Personal information

Activities

Employment (2)

Aarhus University: Aarhus C, DK

2022-05-01
Employment
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Aarhus University

Aarhus University: Aarhus, DK

2019-01-01 to 2022-04-30 | Postdoc (Department of Biomedicine)
Employment
Source: Self-asserted source
Federica Petrillo

Education and qualifications (1)

Università degli Studi della Campania Luigi Vanvitelli: Naples, IT

2013-04 to 2016-12 (PhD)
Education
Source: Self-asserted source
Federica Petrillo

Professional activities (2)

Società Italiana di Nefrologia: Roma, Lazio, IT

2016 to present | Junior
Membership
Source: Self-asserted source
Federica Petrillo

European Renal Association European Dialysis and Transplant Association: Parma, Emilia-Romagna, IT

2016 to present | Junior Member
Membership
Source: Self-asserted source
Federica Petrillo

Funding (2)

“GENETIC ABLATION OF NFAT5 IN THE PRINCIPAL CELLS OF THE COLLECTING DUCT LEADS TO A WATER HANDLING DEFECT”.

2020-06 to 2020-06 | Grant
European Renal Association-European Dialysis and Transplant Association (Parma, IT)
Source: Self-asserted source
Federica Petrillo

“microRNAs and their targets causing Nephrogenic Diabetes Insipidus”.

2016-10 to 2017-05 | Grant
Italian Society of Nephrology (SIN - Rome, IT)
Source: Self-asserted source
Federica Petrillo

Works (15)

Proprotein convertase subtilisin/kexin type 9 targets megalin in the kidney proximal tubule and aggravates proteinuria in nephrotic syndrome

Kidney International
2023-10 | Journal article | Author
SOURCE-WORK-ID:

a863e924-d467-470f-ab7b-82369fdc6c19

EID:

2-s2.0-85168393660

Contributors: Cecilie K Skeby; Sandra Hummelgaard; Camilla Gustafsen; Federica Petrillo; Kathrine P Frederiksen; Ditte Olsen; Tilde Kristensen; Per Ivarsen; Peder Madsen; Erik I Christensen et al.
Source: check_circle
Aarhus University

The nuclear factor of activated T cells 5 (NFAT5) contributes to the renal corticomedullary differences in gene expression

Scientific Reports
2022-12 | Journal article | Author
SOURCE-WORK-ID:

2211442a-16a4-497d-af00-92be6b84b91e

EID:

2-s2.0-85142925906

Contributors: Dmitry Chernyakov; Annika Fischer; Max Brandau; Federica Petrillo; Robert Fenton; Bayram Edemir
Source: check_circle
Aarhus University

Genetic deletion of the nuclear factor of activated T cells 5 in collecting duct principal cells causes nephrogenic diabetes insipidus

FASEB Journal
2022-11 | Journal article | Author
SOURCE-WORK-ID:

19b63a91-78ec-45f7-b9aa-9ad6a9f37042

EID:

2-s2.0-85139572571

Contributors: Federica Petrillo; Dmitry Chernyakov; Cristina Esteva Font; Søren Brandt Poulsen; Bayram Edemir; Robert Fenton
Source: check_circle
Aarhus University

Role of microRNAs in aquaporin 2 regulation

Current Opinion in Nephrology and Hypertension
2022-09 | Journal article | Author
SOURCE-WORK-ID:

2446ed51-db6b-4248-87cb-08a3fd8a3bf6

EID:

2-s2.0-85135105044

Contributors: Federica Petrillo; Francesco Trepiccione
Source: check_circle
Aarhus University

The E3 ubiquitin-protein ligase Nedd4-2 regulates the sodium chloride cotransporter NCC but is not required for a potassium-induced reduction of NCC expression

Frontiers in Physiology
2022-09 | Journal article | Author
SOURCE-WORK-ID:

6d5a6518-2670-48bd-9268-394c69e8b553

EID:

2-s2.0-85138321330

Contributors: Lena L. Rosenbaek; Federica Petrillo; Miguel X. van Bemmelen; Olivier Staub; Sathish K. Murali; Robert Fenton
Source: check_circle
Aarhus University

Comprehensive analysis of NFAT5 associated gene expression in the renal collecting duct

The FASEB Journal
2022-05 | Conference abstract | Author
SOURCE-WORK-ID:

235d4f4b-f6da-4ea3-ab45-d9fd57300bd6

EID:

2-s2.0-85130057000

Contributors: Bayram Edemir; Federica Petrillo; Dmitry Chernyakov; Robert Fenton
Source: check_circle
Aarhus University

The E3 ubiquitin-protein ligase Nedd4-2 regulates the sodium chloride cotransporter (NCC) but is not required for a potassium-induced reduction of NCC expression

The FASEB Journal
2022-05 | Conference abstract | Author
SOURCE-WORK-ID:

48781ed1-ade6-4e94-82be-a3f995c14030

EID:

2-s2.0-85130634268

Contributors: Lena Rosenbaek; Federica Petrillo; Miguel Van Bemmelen; Olivier Staub; Sathish Murali; Robert Fenton
Source: check_circle
Aarhus University

Dysregulation of Principal Cell miRNAs Facilitates Epigenetic Regulation of AQP2 and Results in Nephrogenic Diabetes Insipidus.

Journal of the American Society of Nephrology : JASN
2021-03-16 | Journal article
Source: Self-asserted source
Federica Petrillo
grade
Preferred source (of 2)‎

Fyn Tyrosine Kinase as Harmonizing Factor in Neuronal Functions and Dysfunctions

International Journal of Molecular Sciences
2020-06-22 | Journal article
Contributors: Carmela Matrone; Federica Petrillo; Rosarita Nasso; Gabriella Ferretti
Source: check_circle
Crossref
grade
Preferred source (of 3)‎

Potassium depletion induces cellular conversion in the outer medullary collecting duct altering Notch signaling pathway

Scientific Reports
2020-03-31 | Journal article
Contributors: Anna Iervolino; Federica Prosperi; Luigi R. De La Motte; Federica Petrillo; Manuela Spagnuolo; Mariavittoria D’Acierno; Sabrina Siccardi; Alessandra F. Perna; Birgitte M. Christensen; Sebastian Frische et al.
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Crossref
grade
Preferred source (of 2)‎

Integrin Beta 1 Is Crucial for Urinary Concentrating Ability and Renal Medulla Architecture in Adult Mice.

Frontiers in physiology
2018-09-13 | Journal article
Source: Self-asserted source
Federica Petrillo

Unraveling the Mechanistic Complexity of the Glomerulocystic Phenotype in Dicer Conditional KO Mice by 2D Gel Electrophoresis Coupled Mass Spectrometry

Proteomics Clin Appl
2018-05-12 | Journal article
Source: Self-asserted source
Federica Petrillo

MicroRNAs in Renal Diseases: A Potential Novel Therapeutic Target.

Kidney diseases (Basel, Switzerland)
2017-11-08 | Journal article
Source: Self-asserted source
Federica Petrillo
grade
Preferred source (of 2)‎

A fate-mapping approach reveals the composite origin of the connecting tubule and alerts on "single-cell"-specific KO model of the distal nephron.

American journal of physiology. Renal physiology
2016-08-31 | Journal article
Source: Self-asserted source
Federica Petrillo

Selective dicer suppression in the kidney alters GSK3β/β-catenin pathways promoting a glomerulocystic disease.

PloS one
2015-03-23 | Journal article
Source: Self-asserted source
Federica Petrillo