CS-101 in Beta-Thalassemia: NCT07489196 Clinical Landscape Report 2026

11 September 2026
9 min read

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This Clinical Landscape Report was built with PatSnap Life Sciences MCP workflows. Clinical Trials MCP supplies protocol and result records, Drug & Asset MCP adds asset context, and Company & Deal Intelligence MCP resolves sponsor background. Use the same structured MCP building blocks in your research workflow.

Data snapshot: 11 September 2026. This strategic research report is not medical, regulatory or investment advice. Trial status and dates can change.

Phase 2

Clinical phase

Not yet recruiting

Recruitment status

20

Planned enrollment

2028-01-31

Primary-completion proxy

Executive view

NCT07489196 evaluates CS-101 in Beta-Thalassemia. The disclosed sponsor is CorrectSequence Therapeutics Co., Ltd., the design is Interventional, and the geographic footprint is China. The first listed primary endpoint is AEs(Adverse Events) and SAEs(Serious Adverse Events) after CS-101 infusion, assessed over Up to 16 months post-CS-101 infusion.

The key landscape question is whether this protocol can generate a clinically interpretable signal relative to nearby programs. Phase alone is not a measure of evidence quality. Endpoint relevance, comparator choice, masking, enrollment feasibility, patient selection, country coverage and follow-up must be considered together.

PatSnap MCP Servers make this assessment reproducible by keeping protocol facts, result evidence, asset attributes and sponsor identity in separate structured calls.

How the MCP evidence stack was assembled

Clinical Trials MCP clinical_trial_fetch retrieved the design, outcomes, phase, status, enrollment, sponsor, countries and timing for NCT07489196 and selected peers. clinical_trial_result_fetch supplied detailed result records from the wider Beta-Thalassemia landscape. Drug & Asset MCP drug_fetch was queried for CS-101, while Company & Deal Intelligence MCP organization_fetch was queried for CorrectSequence Therapeutics Co., Ltd..

This separation reduces a common diligence error: treating a registry label, a company description or a result excerpt as if each represented the complete evidence package. Explore the source workflow at the PatSnap MCP marketplace.

Trial landscape table

TrialAsset / interventionPhase / statusSponsorGeographyPrimary endpointReadout proxy
NCT07489196CS-101Phase 2 / Not yet recruitingCorrectSequence Therapeutics Co., Ltd.ChinaAEs(Adverse Events) and SAEs(Serious Adverse Events) after CS-101 infusion
Up to 16 months post-CS-101 infusion
2028-01-31

The table aligns endpoints, sponsors, phases, geographies and readout proxies. It is descriptive, not a head-to-head efficacy comparison. Differences in population, baseline risk, intervention schedule and follow-up can dominate apparent cross-trial differences.

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Protocol design and endpoint interpretation

NCT07489196 is a Phase 2, not yet recruiting study with 20 planned participants. Allocation is N/A, masking is None (Open Label), and the intervention model is Single Group Assignment.

The primary endpoint is “AEs(Adverse Events) and SAEs(Serious Adverse Events) after CS-101 infusion” over “Up to 16 months post-CS-101 infusion.” The retrieved endpoint description is: Frequency and severity of adverse events(AEs)as assessed by CTCAE(Common Terminology Criteria for Adverse Events)v5.0.

Interpretation should test whether the endpoint captures a clinically meaningful change, whether its time horizon matches the proposed biology, and whether treatment discontinuation or missing data can bias the estimate. The planned enrollment of 20 should be assessed against expected effect size, event frequency, multiplicity, subgroup plans and attrition.

No named control drug was returned in the protocol field set. A placebo comparator can strengthen internal efficacy assessment, while an active comparator may better test clinical differentiation. Single-arm and open-label programs require greater weight on objective outcomes, independent assessment and external benchmarks.

Indexed readouts in the surrounding landscape

4 recent result records were selected as contextual evidence for Beta-Thalassemia. These records do not establish direct evidence for NCT07489196 unless the registration number matches.

