Search results for "Anatomia"

showing 10 items of 1108 documents

Non-classical type I HLAs and B7 costimulators revisited: analysis of expression and immunomodulatory role in undifferentiated and differentiated MSC…

2011

Introduction. Wharton’s jelly (WJ), the main constituent of umbilical cord, emerged as a reliable and uncontroversial source of mesenchymal stem cells (MSC). WJ-MSC show unique ability in crossing lineage borders, therefore being capable to trans-ifferentiate towards mature cytotypes derived from the three germ layers. As other fetal-associated cells, WJ-MSC express several immunomodulatory molecules, essential during the initial phases of human development and for the processes linked to the tolerance of the mother to the semiallogeneic embryo. Very few data are present in literature on the maintenance of the immune privilege of the naïve cells after performing differentiation. Our previou…

Settore BIO/16 - Anatomia Umanamesenchymal stem cells umbilical cord Wharton's jelly immune modulation hepatocyte differentiation
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Characterization of the in vitro immunomodulatory properties of mesenchymal stem cells isolated from Wharton's jelly: new actors at play

2014

Settore BIO/16 - Anatomia Umanamesenchymal stem cells wharton's jelly umbilical cord WJ-MSC
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Exosomal HSP60 levels and related miRNAs in brain tumors

In cancer, Extracellular Vesicles (EVs), such as exosomes, contribute to tumor progression by regulating local and systemic parameters [1,2]. Since exosomes are released into body fluids, they may be used in nanomedicine as a valuable source of diagnostic biomarkers [3]. The prognosis of brain tumors is poor even after surgical resection followed by post-operatory chemo- and radio-therapies and it is cogent to find innovative treatments. The discovery that molecular chaperones can be determinant factors in tumorigenesis and the increasing understanding of exosomes, particularly in what refers to their release by tumor cells and contents, including chaperones and miRNA, provide elements to d…

Settore BIO/16 - Anatomia Umanamolecular chaperones HSP60 exosomes brain tumor new therapeutic tools
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Cancer as a “Mitochondriopathy”.

2007

Mitochondria are subcellular organelles, whose well-known function is to produce adenosine triphosphate (ATP) through oxidative phosphorylation (OXPHOS). Alterations in respiratory activity and mtDNA appear to be a general feature of malignant cells. The presence of mtDNA mutations has been reported in various cancer cells, and the abundance of mtDNA damage is consistent with the intrinsic susceptibility to constitutive oxidative stress. Research about the functional aspects of mtDNA mutations in cancer development and therapeutic response is likely to be fruitful and to have significant clinical and prognostic impact. Although many studies to date have been focused on the identification an…

Settore BIO/16 - Anatomia UmanamtDNA mitochondria cancer prohibitin homoplasmy
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Oxidative stress-driven expression of myeloperoxidase in endothelial cells results in accumulation of markers of oxidative and nitrosative stress in …

2009

Endothelial cells (ECs), are able to manage with higher concentrations of ROS as well as reactive nitrogen species, respect to the other cell types. The unbalance between oxidizing species and antioxidant cellular defences has been implicated in the pathogenesis of cardiovascular diseases. While the role of MPO in the oxidative burst is well established, the effects of this enzyme on endothelial biology have only recently come to light. MPO can interact with endothelial –derived NO causing its depletion and favouring its conversion to nitrogen dioxide radical, a compound responsible of protein nitration generating 3-nitrotyrosine. Moreover, MPO is the only enzyme capable to form hypoclorous…

Settore BIO/16 - Anatomia Umanamyeloperoxidase endothelial cells endocardium oxidative stress nitrosative stress hydrogen peroxide 3-chlorotyrosine 3-nitrotyrosine
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The balance of HSPs expression during pregnancy: the role of placenta

2009

Settore BIO/16 - Anatomia Umanaplacenta placental pathologies pregnancy HSPsChaperones Immunoregulation
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Cardiac progenitor cells and the development of the human heart

2009

Settore BIO/16 - Anatomia Umanaprecardiac cells cardiac stem cells
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The somatotopy of the spinal cord: a comprehensive descrption.

2016

For the benefit of medical students, in this paper we examine the somatotopic organization of the spinal cord, which shows a similar organization in mammalians. The dorsal horn is comprised of sensory nuclei with deutoneurons; the lateral horn contains preganglionic visceral motoneurons; the ventral horn is subdivided into a medial column innervating the paravertebral muscles, a central column, C3-C6, innervating the diaphragm, and a lateral column innervating the limb muscles. In the lateral column of the ventral horn, the dorsal motoneuron groups innervate the intrinsc arm muscles; the dorsal posterior motoneuron groups innervate hand muscles; the lateroventral motoneuron groups innervate…

Settore BIO/16 - Anatomia Umanaspinal cordsomatotopy; spinal cordsomatotopy
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Telomerase activity and telomeric states in cell proliferative and differentiative mechanisms.

2008

Telomeres are DNA-protein complexes playing an important role in the maintenance of genome integrity. Telomerase is the enzyme acting as a template for addition of new telomeric repeats; this addition is essential for those cellular populations that have proliferative and differentiative potential. Telomerase and associated proteins are essential in response to DNA damage. Moreover, telomere-associated proteins as TRF2 are involved in all signalling transduction pathway which drive cellular proliferation and differentiation. In somatic cells, shortening of telomeres contributes to the onset of senescence or apoptosis; tissues which require cellular renewal express telomerase activity in ord…

Settore BIO/16 - Anatomia Umanatelomerase telomere stem cells apoptosis senescence tumor cells
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PRENATAL DEVELOPMENT OF TEMPORO-MANDIBULAR JOINTS: STATE OF ART

2017

The aim of this work is to analyze the state of the art of temporo-mandibular joint (MJ) to understand the varoius stage of the development of the same during embryogenesis. Various theories have been analyzed, such as the formation of apoptotic or the important role of growth factors, or the Valencia et studies in which are analyzed to numerous articular diseases in various stage of development. By the aforementioned studies show that many factors, of a different nature, are to be involved in the prenatal developlment of this important joint.

Settore BIO/16 - Anatomia Umanatemporo-mandibular joint embriyogenesis growth factors
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