Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Claire Molony"'
Autor:
Lourdes Albina Nirupa Julius, Killian Healy, Roya Hakimjavadi, Eileen M. Redmond, Andreu Llobera, Yusof Gusti, Weimin Liu, Michael Kitching, Emma Fitzpatrick, Emma K. Finlay, Damien King, Mariana Di Luca, David Kernan, Abidemi Olayinka, Paul A. Cahill, Claire Molony, Denise Burtenshaw, Jens Ducrée, David A. Morrow
Publikováno v:
Stem cell reviews and reports
Molony, Claire, King, Damien, Di Luca, Mariana, Kitching, Michael ORCID: 0000-0002-9884-0790, Olayinka, Abidemi, Hakimjavadi, Roya, Julius, Lourdes A.N., Fitzpatrick, Emma, Gusti, Yusof, Burtenshaw, Denise ORCID: 0000-0002-5958-1773 , Healy, Killian, Finlay, Emma K. ORCID: 0000-0003-0621-2744 , Kernan, David, Llobera, Andreu ORCID: 0000-0002-2941-478X , Liu, Weimin, Morrow, David, Redmond, Eileen M. ORCID: 0000-0001-8642-4418 , Ducrée, Jens ORCID: 0000-0002-0366-1897 and Paul, Cahill ORCID: 0000-0002-5385-6502 (2021) Disease-relevant single cell photonic signatures identify S100β stem cells and their myogenic progeny in vascular lesions. Stem Cell Reviews and Reports, 17 . pp. 1713-1740. ISSN 2629-3269
Molony, Claire, King, Damien ORCID: 0000-0001-7720-064X, Di Luca, Mariana, Kitching, Michael ORCID: 0000-0002-9884-0790 , Olayinka, Abidemi, Hakimjavadi, Roya, Julius, Lourdes A.N., Fitzpatrick, Emma, Gusti, Yusof, Burtenshaw, Denise, Healy, Killian, Finlay, Emma K. ORCID: 0000-0003-0621-2744 , Kernan, David, Llobera, Andreu ORCID: 0000-0002-2941-478X , Liu, Weimin, Morrow, David, Redmond, Eileen M. ORCID: 0000-0001-8642-4418 , Ducrée, Jens and Cahill, Paul A. ORCID: 0000-0002-5385-6502 (2021) Disease-relevant single cell photonic signatures identify S100β stem cells and their myogenic progeny in vascular lesions. Stem Cell Reviews and Reports, 17 . pp. 1713-1740. ISSN 2629-3269
Molony, Claire, King, Damien, Di Luca, Mariana, Kitching, Michael ORCID: 0000-0002-9884-0790
Molony, Claire, King, Damien ORCID: 0000-0001-7720-064X
A hallmark of subclinical atherosclerosis is the accumulation of vascular smooth muscle cell (SMC)-like cells leading to intimal thickening and lesion formation. While medial SMCs contribute to vascular lesions, the involvement of resident vascular s
Autor:
Roya Hakimjavadi, Killian Healy, Denise Burtenshaw, Daniel Canning, David Kernan, Eileen M. Redmond, Paul A. Cahill, Andreu Llobera, Mariana Di Luca, Weimin Liu, Lourdes Albina Nirupa Julius, Emma Fitzpatrick, Claire Molony, Damien King, Jens Ducrée, David A. Morrow, Gillian Casey
Publikováno v:
Arteriosclerosis, Thrombosis, and Vascular Biology. 38
The accumulation of vascular smooth muscle (SMC)-like cells within the intima contributes significantly to intimal medial thickening (IMT) and vascular remodeling typical of arteriosclerotic disease. Light has emerged as a powerful tool to interrogat
Autor:
Roya Hakimjavadi, Roa Bashmail, Paul A. Cahill, Dorota Kozlowska, Niamh Mckenna, Ciaran O’Shea, Claire Molony
Publikováno v:
Arteriosclerosis, Thrombosis, and Vascular Biology. 38
Cardiovascular disease (CVD) is the number one killer in Ireland and the wider EU. A hallmark of the disease is the obstruction to blood flow due to the build-up of vascular smooth muscle (SMCs)-like cells within the vessel wall. While polymer-coated
Autor:
David A. Morrow, Daniel Canning, Gillian Casey, Mariana Di Luca, Jens Ducrée, Killian Healy, Paul A. Cahill, Andreu Llobera, David Kernan, Roya Hakimjavadi, Emma Fitzpatrick, Eileen M. Redmond, Damien King, Weimin Liu, Lourdes An Julius, Denise Burtenshaw, Claire Molony
Publikováno v:
Oral Presentations.
The accumulation of vascular smooth muscle (SM)-like cells within the intima contributes significantly to intimal medial thickening (IMT) and vascular remodelling typical of arteriosclerotic disease. The source of these cells remains controversial. L
Autor:
Paul A. Cahill, Roa Bashmail, Roya Hakimjavadi, Ciaran O’Shea, Claire Molony, Dorota Kozlowska, Niamh Mckenna
Publikováno v:
Poster Presentations.
Stem cell derived myogenic progeny play important roles in the pathophysiological processes of various vascular disorders, such as arteriosclerosis, atherosclerosis, and in-stent restenosis. Targeting these cells is an attractive therapeutic strategy