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Pretargeted Radioimmunotherapy Based on the Inverse Electron Demand Diels-Alder Reaction
Published on: January 29, 2019
A novel ROR1-targeting antibody-PROTAC conjugate promotes BRD4 degradation for solid tumor treatment
Lei Wang1, Yong Ke1, Qunye He1
1Engineering Research Center of Cell & Therapeutic Antibody, Ministry of Education, School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China.
Abstract:
Rationale: Proteolysis Targeting Chimeras (PROTACs) are bifunctional compounds that have been extensively studied for their role in targeted protein degradation (TPD). The capacity to degrade validated or undruggable targets provides PROTACs with significant potency in cancer therapy. However, the clinical application of PROTACs is limited by their poor in vivo potency and unfavorable pharmacokinetic properties. Methods: In this study, a novel degrader-antibody conjugate (DAC) was developed by conjugating the BRD4-degrading PROTAC with the ROR1 (receptor tyrosine kinase-like orphan receptor 1) antibody. The in vitro affinity, internalization efficacy, degradation, and cytotoxic activity of the ROR1 DAC were assessed. The pharmacokinetics, antitumor activity, and acute toxicity of ROR1 DAC were evaluated in mouse models. RNA sequencing (RNA-seq) and immunohistochemistry were performed to analyze the therapeutic efficacy mediated by the combination of ROR1 DAC and anti-mouse programmed cell death protein 1 (αmPD1) mAb. Results: The ROR1 DAC exhibited strong degradation activity and cytotoxicity following antigen binding and internalization. Compared to unconjugated PROTAC, the ROR1 DAC demonstrated improved pharmacokinetics and potent antitumor efficacy in PC3 and MDA-MB-231 xenograft mouse models. Furthermore, enhanced antitumor activity and immune cell infiltration within solid tumors were observed when combined with αmPD-1 mAb in C57BL/6J mice. RNA sequencing revealed that the enhanced immune response associated with the combination treatment is related to tumor microenvironment modulation, including the upregulation of Th1-biased cytokines. Moreover, the ROR1 DAC exhibited a favorable safety profile in an acute toxicity study. Conclusions: These results indicate that the degrader-antibody conjugate is a promising candidate for tumor-specific degradation and effective cancer therapy.
Insights
A novel degrader-antibody conjugate (DAC) targeting ROR1 improved in vivo potency and pharmacokinetics for cancer therapy. Combination with immune checkpoint inhibitors enhanced antitumor activity and immune response.
Area of Science:
- Oncology
- Immunology
- Biotechnology
Background:
- Proteolysis Targeting Chimeras (PROTACs) offer potent cancer therapy by degrading targets but face limitations in clinical application due to poor in vivo potency and pharmacokinetics.
- Targeted protein degradation (TPD) is a promising strategy, yet enhancing the delivery and efficacy of PROTACs remains a challenge.
Purpose of the Study:
- To develop and evaluate a novel degrader-antibody conjugate (DAC) by linking a BRD4-degrading PROTAC to a ROR1 antibody for targeted protein degradation.
- To assess the in vitro and in vivo efficacy, pharmacokinetics, and safety profile of the ROR1 DAC, including its combination with anti-PD-1 therapy.
Main Methods:
- Conjugation of a BRD4-degrading PROTAC with a ROR1 antibody to create the ROR1 DAC.
- In vitro assessment of affinity, internalization, degradation, and cytotoxicity.
- In vivo evaluation of pharmacokinetics, antitumor activity in xenograft models, and acute toxicity.
- Analysis of combination therapy with anti-PD-1 using RNA sequencing and immunohistochemistry.
Main Results:
- The ROR1 DAC demonstrated strong antigen-specific degradation, internalization, and cytotoxicity.
- Compared to unconjugated PROTAC, ROR1 DAC showed improved pharmacokinetics and potent antitumor efficacy in mouse models.
- Combination therapy with anti-PD-1 enhanced antitumor activity and immune cell infiltration, modulating the tumor microenvironment and upregulating Th1 cytokines.
- The ROR1 DAC exhibited a favorable safety profile.
Conclusions:
- The developed ROR1 DAC is a promising therapeutic candidate for tumor-specific protein degradation.
- DACs represent an effective strategy to overcome PROTAC limitations and improve cancer therapy outcomes.
- Combination therapy with ROR1 DAC and immune checkpoint inhibitors holds potential for enhanced anti-tumor immune responses.

