World's Best Scientists 2026 revealed!

D-Index & Metrics

Biology and Biochemistry

D-Index
73
Citations
13413
World Ranking
6090
National Ranking
178

Overview

Jean-Pierre Vincent is affiliated with the Centre national de la recherche scientifique (CNRS) in France. Their research spans across several fields within the arts and sciences, with a focus on areas ranging from literature and literary theory to molecular biology and neuroscience.

Their main fields of study include:

  • Arts and Humanities

Subfields of their research work cover:

  • Literature and Literary Theory
  • Cellular and Molecular Neuroscience
  • Molecular Biology
  • Animal Science and Zoology

The scientist's research topics reflect an interdisciplinary approach, including:

  • Neuropeptides and Animal Physiology
  • Receptor Mechanisms and Signaling
  • Pharmacological Effects and Assays
  • Samuel Beckett and Modernism
  • French Literature and Poetry
  • French Literature and Criticism

Jean-Pierre Vincent's recent publications illustrate this diversity. One publication from 2023 appears in the IUPHAR/BPS Guide to Pharmacology CITE and is titled Neurotensin receptors in GtoPdb v.2023.1. Another contribution, published in 2020 in Francosphères, is titled Table-ronde avec Marc Paquien et Jean-Pierre Vincent autour de leurs mises en scènes d' Oh les beaux jours et d' En attendant Godot.

The scientist has collaborated frequently with several coauthors including:

  • Jean Mazella
  • Philippe Sarret
  • Marie Duret-Pujol
  • Marc Paquien

Their publications have appeared in venues such as:

  • IUPHAR/BPS Guide to Pharmacology CITE
  • Francosphères

Best Publications

  • Neurotensin and neurotensin receptors.

    Jean-Pierre Vincent;Jean Mazella;Patrick Kitabgi

  • Apamin as a selective blocker of the calcium-dependent potassium channel in neuroblastoma cells: voltage-clamp and biochemical characterization of the toxin receptor

    M Hugues;G Romey;D Duval;J P Vincent

  • The 100-kDa Neurotensin Receptor Is gp95/Sortilin, A Non-G-Protein-coupled Receptor

    Jean Mazella;Nicole Zsürger;Valérie Navarro;Joëlle Chabry

  • Interaction of phencyclidine ("angel dust") with a specific receptor in rat brain membranes.

    J P Vincent;B Kartalovski;P Geneste;J M Kamenka

  • Trypsin-pancreatic trypsin inhibitor association. Dynamics of the interaction and role of disulfide bridges.

    Jean Pierre Vincent;Michel Lazdunski

  • Prolonged morphine treatment targets delta opioid receptors to neuronal plasma membranes and enhances delta-mediated antinociception.

    Catherine M. Cahill;Anne Morinville;Anne Morinville;Mao-Cheng Lee;Jean-Pierre Vincent

  • Structure, functional expression, and cerebral localization of the levocabastine-sensitive neurotensin/neuromedin N receptor from mouse brain.

    Jean Mazella;Jean-Marie Botto;Eric Guillemare;Thierry Coppola

  • Interaction of phencyclidines with the muscarinic and opiate receptors in the central nervous system.

    J.P. Vincent;D. Cavey;J.M. Kamenka;P. Geneste

  • Degradation of neurotensin by rat brain synaptic membranes: involvement of a thermolysin-like metalloendopeptidase (enkephalinase), angiotensin-converting enzyme, and other unidentified peptidases.

    Frederic Checler;Jean‐Pierre Vincent;Patrick Kitabgi

  • Morphine and Pain-Related Stimuli Enhance Cell Surface Availability of Somatic δ-Opioid Receptors in Rat Dorsal Root Ganglia

    Louis Gendron;Anna Lisa Lucido;Françoise Mennicken;Dajan O'Donnell

  • Pharmacology and biochemistry of neurotensin receptors.

    P Kitabgi;F Checler;J Mazella;J P Vincent

  • Purification and pharmacological properties of eight sea anemone toxins from Anemonia sulcata, Anthopleura xanthogrammica, Stoichactis giganteus, and Actinodendron plumosum.

    Hugues Schweitz;Jean Pierre Vincent;Jacques Barhanin;Christian Frelin

  • Distribution of neurotensin binding sites in rat brain: A light microscopic radioautographic study using monoiodo [125I]Tyr3-neurotensin

    E. Moyse;W. Rostène;M. Vial;K. Leonard

  • In vivo cytotoxicity of the prion protein fragment 106-126.

    Mohamed Ettaiche;Roxane Pichot;Jean-Pierre Vincent;Joëlle Chabry

  • Neurotensin receptors: binding properties, transduction pathways, and structure.

    Jean-Pierre Vincent

  • Involvement of the Neurotensin Receptor-3 in the Neurotensin-Induced Migration of Human Microglia

    Stéphane Martin;Jean-Pierre Vincent;Jean Mazella

  • Purification and characterization of a novel neurotensin-degrading peptidase from rat brain synaptic membranes.

    F Checler;J P Vincent;P Kitabgi

  • Preparation of a pure monoiodo derivative of the bee venom neurotoxin apamin and its binding properties to rat brain synaptosomes.

    M Hugues;D Duval;P Kitabgi;M Lazdunski

  • Differential internalization of somatostatin in COS-7 cells transfected with SST1 and SST2 receptor subtypes : A confocal microscopic study using novel fluorescent somatostatin derivatives

    Dominique Nouel;Georges Gaudriault;Mariette Houle;Terry Reisine

  • Preparation of neurotensin selectively iodinated on the tyrosine 3 residue. Biological activity and binding properties on mammalian neurotensin receptors.

    Jean-Louis Sadoul;Jean Mazella;Shimon Amar;Patrick Kitabgi

Frequent Co-Authors

Jean Mazella
Jean Mazella Centre national de la recherche scientifique, CNRS
Frédéric Checler
Frédéric Checler Grenoble Alpes University
Patrick Kitabgi
Patrick Kitabgi Grenoble Alpes University
Philippe Sarret
Philippe Sarret Université de Sherbrooke
Michel Lazdunski
Michel Lazdunski Centre national de la recherche scientifique, CNRS
Jacques Barhanin
Jacques Barhanin Centre national de la recherche scientifique, CNRS
Claude Granier
Claude Granier Centre national de la recherche scientifique, CNRS
William Rostène
William Rostène Institut de la Vision
Christian Frelin
Christian Frelin Centre national de la recherche scientifique, CNRS
Catherine M. Cahill
Catherine M. Cahill University of California, Los Angeles

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