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Items where Author is "Dias, P"

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Cartledge, JE, Kane, C, Dias, P, Tesfom, M, Clarke, L, Mckee, B, Al Ayoubi, S, Chester, A, Yacoub, MH, Camelliti, P and Terracciano, CM (2015) Functional crosstalk between cardiac fibroblasts and adult cardiomyocytes by soluble mediators. Cardiovasc Res, 105 (3). pp. 260-270.

Kane, C, Dias, P, Helen, N, Trantidou, T, Camelliti, P, Gorelik, J and Terracciano, CM (2014) 267Direct contact between human cardiac fibroblasts and human induced pluripotent stem cell-derived cardiomyocytes counteracts changes in calcium cycling induced by soluble mediators. Cardiovasc Res, 103 Su.

Alayoubi, S, Al-Aidarous, S, Pinto Ricardo, C, Dias, P, Zaman, J, Kane, C, Camelliti, P, Peters, N, Yacoub, M and Terracciano, C (2014) P379Slowed conduction velocity in spontaneously hypertensive rat hearts is due to disease related remodelling. Cardiovasc Res, 103 Su.

Kane, C, Cartledge, J, Dias, P, Camelliti, P, Yacoub, M and Terracciano, C (2014) 17 Cardiomyocytes Influence Fibroblast Proliferation and α-Smooth Muscle Actin Expression via the Secretion of Paracrine Mediators. Heart, 100 Su. A6-A7.

Conference or Workshop Item

Cartledge, JE, Dias, P, Ibrahim, M, Alayoubi, S, Yacoub, MH, Camelliti, P and Terracciano, CM (2013) Freshly isolated adult fibroblasts from normal and overloaded hearts affect viability, cell volume and calcium cycling of cardiac myocytes in co-culture by paracrine TGF-β signalling. In: IUPS Congress, 2013 - ?, Birmingham.

Cartledge, JE, Tesfom, M, Dias, P, Ibrahim, M, Yacoub, MH, Camelliti, P and Terracciano, CM (2012) Freshly isolated fibroblasts from normal hearts affect cardiomyocyte structure and function via paracrine communication, and these effects are altered in fibroblasts from pressure overloaded hearts.

Dias, P, Navaratnarajah, M, Sarathchandra, P, Latif, N, Camelliti, P, Yacoub, MH and Terracciano, CM (2012) Ivabradine reverses the extracellular matrix changes in heart failure.

Camelliti, P, Dudhia, J, Dias, P, Cartledge, J, Connolly, DJ and Terracciano, CM Electrophysiological characterisation of the porcine right and left ventricle using myocardial slices.

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