Filtros de búsqueda

Lista de obras de Dario Coletti

Aerobic Exercise and Pharmacological Treatments Counteract Cachexia by Modulating Autophagy in Colon Cancer

artículo científico publicado en 2016

Biomaterials and bioactive molecules to drive differentiation in striated muscle tissue engineering

artículo científico publicado en 2015

Culture of skeletal muscle cells in unprecedented proximity to a gold surface.

artículo científico publicado en 2009

Dietary Flaxseed Mitigates Impaired Skeletal Muscle Regeneration: in Vivo, in Vitro and in Silico Studies

artículo científico publicado en 2016

Exercise Reduces the Resumption of Tumor Growth and Proteolytic Pathways in the Skeletal Muscle of Mice Following Chemotherapy

artículo científico publicado en 2020

How Diet Intervention via Modulation of DNA Damage Response through MicroRNAs May Have an Effect on Cancer Prevention and Aging, an in Silico Study.

artículo científico publicado en 2016

IGF-I-induced differentiation of L6 myogenic cells requires the activity of cAMP-phosphodiesterase.

artículo científico publicado en 2003

Inactivation of serum response factor contributes to decrease vascular muscular tone and arterial stiffness in mice.

artículo científico publicado en 2013

Increase in cytosolic Ca2+ induced by elevation of extracellular Ca2+ in skeletal myogenic cells.

artículo científico publicado en 2002

Increasing autophagy does not affect neurogenic muscle atrophy

scientific article published on 01 July 2018

Inflammation in muscle repair, aging, and myopathies.

artículo científico publicado en 2014

Mesenchymal Stem Cells as Promoters, Enhancers, and Playmakers of the Translational Regenerative Medicine

artículo científico publicado en 2017

Modulation of caspase activity regulates skeletal muscle regeneration and function in response to vasopressin and tumor necrosis factor

artículo científico publicado en 2009

Molecular, cellular and physiological characterization of the cancer cachexia-inducing C26 colon carcinoma in mouse.

artículo científico publicado en 2010

Muscle acellular scaffold as a biomaterial: effects on C2C12 cell differentiation and interaction with the murine host environment.

artículo científico publicado en 2014

Muscle cachexia is regulated by a p53-PW1/Peg3-dependent pathway.

artículo científico publicado en 2006

Muscle extracellular matrix scaffold is a multipotent environment

artículo científico publicado en 2015

Myomegalin is a novel protein of the golgi/centrosome that interacts with a cyclic nucleotide phosphodiesterase

artículo científico publicado en 2001

NF-κB-mediated Pax7 dysregulation in the muscle microenvironment promotes cancer cachexia

artículo científico publicado en 2013

Native extracellular matrix: a new scaffolding platform for repair of damaged muscle

artículo científico publicado en 2014

Neurohypophyseal Hormones: Novel Actors of Striated Muscle Development and Homeostasis

artículo científico

Of Faeces and Sweat. How Much a Mouse is Willing to Run: Having a Hard Time Measuring Spontaneous Physical Activity in Different Mouse Sub-Strains

artículo científico publicado en 2017

Polychlorobiphenyls inhibit skeletal muscle differentiation in culture.

artículo científico publicado en 2001

Regulation of skeletal muscle development and homeostasis by gene imprinting, histone acetylation and microRNA

artículo científico publicado en 2015

Restoration versus reconstruction: cellular mechanisms of skin, nerve and muscle regeneration compared.

artículo científico

Serum Response Factor in Muscle Tissues: From Development to Ageing

artículo científico publicado en 2016

Skeletal muscle Heat shock protein 60 increases after endurance training and induces peroxisome proliferator-activated receptor gamma coactivator 1 α1 expression

artículo científico publicado en 2016

Skeletal muscle is enriched in hematopoietic stem cells and not inflammatory cells in cachectic mice.

artículo científico publicado en 2008

Skeletal muscle tissue engineering: best bet or black beast?

artículo científico publicado en 2014

Spontaneous Physical Activity Downregulates Pax7 in Cancer Cachexia

artículo científico publicado en 2015

Static magnetic fields affect calcium fluxes and inhibit stress-induced apoptosis in human glioblastoma cells.

artículo científico publicado en 2002

Static magnetic fields enhance skeletal muscle differentiation in vitro by improving myoblast alignment.

artículo científico publicado en 2007

Static magnetic fields modulate X-ray-induced DNA damage in human glioblastoma primary cells.

artículo científico publicado en 2013

Stem cell-mediated muscle regeneration and repair in aging and neuromuscular diseases.

artículo científico publicado en 2007

Substrains of inbred mice differ in their physical activity as a behavior.

artículo científico publicado en 2013

Synemin acts as a regulator of signalling molecules during skeletal muscle hypertrophy.

artículo científico publicado en 2014

TNFalpha inhibits skeletal myogenesis through a PW1-dependent pathway by recruitment of caspase pathways.

artículo científico publicado en 2002

Targeting RAGE prevents muscle wasting and prolongs survival in cancer cachexia

scientific article published on 11 March 2020

The Ejtm Specials "The Long-Term Denervated Muscle".

artículo científico

The Need for a Consensus on the Locution "Central Nuclei" in Striated Muscle Myopathies.

artículo científico publicado en 2016

The pro-myogenic environment provided by whole organ scale acellular scaffolds from skeletal muscle

artículo científico publicado en 2011

Tumor Necrosis Factor-α Inhibition of Skeletal Muscle Regeneration Is Mediated by a Caspase-Dependent Stem Cell Response

artículo científico publicado en 2008

Tumor necrosis factor-alpha gene transfer induces cachexia and inhibits muscle regeneration.

artículo científico publicado en 2005

Vimentin knockout results in increased expression of sub-endothelial basement membrane components and carotid stiffness in mice

artículo científico publicado en 2017

α-Linolenic Acid Reduces TNF-Induced Apoptosis in C2C12 Myoblasts by Regulating Expression of Apoptotic Proteins.

artículo científico publicado en 2016