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NCT07702578 TSC-101 Acute Myeloid Leukemia Clinical Landscape Report 2026: Design, Endpoints, Sponsor and Readout Outlook

17 July 2026
8 min read

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Move from a broad disease map to a decision-ready trial dossier. This focused report examines NCT07702578—A Phase 1-3 Study of T-Cell Receptor Engineered Donor T Cells in Subjects Undergoing Allogeneic Peripheral Blood Stem Cell Transplantation (ALLOHA-2) (ALLOHA-2)—using PatSnap Clinical Trials, Drug & Asset, and Company & Deal Intelligence MCP evidence. Explore PatSnap MCP Servers to reproduce the workflow inside an AI research process.

MCP evidence snapshot: 16 July 2026; publication date: 17 July 2026. Trial records can change after the snapshot and should be rechecked before operational decisions.

Why NCT07702578 is a hot trial to watch

Acute Myeloid Leukemia is no longer one homogeneous development market. The most consequential programs increasingly compete through a specific mechanism, biomarker, treatment line, delivery strategy or endpoint architecture. NCT07702578 is notable because it tests TSC-101 in a Phase 3 design with Relapse-free survival (RFS) as a primary decision variable. The wider PatSnap topic query returned 1,776 trial records and 3,553 result records, so differentiation depends on evidence quality rather than activity alone.

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

Trial landscape snapshot

FieldIndexed detail
RegistrationNCT07702578
Official titleA Phase 1-3 Study of T-Cell Receptor Engineered Donor T Cells in Subjects Undergoing Allogeneic Peripheral Blood Stem Cell Transplantation (ALLOHA-2) (ALLOHA-2)
Phase / statusPhase 3 / Recruiting
InterventionTSC-101
SponsorTScan Therapeutics, Inc.
GeographyUnited States
Enrollment310
Primary endpointRelapse-free survival (RFS)
Endpoint time frame3 years
Primary completion2029-06-01
Study completion2029-06-01

Design and endpoint interpretation

The design should be read as an evidence architecture, not just a phase label. The primary endpoint—Relapse-free survival (RFS)—determines what uncertainty this study can resolve. The reported time frame is 3 years. Enrollment of 310 participants and geography in United States shape statistical precision, operational risk and external validity. A strong readout will need to be interpreted against baseline risk, prior treatment, assessment schedule, missing-data handling and the clinical relevance of the observed effect.

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Benchmark readouts in the same clinical field

  • A Phase II Clinical Trial of E7820 for Patients With Relapsed/Refractory Myeloid Malignancies With Mutations in Splicing Factor Genes. (Phase 2): -; mOS(Median) = 3.8 months (95% Confidence Interval, 1.5 - 12); -.
  • Safety and Efficacy of Venetoclax and Azacitidine for Newly Diagnosed Non-Elderly Adult Patients (Aged 18-59) With Acute Myeloid Leukemia (Phase 2): Response Rate, Measured by the European Leukemia Net Definition: (CRMRD-+CR+CRi+MLFS) = 25 Participants ; -; -.
  • A Pilot/Safety Study of sEphB4-HSA in Combination With a Hypomethylating Agent (HMA) for Patients With Relapsed or Refractory Myelodysplastic Syndrome (MDS) and AML Previously Treated With a Hypomethylating Agent (Phase 2): Neutropenia CTCAE Grade ≥3 = 2 Participants ; -; -.

These result records are contextual benchmarks rather than direct head-to-head evidence. Cross-trial comparisons can be distorted by population, line of therapy, endpoint definition, follow-up and analysis set. Their value is to clarify what magnitude and type of evidence the market already recognizes.

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

Asset and sponsor context

Drug & Asset context: TSC-101 (Phase 1; MYO1G).

Company & Deal Intelligence context: TScan Therapeutics, Inc. (TCRX) — https://www.tscan.com.

The sponsor profile matters because a trial's strategic value depends on more than scientific rationale. Manufacturing readiness, portfolio fit, geographic reach, partnering capacity and the ability to fund confirmatory development can determine whether a positive signal becomes a competitive asset.

White space around this program

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

What to monitor next

Monitor recruitment status, enrollment changes, protocol amendments, endpoint hierarchy, primary-completion timing, first result indexing, asset ownership and sponsor partnerships. The most important inflection point is not always the headline data release; a change in endpoint, population or ownership can alter probability of success months earlier.

Bottom line

NCT07702578 is a focused lens on Acute Myeloid Leukemia development. Its value will be determined by whether TSC-101 can convert the current design into evidence that is clinically meaningful, operationally credible and differentiated from topic-level 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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