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NCT07691619 Postoperative hypo-fractionated radiotherapy Thymic Epithelial Tumor Clinical Landscape Report 2026: Design, Endpoints, Sponsor and Readout Outlook

21 July 2026
8 min read

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Turn a newly registered trial into a decision-ready landscape. This focused report examines NCT07691619—Hypofractionated Radiotherapy After Complete Resection for Stage II/III Thymic Epithelial Tumors (TET-HFRT40)—using PatSnap Clinical Trials MCP for protocol design and endpoint evidence, Drug & Asset MCP for mechanism and development context, and Company & Deal Intelligence MCP for sponsor background. Explore PatSnap MCP Servers to reproduce the workflow inside an AI research process.

MCP evidence snapshot: 20 July 2026; publication date: 20 July 2026. Trial records can change after the snapshot and should be rechecked before operational decisions.

Why NCT07691619 is a hot trial to watch

Thymic Epithelial Tumor is increasingly segmented by mechanism, biomarker, treatment setting, geography and endpoint architecture. NCT07691619 is notable because it evaluates Postoperative hypo-fractionated radiotherapy in a Phase 2 design while Percentage of participants who experience treatment-related Grade 2 or higher acute adverse events from the start of radiotherapy to 3 months after completion of radiotherapy, assessed according to the National Cancer Institute Common Terminology Criteria for Adverse Events version 5.0 (NCI-CTCAE v5.0). serves as the main decision variable. The critical question is whether the protocol can convert its rationale into a clinically interpretable and operationally credible readout.

PatSnap Clinical Trials MCP makes protocol fields machine-readable, while the companion asset and organization servers add development-status, target and sponsor context.

Trial landscape snapshot

FieldIndexed detail
RegistrationNCT07691619
Official titleHypofractionated Radiotherapy After Complete Resection for Stage II/III Thymic Epithelial Tumors (TET-HFRT40)
Phase / statusPhase 2 / Recruiting
InterventionPostoperative hypo-fractionated radiotherapy
SponsorTianjin Medical University Cancer Institute and Hospital
CollaboratorsNot reported
GeographyChina
Enrollment49
Primary endpointPercentage of participants who experience treatment-related Grade 2 or higher acute adverse events from the start of radiotherapy to 3 months after completion of radiotherapy, assessed according to the National Cancer Institute Common Terminology Criteria for Adverse Events version 5.0 (NCI-CTCAE v5.0).
Endpoint time frameUp to 3 months
Primary completion / readout proxy[object Object]

Design and endpoint interpretation

The phase label is only the starting point. Allocation is N/A, masking is None (Open Label), and the intervention model is Single Group Assignment. Planned enrollment of 49 participants across China shapes statistical precision, execution risk and external validity. Interpretation should account for baseline risk, prior therapy, assessment schedule, missing-data handling and clinical relevance—not only statistical significance.

  • Primary: Percentage of participants who experience treatment-related Grade 2 or higher acute adverse events from the start of radiotherapy to 3 months after completion of radiotherapy, assessed according to the National Cancer Institute Common Terminology Criteria for Adverse Events version 5.0 (NCI-CTCAE v5.0). (Up to 3 months)
  • Secondary: Time from the start of radiotherapy to the first documented disease recurrence, distant metastasis, or death from any cause, whichever occurs first. (Up to 3 years)
  • Secondary: Time from the start of radiotherapy to death from any cause. (Up to 3 years)
  • Secondary: ercentage of participants who develop locoregional recurrence during follow-up. Locoregional recurrence includes recurrence in the tumor bed, mediastinum, pleura, or regional lymph nodes, as assessed by imaging, pathology, or clinical evaluation. (Up to 3 years)
  • Secondary: Percentage of participants who develop distant metastasis during follow-up, as assessed by imaging, pathology, or clinical evaluation. (Up to 3 years)

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Benchmark readouts in the surrounding field

  • A Randomized, Double-Blind, Placebo-Controlled, Parallel-Group Study of RDX-002 on Postprandial Triglycerides in Patients Discontinuing the Glucagon-like Peptide-1 (GLP-1) Agonists, Semaglutide, or Tirzepatide for the Treatment of Obesity (Phase 2): Incremental Postprandial Triglycerides (TG)(Mean) = 43.81 percent change (Standard Deviation, 92.373); Incremental Postprandial Triglycerides (TG)(Mean) = -51.91 percent change (Standard Deviation, 72.293)
  • A Phase II Study to Evaluate the Delay in Ovulation Following Oral Levonorgestrel Plus Meloxicam Compared to Placebo in Obese But Normal Menstruating Women (Phase 2): Interval From First Dose to Evidence of Ovulation.(Mean) = 2.67 Number of days (Standard Deviation, 1.53); Interval From First Dose to Evidence of Ovulation.(Mean) = 4.0 Number of days (Standard Deviation, 0)
  • A Phase 2, Parallel-Group, Double-Blind Study to Investigate Weight Management With LY3841136 Compared With Placebo in Adult Participants With Obesity or Overweight (Phase 2): Percent Change From Baseline in Body Weight at Week 48(Least Squares Mean) = -0.4 percent change (Standard Error, 0.91); Percent Change From Baseline in Body Weight at Week 48(Least Squares Mean) = -9.4 percent change (Standard Error, 1.60)

These indexed results are contextual benchmarks, not direct head-to-head evidence. Population, treatment line, endpoint definitions, follow-up and analysis sets may differ. Their value is to clarify the type and magnitude of evidence already visible in the competitive landscape.

Build a living trial monitor: connect to PatSnap MCP Servers and track status changes, endpoint revisions, primary-completion dates and newly indexed results without manually reconciling separate databases.

Asset and sponsor context

Drug & Asset context: Not reported

Company & Deal Intelligence context: Tianjin Medical University Cancer Institute and Hospital — China — http://www.tjmuch.com

The sponsor profile matters because scientific rationale alone does not determine development value. Manufacturing readiness, portfolio fit, geographic reach, partnering capacity and the ability to fund confirmatory development can decide whether a positive signal becomes a competitive asset.

White space around this program

  • Sharper patient selection: prospective biomarker or phenotype definitions that identify who is most likely to benefit.
  • Clinically interpretable endpoints: outcomes connecting activity with function, symptoms, survival or treatment burden.
  • Sequencing evidence: comparative data after the most relevant contemporary standard of care.
  • Broader external validity: evidence across additional geographies, demographic groups and real-world settings.
  • Operational differentiation: a development path that closes the readout gap without sacrificing safety or durability.

What to monitor next

Monitor recruitment, enrollment changes, protocol amendments, endpoint hierarchy, primary-completion timing, first result indexing, asset ownership and sponsor partnerships. A change in endpoint, population or ownership can alter probability of success before a headline data release.

Bottom line

NCT07691619 is a focused lens on Thymic Epithelial Tumor development. Its value will be determined by whether Postoperative hypo-fractionated radiotherapy can convert the current design into evidence that is clinically meaningful, operationally credible and differentiated from indexed benchmark readouts.

Ready to reproduce this analysis? Explore PatSnap MCP Servers and combine Clinical Trials, Drug & Asset, and Company & Deal Intelligence as reusable building blocks for trial monitoring and SEO-ready clinical reports.

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