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D-Index & Metrics

Microbiology

D-Index
52
Citations
13008
World Ranking
4168
National Ranking
1614

Overview

Jonathan P. Schneck is affiliated with Johns Hopkins University in the United States. Their research primarily spans the fields of Immunology and Microbiology as well as Medicine, with significant contributions in Immunology, Oncology, Molecular Biology, Radiology, Nuclear Medicine and Imaging, and Biomedical Engineering.

The scientist's work frequently addresses topics such as Immunotherapy and Immune Responses, CAR-T cell therapy research, Immune Cell Function and Interaction, RNA Interference and Gene Delivery, Monoclonal and Polyclonal Antibodies Research, Nanoplatforms for cancer theranostics, and Cancer Immunotherapy and Biomarkers.

Jonathan P. Schneck has authored several recent papers, including:

  • Commensal bacteria stimulate antitumor responses via T cell cross-reactivity, 2020, JCI Insight
  • Screening for lipid nanoparticles that modulate the immune activity of helper T cells towards enhanced antitumour activity, 2023, Nature Biomedical Engineering
  • Biomaterials to enhance antigen-specific T cell expansion for cancer immunotherapy, 2020, Biomaterials
  • Rapid Expansion of Highly Functional Antigen-Specific T Cells from Patients with Melanoma by Nanoscale Artificial Antigen-Presenting Cells, 2020, Clinical Cancer Research
  • Nanoparticles for generating antigen-specific T cells for immunotherapy, 2021, Seminars in Immunology

Frequent co-authors in Jonathan P. Schneck's publications include Natalie K. Livingston, Ariel Isser, Hai-Quan Mao, Joseph Choy, and John W. Hickey. These collaborations suggest an interdisciplinary approach involving experts in immunology, bioengineering, and related areas.

The scientist regularly publishes in venues such as Regular and Young Investigator Award Abstracts, The Journal of Immunology, JCI Insight, Biomaterials, and Nature Communications. These journals and conferences reflect a focus on immunology, cancer research, and biomedical materials.

Best Publications

  • Tumor and Microenvironment Evolution during Immunotherapy with Nivolumab.

    Nadeem Riaz;Jonathan J. Havel;Vladimir Makarov;Alexis Desrichard

  • Altered recognition of antigen is a mechanism of CD8 + T cell tolerance in cancer

    Srinivas Nagaraj;Kapil Gupta;Vladimir Pisarev;Leo Kinarsky

  • Ex vivo induction and expansion of antigen-specific cytotoxic T cells by HLA-Ig–coated artificial antigen-presenting cells

    Mathias Oelke;Marcela V. Maus;Dominic Didiano;Carl H. June

  • Enhanced Antigen-Specific Antitumor Immunity with Altered Peptide Ligands that Stabilize the MHC-Peptide-TCR Complex

    Jill E Slansky;Frédérique M Rattis;Lisa F Boyd;Tarek Fahmy

  • Direct visualization of antigen-specific T cells: HTLV-1 Tax11–19- specific CD8+ T cells are activated in peripheral blood and accumulate in cerebrospinal fluid from HAM/TSP patients

    Tim F. Greten;Jill E. Slansky;Ryuji Kubota;Samantha S. Soldan

  • Attrition of T Cell Memory: Selective Loss of LCMV Epitope–Specific Memory CD8 T Cells following Infections with Heterologous Viruses

    Liisa K. Selin;Meei-Yun Lin;Kristy A. Kraemer;Drew M. Pardoll

  • T cell immunodominance and maintenance of memory regulated by unexpectedly cross-reactive pathogens

    Michael A. Brehm;Amelia K. Pinto;Amelia K. Pinto;Keith A. Daniels;Jonathan P. Schneck

  • Increased TCR avidity after T cell activation: a mechanism for sensing low-density antigen.

    Tarek M. Fahmy;Joan Glick Bieler;Michael Edidin;Jonathan P. Schneck

  • Adoptive T cell immunotherapy for cancer.

    Karlo Perica;Juan Carlos Varela;Mathias Oelke;Jonathan Schneck

  • Particle shape dependence of CD8+ T cell activation by artificial antigen presenting cells

    Joel C. Sunshine;Karlo Perica;Jonathan P. Schneck;Jordan J. Green

  • Magnetic field-induced T cell receptor clustering by nanoparticles enhances T cell activation and stimulates antitumor activity.

    Karlo Perica;Ang Tu;Anne Richter;Joan Glick Bieler

  • A soluble divalent class I major histocompatibility complex molecule inhibits alloreactive T cells at nanomolar concentrations

    J Dal Porto;T E Johansen;B Catipović;D J Parfiit

  • Radiotherapy and CTLA-4 Blockade Shape the TCR Repertoire of Tumor-Infiltrating T Cells.

    Nils Petter Rudqvist;Karsten A. Pilones;Claire Lhuillier;Erik Wennerberg

  • Lectin microarrays identify cell-specific and functionally significant cell surface glycan markers.

    Sheng Ce Tao;Yu Li;Jiangbing Zhou;Jiang Qian

  • Biodegradable Nanoellipsoidal Artificial Antigen Presenting Cells for Antigen Specific T-Cell Activation

    Randall A. Meyer;Joel C. Sunshine;Karlo Perica;Alyssa K. Kosmides

  • Increased activated human T cell lymphotropic virus type I (HTLV-I) Tax11-19-specific memory and effector CD8+ cells in patients with HTLV-I-associated myelopathy/tropical spastic paraparesis: correlation with HTLV-I provirus load.

    Masahiro Nagai;Ryuji Kubota;Tim F. Greten;Jonathan P. Schneck

  • Nanoscale artificial antigen presenting cells for T cell immunotherapy.

    Karlo Perica;Andrés De León Medero;Malarvizhi Durai;Yen Ling Chiu

  • Commensal bacteria stimulate antitumor responses via T cell cross-reactivity

    Catherine A. Bessell;Ariel Isser;Jonathan J. Havel;Sangyun Lee

  • Direct Analysis of Viral-Specific CD8+ T Cells with Soluble HLA-A2/Tax11-19 Tetramer Complexes in Patients with Human T Cell Lymphotropic Virus-Associated Myelopathy

    Katarzyna Bieganowska;Per Höllsberg;Guy J. Buckle;Dong Gyun Lim

  • Dual Targeting Nanoparticle Stimulates the Immune System To Inhibit Tumor Growth

    Alyssa K. Kosmides;John William Sidhom;Andrew Fraser;Catherine A. Bessell

  • Major histocompatibility complex conformational epitopes are peptide specific.

    B Catipović;J Dal Porto;M Mage;T E Johansen

  • Lateral diffusion of GFP-tagged H2Ld molecules and of GFP-TAP1 reports on the assembly and retention of these molecules in the endoplasmic reticulum.

    Didier Marguet;Elias T Spiliotis;Tsvetelina Pentcheva;Michael Lebowitz

Frequent Co-Authors

Michael Edidin
Michael Edidin Johns Hopkins University
Tim F. Greten
Tim F. Greten National Institutes of Health
David H. Margulies
David H. Margulies National Institutes of Health
Hai-Quan Mao
Hai-Quan Mao Johns Hopkins University
Moriya Tsuji
Moriya Tsuji Aaron Diamond AIDS Research Center
Drew M. Pardoll
Drew M. Pardoll Johns Hopkins University School of Medicine
Andreas Mackensen
Andreas Mackensen University of Erlangen-Nuremberg
Timothy A. Chan
Timothy A. Chan Cleveland Clinic
Paola Zanovello
Paola Zanovello University of Padua
Diane E. Griffin
Diane E. Griffin Johns Hopkins University

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