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breast cancer

The Molecular Mechanism of Chronic Stress Affecting the Occurrence and Development of Breast Cancer and Potential Drug Therapy

[Translational Oncology] The authors review previous research on the correlation between chronic stress and the occurrence and development of breast cancer, particularly the molecular mechanism through which chronic stress promotes breast cancer via neurotransmitters secreted by the nervous system.

Enigmatic Role of Exosomes in Breast Cancer Progression and Therapy

[Life Sciences] Scientists review the role of exosomes in the breast cancer (BC) pathophysiology, diagnosis, and therapy as well as the role of tumor derived exosomes in the mechanistic pathways of BC metastasis, immunosuppression, migration, dormancy and chemo-resistance.

Interleukin-10 Receptor Signaling Promotes the Maintenance of a PD-1int TCF-1+ CD8+ T Cell Population That Sustains Anti-Tumor Immunity

[Immunity] Inhibition of IL-10R signaling altered chromatin accessibility and disrupted cooperativity between the transcription factors NFAT and AP-1, promoting a distinct NFAT-associated program.

Adipose Derived Mesenchymal Stem Cell Secretome Formulation as a Biotherapeutic to Inhibit Growth of Drug Resistant Triple Negative Breast Cancer

[Scientific Reports] Researchers developed a protocol for processing human adipose derived MSC secretome formulation of varying concentration. Its molecular composition was evaluated, and its effectiveness in vitro using breast cancer cell lines.

G1 Therapeutics Initiates Phase II Trial to Support the Antitumor Mechanism of Action (MOA) of Trilaciclib in the Tumor Microenvironment

[G1 Therapeutics, Inc.] G1 Therapeutics, Inc. announced that the company has initiated a Phase II, single arm, open-label study of trilaciclib in patients with early-stage triple negative breast cancer designed to further investigate the role of trilaciclib in modulating the anti-tumor immune response.

Microfluidic Organ-on-Chip System for Multi-Analyte Monitoring of Metabolites in 3D Cell Cultures

[Lab On A Chip] Investigators developed a microfluidic organ-on-chip platform for matrix-based, heterogeneous 3D cultures with fully integrated electrochemical chemo- and biosensor arrays for the energy metabolites oxygen, lactate, and glucose.

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