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Pierre Fontanille

Explore the profile of Pierre Fontanille including associated specialties, affiliations and a list of published articles. Areas
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Articles 13
Citations 99
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Recent Articles
1.
Biderre-Petit C, Mbarki M, Courtine D, Benarab Y, Vial C, Fontanille P, et al.
Bioresour Technol . 2024 Jun; 406:131021. PMID: 38909868
The ongoing discussion regarding the use of mixed or pure cultures of hydrogenotrophic methanogenic archaea in Power-to-Methane (P2M) bioprocess applications persists, with each option presenting its own advantages and disadvantages....
2.
Hamadou B, Djomdi D, Zieba Falama R, Djoulde Darnan R, Audonnet F, Fontanille P, et al.
Bioengineered . 2023 Jul; 14(1):228-244. PMID: 37455672
Taken separately, a single sweet sorghum stem bioconversion process for bioethanol and biomethane production only leads to a partial conversion of organic matter. The direct fermentation of crushed whole stem...
3.
Guez J, Coucheney F, Guy J, Bechet M, Fontanille P, Chihib N, et al.
Metabolites . 2022 Feb; 12(2). PMID: 35208182
Mycosubtilin belongs to the family of lipopeptides. Different isoforms with various antifungal activities can be obtained according to the length and the isomery of the fatty acid. In this work,...
4.
Park Y, Gonzalez-Fernandez C, Robles-Iglesias R, Vidal L, Fontanille P, Kennes C, et al.
FEMS Yeast Res . 2021 Aug; 21(6). PMID: 34453534
In recent years, there has been a growing interest in the use of renewable sources for bio-based production aiming at developing sustainable and feasible approaches towards a circular economy. Among...
5.
Molina G, Pessoa M, Bicas J, Fontanille P, Larroche C, Pastore G
Bioresour Technol . 2019 Oct; 294:122180. PMID: 31606595
The biotransformation of R-(+)-limonene into high concentrations of R-(+)-α-terpineol by Sphingobium sp. was investigated in order to optimize the main process variables (pH, biocatalyst concentration, substrate concentration, temperature and agitation)....
6.
Noblecourt A, Christophe G, Larroche C, Fontanille P
Bioresour Technol . 2018 Aug; 247:864-870. PMID: 30060424
In this study, a specific fraction of food waste, i.e. depackaging waste, was studied as substrate for hydrogen production by dark fermentation. During storage and transport of this liquid mixture,...
7.
Dubessay P, Larroche C, Fontanille P
Appl Biochem Biotechnol . 2017 Dec; 185(3):676-690. PMID: 29285675
The alpha-pinene oxide lyase (Prα-POL) from Pseudomonas rhodesiae CIP107491 belongs to catabolic alpha-pinene degradation pathway. In this study, the gene encoding Prα-POL has been identified using mapping approach combined to...
8.
Beligon V, Poughon L, Christophe G, Lebert A, Larroche C, Fontanille P
Bioresour Technol . 2015 Jun; 192:582-91. PMID: 26093252
The improvement of culture parameters for lipid production from acetate as carbon source was investigated using the oleaginous yeast Cryptococcus curvatus. A new pH regulation system dispensing acetate was developed...
9.
Singhania R, Patel A, Christophe G, Fontanille P, Larroche C
Bioresour Technol . 2013 Jan; 145:166-74. PMID: 23339903
VFAs can be obtained from lignocellulosic agro-industrial wastes, sludge, and various biodegradable organic wastes as key intermediates through dark fermentation processes and synthesized through chemical route also. They are building...
10.
Fontanille P, Kumar V, Christophe G, Nouaille R, Larroche C
Bioresour Technol . 2012 Apr; 114:443-9. PMID: 22464419
The valorization of volatile fatty acids into microbial lipids by the oleaginous yeast Yarrowia lipolytica was investigated. Therefore, a two-stage fed-batch strategy was designed: the yeast was initially grown on...