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Italy

Activities

Employment (1)

University of Bologna: Bologna, Emilia-Romagna, IT

2018-11-01 to 2021-10-31 | Ph.D. student (DIMEVET)
Employment
Source: Self-asserted source
CRISTINA ALGIERI

Education and qualifications (1)

University of Calabria: Cosenza, Italy, IT

2015-10-12 to 2017-12-14 | Biology (Department of Biology, Ecology and Earth Sciences. DiBEST)
Education
Source: Self-asserted source
CRISTINA ALGIERI

Works (12)

Novel Regioselective Synthesis of 1,3,4,5-Tetrasubstituted Pyrazoles and Biochemical Valuation on F1FO-ATPase and Mitochondrial Permeability Transition Pore Formation

Pharmaceutics
2023-02-02 | Journal article
Contributors: Vincenzo Algieri; Cristina Algieri; Paola Costanzo; Giulia Fiorani; Antonio Jiritano; Fabrizio Olivito; Matteo Antonio Tallarida; Fabiana Trombetti; Loredana Maiuolo; Antonio De Nino et al.
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The Impairment of Cell Metabolism by Cardiovascular Toxicity of Doxorubicin Is Reversed by Bergamot Polyphenolic Fraction Treatment in Endothelial Cells

International Journal of Molecular Sciences
2022-08-11 | Journal article
Contributors: Cristina Algieri; Chiara Bernardini; Francesca Oppedisano; Debora La Mantia; Fabiana Trombetti; Ernesto Palma; Monica Forni; Vincenzo Mollace; Giovanni Romeo; Ilaria Troisio et al.
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Cellular Metabolism and Bioenergetic Function in Human Fibroblasts and Preadipocytes of Type 2 Familial Partial Lipodystrophy

International Journal of Molecular Sciences
2022-08-04 | Journal article
Contributors: Cristina Algieri; Chiara Bernardini; Fabiana Trombetti; Elisa Schena; Augusta Zannoni; Monica Forni; Salvatore Nesci
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Mitochondria Bioenergetic Functions and Cell Metabolism Are Modulated by the Bergamot Polyphenolic Fraction

Cells
2022-04-20 | Journal article
Contributors: Cristina Algieri; Chiara Bernardini; Francesca Oppedisano; Debora La Mantia; Fabiana Trombetti; Ernesto Palma; Monica Forni; Vincenzo Mollace; Giovanni Romeo; Salvatore Nesci
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Molecular and Supramolecular Structure of the Mitochondrial Oxidative Phosphorylation System: Implications for Pathology

Life
2021-03-15 | Journal article
Contributors: Salvatore Nesci; Fabiana Trombetti; Alessandra Pagliarani; Vittoria Ventrella; Cristina Algieri; Gaia Tioli; Giorgio Lenaz
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1,5‐Disubstituted‐1,2,3‐triazoles as inhibitors of the mitochondrial Ca2+‐activated F1FO‐ATP(hydrol)ase and the permeability transition pore

Annals of the New York Academy of Sciences
2021-02 | Journal article
Contributors: Vincenzo Algieri; Cristina Algieri; Loredana Maiuolo; Antonio De Nino; Alessandra Pagliarani; Matteo Antonio Tallarida; Fabiana Trombetti; Salvatore Nesci
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Effects of Hydrogen Sulfide Donor NaHS on Porcine Vascular Wall-Mesenchymal Stem Cells

International Journal of Molecular Sciences
2020-07-24 | Journal article
Contributors: Chiara Bernardini; Debora La Mantia; Salvatore Nesci; Roberta Salaroli; Cristina Algieri; Alessandra Pagliarani; Augusta Zannoni; Monica Forni
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Mitochondrial F-type ATP synthase: multiple enzyme functions revealed by the membrane-embedded FO structure

Critical Reviews in Biochemistry and Molecular Biology
2020-07-03 | Journal article
Contributors: Salvatore Nesci; Alessandra Pagliarani; Cristina Algieri; Fabiana Trombetti
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Crucial aminoacids in the F <inf>O</inf> sector of the F <inf>1</inf> F <inf>O</inf> -ATP synthase address H <sup>+</sup> across the inner mitochondrial membrane: molecular implications in mitochondrial dysfunctions

Amino Acids
2019 | Journal article
EID:

2-s2.0-85062004498

Contributors: Trombetti, F.; Pagliarani, A.; Ventrella, V.; Algieri, C.; Nesci, S.
Source: Self-asserted source
CRISTINA ALGIERI via Scopus - Elsevier

A Therapeutic Role for the F1FO-ATP Synthase

SLAS DISCOVERY: Advancing Life Sciences R&D
2019-10 | Journal article
Part of ISSN: 2472-5552
Part of ISSN: 2472-5560
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CRISTINA ALGIERI
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Mitochondrial Ca 2+ ‐activated F 1 F O ‐ATPase hydrolyzes ATP and promotes the permeability transition pore

Annals of the New York Academy of Sciences
2019-08-23 | Journal article
Part of ISSN: 0077-8923
Part of ISSN: 1749-6632
Source: Self-asserted source
CRISTINA ALGIERI

Crucial aminoacids in the FO sector of the F1FO-ATP synthase address H+ across the inner mitochondrial membrane: molecular implications in mitochondrial dysfunctions

Amino Acids
2019-04 | Journal article
Part of ISSN: 1438-2199
Source: Self-asserted source
CRISTINA ALGIERI

Peer review (2 reviews for 1 publication/grant)

Review activity for Journal of translational medicine. (2)