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Lars Mathias Blank

Explore the profile of Lars Mathias Blank including associated specialties, affiliations and a list of published articles. Areas
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Articles 41
Citations 450
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Recent Articles
11.
Wefelmeier K, Schmitz S, Haut A, Otten J, Julich T, Blank L
Front Bioeng Biotechnol . 2023 Jul; 11:1223726. PMID: 37456718
Lactate has gained increasing attention as a platform chemical, particularly for the production of the bioplastic poly-lactic acid (PLA). While current microbial lactate production processes primarily rely on the use...
12.
Soppert J, Brandt E, Heussen N, Barzakova E, Blank L, Kuepfer L, et al.
Clin Gastroenterol Hepatol . 2022 Dec; 21(11):2746-2758. PMID: 36470528
Background & Aims: Growing evidence supports a role of gut-derived metabolites in nonalcoholic fatty liver disease (NAFLD), but the relation of endotoxin levels with gut permeability and NAFLD stage remains...
13.
Wollborn D, Munkler L, Horstmann R, Germer A, Blank L, Buchs J
Sci Rep . 2022 Jul; 12(1):11225. PMID: 35780248
The methylotrophic yeast Pichia pastoris (Komagataella phaffii) is a widely used host for recombinant protein production. In this study, a clonal library of P. pastoris Mut strains ( indicates slow...
14.
Ackermann P, Braun K, Burkardt P, Heger S, Konig A, Morsch P, et al.
ChemSusChem . 2021 Oct; 14(23):5254-5264. PMID: 34623036
Model-based fuel design can tailor fuels to advanced engine concepts while minimizing environmental impact and production costs. A rationally designed ketone-ester-alcohol-alkane (KEAA) blend for high efficiency spark-ignition engines was assessed...
15.
Fendt R, Hofmann U, Schneider A, Schaeffeler E, Burghaus R, Yilmaz A, et al.
CPT Pharmacometrics Syst Pharmacol . 2021 May; 10(7):782-793. PMID: 34053199
Physiologically based pharmacokinetic (PBPK) models have been proposed as a tool for more accurate individual pharmacokinetic (PK) predictions and model-informed precision dosing, but their application in clinical practice is still...
16.
Bongartz P, Bator I, Baitalow K, Keller R, Tiso T, Blank L, et al.
Biotechnol Bioeng . 2021 May; 118(9):3545-3558. PMID: 34002856
The bioeconomy is a paramount pillar in the mitigation of greenhouse gas emissions and climate change. Still, the industrialization of bioprocesses is limited by economical and technical obstacles. The synthesis...
17.
Dahlin J, Holkenbrink C, Marella E, Wang G, Liebal U, Lieven C, et al.
Front Genet . 2021 Jan; 11:637738. PMID: 33505441
[This corrects the article DOI: 10.3389/fgene.2019.00747.].
18.
Becker J, Tehrani H, Ernst P, Blank L, Wierckx N
J Fungi (Basel) . 2021 Jan; 7(1). PMID: 33396473
, a member of the Ustilaginaceae family, is a promising host for the production of several metabolites including itaconic acid. This dicarboxylate has great potential as a bio-based building block...
19.
Halmschlag B, Putri S, Fukusaki E, Blank L
J Biosci Bioeng . 2020 Jun; 130(3):272-282. PMID: 32546403
The industrially relevant biopolymer poly-γ-glutamic acid (γ-PGA) is commonly synthesized using glycerol, citrate, and glutamic acid as carbon sources. In this study, two strains capable of utilizing glucose as sole...
20.
Christ J, Smith S, Willbold S, Morrissey J, Blank L
Biotechnol Bioeng . 2020 Mar; 117(7):2089-2099. PMID: 32190899
Inorganic polyphosphate (polyP) is the polymer of phosphate. Water-soluble polyPs with average chain lengths of 2-40 P-subunits are widely used as food additives and are currently synthesized chemically. An environmentally...