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Moskalevska, I.

Publications and source records attributed to Moskalevska, I..

2 recordsLinked to original sources

Targeting the senescence-associated immune checkpoint GD3 ganglioside extends healthspan and blunt age-related diseases with sex-specific benefits.

The accumulation and impact of senescent cells in age-related diseases are increasingly characterized. However, the mechanisms underlying their accumulation and their causative role in age-associated pathologies remain poorly understood. We recently demonstrated that senescent cells can evade immune surveillance by regulating the expression of cell surface molecules such as the disialylated ganglioside GD3, which acts as a senescence-associated immune checkpoint (SIC) 1-3. Targeting GD3 therefore represents a novel therapeutic opportunity for age-related diseases. Here, we examined the effects of short-term anti-GD3 antibody treatment in mid-life on aging and age-related diseases in male and female mice, revealing striking sex-specific benefits. Treatment improved healthspan, survival (+20%) and reduced non-cancer mortality in males, while in females it reduced cancer-specific mortality without significantly affecting overall survival. Anti-GD3 treatment also mitigated fibrosis in lung, liver, and kidney tissues with distinct sex-dependent responses. Importantly, these benefits persisted for over a year after treatment cessation. These findings suggest that GD3-targeted therapy holds promise as a precision approach for treating age-related diseases, with therapeutic outcomes that depend critically on biological sex.

cell biology↗

Oncogenic Stress is a Novel Immunogenic Signal Driven by the Unfolded Protein Response and Detected by Neutrophils

Breast cancer (BC) is the leading cause of cancer-related death in women. However, early detection of BC remains a major clinical challenge and represents a significant obstacle to effective prevention. To improve early clinical management, a deeper understanding of the preneoplastic immune microenvironment of BC is crucial. Among innate immune populations, neutrophils have emerged as important modulators of tumor development, but their role during the initiation of BC remains poorly understood. By integrating depletion experiments with transcriptomic profiling of sorted preneoplatic epithelial cells and neutrophils in spontaneous breast cancer mouse models, we observed that neutrophils contribute to tumor surveillance of preneoplastic stage with the activation of the unfolded protein response (UPR) in the preneoplastic epithelial compartment. To decipher the early anti-tumoral role of neutrophil, we developed an in vitro co-culture model of human mammary epithelial cells undergoing oncogenic stress with activation of the UPR (eHMEC), with human primary neutrophils. eHMEC display an immunoactive secretome as well as immunogenic membrane ligands, and neutrophils are the only immune cell population detecting eHMEC immunogenic signals leading to their recruitment, activation, production of reactive oxygen species and degranulation. Altogether, our work identifies for the first-time neutrophils as the earliest immune cell involved in immunosurveillance of preneoplastic BC epithelial cells, paving the way for potential therapeutic approaches targeting neutrophils to intercept early steps of BC tumorigenesis.

immunology↗