Projects funded by the NCN


Information on the principal investigator and host institution

Information of the project and the call

Keywords

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The influence of mitochondria-derived hydrogen sulfide (H2S) on the reprogramming of macrophages in atherosclerosis and non-alcoholic fatty liver disease

2017/26/D/NZ4/00480

Keywords:

macrophage polarization hydrogen sulfide mitochondria atherosclerosis non-alcoholic fatty liver disease

Descriptors:

  • NZ2_3:
  • NZ7_14:
  • NZ4_11:

Panel:

NZ4 - Biology of tissues, organs and organisms: morphology and functions of animal's and human's systems, organs and organisms, experimental medicine, basics of neurology

Host institution :

Uniwersytet Jagielloński- Collegium Medicum, Collegium Medicum; Wydział Lekarski

woj. małopolskie

Other projects carried out by the institution 

Principal investigator (from the host institution):

dr Aneta Olga Stachowicz 

Number of co-investigators in the project: 4

Call: SONATA 13 - announced on 2017-06-14

Amount awarded: 1 178 400 PLN

Project start date (Y-m-d): 2018-04-10

Project end date (Y-m-d): 2023-04-09

Project duration:: 60 months (the same as in the proposal)

Project status: Project settled

Project description

Download the project description in a pdf file

Note - project descriptions were prepared by the authors of the applications themselves and placed in the system in an unchanged form.

Information in the final report

  • Publication in academic press/journals (5)
  1. Protein arginine deiminase 2 (PAD2) modulates the polarization of THP-1 macrophages to the anti-inflammatory M2 phenotype
    Authors:
    Aneta Stachowicz, Rakhi Pandey, Niveda Sundararaman, Vidya Venkatraman, Jennifer E Van Eyk, Justyna Fert-Bober
    Academic press:
    Journal of Inflammation (rok: 2022, tom: 19, strony: 20), Wydawca: BMC
    Status:
    Published
    DOI:
    10.1186/s12950-022-00317-8 - link to the publication
  2. The antiatherosclerotic action of 1G244 - An inhibitor of dipeptidyl peptidases 8/9 - is mediated by the induction of macrophage death
    Authors:
    Anna Wiśniewska, Klaudia Czepiel, Aneta Stachowicz, Bartosz Pomierny, Katarzyna Kuś, Anna Kiepura, Kamila Stachyra, Marcin Surmiak, Józef Madej, Rafał Olszanecki, Maciej Suski
    Academic press:
    European Journal of Pharmacology (rok: 2023, tom: 944, strony: 175566), Wydawca: Elsevier
    Status:
    Published
    DOI:
    10.1016/j.ejphar.2023.175566 - link to the publication
  3. Diminazene Aceturate Stabilizes Atherosclerotic Plaque and Attenuates Hepatic Steatosis in apoE-Knockout Mice by Influencing Macrophages Polarization and Taurine Biosynthesis
    Authors:
    Aneta Stachowicz, Anna Wiśniewska, Katarzyna Kuś, Magdalena Białas, Magdalena Łomnicka, Justyna Totoń-Żurańska, Anna Kiepura, Kamila Stachyra, Maciej Suski, Beata Bujak-Giżycka, Jacek Jawień, Rafał Olszaneckii
    Academic press:
    International Journal of Molecular Sciences (rok: 2021, tom: 22(11), strony: 5861), Wydawca: MDPI
    Status:
    Published
    DOI:
    10.3390/ijms22115861 - link to the publication
  4. Mitochondria-targeted hydrogen sulfide donor reduces atherogenesis by changing macrophage phenotypes and increasing UCP1 expression in vascular smooth muscle cells
    Authors:
    Aneta Stachowicz, Anna Wiśniewska, Klaudia Czepiel, Bartosz Pomierny, Alicja Skórkowska, Beata Kuśnierz-Cabala, Marcin Surmiak, Katarzyna Kuś, Mark E Wood, Roberta Torregrossa, Matthew Whiteman, Rafał Olszanecki
    Academic press:
    Biomedicine & Pharmacotherapy (rok: 2024, tom: 180, strony: 117527), Wydawca: Elsevier
    Status:
    Published
    DOI:
    10.1016/j.biopha.2024.117527 - link to the publication
  5. Mitochondria-targeted hydrogen sulfide donor reduces fatty liver and obesity in mice fed a high fat diet by inhibiting de novo lipogenesis and inflammation via mTOR/SREBP-1 and NF-κB signaling pathways
    Authors:
    Aneta Stachowicz, Klaudia Czepiel, Anna Wiśniewska, Kamila Stachyra, Magdalena Ulatowska-Białas, Beata Kuśnierz-Cabala, Marcin Surmiak, Grzegorz Majka, Katarzyna Kuś, Mark E Wood, Roberta Torregrossa, Matthew Whiteman, Rafał Olszanecki
    Academic press:
    Pharmacological Research (rok: 2024, tom: 209, strony: 107428), Wydawca: Elsevier
    Status:
    Published
    DOI:
    10.1016/j.phrs.2024.107428 - link to the publication