Search Results - "Nicola, Juan Pablo"
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A Carboxy-Terminal Monoleucine-Based Motif Participates in the Basolateral Targeting of the Na+/I− Symporter
Published in Endocrinology (Philadelphia) (01-01-2019)“…Abstract The Na+/iodide (I−) symporter (NIS), a glycoprotein expressed at the basolateral plasma membrane of thyroid follicular cells, mediates I− accumulation…”
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The Acute Inhibitory Effect of Iodide Excess on Sodium/Iodide Symporter Expression and Activity Involves the PI3K/Akt Signaling Pathway
Published in Endocrinology (Philadelphia) (01-03-2014)“…Iodide (I−) is an irreplaceable constituent of thyroid hormones and an important regulator of thyroid function, because high concentrations of I− down-regulate…”
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A Novel SLC5A5 Variant Reveals the Crucial Role of Kinesin Light Chain 2 in Thyroid Hormonogenesis
Published in The journal of clinical endocrinology and metabolism (01-07-2021)“…Abstract Context Iodide transport defect (ITD) (Online Mendelian Inheritance in Man No. 274400) is an uncommon cause of dyshormonogenic congenital…”
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The Response of Prostate Smooth Muscle Cells to Testosterone Is Determined by the Subcellular Distribution of the Androgen Receptor
Published in Endocrinology (Philadelphia) (01-02-2018)“…Androgen signaling in prostate smooth muscle cells (pSMCs) is critical for the maintenance of prostate homeostasis, the alterations of which are a central…”
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Neonatal endotoxin stimulation is associated with a long-term bronchiolar epithelial expression of innate immune and anti-allergic markers that attenuates the allergic response
Published in PloS one (07-05-2020)“…Allergic asthma is the most common phenotype of the pathology, having an early-onset in childhood and producing a Th2-driven airways remodeling process that…”
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Testosterone-loaded GM1 micelles targeted to the intracellular androgen receptor for the specific induction of genomic androgen signaling
Published in International journal of pharmaceutics (15-12-2020)“…[Display omitted] •Testosterone can be loaded into GM1 micelles for delivery into the cytoplasm.•Testosterone-loaded micelles are specific modulators of…”
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Targeted Next-Generation Sequencing of Congenital Hypothyroidism-Causative Genes Reveals Unexpected Thyroglobulin Gene Variants in Patients with Iodide Transport Defect
Published in International journal of molecular sciences (17-08-2022)“…Congenital iodide transport defect is an uncommon autosomal recessive disorder caused by loss-of-function variants in the sodium iodide symporter (NIS)-coding…”
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S-Nitrosylation of NF-κB p65 Inhibits TSH-Induced Na+/I− Symporter Expression
Published in Endocrinology (Philadelphia) (01-12-2015)“…Nitric oxide (NO) is a ubiquitous signaling molecule involved in a wide variety of cellular physiological processes. In thyroid cells, NO-synthase…”
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Transcription Factor CREB3L1 Regulates the Expression of the Sodium/Iodide Symporter (NIS) in Rat Thyroid Follicular Cells
Published in Cells (Basel, Switzerland) (13-04-2022)“…The transcription factor CREB3L1 is expressed in a wide variety of tissues including cartilage, pancreas, and bone. It is located in the endoplasmic reticulum…”
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Thyroid Peroxidase Gene Expression Is Induced by Lipopolysaccharide Involving Nuclear Factor (NF)-κB p65 Subunit Phosphorylation
Published in Endocrinology (Philadelphia) (01-12-2012)“…Thyroid peroxidase (TPO), a tissue-specific enzyme expressed in differentiated thyroid follicular cells, is a major antigen that has been linked to autoimmune…”
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Impact of the Mutational Landscape of the Sodium/Iodide Symporter in Congenital Hypothyroidism
Published in Thyroid (New York, N.Y.) (01-12-2021)“…Iodide transport defect is an uncommon cause of dyshormonogenic congenital hypothyroidism due to homozygous or compound heterozygous pathogenic variants in the…”
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Functional Toll-Like Receptor 4 Conferring Lipopolysaccharide Responsiveness Is Expressed in Thyroid Cells
Published in Endocrinology (Philadelphia) (01-01-2009)“…Lipopolysaccharide (LPS), a glycolipid found in the cell wall of Gram-negative bacteria, exerts pleiotropic biological effects in different cell types. LPS is…”
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Sodium iodide symporter-targeted gene therapy in glioblastoma
Published in Molecular therapy. Oncolytics (16-03-2023)Get full text
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The Na+/I- symporter mediates active iodide uptake in the intestine
Published in American Journal of Physiology: Cell Physiology (01-04-2009)“…Absorption of dietary iodide, presumably in the small intestine, is the first step in iodide (I(-)) utilization. From the bloodstream, I(-) is actively taken…”
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Secreted Factors by Anaplastic Thyroid Cancer Cells Induce Tumor-Promoting M2-like Macrophage Polarization through a TIM3-Dependent Mechanism
Published in Cancers (26-09-2021)“…Anaplastic thyroid cancer (ATC) is a highly aggressive type of thyroid cancer (TC). Currently, no effective target treatments are available that can improve…”
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Dietary I(-) absorption: expression and regulation of the Na(+)/I(-) symporter in the intestine
Published in Vitamins and hormones (2015)“…Thyroid hormones are critical for the normal development, growth, and functional maturation of several tissues, including the central nervous system. Iodine is…”
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Dietary iodide controls its own absorption through post‐transcriptional regulation of the intestinal Na+/I− symporter
Published in The Journal of physiology (01-12-2012)“…Key points • Expression of the Na+/I− symporter (NIS) at the apical surface of the epithelium of the small intestine is key to I− absorption, the first step…”
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Excess iodide downregulates Na+/I− symporter gene transcription through activation of PI3K/Akt pathway
Published in Molecular and cellular endocrinology (05-05-2016)“…Transcriptional mechanisms associated with iodide-induced downregulation of NIS expression remain uncertain. Here, we further analyzed the transcriptional…”
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Nitric oxide-repressed Forkhead factor FoxE1 expression is involved in the inhibition of TSH-induced thyroid peroxidase levels
Published in Molecular and cellular endocrinology (15-01-2016)“…Thyroid peroxidase (TPO) is essential for thyroid hormone synthesis mediating the covalent incorporation of iodine into tyrosine residues of thyroglobulin…”
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