Dual-Functional Anti-SIRPα-cGAMP Conjugate Reprograms the Tumor Immune Microenvironment and Enhances Antitumor

Xiang Yu1, Xiaoyao Hao2, Mingjiu Chen2

  • 1School of Chemistry & Chemical Engineering, Inner Mongolia University Hohhot 010020, Inner Mongolia, P. R. China.

Insights

Targeting the CD47-SIRPα checkpoint and delivering STING agonists via an anti-SIRPα antibody conjugate effectively inhibited tumor growth and improved survival in a colon cancer model.

Area of Science:

  • Immunology
  • Oncology
  • Drug Delivery

Background:

  • CD47-SIRPα axis blockade enhances phagocytosis but has suboptimal clinical outcomes in solid tumors.
  • STING agonists show promise but suffer from poor pharmacokinetics and toxicity.
  • A need exists for targeted delivery systems to combine immune checkpoint inhibition with innate immune activation.

Purpose of the Study:

  • To develop a novel therapeutic strategy by conjugating cGAMP (a STING agonist) to an anti-SIRPα antibody.
  • To reprogram the tumor immune microenvironment by simultaneously blocking the CD47-SIRPα checkpoint and delivering STING agonists selectively to myeloid cells.

Main Methods:

  • Conjugation of cyclic guanosine monophosphate-adenosine monophosphate (cGAMP) to an anti-SIRPα antibody.
  • Systemic administration of the anti-SIRPα-cGAMP conjugate in a mouse model of colon adenocarcinoma.
  • Evaluation of tumor growth inhibition and survival rates.

Main Results:

  • The anti-SIRPα-cGAMP conjugate significantly inhibited tumor growth in vivo.
  • Improved survival rates were observed in the treated mouse model.
  • The conjugate demonstrated dual action: blocking the CD47-SIRPα "do not eat me" checkpoint and delivering the STING agonist to myeloid cells.

Conclusions:

  • Targeted immunostimulatory antibody-drug conjugates (ADCs) represent a promising strategy for overcoming immune resistance in solid tumors.
  • This approach effectively reprograms the tumor immune microenvironment by combining checkpoint blockade with targeted innate immune activation.

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