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April 5, 2026Cancer Research0 citations

Abstract 2375: Stress-responsive immune microenvironment in triple-negative breast cancer among African American women

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ALAminah M. LawalFAFulya Üstün AlkanHAHilmi Kaan Alkan

Key Result

Spatial transcriptomics of TNBC tumors (n=8) showed African American patients had increased immunosuppressive myeloid populations and stress-response pathways compared to White patients.

Key Points

  • This research aims to understand how chronic social stress affects the immune microenvironment in triple-negative breast cancer among African American women.
  • Analyzed TNBC tumors from African American and White patients using spatial transcriptomics.
  • Identified immune and stress-response programs in tumors.
  • Measured levels of inflammatory cytokines and myeloid cell populations.
  • AA tumors showed increased immunosuppressive myeloid populations.
  • Elevated levels of pro-inflammatory cytokines like IL1B and TNFA were observed.
  • Activated stress-response pathways linked to cancer stemness were identified.

Study Design

Type

Observational (n=8)

Structured PICO

P
Population
8 triple-negative breast cancer (TNBC) tumors from African American (n=4) and White (n=4) patients enrolled in the Karmanos Cancer Institute Biobank
C
Comparator
White patients with TNBC
O
Outcome
Differences in immune and stress-response programs in the tumor immune microenvironment assessed via spatial transcriptomicssurrogate

African American women with triple-negative breast cancer exhibit distinct stress-responsive inflammatory signaling and immunosuppressive myeloid cell accumulation in the tumor microenvironment, which may contribute to more aggressive tumor behavior.

Abstract

Abstract African American (AA) women experience higher incidence and mortality from triple-negative breast cancer (TNBC) compared to White women, particularly at younger ages. While socioeconomic determinants contribute to this disparity, emerging evidence indicates that chronic social stress becomes biologically embedded, reshaping systemic inflammation and the tumor immune microenvironment (TIME). We hypothesize that stress-responsive inflammatory signaling drives the accumulation of immune suppressive myeloid cell populations contributing mechanistically to enhanced cancer stemness and aggressive tumor behavior in AA TNBC.Using spatial transcriptomics on TNBC tumors from (n=4) AA and (n=4) White patients enrolled in the Karmanos Cancer Institute Biobank, we identified distinct immune and stress-response programs enriched in AA tumors. AA samples displayed a marked increase in immunosuppressive myeloid populations, including TAM-like and MDSC-like clusters, accompanied by heightened expression of IL1B, TNFA-associated cytokine modules, S100A8/S100A9, and other innate inflammatory cytokines. These inflammatory programs correlated with activation of stress-response pathways, most notably HSP70, a central regulator of cellular stress, danger signaling, and antigen presentation. Mechanistically, these pathways were tightly linked to a transcriptional activation of cancer stemness signatures, including NQO2, IRF3-associated stress modules, and other stem-associated genes, consistent with a more plastic, therapy-resistant phenotype in AA TNBC tumors.Previous studies have shown that chronic social stressors such as perceived discrimination, inadequate support, and neighborhood disadvantage have been associated with systemic inflammation and altered immune response. Our tumor-level analyses suggest that this stress activated signaling may converge on innate immune pathways within the TIME, amplifying myeloid suppression, cytokine activation, and stress-induced stemness that collectively worsened outcomes.Hypothesizing that AA patients experience higher social stress than White patients, these results support a mechanistic model in which psychosocial stress primes the innate immune microenvironment toward immune dysfunction and myeloid dominance, promoting tumor plasticity and metastatic potential in AA TNBC. Understanding how stress-responsive immunologic programs shape tumor evolution may reveal actionable targets to mitigate biologically mediated cancer disparities and guide interventions integrating immunology, social determinants, and precision oncology. Citation Format: Aminah M. Lawal, Fulya Koksalar Alkan, Hilmi Kaan Alkan, Ahmet Burak Caglayan, Neva Celiker, Brianna Temby, MAX WICHA, Morhaf Al Achkar, Kristen Purrington, Hasan Korkaya. Stress-responsive immune microenvironment in triple-negative breast cancer among African American women abstract. In: Proceedings of the American Association for Cancer Research Annual Meeting 2026; Part 1 (Regular Abstracts); 2026 Apr 17-22; San Diego, CA. Philadelphia (PA): AACR; Cancer Res 2026;86(7 Suppl):Abstract nr 2375.

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Cite This Study

Lawal et al. (2026) conducted an observational in Triple-negative breast cancer (n=8). African American race vs. White race was evaluated on Immune and stress-response programs. Spatial transcriptomics of TNBC tumors (n=8) showed African American patients had increased immunosuppressive myeloid populations and stress-response pathways compared to White patients.

synapsesocial.com/papers/69d1fcfda79560c99a0a2d31https://doi.org/10.1158/1538-7445.am2026-2375
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Abstract PR006: Association of multi-level stress-related determinants with the local and systemic tumor immune environment in Black and White women with breast cancer2024
  2. 2Abstract A089: Intersecting burdens: The role of social barriers and perceived stress in moderating cortisol reactivity among African American breast cancer survivors2024 · 1 citations
  3. 3Abstract 1947 Exploring the Interplay of Social- Economic, and Racial Disparities Stress and Their Impact on Breast Cancer, with a Focus on Triple Negative Breast Cancer and Hormonal Imbalance-Induced Early Immune Cell Aging2024
  4. 4Abstract A114: The DARC side of stress: The role of DARC-mediated chemokine regulation in stress-driven inflammation and breast cancer disparities2025
  5. 5Abstract 866: Chronic stressors, biological age and deficit accumulation frailty in black breast cancer survivors.2026