Literature DB >> 24263283

T-cell dependent immunogenicity of protein therapeutics: Preclinical assessment and mitigation.

Vibha Jawa1, Leslie P Cousens, Michel Awwad, Eric Wakshull, Harald Kropshofer, Anne S De Groot.   

Abstract

Protein therapeutics hold a prominent and rapidly expanding place among medicinal products. Purified blood products, recombinant cytokines, growth factors, enzyme replacement factors, monoclonal antibodies, fusion proteins, and chimeric fusion proteins are all examples of therapeutic proteins that have been developed in the past few decades and approved for use in the treatment of human disease. Despite early belief that the fully human nature of these proteins would represent a significant advantage, adverse effects associated with immune responses to some biologic therapies have become a topic of some concern. As a result, drug developers are devising strategies to assess immune responses to protein therapeutics during both the preclinical and the clinical phases of development. While there are many factors that contribute to protein immunogenicity, T cell- (thymus-) dependent (Td) responses appear to play a critical role in the development of antibody responses to biologic therapeutics. A range of methodologies to predict and measure Td immune responses to protein drugs has been developed. This review will focus on the Td contribution to immunogenicity, summarizing current approaches for the prediction and measurement of T cell-dependent immune responses to protein biologics, discussing the advantages and limitations of these technologies, and suggesting a practical approach for assessing and mitigating Td immunogenicity.
© 2013. Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  50% inhibitory concentration; ADA; ALN; APC; CFSE; Cell-mediated immunity; ELISA; ELISpot; FPX; FVIII; HLA; IC(50); IEDB; Immune Epitope Database Analysis Resource; Immunogenicity;; MHC; ORG; PBMC; Quality-by-Design;; SFC; T; T cell receptor; T cell;; T-cell dependent, thymus dependent; T-cell independent; TCR; Td; Ti; Treg; aTreg; adaptive regulatory T cells; anti-drug antibodies; antigen-presenting cells; artificial lymph node; carboxyfluorescein succinimidyl ester; enzyme-linked immunosorbent assay; enzyme-linked immunosorbent spot-forming; factor VIII; human leukocyte antigen; iTreg; induced regulatory T cells; major histocompatibility complex; nTregs; natural regulatory T cells; peripheral blood mononuclear cells; recombinant Fc fusion protein; regulatory T cells; spot-forming cells; thymus; unmodified original epitopes

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Year:  2013        PMID: 24263283     DOI: 10.1016/j.clim.2013.09.006

Source DB:  PubMed          Journal:  Clin Immunol        ISSN: 1521-6616            Impact factor:   3.969


  92 in total

1.  Augmented Binary Substitution: Single-pass CDR germ-lining and stabilization of therapeutic antibodies.

Authors:  Sue Townsend; Brian J Fennell; James R Apgar; Matthew Lambert; Barry McDonnell; Joanne Grant; Jason Wade; Edward Franklin; Niall Foy; Deirdre Ní Shúilleabháin; Conor Fields; Alfredo Darmanin-Sheehan; Amy King; Janet E Paulsen; Timothy P Hickling; Lioudmila Tchistiakova; Orla Cunningham; William J J Finlay
Journal:  Proc Natl Acad Sci U S A       Date:  2015-11-30       Impact factor: 11.205

2.  Antibody humanization by structure-based computational protein design.

Authors:  Yoonjoo Choi; Casey Hua; Charles L Sentman; Margaret E Ackerman; Chris Bailey-Kellogg
Journal:  MAbs       Date:  2015-08-07       Impact factor: 5.857

Review 3.  Approaches to Mitigate the Unwanted Immunogenicity of Therapeutic Proteins during Drug Development.

Authors:  Laura I Salazar-Fontana; Dharmesh D Desai; Tarik A Khan; Renuka C Pillutla; Sandra Prior; Radha Ramakrishnan; Jennifer Schneider; Alexandra Joseph
Journal:  AAPS J       Date:  2017-01-12       Impact factor: 4.009

4.  Treatment with the C5a receptor/CD88 antagonist PMX205 reduces inflammation in a murine model of allergic asthma.

Authors:  Elizabeth B Staab; Sam D Sanderson; Sandra M Wells; Jill A Poole
Journal:  Int Immunopharmacol       Date:  2014-05-21       Impact factor: 4.932

5.  Depletion of T cell epitopes in lysostaphin mitigates anti-drug antibody response and enhances antibacterial efficacy in vivo.

Authors:  Hongliang Zhao; Deeptak Verma; Wen Li; Yoonjoo Choi; Christian Ndong; Steven N Fiering; Chris Bailey-Kellogg; Karl E Griswold
Journal:  Chem Biol       Date:  2015-05-21

6.  Computationally optimized deimmunization libraries yield highly mutated enzymes with low immunogenicity and enhanced activity.

Authors:  Regina S Salvat; Deeptak Verma; Andrew S Parker; Jack R Kirsch; Seth A Brooks; Chris Bailey-Kellogg; Karl E Griswold
Journal:  Proc Natl Acad Sci U S A       Date:  2017-06-12       Impact factor: 11.205

7.  MHC-associated peptide proteomics enabling highly sensitive detection of immunogenic sequences for the development of therapeutic antibodies with low immunogenicity.

Authors:  Nobuo Sekiguchi; Chiyomi Kubo; Ayako Takahashi; Kumiko Muraoka; Akira Takeiri; Shunsuke Ito; Mariko Yano; Futa Mimoto; Atsuhiko Maeda; Yuki Iwayanagi; Tetsuya Wakabayashi; Shotaro Takata; Naoaki Murao; Shuichi Chiba; Masaki Ishigai
Journal:  MAbs       Date:  2018-10-01       Impact factor: 5.857

Review 8.  Immunogenicity Risk Assessment for an Engineered Human Cytokine Analogue Expressed in Different Cell Substrates.

Authors:  Paul Chamberlain; Bonita Rup
Journal:  AAPS J       Date:  2020-04-14       Impact factor: 4.009

9.  Peptides identified on monocyte-derived dendritic cells: a marker for clinical immunogenicity to FVIII products.

Authors:  Wojciech Jankowski; Yara Park; Joseph McGill; Eugene Maraskovsky; Marco Hofmann; Vincent P Diego; Bernadette W Luu; Tom E Howard; Roberta Kellerman; Nigel S Key; Zuben E Sauna
Journal:  Blood Adv       Date:  2019-05-14

10.  TCPro: an In Silico Risk Assessment Tool for Biotherapeutic Protein Immunogenicity.

Authors:  Osman N Yogurtcu; Zuben E Sauna; Joseph R McGill; Million A Tegenge; Hong Yang
Journal:  AAPS J       Date:  2019-08-02       Impact factor: 4.009

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