Search Results - "Padakanti, Prashanth K."
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C. Elegans Fatty Acid Two-Hydroxylase Regulates Intestinal Homeostasis by Affecting Heptadecenoic Acid Production
Published in Cellular physiology and biochemistry (01-01-2018)“…Abstract Background/Aims: The hydroxylation of fatty acids at the C-2 position is the first step of fatty acid α-oxidation and generates sphingolipids…”
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Synthesis and biological characterization of a promising F-18 PET tracer for vesicular acetylcholine transporter
Published in Bioorganic & medicinal chemistry (01-08-2015)“…[Display omitted] Nine fluorine-containing vesicular acetylcholine transporter (VAChT) inhibitors were synthesized and screened as potential PET tracers for…”
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3
Radiosynthesis and in vivo evaluation of [11C]MP-10 as a PET probe for imaging PDE10A in rodent and non-human primate brain
Published in Bioorganic & medicinal chemistry (01-03-2011)“…Structure and microPET image of [11C]MP-10. 2-((4-(1-[11C]Methyl-4-(pyridin-4-yl)-1H-pyrazol-3-yl)phenoxy)methyl)-quinoline (MP-10), a specific PDE10A…”
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4
Heteroaromatic and Aniline Derivatives of Piperidines As Potent Ligands for Vesicular Acetylcholine Transporter
Published in Journal of medicinal chemistry (08-08-2013)“…To identify suitable lipophilic compounds having high potency and selectivity for vesicular acetylcholine transporter (VAChT), a heteroaromatic ring or a…”
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5
Radiosyntheses and in vivo evaluation of carbon-11 PET tracers for PDE10A in the brain of rodent and nonhuman primate
Published in Bioorganic & medicinal chemistry (01-05-2014)“…The radiosyntheses and in vivo evaluation of four carbon-11 labeled quinoline group-containing radioligands are reported here. Radiolabeling of [11C]1–4 was…”
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Radiosynthesis and in Vivo Evaluation of Two PET Radioligands for Imaging α-Synuclein
Published in Applied sciences (17-03-2014)“…Two α-synuclein ligands, 3-methoxy-7-nitro-10 -phenothiazine ( , = 32.1 ± 1.3 nM) and 3-(2-fluoroethoxy)-7-nitro-10 -phenothiazine ( , = 49.0 ± 4.9 nM), were…”
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Automated synthesis of [11C]L-glutamine on Synthra HCN plus synthesis module
Published in EJNMMI radiopharmacy and chemistry (20-03-2019)“…Background L-Glutamine (L-Gln) is the most abundant amino acid present in the human body and is involved in numerous metabolic pathways. Glutaminolysis is the…”
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8
Copper Loading of Preformed Nanoparticles for PET-Imaging Applications
Published in ACS applied materials & interfaces (31-01-2018)“…Nanoparticles (NP) are promising contrast agents for positron emission tomography (PET) radionuclide imaging that can increase signal intensity by localizing…”
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Synthesis and in vitro evaluation of α-synuclein ligands
Published in Bioorganic & medicinal chemistry (01-08-2012)“…Accumulation of misfolded α-synuclein in Lewy bodies and Lewy neurites is the pathological hallmark of Parkinson’s disease (PD). To identify ligands having…”
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10
Preclinical Evaluation of the Novel Monoclonal Antibody H6-11 for Prostate Cancer Imaging
Published in Molecular pharmaceutics (07-10-2013)“…The biological properties of the novel monoclonal antibody (mAb) H6-11 and its potential utility for oncological imaging studies were evaluated using in vitro…”
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Syntheses and Radiosyntheses of Two Carbon-11 Labeled Potent and Selective Radioligands for Imaging Vesicular Acetylcholine Transporter
Published in Molecular imaging and biology (01-12-2014)“…Purpose The vesicular acetylcholine transporter (VAChT) is a specific biomarker for imaging presynaptic cholinergic neurons. The syntheses and C-11 labeling of…”
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12
Synthesis and in Vitro Biological Evaluation of Carbonyl Group-Containing Analogues for σ1 Receptors
Published in Journal of medicinal chemistry (11-08-2011)“…To identify the ligands for σ1 receptors that are potent and selective, analogues of prezamicol and trozamicol scaffolds of carbonyl-containing vesicular…”
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In Vitro and In Vivo Characterization of Two C-11-Labeled PET Tracers for Vesicular Acetylcholine Transporter
Published in Molecular imaging and biology (01-12-2014)“…Purpose The vesicular acetylcholine transporter (VAChT) is a specific biomarker for imaging presynaptic cholinergic neurons. Herein, two potent and selective…”
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14
Kinetics of Nanoparticle Radiolabeling of Metalloporphyrin with 64 Cu for Positron Emission Tomography (PET) Imaging
Published in Industrial & engineering chemistry research (28-10-2020)Get full text
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Abstract 318: Preclinical evaluation of monoclonal antibody H6-11 for prostate cancer imaging
Published in Cancer research (Chicago, Ill.) (15-04-2013)“…Altered post-translational modification (PTM) of glycosylations to various nuclear and cytosolic proteins is a universal feature of cancer cells and these…”
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Synthesis and in Vitro Biological Evaluation of Carbonyl Group-Containing Analogues for σ 1 Receptors
Published in Journal of medicinal chemistry (11-08-2011)Get full text
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Kinetics of Nanoparticle Radiolabeling of Metalloporphyrin with 64Cu for Positron Emission Tomography (PET) Imaging
Published in Industrial & engineering chemistry research (28-10-2020)“…Porphyrins are a unique class of biocompatible molecules with strong light absorption and rich coordination chemistry, leading to their use as chelating agents…”
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Radiosynthesis and in vivo evaluation of [11C]MP-10 as a PET probe for imaging PDE10A in rodent and nonhuman primate brain
Published in Bioorganic & medicinal chemistry (22-01-2011)“…2-((4-(1-[ 11 C]methyl-4-(pyridin-4-yl)-1H-pyrazol-3-yl)phenoxy)methyl)-quinoline (MP-10), a specific PDE10A inhibitor (IC 50 = 0.18 nM with 100-fold…”
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19
Radiosynthesis and in Vivo Evaluation of Two PET Radioligands for Imaging [alpha]-Synuclein
Published in Applied sciences (01-03-2014)“…Two α-synuclein ligands, 3-methoxy-7-nitro-10H-phenothiazine (2a, Ki = 32.1 ± 1.3 nM) and 3-(2-fluoroethoxy)-7-nitro-10H-phenothiazine (2b, Ki = 49.0 ± 4.9…”
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Synthesis of tetrahydropyrimidine-based acyl transfer catalysts and their application to enantioselective O- and C-acylations
Published 01-01-2010“…Structural variation of several types of amidine-based catalysts was explored, including variation of steric, electronic and other parameters. Enantioselective…”
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