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Dive into the research topics where Michela Geminiani is active.

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Featured researches published by Michela Geminiani.


Reproductive Toxicology | 2011

Effect of trans-resveratrol on induced oxidative stress in human sperm and in rat germinal cells

Giulia Collodel; Mg Federico; Michela Geminiani; Silvia Martini; Claudia Bonechi; Claudio Rossi; Natale Figura; Elena Moretti

Resveratrol is a phytoalexin with antioxidant properties. We evaluated resveratrol toxicity in swim-up selected human sperm and in rat spermatocytes and spermatids separated by the STAPUT method. Resveratrol antioxidant activity was tested against lipid peroxidation (LPO) induced by tert-butyl hydroperoxide. LPO was evaluated using the C11-BODIPY(581/591) probe and transmission electron microscopy in samples incubated with and without resveratrol. LD50 for human sperm and rat spermatids was 50 μM; spermatocytes were more sensitive to resveratrol cytotoxicity. Sperm motility increased progressively at 30 μM, 15 μM and 6 μM. 15 μM resveratrol acts against LPO, preserving sperm chromatin and plasma membranes. LPO were more marked in spermatocytes than in spermatids and the effect of resveratrol was more evident in spermatocytes. In this study, the scavenger properties of resveratrol were demonstrated in vitro in human sperm and rat germ cells, thus resveratrol could be added to the media used in assisted reproduction techniques and cryopreservation when oxidative stress is exacerbated.


Journal of Andrology | 2010

Semen quality of male idiopathic infertile smokers and nonsmokers: an ultrastructural study.

Giulia Collodel; Serena Capitani; Andrea Pammolli; V. Giannerini; Michela Geminiani; Elena Moretti

This retrospective study was aimed at evaluating the effects of cigarette consumption on semen parameters in a group of men with idiopathic infertility. The semen quality of 2 groups of men with idiopathic infertility, smokers (n = 118) and nonsmokers (n = 153), were compared. Conventional semen analysis was performed and sperm morphology was assessed by transmission electron microscopy (TEM). TEM data were elaborated by means of a mathematical formula based on a Bayesian technique able to furnish a fertility index (FI), and the percentages of sperm apoptosis, necrosis, and immaturity. Values of normality recommended by World Health Organization guidelines were used as a control for conventional semen analysis, and values from sperm of 25 men of proven fertility were used for TEM indices. Infertile smoker and nonsmoker patients showed similar sperm parameters, although sperm motility and TEM analysis values in both groups were significantly impaired compared with controls. Smoker patients were then classified as mild (>or=1 and <or=10 cigarettes/d), moderate (>10 and <20 cigarettes/day), or heavy smokers (>or=20 cigarettes/d). Sperm concentration and FI were significantly (P < .05) different among the 3 considered smoker classes. Comparing the pairs of smoker classes, sperm concentration and FI in heavy smokers were significantly lower (P < .05) than that observed in mild smoker and nonsmoker groups. Although semen quality in males with idiopathic infertility seems not to be dramatically affected by cigarette consumption, heavy smokers show significantly lower sperm concentration and FI: another strong reason to stop smoking.


Rheumatology | 2013

Antioxidants inhibit SAA formation and pro-inflammatory cytokine release in a human cell model of alkaptonuria

Adriano Spreafico; Lia Millucci; Lorenzo Ghezzi; Michela Geminiani; Daniela Braconi; Loredana Amato; Federico Chellini; Bruno Frediani; Elena Moretti; Giulia Collodel; Giulia Bernardini; Annalisa Santucci

Objective. Alkaptonuria (AKU) is an ultra-rare autosomal recessive disease that currently lacks an appropriate therapy. Recently we provided experimental evidence that AKU is a secondary serum amyloid A (SAA)-based amyloidosis. The aim of the present work was to evaluate the use of antioxidants to inhibit SAA amyloid and pro-inflammatory cytokine release in AKU. Methods. We adopted a human chondrocytic cell AKU model to evaluate the anti-amyloid capacity of a set of antioxidants that had previously been shown to counteract ochronosis in a serum AKU model. Amyloid presence was evaluated by Congo red staining. Homogentisic acid-induced SAA production and pro-inflammatory cytokine release (overexpressed in AKU patients) were evaluated by ELISA and multiplex systems, respectively. Lipid peroxidation was evaluated by means of a fluorescence-based assay. Results. Our AKU model allowed us to prove the efficacy of ascorbic acid combined with N-acetylcysteine, taurine, phytic acid and lipoic acid in significantly inhibiting SAA production, pro-inflammatory cytokine release and membrane lipid peroxidation. Conclusion. All the tested antioxidant compounds were able to reduce the production of amyloid and may be the basis for establishing new therapies for AKU amyloidosis.


