Jose Diana Di Mavungu
Overview
Explore the profile of Jose Diana Di Mavungu including associated specialties, affiliations and a list of published articles.
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35
Citations
667
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Recent Articles
11.
Chang P, Scharfenstein L, Li R, Arroyo-Manzanares N, De Saeger S, Diana Di Mavungu J
Fungal Genet Biol
. 2017 Apr;
104:29-37.
PMID: 28442441
Aspergillus flavus aswA (AFLA_085170) is a gene encoding a Zn(II)Cys DNA-binding domain and a transcriptional activation domain, DUF3468. Disruption of aswA yielded strains that made a truncated gene transcript and...
12.
Arroyo-Manzanares N, Diana Di Mavungu J, Garrido-Jurado I, Arce L, Vanhaecke L, Quesada-Moraga E, et al.
Anal Bioanal Chem
. 2017 Mar;
409(13):3347-3357.
PMID: 28280843
An analytical strategy based on a hybrid quadrupole-Orbitrap mass spectrometry was proposed for the simultaneous screening of known destruxins and characterization of potential members of this class of secondary metabolites,...
13.
Vanhoutte I, De Mets L, De Boevre M, Uka V, Diana Di Mavungu J, De Saeger S, et al.
Toxins (Basel)
. 2017 Feb;
9(2).
PMID: 28208799
Mycotoxins are toxic metabolites produced by fungi. To mitigate mycotoxins in food or feed, biotransformation is an emerging technology in which microorganisms degrade toxins into non-toxic metabolites. To monitor deoxynivalenol...
14.
Uka V, Moore G, Arroyo-Manzanares N, Nebija D, De Saeger S, Diana Di Mavungu J
Toxins (Basel)
. 2017 Jan;
9(1).
PMID: 28098779
Cyclopiazonic acid (α-cyclopiazonic acid, α-CPA) is an indole-hydrindane-tetramic acid neurotoxin produced by various fungal species, including the notorious food and feed contaminant . Despite its discovery in cultures approximately 40...
15.
Chang P, Scharfenstein L, Ehrlich K, Diana Di Mavungu J
Fungal Biol
. 2016 Sep;
120(10):1258-68.
PMID: 27647242
Aspergillus flavus is able to synthesize a variety of polyketide-derived secondary metabolites including the hepatocarcinogen, aflatoxin B1. The fungus reproduces and disseminates predominantly by production of conidia. It also produces...
16.
Villani A, Moretti A, De Saeger S, Han Z, Diana Di Mavungu J, Soares C, et al.
Int J Food Microbiol
. 2016 Jul;
234:24-35.
PMID: 27376677
DNA-based phylogenetic analyses have resolved the fungal genus Fusarium into multiple species complexes. The F. incarnatum-equiseti species complex (FIESC) includes fusaria associated with several diseases of agriculturally important crops, including...
17.
Walravens J, Mikula H, Rychlik M, Asam S, Devos T, Njumbe Ediage E, et al.
J Agric Food Chem
. 2016 May;
64(24):5101-9.
PMID: 27180605
Ultraperformance liquid chromatography tandem mass spectrometry and Quick, Easy, Cheap, Effective, Rugged, and Safe based analytical methodologies to quantitate both free (alternariol (1), alternariol monomethyl ether (2), tenuazonic acid (3),...
18.
Arroyo-Manzanares N, Diana Di Mavungu J, Uka V, Malysheva S, Cary J, Ehrlich K, et al.
Food Addit Contam Part A Chem Anal Control Expo Risk Assess
. 2015 Aug;
32(10):1656-73.
PMID: 26278397
The fungus Aspergillus flavus is known for its ability to produce the toxic and carcinogenic aflatoxins in food and feed. While aflatoxins are of most concern, A. flavus is predicted...
19.
Cary J, Uka V, Han Z, Buyst D, Harris-Coward P, Ehrlich K, et al.
Fungal Genet Biol
. 2015 Jun;
81:88-97.
PMID: 26051490
The genome of the filamentous fungus, Aspergillus flavus, has been shown to harbor as many as 56 putative secondary metabolic gene clusters including the one responsible for production of the...
20.
Walravens J, Mikula H, Rychlik M, Asam S, Njumbe Ediage E, Diana Di Mavungu J, et al.
J Chromatogr A
. 2014 Dec;
1372C:91-101.
PMID: 25465007
A UPLC-ESI-MS/MS method for the simultaneous determination of free (alternariol, alternariol monomethyl ether, altenuene, tenuazonic acid, tentoxin, altertoxin-I) and conjugated (sulfates and glucosides of alternariol and alternariol monomethyl ether) Alternaria...