CRISPR-Cas12a Gene Editing of HBG1 and HBG2 Promoters to Treat β-Thalassemia

Phase 1/2; n=9; Adverse Event: decreased lymphocyte counts = One patient had decreased lymphocyte counts attributed to reni-cel Source: https://pubmed-ncbi-nlm-nih-gov.libproxy1.nus.edu.sg/41931048/

REDEFINING CURATIVE HORIZONS IN THALASSEMIA MAJOR: 100% SURVIVAL FOLLOWING ALTERNATIVE DONOR HSCT IN A RESOURCE- LIMITED SETTING

Not Applicable; n=33; EFS = 50.0 % ; EFS = 100.0 % Source: https://www.ebmt.org/sites/default/files/2026-03/AM26_Abstracts%20Book_final_v.pdf

POST-TRANSPLANT CYCLOPHOSPHAMIDE VERSUS ATG AS GVHD PROPHYLAXIS IN MATCHED SIBLING DONOR PBSC TRANSPLANTATION FOR Β-THALASSEMIA MAJOR – A SINGLE CENTER EXPERIENCE

Not Applicable; n=96; CMV reactivation = 20.0 % ; CMV reactivation = 2.4 % Source: https://www.ebmt.org/sites/default/files/2026-03/AM26_Abstracts%20Book_final_v.pdf

Result fields should be reconciled with the source record before quantitative comparison. Population definitions, analysis sets, dose cohorts, estimands, confidence intervals, rescue therapy and follow-up can materially change the meaning of a numerical endpoint. Clinical Trials MCP supports repeatable refreshes as result records change.

Asset and sponsor context

CS-101 is indexed as Transformer Base Editor with BCL11A biology and a global stage of Phase 2. The asset profile lists CorrectSequence Therapeutics Co., Ltd. as an originator or developer.

CorrectSequence Therapeutics Co., Ltd. is indexed in China with the website https://www.correctsequence.com. The organization record is used to resolve sponsor identity. The record lists 7 development-stage drug assets.

For execution diligence, monitor sponsor ownership, collaborator additions, site expansion, protocol amendments and enrollment revisions. A change in ownership or geography can alter operational confidence as well as the commercial meaning of a future readout.

Development white space

  1. Endpoint white space. Determine whether a more patient-relevant outcome, longer durability window or blinded central assessment would resolve uncertainty left by the current endpoint.
  2. Population white space. Test biomarker-defined, treatment-line or risk-stratified subgroups where effect size and unmet need could be clearer.
  3. Comparator white space. Identify whether the study can support differentiation against the current standard of care rather than only activity against baseline or placebo.
  4. Geographic white space. Assess whether the disclosed footprint supports recruitment, regulatory transferability and commercial generalizability.
  5. Sequencing white space. Clarify whether CS-101 is intended for monotherapy, combination, maintenance, rescue or an earlier treatment line.

White space should be framed as an unanswered development question, not merely an unoccupied mechanism label. A credible program closes a measurable clinical uncertainty with a design that can be executed and interpreted.

Strategic implications and next readouts

For sponsors, the endpoint hierarchy, safety window, enrollment pace and protocol amendment history should all support the same target product profile. Advancement criteria should be set before the readout and tied to clinical effect, uncertainty, tolerability and operational feasibility.

For business-development teams, differentiation may come from a sharper population, stronger comparator, more durable benefit, simpler delivery or clearer sequencing role. For investors, the central risk is evidence quality relative to time and capital, not the phase label in isolation.

Track recruitment status, enrollment changes, primary-completion timing, endpoint revisions, new result records, sponsor ownership and collaborator changes. Re-run the PatSnap MCP workflow when a surrogate becomes a clinical outcome, a single-country study expands, the comparator changes or a new result materially shifts the competitive benchmark.

Source trail and bottom line

Anchor trial: NCT07489196
Protocol source: https://clinicaltrials.gov/study/NCT07489196
MCP sources: Clinical Trials MCP (clinical_trial_fetch and clinical_trial_result_fetch); Drug & Asset MCP (drug_fetch); Company & Deal Intelligence MCP (organization_fetch).
Data snapshot: 11 September 2026.

CS-101 in Beta-Thalassemia is best understood through the interaction of protocol design, surrounding readouts, asset context and sponsor execution. The current record makes AEs(Adverse Events) and SAEs(Serious Adverse Events) after CS-101 infusion and 2028-01-31 the leading decision points.

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