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Massimo Confalonieri

Explore the profile of Massimo Confalonieri including associated specialties, affiliations and a list of published articles. Areas
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Articles 19
Citations 319
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Recent Articles
1.
Zannino L, Carelli M, Milanesi G, Croce A, Biggiogera M, Confalonieri M
Microsc Res Tech . 2024 May; 87(9):2143-2153. PMID: 38706034
In the Medicago genus, saponins are complex mixtures of triterpene pentacyclic glycosides extensively studied for their different and economically relevant biological and pharmaceutical properties. This research is aimed at determining...
2.
Confalonieri M, Carelli M, Gianoglio S, Moglia A, Biazzi E, Tava A
Front Plant Sci . 2021 Aug; 12:690231. PMID: 34381478
In the genus, triterpene saponins are a group of bioactive compounds extensively studied for their different biological and pharmaceutical properties. In this work, the CRISPR/Cas9-based approach with two single-site guide...
3.
Gagliotti C, Bolzoni L, Carretto E, Sarti M, Ricchizzi E, Ambretti S, et al.
Eur J Clin Microbiol Infect Dis . 2021 Aug; 40(12):2585-2592. PMID: 34351529
This study aims to describe trends of mcr-positive Enterobacterales in humans based on laboratory surveillance with a defined catchment population. The data source is the Micro-RER surveillance system, established in...
4.
Cominelli E, Confalonieri M, Carlessi M, Cortinovis G, Daminati M, Porch T, et al.
Plant Sci . 2018 Mar; 270:1-12. PMID: 29576062
Phytic acid (InsP) is the main storage form of phosphate in seeds. In the plant it plays an important role in response to environmental stress and hormonal changes. InsP is...
5.
Nucleo E, Caltagirone M, Mattioni Marchetti V, DAngelo R, Fogato E, Confalonieri M, et al.
Antimicrob Resist Infect Control . 2018 Mar; 7:33. PMID: 29527303
Background: Rationale and aims of the study were to compare colonization frequencies with MDR bacteria isolated from LTCF residents in three different Northern Italian regions, to investigate risk factors for...
6.
Aschbacher R, Pagani E, Confalonieri M, Farina C, Fazii P, Luzzaro F, et al.
Antimicrob Resist Infect Control . 2016 Oct; 5:33. PMID: 27766146
Background: Rates of colonization and infection with multidrug-resistant (MDR) bacteria are increasing worldwide, in both acute care hospitals and long-term care facilities (LTCFs). Italy has one of the highest prevalence...
7.
Sabatini M, Dona M, Leonetti P, Minio A, Delledonne M, Carboneral D, et al.
J Integr Plant Biol . 2015 Dec; 58(7):618-22. PMID: 26699667
The role of plant tyrosyl-DNA phosphodiesterase 1α in genome stability is studied using a Medicago truncatula MtTdp1α-depleted line. Lack of MtTdp1α results in a 39% reduction of methylated cytosines as...
8.
Fae M, Balestrazzi A, Confalonieri M, Dona M, Macovei A, Valassi A, et al.
Plant Cell Rep . 2014 Mar; 33(7):1071-80. PMID: 24638978
Our study highlights the use of the DNA repair gene MtTdp2α as a tool for improving the plant response to heavy metal stress. Tyrosyl-DNA phosphodiesterase 2 (Tdp2), involved in the...
9.
Dona M, Confalonieri M, Minio A, Biggiogera M, Buttafava A, Raimondi E, et al.
J Exp Bot . 2013 Mar; 64(7):1941-51. PMID: 23467834
An intron-spliced hairpin RNA approach was used for the targeted silencing of the MtTdp1α gene encoding the αisoform of tyrosyl-DNA phosphodiesterase 1 in Medicago truncatula Gaertn. Tyrosyl-DNA phosphodiesterase 1, involved...
10.
Dona M, Ventura L, Macovei A, Confalonieri M, Savio M, Giovannini A, et al.
J Plant Physiol . 2013 Feb; 170(8):780-7. PMID: 23433736
In plants, there is evidence that different dose rate exposures to gamma (γ) rays can cause different biological effects. The dynamics of DNA damage accumulation and molecular mechanisms that regulate...