Literature DB >> 8635233

Hepatocyte growth factor and its receptor are expressed in cardiac myocytes during early cardiogenesis.

D A Rappolee1, A Iyer, Y Patel.   

Abstract

In the mouse, the heart primordium arises when mesoderm is set aside during gastrulation, is induced by pharyngeal endoderm, migrates ventrally to the midline of the embryo, forms a tube, and begins beating. Little is known of the molecular mechanisms that mediate the determination, mitosis, differentiation, and migration that lead to the beating heart. Transcripts for hepatocyte growth factor/scatter factor (HGF) and its receptor are coexpressed transiently and dynamically in the premyocardium but not in other heart progenitor cells. Transcripts the HGF ligand and receptor are first detected before cardiac function and looping and persist through the first looping stage, when heart morphology begins to elaborate. HGF ligand and receptor mRNA are detectable after the putative heart transcription factor, Csx/Nkx2-5, and concomitantly with the heart structural gene, cardiac actin. HGF receptor mRNA is detected in the mesoderm of the headfold stage and persists in myocardial precursors of the ventricles and atria (but not in the outflow-tract smooth muscle cells) through the 14-somite stage at approximately 8.75 days after fertilization (day E8.75). At the headfold stage, between E7.5 and E8.0, HGF receptor mRNA was detected in myocardial cells before fusion at the ventral midline. HGF ligand and receptor mRNA transcripts are coexpressed in the embryo, except in the headfold state (when only the HGF receptor can be detected) and in the heart at the 14- to 18-somite stage (when only HGF ligand can be detected). The dynamic pattern of coexpression suggests an autoregulatory role for HGF and its receptor in early heart development.

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Year:  1996        PMID: 8635233     DOI: 10.1161/01.res.78.6.1028

Source DB:  PubMed          Journal:  Circ Res        ISSN: 0009-7330            Impact factor:   17.367


  14 in total

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Review 2.  Emerging anticancer therapeutic targets and the cardiovascular system: is there cause for concern?

Authors:  Xuyang Peng; Laura Pentassuglia; Douglas B Sawyer
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Review 3.  Hepatocyte growth factor/Met gene transfer in cardiac stem cells--potential for cardiac repair.

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4.  A mouse model for spatial and temporal expression of HGF in the heart.

Authors:  Ilan Riess; Valentina Sala; Christian Leo; Marco Demaria; Stefano Gatti; Simona Gallo; Amandine Fitou; Ombretta Boero; Renzo Levi; Ivan Cuccovillo; Fabiola Molla; Noeleen De Angelis; Lidia Staszewsky; Roberto Latini; Tiziana Crepaldi
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Review 5.  Novel therapy for myocardial infarction: can HGF/Met be beneficial?

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6.  Myocardial protection from ischemia/reperfusion injury by endogenous and exogenous HGF.

Authors:  T Nakamura; S Mizuno; K Matsumoto; Y Sawa; H Matsuda; T Nakamura
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7.  Gene expression profiling of HGF/Met activation in neonatal mouse heart.

Authors:  Stefano Gatti; Christian Leo; Simona Gallo; Valentina Sala; Enrico Bucci; Massimo Natale; Daniela Cantarella; Enzo Medico; Tiziana Crepaldi
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8.  Activated Met signalling in the developing mouse heart leads to cardiac disease.

Authors:  Christian Leo; Valentina Sala; Mara Morello; Amedeo Chiribiri; Ilan Riess; Daniele Mancardi; Stefano Schiaffino; Carola Ponzetto; Tiziana Crepaldi
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Review 9.  Lymphedema and therapeutic lymphangiogenesis.

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Journal:  Biomed Res Int       Date:  2013-10-09       Impact factor: 3.411

10.  Intra-myocardial injection of both growth factors and heart derived Sca-1+/CD31- cells attenuates post-MI LV remodeling more than does cell transplantation alone: neither intervention enhances functionally significant cardiomyocyte regeneration.

Authors:  Xiaohong Wang; Qinglu Li; Qingsong Hu; Piradeep Suntharalingam; Arthur H L From; Jianyi Zhang
Journal:  PLoS One       Date:  2014-06-11       Impact factor: 3.240

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