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10篇 您的检索式:作者名="Perciavalle"
    题名 作者 年代 出处 被引量
1Levels of brain-derived neurotrophic factor and neurotrophin-4 in lumbar motoneurons after low-thoracic spinal cord hemisection显示文摘Rosario Gulino Salvatore Andrea Lombardo Antonino Casabona Giampiero Leanza Vincenzo Perciavalle 2004Brain Research2004,,2:1
2Delving deeper:MCL-1′s contributions to normal and cancer biology显示文摘PERCIAVALLE R M OPFERMAN J T 0,,01:1
3Opposing activities protect against age-onset proteotoxicity 显示文摘Cohen E Bieschke J Perciavalle R M 2006Science2006,313,5793:1
4Differences in H- reflex between athletes trained for explosive contractions and non-trained subjects 显示文摘Casabona A Polizzi MC Perciavalle V 1990Eur J Appl Physiol Occup Physiol1990,61,:1
5Opposing ac- tivities protect against age-onset proteotoxicity 显示文摘Cohen E Bieschke J Perciavalle RM 2006Science2006,313,5793:1
6Delving deeper: Mcl-1 's contri- butions to normal and cancer biology显示文摘Perciavalle R M Opferman J T 2013Trends Cell Biol2013,23,1:1
7Opposing activities pro-tect against age-onset proteotoxicity显示文摘Cohen E Bieschke J Perciavalle RM 2006Science2006,313,5793:1
8Changes of blood lactate levels after repetitive transcranial magnetic stimulation显示文摘Giovanna Alagona Marinella Coco Giuseppe Rapisarda Erminio Costanzo Tiziana Maci Domenico Restivo Antonino Maugeri Vincenzo Perciavalle 2008Neuroscience Letters2008,,2:1
9Opposing activities protect against age-onset proteotoxicity显示文摘Cohen E Bieschke J Perciavalle RM 2006Science2006,313,:1
10Physiologically based microenvironment for in vitro neural differentiation of adipose-derived stem cells显示文摘The limited capacity of nervous system to promote a spontaneous regeneration and the high rate of neurodegenerative diseases appearance are keys factors that stimulate researches both for defining the molecular mechanisms of pathophysiology and for evaluating putative strategies to induce neural tissue regeneration. In this latter aspect, the application of stem cells seems to be a promising approach, even if the control of their differentiation and the maintaining of a safe state of proliferation should be troubled. Here, we focus on adipose tissue-derived stem cells and we seek out the recent advances on the promotion of their neural differentiation, performing a critical integration of the basic biology and physiology of adipose tissuederived stem cells with the functional modifications that the biophysical, biomechanical and biochemical microenvironment induces to cell phenotype. The pre-clinical studies showed that the neural differentiation by cell stimulation with growth factors benefits from the integration with biomaterials and biophysical interaction like microgravity. All these elements have been reported as furnisher of microenvironments with desirable biological, physical and mechanical properties. A critical review of current knowledge is here proposed, underscoring that a real advance toward a stable, safe and controllable adipose stem cells clinical application will derive from a synergic multidisciplinary approach that involves material engineer, basic cell biology, cell and tissue physiology.Adriana Carol Eleonora Graziano Rosanna Avola Vincenzo Perciavalle Ferdinando Nicoletti Gianluca Cicala Marinella Coco Venera Cardile 2018World Journal of Stem Cells2018,10,3:0
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