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Updated: Jan 17, 2026

Trans-vivo Delayed Type Hypersensitivity Assay for Antigen Specific Regulation
Published on: May 2, 2013
Target antigen and plasma cell phenotype are critical factors for sensitivity to response-adapted daratumumab therapy
Mark B Meads1, Xiaohong Zhao1, David R Noyes1
1Department of Malignant Hematology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL.
Abstract:
In this response-adapted clinic trial with daratumumab monotherapy for older patients with newly diagnosed multiple myeloma (MM), we identified target antigen expression, a plasma cell phenotype, and an activated immune tumor microenvironment (iTME) as critical features associated with response to CD38 monoclonal antibody therapy. Here, patients achieving a partial response after 2 cycles continued daratumumab, otherwise lenalidomide or bortezomib was added. This strategy resulted in an overall response rate of 97% and low rates of adverse events, with 37% of patients able to continue daratumumab monotherapy. Importantly, we found that higher CD38 expression, plasma cell gene expression programming, and an activated iTME were associated with patients who were able to continue daratumumab therapy alone. In contrast, patients requiring the addition of lenalidomide or bortezomib had increased expression of adhesion, tumor necrosis factor signaling, KRAS signaling, and B-cell programs, as well as an immunosuppressed iTME. Tracking of clonal dynamics illustrated the selection of subclones enriched for de novo resistance gene expression programs after only 2 cycles of daratumumab monotherapy. Upon relapse, daratumumab refractory MM cells were characterized by the expansion of preexisting minor subclones with mixed transcriptomic programs containing the plasma cell phenotype with decreased CD38 expression and maintenance of resistance programs, suggesting development of acquired resistance involves an uncoupling of transcriptional programs present in therapy-naïve tumors. To our knowledge, this is the first study to demonstrate the effectiveness of response-adapted daratumumab treatment and describe critical biomarkers of single-agent daratumumab sensitivity in vulnerable patients with therapy-naïve MM. This trial was registered at www.ClinicalTrials.gov as #NCT04151667.
Insights
Response-adapted daratumumab monotherapy shows high efficacy in newly diagnosed multiple myeloma (MM). Key features like CD38 expression and immune microenvironment predict response, guiding treatment strategies for better outcomes.
Area of Science:
- Hematology
- Oncology
- Immunotherapy
Background:
- Multiple myeloma (MM) is a hematologic malignancy.
- CD38 monoclonal antibodies are a key treatment modality.
- Optimizing treatment strategies for newly diagnosed MM is crucial.
Purpose of the Study:
- To evaluate a response-adapted treatment strategy using daratumumab monotherapy in elderly, newly diagnosed MM patients.
- To identify biomarkers associated with response and resistance to daratumumab monotherapy.
Main Methods:
- A response-adapted clinical trial (NCT04151667) was conducted.
- Patients received daratumumab monotherapy, with lenalidomide or bortezomib added based on response after 2 cycles.
- Biomarker analysis included target antigen expression, gene expression profiling, and immune microenvironment assessment.
Main Results:
- An overall response rate of 97% was achieved.
- 37% of patients continued daratumumab monotherapy.
- Higher CD38 expression, plasma cell signature, and activated immune microenvironment predicted response to monotherapy.
- Resistance was associated with specific gene expression programs and an immunosuppressed microenvironment.
Conclusions:
- Response-adapted daratumumab monotherapy is effective and well-tolerated in newly diagnosed MM.
- Biomarkers including CD38 expression and immune microenvironment characteristics can predict response to single-agent daratumumab.
- Understanding resistance mechanisms is vital for future treatment development.
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