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Clinical Trials/NCT07622693
NCT07622693Active, not recruitingNot Applicable

Beta-blockers Combined With Neoadjuvant Immunochemotherapy Significantly Improve Pathological Remission in Locally Advanced Gastric Cancer: a Multicenter Controlled Study Based on Hypertensive Patients

Nanfang Hospital, Southern Medical University1 site in 1 country80 target enrollmentStarted: May 10, 2026Last updated:

Trial Snapshot

Phase
Not Applicable
Status
Active, not recruiting
Enrollment
80
Locations
1

Study Overview

Brief Summary

Study Population: Patients with locally advanced gastric cancer complicated by primary hypertension, who received neoadjuvant immunochemotherapy followed by curative gastrectomy at Nanfang Hospital of Southern Medical University and other participating centers between April 2021 and December 2025.

Primary Objective: To investigate the impact of beta-blocker use versus non-beta-blocker antihypertensive agents on the efficacy of neoadjuvant immunochemotherapy in patients with locally advanced gastric cancer and hypertension.

Secondary Objective: To investigate the impact of beta-blocker use versus non-beta-blocker antihypertensive agents on the incidence of immune-related adverse events (irAEs).

Study Groups: Patients are divided into two groups based on antihypertensive medication use during immunotherapy: the exposed group (patients continuously using beta-blockers during neoadjuvant immunochemotherapy) and the control group (patients continuously receiving non-beta-blocker antihypertensive agents, including ACEI/ARB, CCB, or diuretics, during the same period).

Study Design: This is a multicenter, retrospective, observational cohort study.

Study Duration: May 2026 - December 2026

Sample Size: A total of 80 eligible patients are planned for inclusion, with 40 patients in the beta-blocker exposed group and 40 patients in the non-beta-blocker control group.

Inclusion Criteria:

  • Voluntarily provided informed consent for data use;
  • Age between 18 and 85 years;
  • No restriction on gender;
  • Histopathologically confirmed gastric adenocarcinoma from the primary lesion via endoscopic biopsy, according to the 15th edition of the Japanese Classification of Gastric Carcinoma (2017);
  • Received neoadjuvant immunochemotherapy followed by curative gastrectomy between April 2021 and December 2025.

Exclusion Criteria:

  • Pregnant or breastfeeding women;
  • Severe psychiatric disorders;
  • Previous history of chemotherapy, radiotherapy, or targeted therapy;
  • History of other malignant tumors within the past 5 years;
  • dMMR or MSI-H status determined by immunohistochemistry or PCR-based assays
  • Active infection, active/refractory autoimmune disease, or uncontrolled systemic disease;
  • Patients judged by the investigator to be unsuitable for participation in this study.

Detailed Description

  1. Research Background 1.1 Disease Burden of Gastric Cancer, Hypertension Comorbidity and Treatment Challenges Gastric carcinoma (GC) is one of the most common malignant tumors worldwide, ranking fifth in incidence and fourth in mortality globally. A large proportion of GC patients in China are diagnosed at an advanced stage, leading to short survival and poor quality of life. Notably, hypertension is one of the most prevalent comorbidities in advanced GC patients, with clinical data showing that approximately 30%-40% of such patients have primary hypertension. These patients not only face difficulties in blood pressure control due to excessive sympathetic nervous system activation, but also suffer from a deteriorated tumor microenvironment caused by abnormal neuro-immune crosstalk.

In recent years, immune checkpoint inhibitors (e.g., PD-1/PD-L1 inhibitors) have brought new hope for advanced GC treatment by relieving tumor-induced immune suppression and activating the body's anti-tumor immune response, demonstrating significant efficacy in a subset of patients. However, only 10%-15% of GC patients achieve long-term benefits from current immunotherapy, and the response rate may be even lower in patients with hypertension due to sympathetic activation. Most patients still develop primary or acquired resistance. This low response rate has driven research into combination strategies to enhance immunotherapy efficacy, and the potential immunomodulatory effects of beta-blockers (BBs), a commonly used antihypertensive drug, have become a research focus.

1.2 Core Role of Sympathetic Nervous System Regulation in the Tumor Microenvironment and the Impact of Hypertension With advances in tumor immunology, the immunosuppressive role of the sympathetic nervous system in the tumor microenvironment has been gradually revealed. In GC patients with hypertension, persistent excessive sympathetic activation caused by long-term abnormal blood pressure releases large amounts of catecholamine neurotransmitters (mainly norepinephrine), forming a tumor immunosuppressive cycle that critically impairs immunotherapy efficacy.

Basic research has confirmed that norepinephrine participates in tumor immune escape by binding to β-adrenergic receptors (ADRBs, especially the ADRB1 subtype) on immune cells. A 2024 study published in *Nature* by the Salk Institute revealed that exhausted CD8⁺ cytotoxic T cells highly express ADRB1, making them highly sensitive to norepinephrine, which inhibits T cell proliferation and reduces effector molecule secretion, ultimately leading to T cell exhaustion. A landmark study in *Science* further elucidated this mechanism: norepinephrine activates the cAMP/PKA signaling pathway through ADRB1, inducing high expression of exhaustion markers such as PD-1 and TIM-3 on T cells and weakening anti-tumor immune responses. Beta-blockers can competitively block ADRB1 and reverse T cell exhaustion, providing direct mechanistic support for their combination with immunotherapy. In addition, the nerve density in gastric cancer tissues is significantly higher than that in normal tissues, and increased catecholamine release in patients with hypertension further enhances ADRB-mediated immunosuppression and exacerbates T cell exhaustion, laying an important theoretical foundation for targeting the β-receptor pathway.

1.3 Anti-Tumor Mechanisms, Clinical Evidence of Beta-Blockers and Research Gaps As classic cardiovascular drugs, beta-blockers are mainly used for the treatment of primary hypertension. By blocking β-adrenergic receptors to inhibit excessive catecholamine signaling, they not only control blood pressure but also exert potential anti-tumor effects by regulating immunosuppressive pathways in the tumor microenvironment.

Study Design

Study Type
Observational
Observational Model
Cohort
Time Perspective
Retrospective

Eligibility Criteria

Ages
18 Years to 85 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Aged between 18 and 85 years;
  • No restriction on gender;
  • Patients with a standardized histopathological diagnosis of gastric adenocarcinoma from the primary gastric lesion via endoscopic biopsy, according to the 15th edition of the Japanese Classification of Gastric Carcinoma (2017);
  • Patients who received neoadjuvant immunochemotherapy followed by curative gastrectomy at Nanfang Hospital of Southern Medical University and other participating centers between April 2021 and December 2025.

Exclusion Criteria

  • Pregnant or breastfeeding women;
  • Severe psychiatric disorders;
  • Previous history of chemotherapy, radiotherapy, or targeted therapy prior to study treatment;
  • History of other malignant tumors within the past 5 years;
  • dMMR or MSI-H status determined by immunohistochemistry or PCR-based assays
  • Active infection, active or refractory autoimmune disease, or uncontrolled systemic disease;
  • Patients judged by the investigator to be unsuitable for participation in this study.

Investigators

Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (1)

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