Current progress in innovative engineered antibodies.

Protein Cell

BiStro Biotech Consulting, Bridgewater, NJ, 08807, USA.

Published: January 2018

AI Article Synopsis

  • As of May 1, 2017, 74 antibody-based molecules have been approved, with a significant number still in clinical trials: 70 in phase III and 575 in phase I/II.
  • The total of 719 clinical-stage antibody molecules includes various types such as naked IgGs, antibody-drug conjugates, and chimeric antigen receptor (CAR) candidates, highlighting their diversity in structure and function.
  • The field is evolving rapidly, with advancements in T-cell modulation for oncology and innovative delivery methods, showcasing the potential of antibody-based therapies to address unmet medical needs.

Article Abstract

As of May 1, 2017, 74 antibody-based molecules have been approved by a regulatory authority in a major market. Additionally, there are 70 and 575 antibody-based molecules in phase III and phase I/II clinical trials, respectively. These total 719 antibody-based clinical stage molecules include 493 naked IgGs, 87 antibody-drug conjugates, 61 bispecific antibodies, 37 total Fc fusion proteins, 17 radioimmunoglobulins, 13 antibody fragments, and 11 immunocytokines. New uses for these antibodies are being discovered each year. For oncology, many of the exciting new approaches involve antibody modulation of T-cells. There are over 80 antibodies in clinical trials targeting T cell checkpoints, 26 T-cell-redirected bispecific antibodies, and 145 chimeric antigen receptor (CAR) cell-based candidates (all currently in phase I or II clinical trials), totaling more than 250 T cell interacting clinical stage antibody-based candidates. Finally, significant progress has been made recently on routes of delivery, including delivery of proteins across the blood-brain barrier, oral delivery to the gut, delivery to the cellular cytosol, and gene- and viral-based delivery of antibodies. Thus, there are currently at least 864 antibody-based clinical stage molecules or cells, with incredible diversity in how they are constructed and what activities they impart. These are followed by a next wave of novel molecules, approaches, and new methods and routes of delivery, demonstrating that the field of antibody-based biologics is very innovative and diverse in its approaches to fulfill their promise to treat unmet medical needs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5777977PMC
http://dx.doi.org/10.1007/s13238-017-0457-8DOI Listing

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