Targeting PD-1/PD-L-1 immune checkpoint inhibition for cancer immunotherapy: success and challenges

Sadique A Javed1, Asim Najmi1, Waquar Ahsan1

  • 1Department of Pharmaceutical Chemistry, College of Pharmacy, Jazan University, Jazan, Saudi Arabia.

PubMed

Insights

Small molecule inhibitors (SMIs) offer promising alternatives to monoclonal antibodies (mAbs) for blocking programmed death-1 (PD-1) and programmed death-ligand 1 (PD-L-1) interactions in cancer immunotherapy, addressing limitations of current treatments.

Area of Science:

  • Oncology
  • Immunology
  • Medicinal Chemistry

Background:

  • The programmed death-1 (PD-1) receptor and its ligand (PD-L-1) pathway suppresses anti-tumor immunity by inhibiting T-cell function within the tumor microenvironment.
  • Monoclonal antibodies (mAbs) targeting PD-1/PD-L-1 have shown success in cancer immunotherapy but face limitations including poor patient response, low tumor penetration, high costs, and immune-related side effects.

Purpose of the Study:

  • To review the development of both mAbs and small molecule inhibitors (SMIs) targeting the PD-1/PD-L-1 axis for cancer treatment.
  • To highlight the advantages of SMIs over mAbs and discuss their potential as novel cancer immunotherapeutic agents.

Main Methods:

  • Analysis of existing literature on PD-1/PD-L-1 blockers, focusing on monoclonal antibodies and small molecule inhibitors.
  • Exploration of structural scaffolds, particularly biphenyl-based scaffolds, utilized in the development of SMIs.

Main Results:

  • Small molecule inhibitors (SMIs) demonstrate potential advantages over mAbs, including longer half-lives, lower production costs, enhanced cell penetration, and oral administration feasibility.
  • Several SMIs targeting the PD-1/PD-L-1 axis are currently in development pipelines for cancer immunotherapy.

Conclusions:

  • SMIs represent a promising next generation of cancer therapeutics by overcoming the limitations associated with current mAb-based immunotherapies.
  • This review provides insights into structural scaffolds for developing effective PD-1/PD-L-1 inhibitors for medicinal chemists.

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