269 research outputs found

    Mesenchymal stem cells as promoters, enhancers, and playmakers of the translational regenerative medicine

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    Since their first isolation and characterization by Friedenstein et al. in 1974, mesenchymal stem cells (MSCs) were proven essential for tissue regeneration and homeostasis. Over the years, thanks to a better understanding of the molecular mechanisms underlying the therapeutic effects of MSCs, several approaches with MSC-based therapies have been proposed, in order to treat different human diseases. In this light, MSCs are currently being tested in preclinical in vivo settings as well as in early-stage clinical trials for their ability to modulate immune responses, fostering wound healing and tissue regeneration of various tissue types and organs, including the skin, bone, cartilage, brain, muscle, and tendons

    Editorial: Advances in Endocrinology: Stem Cells and Growth Factors

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    Stem Cells investigation in Endocrinology: leading stem cell scientists and developmental endocrinologists, critically review both cutting-edge approaches to stem cell biology and the application of stem cells and their secretome to translational/precision medicine, endocrine diseases, including diabetes, tissue/organ repairs, energy metabolism, and metabolic disorders

    Phosphorylation of B14.5a subunit from bovine heart complex I identified by titanium dioxide selective enrichment and shotgun proteomics

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    Shotgun proteomics was used to study the steady phosphorylation state of NADH:ubiquinone oxidoreductase (complex I) subunits from bovine heart mitochondria. A total tryptic digestion of enzymatically active complex I was performed, and the resulting peptide mixture was subjected to phosphopeptide enrichment by the use of titanium dioxide (TiO2). The phosphopeptide-enriched fraction was separated and analyzed with nanoscale reverse-phase HPLC-ESI-MS/MS in single information-dependent acquisition. Hence two phosphorylated complex I subunits were detected: 42 kDa and B14.5a. Phosphorylation of 42-kDa subunit at Ser-59 has already been determined with fluorescent phosphoprotein-specific gel staining and mass spectrometry (Schilling, B., Aggeler, R., Schulenberg, B., Murray, J., Row, R. H., Capaldi, R. A., and Gibson, B. W. (2005) Mass spectrometric identification of novel phosphorylation site in subunit NDUFA10 of bovine mitochondrial complex I. FEBS Lett. 579, 2485-2490). In our work, this finding was confirmed using a non-gel-based approach. In addition, we report novel phosphorylation on B14.5a nuclear encoded subunit. We demonstrated evidence of the phosphorylation site at Ser-95 residue by collision-induced dissociation experiments on three different molecular ions of two tryptic phosphopeptides of B14.5a

    Functioning of family system in pediatric oncology during treatment phase

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    The study focuses on parents\u2019 psychological implications caused by the treatment of their children su\ufb00ering from tumor. It investigates some speci\ufb01c mothers\u2019 resource factors such as their strategies of coping and the perception of their own family functioning in terms of cohesion and adaptability. The study was performed with 34 mothers of children su\ufb00ering from acute lymphoblastic leukemia(ALL),duringthetreatmentphase.TheusedtoolsweretheCopingOrientationtoProblem Experienced\u2014New Italian Version, to investigate coping strategies, and the Family Adaptability and Cohesion Evaluation Scale-III, to analyze both real and ideal perception of family functioning. The data related to coping, show how the involved mothers tend to mainly use the strategies of positive aptitude, orientation toward problem and social support ( F = 99.88, d f= 4, P< .01). The family functioning, in terms of adaptabilit y, is described as chaotic relating to both the real (\u3c72 = 13.29,d f =3, P=.004)andideal(\u3c72=11.52,d f=2, P=.003)family,whereasintermsof cohesion, itisperceivedaschie\ufb02ydisengagedintherealfamily(\u3c72 =12.3,d f=3, P=.006)andasenmeshed in the ideal one (\u3c72 = 12.58, d f= 3, P= .006). Statistically positive correlations were only detected between adaptability and avoidance ( r = 0.49, P< .01); adaptability and orientation toward problem (r = 0.36, P< .05); and adaptability and transcendent orientation ( r = 120.04, P< .05). Despitethecriticalsituation,themothershaveshownoptimisticview,careforproblemmanagementandcapabilitytoaskforhelp.Thesecopingstrategiesallowthetherapeuticalliancebetween families and health care workers, so useful for the quality of childcarThe study focuses on parents\u2019 psychological implications caused by the treatment of their children su\ufb00ering from tumor. It investigates some speci\ufb01c mothers\u2019 resource factors such as their strategies of coping and the perception of their own family functioning in terms of cohesion and adaptability. The study was performed with 34 mothers of children su\ufb00ering from acute lymphoblastic leukemia(ALL),duringthetreatmentphase.TheusedtoolsweretheCopingOrientationtoProblem Experienced\u2014New Italian Version, to investigate coping strategies, and the Family Adaptability and Cohesion Evaluation Scale-III, to analyze both real and ideal perception of family functioning. The data related to coping, show how the involved mothers tend to mainly use the strategies of positive aptitude, orientation toward problem and social support ( F = 99.88, d f= 4, P< .01). The family functioning, in terms of adaptabilit y, is described as chaotic relating to both the real (\u3c72 = 13.29,d f =3, P=.004)andideal(\u3c72=11.52,d f=2, P=.003)family,whereasintermsof cohesion, itisperceivedaschie\ufb02ydisengagedintherealfamily(\u3c72 =12.3,d f=3, P=.006)andasenmeshed in the ideal one (\u3c72 = 12.58, d f= 3, P= .006). Statistically positive correlations were only detected between adaptability and avoidance ( r = 0.49, P< .01); adaptability and orientation toward problem (r = 0.36, P< .05); and adaptability and transcendent orientation ( r = 120.04, P< .05). Despitethecriticalsituation,themothershaveshownoptimisticview,careforproblemmanagementandcapabilitytoaskforhelp.Thesecopingstrategiesallowthetherapeuticalliancebetween families and health care workers, so useful for the quality of childcar

