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  • Spontaneous Physical Activity in Obese Condition Favours Antitumour Immunity Leading to Decreased Tumour Growth in a Syngeneic Mouse Model of Carcinogenesis.

Spontaneous Physical Activity in Obese Condition Favours Antitumour Immunity Leading to Decreased Tumour Growth in a Syngeneic Mouse Model of Carcinogenesis.

Cancers (2022-01-12)
Delphine Le Guennec, Marie Goepp, Marie-Chantal Farges, Stéphanie Rougé, Marie-Paule Vasson, Florence Caldefie-Chezet, Adrien Rossary
ABSTRACT

Our goal was to evaluate the effect of spontaneous physical activity on tumour immunity during aging. Elderly (n = 10/group, 33 weeks) ovariectomized C57BL/6J mice fed a hyperlipidic diet were housed in standard (SE) or enriched (EE) environments. After 4 weeks, orthotopic implantation of syngeneic mammary cancer EO771 cells was performed to explore the immune phenotyping in the immune organs and the tumours, as well as the cytokines in the tumour and the plasma. EE lowered circulating myostatin, IL-6 and slowed down tumour growth. Spleen and inguinal lymph node weights reduced in relation to SE. Within the tumours, EE induced a lower content of lymphoid cells with a decrease in Th2, Treg and MDCS; and, conversely, a greater quantity of Tc and TAMs. While no change in tumour NKs cells occurred, granzyme A and B expression increased as did that of perforin 1. Spontaneous physical activity in obese conditions slowed tumour growth by decreasing low-grade inflammation, modulating immune recruitment and efficacy within the tumour.

MATERIALS
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Product Description

Millipore
MILLIPLEX® Mouse CD8+ T Cell Magnetic Bead Panel - Immunology Multiplex Assay, Inflammation/Immunology Bead-Based Multiplex Assays using the Luminex technology enables the simultaneous analysis of multiple cytokine and chemokine CD8+ biomarkers in mouse serum, plasma and cell culture samples.
Millipore
MILLIPLEX® Mouse MMP Magnetic Bead Panel 3 - Immunology Multiplex Assay, MMP Bead-Based Multiplex Assays using the Luminex technology enables the simultaneous analysis of multiple MMP biomarkers in mouse cell culture samples.