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Updated: Sep 5, 2025

Monitoring PD-1-Blocking Antibodies Bound to T Cells Derived from a Drop of Peripheral Blood
Published on: February 5, 2020
Antibody-mediated depletion of programmed death 1-positive (PD-1+) cells
Yujia Zhai1, Shuyun Dong1, Haojia Li2
1Department of Pharmaceutics and Pharmaceutical Chemistry, University of Utah, Salt Lake City, UT 84112, USA.
Insights
Researchers developed a novel depleting antibody (D-αPD-1) to eliminate Programmed cell Death protein 1 (PD-1)+ cells. This antibody demonstrated effectiveness in cancer models, offering a new tool for studying PD-1+ cells and potential therapeutic applications.
Area of Science:
- Immunology
- Oncology
- Autoimmune Diseases
Background:
- Programmed cell Death protein 1 (PD-1) immune checkpoint is crucial in cancer and autoimmune disease pathogenesis.
- The precise role of PD-1-expressing cells (PD-1+ cells) in disease progression and treatment remains unclear.
- Elucidating PD-1+ cell function requires methods to specifically deplete them in disease models.
Purpose of the Study:
- To design and validate a novel antibody capable of specifically depleting PD-1+ cells.
- To assess the efficacy of this depleting antibody in a preclinical cancer model.
- To explore the mechanisms underlying PD-1+ cell depletion.
Main Methods:
- Generation of a depleting antibody (D-αPD-1) with specificity for mouse PD-1 and FcγRIV.
- In vivo validation using a PD-1+ EL4 cell transferring tumor model.
- Assessment of survival rates and investigation of antibody-dependent cell-mediated phagocytosis (ADCP) and complement-dependent cytotoxicity (CDC) mechanisms.
Main Results:
- D-αPD-1 specifically binds to mouse PD-1 and FcγRIV.
- In vivo administration of D-αPD-1 effectively depleted PD-1+ cells, leading to absolute survival in a lethal tumor model.
- Depletion occurred via ADCP and CDC mechanisms, confirming D-αPD-1's effectiveness and specificity.
Conclusions:
- D-αPD-1 is the first antibody designed to specifically ablate PD-1+ cells.
- This antibody serves as a valuable tool for investigating the role of PD-1+ cells in cancer and autoimmune diseases.
- D-αPD-1 shows potential as a therapeutic agent for PD-1-related diseases.
Abstract:
PD-1 immune checkpoint has been intensively investigated in pathogenesis and treatments for cancer and autoimmune diseases. Cells that express PD-1 (PD-1+ cells) draw ever-increasing attention in cancer and autoimmune disease research although the role of PD-1+ cells in the progression and treatments of these diseases remains largely ambiguous. One definite approach to elucidate their roles is to deplete these cells in disease settings and examine how the depletion impacts disease progression and treatments. To execute the depletion, we designed and generated the first depleting antibody (D-αPD-1) that specifically ablates PD-1+ cells. D-αPD-1 has the same variable domains as an anti-mouse PD-1 blocking antibody (RMP1-14). The constant domains of D-αPD-1 were derived from mouse IgG2a heavy and κ-light chain, respectively. D-αPD-1 was verified to bind with mouse PD-1 as well as mouse FcγRIV, an immuno-activating Fc receptor. The cell depletion effect of D-αPD-1 was confirmed in vivo using a PD-1+ cell transferring model. Since transferred PD-1+ cells, EL4 cells, are tumorigenic and EL4 tumors are lethal to host mice, the depleting effect of D-αPD-1 was also manifested by an absolute survival among the antibody-treated mice while groups receiving control treatments had median survival time of merely approximately 30 days. Furthermore, we found that D-αPD-1 leads to elimination of PD-1+ cells through antibody-dependent cell-mediate phagocytosis (ADCP) and complement-dependent cytotoxicity (CDC) mechanisms. These results, altogether, confirmed the specificity and effectiveness of D-αPD-1. The results also highlighted that D-αPD-1 is a robust tool to study PD-1+ cells in cancer and autoimmune diseases and a potential therapeutic for these diseases.
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