Stefano Ferri
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Explore the profile of Stefano Ferri including associated specialties, affiliations and a list of published articles.
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46
Citations
521
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Recent Articles
11.
Kameya M, Sakaguchi-Mikami A, Ferri S, Tsugawa W, Sode K
J Diabetes Sci Technol
. 2015 Jan;
9(2):183-91.
PMID: 25627465
Research advances in biochemical molecules have led to the development of convenient and reproducible biosensing molecules for glycated proteins, such as those based on the enzymes fructosyl amino acid oxidase...
12.
Savory N, Nzakizwanayo J, Abe K, Yoshida W, Ferri S, Dedi C, et al.
J Microbiol Methods
. 2014 Jul;
104:94-100.
PMID: 25008464
In order to better control nosocomial infections, and facilitate the most prudent and effective use of antibiotics, improved strategies for the rapid detection and identification of problematic bacterial pathogens are...
13.
Miyake K, Abe K, Ferri S, Nakajima M, Nakamura M, Yoshida W, et al.
Biotechnol Biofuels
. 2014 Apr;
7:56.
PMID: 24713090
Background: Cyanobacteria are an attractive candidate for the production of biofuel because of their ability to capture carbon dioxide by photosynthesis and grow on non-arable land. However, because huge quantities...
14.
Abe K, Miyake K, Nakamura M, Kojima K, Ferri S, Ikebukuro K, et al.
Microb Biotechnol
. 2013 Dec;
7(2):177-83.
PMID: 24330635
In order to construct a green-light-regulated gene expression system for cyanobacteria, we characterized a green-light sensing system derived from Synechocystis sp. PCC6803, consisting of the green-light sensing histidine kinase CcaS,...
15.
Sakai Y, Abe K, Nakashima S, Yoshida W, Ferri S, Sode K, et al.
ACS Synth Biol
. 2013 Dec;
3(3):152-62.
PMID: 24328142
Noncoding small RNAs are involved in transcriptional and post-transcriptional gene regulation of target mRNAs by modulating mRNA elongation, stability, or translational efficiency. Many natural trans-encoded small RNAs contain a scaffold...
16.
Abe K, Yoshida W, Terada K, Yagi-Ishii Y, Ferri S, Ikebukuro K, et al.
Int J Mol Sci
. 2013 Nov;
14(12):23244-56.
PMID: 24287902
We have developed a novel method, antagonistic template-based biopanning, for screening peptide ligands specifically recognizing local tertiary protein structures. We chose water-soluble pyrroloquinoline quinone (PQQ) glucose dehydrogenase (GDH-B) as a...
17.
Savory N, Takahashi Y, Tsukakoshi K, Hasegawa H, Takase M, Abe K, et al.
Biotechnol Bioeng
. 2013 Sep;
111(3):454-61.
PMID: 24018905
In silico evolution with an in vitro system can facilitate the development of functional aptamers with high specificity and affinity. Although a general technique known as systematic evolution of ligand...
18.
Yoshida W, Saito T, Yokoyama T, Ferri S, Ikebukuro K
PLoS One
. 2013 Jun;
8(6):e65497.
PMID: 23750264
We developed a method for aptamer identification without in vitro selection. We have previously obtained several aptamers, which may fold into the G-quadruplex (G4) structure, against target proteins; therefore, we...
19.
Sakaguchi-Mikami A, Kameya M, Ferri S, Tsugawa W, Sode K
Appl Biochem Biotechnol
. 2013 Apr;
170(3):710-7.
PMID: 23609907
Fructosamine-6-kinases (FN6Ks) that catalyze phosphorylation of glycated amino acids, i.e., fructosyl amino acids (FAs), have been shown as a potential recognition element for glycated protein detection. However, there are only...
20.
Savory N, Lednor D, Tsukakoshi K, Abe K, Yoshida W, Ferri S, et al.
Biotechnol Bioeng
. 2013 Apr;
110(10):2573-80.
PMID: 23568752
Proteus mirabilis is a prominent cause of catheter-associated urinary tract infections (CAUTIs) among patients undergoing long-term bladder catheterization. There are currently no effective means of preventing P. mirabilis infections, and...