Related Experiment Video
Updated: Jun 21, 2025

07:04
Identifying PD-1/PD-L1 Inhibitors with Surface Plasmon Resonance Technology
Published on: May 2, 2025
281
Computational Approach for the Development of pH-Selective PD-1/PD-L1 Signaling Pathway Inhibition in Fight with
Roderick C McDowell1, Jordhan D Booth2, Allyson McGowan2
1Department of Chemistry, Physics and Atmospheric Sciences, Jackson State University, Jackson, MS 39217, USA.
Cancers
|July 13, 2024
Summary
Researchers discovered a novel pH-selective inhibitor targeting the PD-1/PD-L1 pathway in tumors. This approach aims to enhance cancer immunotherapy precision and reduce side effects by targeting the acidic tumor microenvironment.
Area of Science:
- Oncology
- Immunology
- Computational Chemistry
Background:
- Immunotherapy targeting the PD-1/PD-L1 pathway shows promise in cancer treatment.
- However, non-specific immune activation against healthy cells remains a significant challenge.
- Tumor microenvironments often exhibit acidic pH, differing from healthy tissues.
Purpose of the Study:
- To develop a strategy for selective PD-L1 pathway targeting in the acidic tumor microenvironment.
- To identify novel pH-selective inhibitors using in silico methods.
- To reduce off-target toxicity associated with current immunotherapies.
Main Methods:
- Virtual screening of approximately 10,000 natural compounds from the MolPort database.
- Molecular mechanics and molecular dynamics simulations under physiological (pH 7.4) and acidic (pH 5.5) conditions.
- Analysis of inhibitor binding affinity and complex stability.
Main Results:
- The compound MolPort-001-742-690 demonstrated promising pH-selective inhibition of PD-L1.
- This inhibitor exhibited higher affinity for PD-L1 in acidic conditions compared to neutral pH.
- Molecular dynamics simulations confirmed the stability of the inhibitor-PD-L1 complex at acidic pH, with lower predicted toxicity than existing inhibitors.
Conclusions:
- In silico techniques can effectively discover pH-selective inhibitors for targeted cancer immunotherapy.
- MolPort-001-742-690 represents a potential candidate for enhancing immunotherapy precision and safety.
- Further experimental validation is warranted to translate these findings into clinical applications.
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