    Ga+, In+ and Tl+ Impurities in Alkali Halide Crystals: Distortion Trends

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    A computational study of the doping of alkali halide crystals (AX: A = Na, K; X = Cl, Br) by ns2 cations (Ga+, In+ and Tl+) is presented. Active clusters of increasing size (from 33 to 177 ions) are considered in order to deal with the large scale distortions induced by the substitutional impurities. Those clusters are embedded in accurate quantum environments representing the surrounding crystalline lattice. The convergence of the distortion results with the size of the active cluster is analyced for some selected impurity systems. The most important conclusion from this study is that distortions along the (100) and (110) crystallographic directions are not independent. Once a reliable cluster model is found, distortion trends as a function of impurity, alkali cation and halide anion are identified and discussed. These trends may be useful when analycing other cation impurities in similar host lattices.Comment: LaTeX file. 7 pages and 2 pictures. Accepted for publication in J. Chem. Phy

    Exosomes from human periapical Cyst-MSCs: Theranostic application in Parkinson’s disease

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    The scientific community continuously strives to get new disease models, to discover early markers or novel therapeutic approaches, improving the diagnosis and prognosis of several human pathologies. Parkinson’s Disease (PD) is characterized by a long asymptomatic phase, characterized by a selective loss of dopaminergic neurons. Recently, the human Periapical Cyst-Mesenchymal Stem Cells (hPCy-MSCs) have been differentiated in functional dopaminergic neurons: such oral-derived MSCs and the hPCy-MSCs-derived exosomes may represent a strategic and useful in vitro study-model, as well as intriguing therapeutic carriers. Circadian rhythm (CR) alteration variously impacts on PD pathways: an interesting research target is represented by the analysis of the exosomes released by dopaminergic neurons, derived from neural-differentiated hPCy-MSCs, after having reproduced in-vitro PD-like conditions. This review aims to describe the crosstalk among some aspects of circadian rhythm related to the onset of PD and the exosomes released by cells of PD patients. More in detail: the first part of this article will describe the main characteristics of circadian rhythm and the involvement of the exosomes found to be effective in the pathogenesis of PD. Finally, the authors will suggest how those exosomes derived from dopaminergic neurons, obtained by oral-derived stem cells (hPCy-MSCs) may represent a smart model for the in vitro research on PD, to find new biomarkers, to test new drugs or, fatally, to find new pathways applicable in future therapeutic approaches

    Exploring the role of Fusobacterium nucleatum in preterm birth: A narrative review

