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Monoclonal antibodies: From magic bullet to precision weapon. | LitMetric

AI Article Synopsis

  • * The development of mAbs has evolved from murine antibodies to humanized versions, significantly reducing side effects while offering targeted treatments; however, their high production costs remain a challenge.
  • * Innovations like biosimilar antibodies and advancements in antibody engineering are enhancing the effectiveness and affordability of mAbs, potentially transforming drug therapies and addressing unmet medical needs.

Article Abstract

Monoclonal antibodies (mAbs) are used to prevent, detect, and treat a broad spectrum of non-communicable and communicable diseases. Over the past few years, the market for mAbs has grown exponentially with an expected compound annual growth rate (CAGR) of 11.07% from 2024 (237.64 billion USD estimated at the end of 2023) to 2033 (679.03 billion USD expected by the end of 2033). Ever since the advent of hybridoma technology introduced in 1975, antibody-based therapeutics were realized using murine antibodies which further progressed into humanized and fully human antibodies, reducing the risk of immunogenicity. Some benefits of using mAbs over conventional drugs include a drastic reduction in the chances of adverse reactions, interactions between drugs, and targeting specific proteins. While antibodies are very efficient, their higher production costs impede the process of commercialization. However, their cost factor has been improved by developing biosimilar antibodies as affordable versions of therapeutic antibodies. Along with the recent advancements and innovations in antibody engineering have helped and will furtherly help to design bio-better antibodies with improved efficacy than the conventional ones. These novel mAb-based therapeutics are set to revolutionize existing drug therapies targeting a wide spectrum of diseases, thereby meeting several unmet medical needs. This review provides comprehensive insights into the current fundamental landscape of mAbs development and applications and the key factors influencing the future projections, advancement, and incorporation of such promising immunotherapeutic candidates as a confrontation approach against a wide list of diseases, with a rationalistic mentioning of any limitations facing this field.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11467159PMC
http://dx.doi.org/10.1186/s43556-024-00210-1DOI Listing

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