Search Results - "de Rienzo, Gianluca"
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Extracellular Vesicles Modulate the Glioblastoma Microenvironment via a Tumor Suppression Signaling Network Directed by miR-1
Published in Cancer research (Chicago, Ill.) (01-02-2014)“…Extracellular vesicles have emerged as important mediators of intercellular communication in cancer, including by conveying tumor-promoting microRNAs between…”
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2
Brain activity patterns in high-throughput electrophysiology screen predict both drug efficacies and side effects
Published in Nature communications (15-01-2018)“…Neurological drugs are often associated with serious side effects, yet drug screens typically focus only on efficacy. We demonstrate a novel paradigm utilizing…”
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Zebrafish homologs of genes within 16p11.2, a genomic region associated with brain disorders, are active during brain development, and include two deletion dosage sensor genes
Published in Disease models & mechanisms (01-11-2012)“…Deletion or duplication of one copy of the human 16p11.2 interval is tightly associated with impaired brain function, including autism spectrum disorders…”
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Efficient shRNA-mediated inhibition of gene expression in zebrafish
Published in Zebrafish (01-09-2012)“…Despite the broad repertoire of loss of function (LOF) tools available for use in the zebrafish, there remains a need for a simple and rapid method that can…”
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Common DISC1 Polymorphisms Disrupt Wnt/GSK3β Signaling and Brain Development
Published in Neuron (Cambridge, Mass.) (17-11-2011)“…Disrupted in Schizophrenia-1 (DISC1) is a candidate gene for psychiatric disorders and has many roles during brain development. Common DISC1 polymorphisms…”
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6
Volumetric absorptive microsampling as an effective microsampling technique for LC–MS/MS bioanalysis of biomarkers in drug discovery
Published in Bioanalysis (01-07-2023)“…Develop and validate a volumetric absorptive microsampling (VAMS)-based LC–MS/MS method to support the bioanalysis of amino acid and carboxylic acid biomarkers…”
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7
Disc1 regulates both β‐catenin‐mediated and noncanonical Wnt signaling during vertebrate embryogenesis
Published in The FASEB journal (01-12-2011)“…ABSTRACT Disc1 is a schizophrenia risk gene that engages multiple signaling pathways during neurogenesis and brain development. Using the zebrafish as a tool,…”
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8
Characterization and Classification of Zebrafish Brain Morphology Mutants
Published in Anatomical record (Hoboken, N.J. : 2007) (01-01-2009)“…The mechanisms by which the vertebrate brain achieves its three‐dimensional structure are clearly complex, requiring the functions of many genes. Using the…”
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Common DISC1 Polymorphisms Disrupt Wnt/GSK3[beta] Signaling and Brain Development
Published in Neuron (Cambridge, Mass.) (17-11-2011)“…Disrupted in Schizophrenia-1 (DISC1) is a candidate gene for psychiatric disorders and has many roles during brain development. Common DISC1 polymorphisms…”
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10
Common DISC1 Polymorphisms Disrupt Wnt/GSK3I super(2) Signaling and Brain Development
Published in Neuron (Cambridge, Mass.) (17-11-2011)“…Disrupted in Schizophrenia-1 (DISC1) is a candidate gene for psychiatric disorders and has many roles during brain development. Common DISC1 polymorphisms…”
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The expression level of frog relaxin mRNA (fRLX), in the testis of Rana esculenta, is influenced by testosterone
Published in Journal of experimental biology (01-10-2006)“…Frog relaxin (fRLX) belongs to the relaxin/insulin gene family present in the testis of Rana esculenta and is specifically expressed by Leydig cells. Since the…”
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Isolation and Characterization of a Novel Member of the Relaxin/Insulin Family from the Testis of the Frog Rana esculenta
Published in Endocrinology (Philadelphia) (01-07-2001)“…Abstract A complementary DNA (cDNA) encoding a frog relaxin/insulin member family (fRLX) from testis cDNA library was isolated and characterized. The fRLX cDNA…”
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Ethane 1,2-dimethane sulphonate is a useful tool for studying cell-to-cell interactions in the testis of the frog, Rana esculenta
Published in General and comparative endocrinology (01-03-2003)“…Ethane 1,2-dimethane sulphonate (EDS), a toxin which specifically destroys Leydig cells (LC), has been used to study cellular interactions in the testis of the…”
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Isolation and Characterization of a Novel Member of the Relaxin/Insulin Family from the Testis of the Frog Rana esculenta1
Published in Endocrinology (Philadelphia) (01-07-2001)“…A complementary DNA (cDNA) encoding a frog relaxin/insulin member family (fRLX) from testis cDNA library was isolated and characterized. The fRLX cDNA…”
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15
Effects of melatonin treatment on Leydig cell activity in the testis of the frog Rana esculenta
Published in Zygote (Cambridge) (01-11-2004)“…This study was conducted to verify the effect(s) of melatonin treatment on frog Leydig cells. Morphological observation after melatonin treatment indicates…”
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16
Morphology of the Harderian gland of the Gecko, Tarentola mauritanica
Published in Journal of morphology (1931) (01-05-2000)“…ABSTRACT The Harderian gland of the gecko, Tarentola mauritanica, was studied at the histological, histochemical, and ultrastructural levels. It is a nonlobate…”
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First evidence of prothymosin α in a non-mammalian vertebrate and its involvement in the spermatogenesis of the frog Rana esculenta
Published in Mechanisms of development (2002)“…A cDNA clone encoding for a Prothymosin α (Prot-α) has been isolated and characterized from the testis of the frog Rana esculenta. Frog Prothymosin α (fProt-α)…”
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Temporal and spatial localization of prothymosin α transcript in the Harderian gland of the frog, Rana esculenta
Published in The Journal of experimental zoology (01-06-2002)“…The Harderian gland (hg) is the only orbital gland of the frog Rana esculenta, and it has the essential function of lubricating the eyes. The hg secretory…”
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Effects of multiple injections of ethane 1,2-dimethane sulphonate (EDS) on the frog, Rana esculenta, testicular activity
Published in The Journal of experimental zoology (01-10-2000)“…Ethane 1,2‐dimethane sulphonate (EDS) is an alkylating agent, which has a selective cytotoxic effect on Leydig cells in some mammalian species. Similarly, in…”
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