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    In recent years, substantive attention has been drawn to the relationship between oral microbiome homeostatic equilibrium disruption and systemic health, demonstrating the negative impacts of this reciprocal biological interplay. Increasingly, there is a concern over the potential noxious effect of oral microbiome dysbiosis on obstetric poor outcomes, focusing on preterm birth. This epidemiological observation remains unexplained, although biologically plausible mechanism has been proposed. Intrauterine infection has long been associated with adverse pregnancy, when the elicitation of an immune response is determinant. There is evidence that Fusobacterium nucleatum (FN), a Gram-negative anaerobe ubiquitous in the oral cavity, infects the mouse placenta originating in the decidua basalis. Based on the current data in literature, we performed a review to provide resources for the explanation of the potential impact of microbiome dysbiosis on poor obstetric outcomes, focusing on the role of FN

    Is the Non-Coding RNA miR-195 a Biodynamic Marker in the Pathogenesis of Head and Neck Squamous Cell Carcinoma? A Prognostic Meta-Analysis

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    Head and neck squamous cell carcinoma (HNSCC) represents a heterogeneous group of neoplasms whose histological derivation comes from the mucous membranes lining the epithelium: the oral cavity, the larynx, the hypopharynx, the nasopharynx, and the oropharynx. The etiopathogenetic mechanisms involving tumor genesis including the alteration of cell proliferation, apoptosis, invasion, migration, and death may involve alterations in the expression of microRNA (miR). To date there have been no systematic reviews with meta-analysis conducted specifically on the role of miR-195 in HNSCC; therefore, our hypothesis was to evaluate if the aberrant expression of miR-195 in HNSCC tissues may represent a prognostic biomarker of survival through the hazard ratio (HR) and relative risk (RR) analysis. The systematic review was designed according to the PRISMA indications; in total, three electronic databases were consulted (PubMed, Scopus, Cochrane Central Trial) including Google Scholar and the gray literature, and a combination of keywords was used such as miR-195 AND HNSCC, microRNA AND HNSCC and miR-195. The meta-analysis and trial sequential analysis were performed using RevMan 5.41 software and TSA software (Cochrane Collaboration, Copenhagen, Denmark). This search identified 1592 articles and, at the end of the selection process, three articles were included. The results of the meta-analysis reported an aggregated risk ratio for overall survival (OS) between the expression of miR-195 at the highest and lowest of 0.36 and 6, respectively, 95% CI: [0.25, 0.51]. Heterogeneity was evaluated through Chi2 = 0.05 df = 2 (p = 0.98) and the Higgins index I2 = 0%. The test for the overall effect was Z = 5.77 (p < 0.00001). The forest plot was in favor of higher OS in patients with high miR-195 expression

    Respiratory chain complex I, a main regulatory target of the cAMP/PKA pathway is defective in different human diseases

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    In mammals, complex I (NADH-ubiquinone oxidoreductase) of the mitochondrial respiratory chain has 31 supernumerary subunits in addition to the 14 conserved from prokaryotes to humans. Multiplicity of structural protein components, as well as of biogenesis factors, makes complex I a sensible pace-maker of mitochondrial respiration. The work reviewed here shows that the cAMP/PKA pathway regulates the biogenesis, assembly and catalytic activity of complex I and mitochondrial oxygen superoxide production. The structural, functional and regulatory complexity of complex I, renders it particularly vulnerable to genetic and sporadic pathological factors. Complex I dysfunction has, indeed, been found, to be associated with several human diseases. Knowledge of the pathogenetic mechanisms of these diseases can help to develop new therapeutic strategies. (C) 2011 Federation of European Biochemical Societies. Published by Elsevier B. V. All rights reserved

    Candida zemplinina for Production of Wines with Less Alcohol and More Glycerol

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    We developed a new protocol for winery mixed fermentations, using the selected Candida zemplinina yeaststrain Cz3. The results of a two-year study, in which red musts (Merlot in 2010; Merlot, Nero d’Avolaand Frappato in 2011) were inoculated with Cz3, is discussed. These wines were compared with winesobtained by inoculation with commercial Saccharomyces cerevisiae yeast strains (NDA21 and AR06 in2010; NDA21 in 2011), or with those obtained by spontaneous fermentation (only in 2011). The inoculationof Cz3 always resulted in a two-phase fermentation: the first phase was driven by the C. zemplinina strain,while the second was dominated by the indigenous S. cerevisiae yeasts coming from the grapes and/or thewinery. In both years the Cz3 wines contained less alcohol and more glycerol than those made with thecommercial yeast strains or those obtained by spontaneous fermentation. Triangle tests showed that asensorial difference between wines could only be achieved through the utilisation of Cz3
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