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Updated: Sep 3, 2025

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
Dissecting the role of cell signaling versus CD8+ T cell modulation in propranolol antitumor activity
Wei Li1,2,3, Jielin Wan1,2,3, Cuiyu Chen1,2,3
1Department of Clinical Pharmacology, Xiangya Hospital, Central South University, 87 Xiangya Road, Changsha, 410008, People's Republic of China.
Abstract:
Preclinical and early clinical mechanistic studies of antitumor activity from the beta-adrenergic receptor (β-AR) blocker propranolol have revealed both cell signaling and immune function pathway effects. Intertumoral studies were performed using propranolol, a β1-AR selective agent (atenolol), and a β2-AR selective agent (ICI 118,551) in a preclinical in vivo model, as a step to dissect the contribution of cell signaling and CD8+ immunological effects on anticancer activity. We found that repression of β2-AR but not β1-AR signaling selectively suppressed cell viability and inhibited xenograft growth in vivo. Moreover, western blot analysis indicated that the phosphorylation levels of AKT/MEK/ERK were significantly decreased following the inhibition of β2-AR. Furthermore, propranolol was found to activate the tumor microenvironment by inducing an increased intratumoral frequency of CD8+ T cells, whereas neither selective β1 nor β2-AR blockers had a significant effect on the tumor immune microenvironment. Thus, the results of this mechanistic dissection support a predominant role of tumor cell signaling, rather than the accumulation of CD8+ T cells, as the basis for propranolol antitumor activity. KEY MESSAGES : Molecular signaling of AKT/MAPK pathway contributes to propranolol caused cancer control. CD8+ T cells in tumor microenvironment were activated upon propranolol exposure. The basis for propranolol antitumor activity was predominantly dependent on cell signaling, rather than the activation of CD8+ T cells.
Insights
Propranolol
Area of Science:
- Pharmacology
- Cancer Biology
- Immunology
Background:
- Beta-adrenergic receptors (β-ARs) are implicated in cancer progression.
- Propranolol, a β-AR blocker, shows preclinical antitumor activity.
- Dissecting the mechanisms of propranolol's anticancer effects is crucial.
Purpose of the Study:
- To investigate the distinct roles of β1-AR and β2-AR signaling in propranolol's antitumor activity.
- To determine whether propranolol's effects are mediated by direct tumor cell signaling or immune modulation.
- To elucidate the contribution of CD8+ T cells in the tumor microenvironment.
Main Methods:
- In vivo preclinical xenograft model.
- Treatment with propranolol, a β1-AR selective agent (atenolol), and a β2-AR selective agent (ICI 118,551).
- Western blot analysis for AKT/MEK/ERK phosphorylation.
- Flow cytometry to assess intratumoral CD8+ T cell frequency.
Main Results:
- β2-AR inhibition, but not β1-AR inhibition, suppressed tumor cell viability and xenograft growth.
- Inhibition of β2-AR significantly decreased AKT/MEK/ERK phosphorylation.
- Propranolol increased intratumoral CD8+ T cells, but selective β1-AR or β2-AR blockers did not.
Conclusions:
- Propranolol's antitumor activity is predominantly mediated by direct tumor cell signaling via β2-AR.
- The AKT/MAPK pathway is a key molecular signaling mechanism.
- While propranolol affects CD8+ T cells, this is not the primary driver of its anticancer effects.
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