Mediators of Inflammation | 2014

Amyloidosis, Inflammation, and Oxidative Stress in the Heart of an Alkaptonuric Patient

Lia Millucci; Lorenzo Ghezzi; Eugenio Paccagnini; Giovanna Giorgetti; Cecilia Viti; Daniela Braconi; Marcella Laschi; Michela Geminiani; Patrizia Soldani; Pietro Lupetti; Maurizio Orlandini; Chiara Benvenuti; Federico Perfetto; Adriano Spreafico; Giulia Bernardini; Annalisa Santucci

Background. Alkaptonuria, a rare autosomal recessive metabolic disorder caused by deficiency in homogentisate 1,2-dioxygenase activity, leads to accumulation of oxidised homogentisic acid in cartilage and collagenous structures present in all organs and tissues, especially joints and heart, causing a pigmentation called ochronosis. A secondary amyloidosis is associated with AKU. Here we report a study of an aortic valve from an AKU patient. Results. Congo Red birefringence, Th-T fluorescence, and biochemical assays demonstrated the presence of SAA-amyloid deposits in AKU stenotic aortic valve. Light and electron microscopy assessed the colocalization of ochronotic pigment and SAA-amyloid, the presence of calcified areas in the valve. Immunofluorescence detected lipid peroxidation of the tissue and lymphocyte/macrophage infiltration causing inflammation. High SAA plasma levels and proinflammatory cytokines levels comparable to those from rheumatoid arthritis patients were found in AKU patient. Conclusions. SAA-amyloidosis was present in the aortic valve from an AKU patient and colocalized with ochronotic pigment as well as with tissue calcification, lipid oxidation, macrophages infiltration, cell death, and tissue degeneration. A local HGD expression in human cardiac tissue has also been ascertained suggesting a consequent local production of ochronotic pigment in AKU heart.


Journal of Proteome Research | 2009

Proteomics and Redox-Proteomics of the Effects of Herbicides on a Wild-Type Wine Saccharomyces cerevisiae Strain

Daniela Braconi; Giulia Bernardini; Silvia Possenti; Marcella Laschi; Simona Arena; Andrea Scaloni; Michela Geminiani; Michele Sotgiu; Annalisa Santucci

Several toxicological and environmental problems are associated with the extensive use of agricultural pesticides, such as herbicides. Nevertheless, little is known about the toxic effects of formulated herbicides, since many studies have been carried out using pure active molecules alone. In this work, we used as an eukaryotic model system an autochthonous wine yeast strain to investigate the effects of three commercial herbicides, currently used in the same geographical area from where this strain had been isolated. We carried out a comparative proteomic analysis to study the effects at the protein level of the herbicide-related stress, and found that the herbicides tested can alter the yeast proteome producing responses that share homologies with those observed treating yeast cells with the herbicide 2,4-dichlorophenoxyacetic acid (2,4-D) or with well-known oxidizing agents. We evaluated, through redox-proteomic techniques, protein carbonylation as a biomarker of oxidative stress. This analysis showed that herbicide-induced carbonylation is a dynamic phenomenon with degrees of selectivity.


Journal of Agricultural and Food Chemistry | 2008

Oxidative damage mediated by herbicides on yeast cells.

Daniela Braconi; Silvia Possenti; Marcella Laschi; Michela Geminiani; Paola Lusini; Giulia Bernardini; Annalisa Santucci

Agricultural herbicides are among the most commonly used pesticides worldwide, posing serious concerns for both humans, exposed to these chemicals through many routes, and the environment. To clarify the effects of three herbicides as commercial formulations (namely, Pointer, Silglif, and Proper Energy), parameters related to oxidative issues were investigated on an autochthonous wine yeast strain. It was demonstrated that herbicides were able to affect the enzymatic activities of catalase and superoxide dismutase, as well as to induce carbonylation and thiol oxidation as post-translational modifications of proteins. Saccharomyces cerevisiae is an optimal model system to study responses to xenobiotics and oxidative stress. Thus, the results obtained could further the understanding of mechanisms underlying the toxicity of herbicides.


Asian Journal of Andrology | 2009

18,X,Y aneuploidies and transmission electron microscopy studies in spermatozoa from five carriers of different reciprocal translocations

Elena Moretti; Nicola Antonio Pascarelli; V. Giannerini; Michela Geminiani; Cecilia Anichini; Giulia Collodel

