exemption - product or manufacturing materials placed on the market prior to 31.12.2025.

Printing Peptide Arrays with a Complementary Metal Oxide Semiconductor Chip

Felix F. Loeffler, Yun-Chien Cheng, Bastian Muenster, Jakob Striffler, Fanny C. Liu, F. Ralf Bischoff, Edgar Doersam, Frank Breitling and Alexander Nesterov-Mueller

Protein Engineering as a Tool for the Development of Novel Bioproduction Systems

Uwe T. Bornscheuer

Compartmentalization and Metabolic Channeling for Multienzymatic

Biosynthesis: Practical Strategies and Modeling Approaches

U. Jandt, C. You, Y. H.-P. Zhang and A.-P. Zeng

Cell-Free Systems: Functional Modules for Synthetic and Chemical Biology

Marlitt Stech, Andreas K. Brödel, Robert B. Quast, Rita Sachse and Stefan Kubick

New Bioproduction Systems: From Molecular Circuits to Novel Reactor Concepts in Cell-Free Biotechnology

Steffen Rupp

Cell-free Biosystems in the Production of Electricity and Bioenergy

Zhiguang Zhu, Tsz Kin Tam and Y.-H. Percival Zhang

In Vitro Multienzymatic Reaction Systems for Biosynthesis

Inés Ardao, Ee Taek Hwang and An-Ping Zeng

Directed Multistep Biocatalysis Using Tailored Permeabilized Cells

SteffenKrauser, Christian Weyler, Lisa Katharina Blaß and Elmar Heinzle


EUDR exemption - product or manufacturing materials placed on the market prior to 31.12.2025.
Schreiben Sie Ihre eigene Bewertung
  • Nur registrierte Benutzer können Produkte bewerten
*
*
Schlecht
Sehr gut
*
*
*
*
VerlagSpringer EN
EinbandKartonierter Einband (Kt)
Erscheinungsjahr2016
Seitenangabe238 S.
AusgabekennzeichenEnglisch
AbbildungenX, 238 p.
MasseH23.5 cm x B15.5 cm 519 g
CoverlagSpringer (Imprint/Brand)
AuflageSoftcover reprint of the original 1st ed. 2013
ReiheAdvances in Biochemical Engineering/Biotechnology
AutorZeng, An-Ping (Hrsg.)

Alle Bände der Reihe "Advances in Biochemical Engineering/Biotechnology"

Über den Autor An-Ping (Hrsg.) Zeng

Prof. An-Ping Zeng was Director of the Institute of Bioprocess and Biosystems Engineering at the Hamburg University of Technology, Germany from April 2006 to March 2022 and recently joined Westlake University in China as Chair Professor for Synthetic Biology and Bioengineering. He got a PhD degree in Biochemical Engineering from Technical University of Braunschweig, Germany. He has extensive research experience in Australia, China, Germany and USA for more than 36 years, among others as research scientist in the former German Research Center for Biotechnology (GBF, now Helmholtz Center for Infection Research), CSIRO and University of Minnesota and as Professor at TU Braunschweig. His recent research covers (1) Industrial biotechnology; (2) Cell culture for proteins and biomaterials; (3) Metabolic engineering and synthetic biology for new enzymes, pathways and microbes using rational and evolutionary approaches; (4) New bioelectrochemical and hybrid systems, especially for useof CO2 and other C1-feedstocks. He has published 300+ papers (Google H-Index 70), edited 5 books and filed 30+ patents. He is Editor-in-Chief of "Engineering in Life Sciences", and associated editor/editorial board member of seven other journals and book series. He has coordinated several national and international collaborative research projects including the German Research Foundation (DFG) Priority Program 2240 eBiotech. He is member of the German National Academy of Science and Engineering (acatech). Dr. Nico J. Claassens is an Assistant Professor at the Laboratory of Microbiology at Wageningen University (The Netherlands). A core activity of his group is to perform systems-wide metabolic engineering using novel high-throughput genome editing techniques (including recombineering and CRISPR-Cas) in bacteria. Specifically, his work focuses on engineering synthetic pathways to support the efficient use of next-generation, sustainable feedstocks, including CO2 and one-carbon-substrates, such as formate and methanol. After obtaining his Ph.D. with Prof. John van der Oost at Wageningen University, Nico worked as postdoctoral fellow at the Max Planck Institute Potsdam, Germany with Dr. Arren Bar-Even, supported by a Rubicon fellowship of the Dutch Science Organisation (NWO). During this postdoc in Arren's lab, Nico and his students demonstrated formatotrophic growth in Cupriavidus necator after the full replacement of the native Calvin cycle by the more ATP-efficient reductive glycine pathway. Furthermore, he characterized the wasteful phosphoglycolate metabolism when C. necator grows via the Calvin cycle on ambient CO2 hydrogen. Together with Arren and other colleagues, he also performed systematic analyses of various biotechnological production strategies using electricity and CO2 as ultimate energy and carbon sources. They considered several mediator molecules to connect the (electro)chemical and biological processes, and identified formate and methanol as highly promising C1-mediators for efficient electromicrobial production. In 2019 he obtained a prestigious NWO-Veni grant for talented junior researchers to continue his research in C1 metabolic engineering at Wageningen University.

Weitere Titel von An-Ping (Hrsg.) Zeng

Produktbewertungen
Nur registrierte Benutzer können Produkte bewerten