We analysed ejaculated spermatozoa from five infertile men with different balanced reciprocal translocations to contribute to the study of meiotic segregation of chromosomes 18, X and Y and also to evaluate sperm morphology by transmission electron microscopy (TEM) analysis. Conventional lymphocyte karyotype analyses highlighted different reciprocal balanced translocations: t(12;13), t(4;9), t(X;8), t(8;10) and t(3;16). Semen analysis was performed by light and TEM. Fluorescence in situ hybridization was performed directly on sperm nuclei using centromeric probes for chromosomes 18, X and Y. The carriers of the balanced reciprocal translocations considered in the present study showed a very similar pattern of sperm pathologies: diffused presence of apoptosis and immaturity. All patients showed meiotic segregation derangements, highlighted by the presence of sperm diploidies and sex chromosome disomies particularly related to the failure of the first meiotic division. However, an increased incidence of chromosome 18 aneuploidy was detected in spermatozoa from t(X;8) and t(8;10) carriers. We have also reported values from sex chromosomes such as t(X;8), although the X chromosome was involved in translocation. Since patients with reciprocal translocations and spermatogenetic impairment are candidates for intracytoplasmic sperm injection cycles, the study of sperm parameters, and particularly of the level of aneuploidy rates, would provide better information for couples at risk and would contribute to the data in the literature for a better understanding of the effects of chromosomal rearrangement on the whole meiotic process and, in particular, on chromosomes not involved in translocation.


Journal of Inherited Metabolic Disease | 2015

Homogentisate 1,2 dioxygenase is expressed in brain: implications in alkaptonuria

Giulia Bernardini; Marcella Laschi; Michela Geminiani; Daniela Braconi; Elisa Vannuccini; Pietro Lupetti; Fabrizio Manetti; Lia Millucci; Annalisa Santucci

Alkaptonuria is an ultra-rare autosomal recessive disease developed from the lack of homogentisate 1,2-dioxygenase (HGD) activity, causing an accumulation in connective tissues of homogentisic acid (HGA) and its oxidized derivatives in polymerized form. The deposition of ochronotic pigment has been so far attributed to homogentisic acid produced by the liver, circulating in the blood, and accumulating locally. In the present paper, we report the expression of HGD in the brain. Mouse and human brain tissues were positively tested for HGD gene expression by western blotting. Furthermore, HGD expression was confirmed in human neuronal cells that also revealed the presence of six HGD molecular species. Moreover, once cultured in HGA excess, human neuronal cells produced ochronotic pigment and amyloid. Our findings indicate that alkaptonuric brain cells produce the ochronotic pigment in loco and this may contribute to induction of neurological complications.


Fertility and Sterility | 2011

A case of severe asthenozoospermia: a novel sperm tail defect of possible genetic origin identified by electron microscopy and immunocytochemistry

Giulia Collodel; Maria Grazia Federico; Nicola Antonio Pascarelli; Michela Geminiani; Tommaso Renieri; Elena Moretti

OBJECTIVE To characterize a novel flagellar defect involving 98% of sperm tails. DESIGN Case report. SETTING Interdepartmental Centre for Research and Therapy of Male Infertility, Siena, Italy. PATIENT(S) A 45-year-old infertile man with severe asthenozoospermia. INTERVENTION(S) Family history, physical examination, hormonal analysis, microbial assays, semen analysis, transmission and scanning electron microscopy, tubulin distribution investigated by immunocytochemistry, fluorescence in situ hybridization (FISH) for chromosomes 9, 16, 18, X, and Y. MAIN OUTCOME MEASURE(S) Flagellar abnormalities detected by microscopical methods. RESULT(S) An apparent heterogeneity was observed: extremely elongated tails prone to ruptures; coiled tails at different levels with a strongly rolled axoneme or with a curl in the final flagellar segment; and V-shaped, isolated, bent tails. Transmission electron microscopy revealed the presence of normal heads, disorganized flagellar structures, and dynein deficiency. The FISH analysis was normal. CONCLUSION(S) We report a new sperm defect, characterized by abnormal elongation of the tail, which was prone to ruptures at different levels, concomitant with coiled tails, which were impossible to measure in length. This defect remained constant in different examined ejaculates and applied to the entire sperm population of a sterile man, the son of first-degree cousins, indicating a potential genetic origin.


Expert Review of Proteomics | 2014

Proteomics of osteosarcoma

Giulia Bernardini; Marcella Laschi; Michela Geminiani; Annalisa Santucci

Osteosarcoma (OS) is the most common primary malignant tumor of bone and the third most common cancer in childhood and adolescence. Nowadays, early diagnosis, drug resistance and recurrence of the disease represent the major challenges in OS treatment. Post-genomics, and in particular proteomic technologies, offer an invaluable opportunity to address the level of biological complexity expressed by OS. Although the main goal of OS oncoproteomics is focused on diagnostic and prognostic biomarker discovery, in this review we describe and discuss global protein profiling approaches to other aspects of OS biology and pathophysiology, or to investigate the mechanism of action of chemotherapeutics. In addition, we present proteomic analyses carried out on OS cell lines as in vitro models for studying osteoblastic cell biology and the attractive opportunity offered by proteomics of OS cancer stem cells.

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