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IN8bio Announces Publication in The Journal of Clinical Oncology Demonstrating DeltEx™ DRI Doubles Progression-Free Survival in Newly Diagnosed Glioblastoma

(Moderate)
(Positive)
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IN8bio (Nasdaq: INAB) reported peer-reviewed Phase 1 data for its DeltEx DRI (INB-200) in newly diagnosed glioblastoma, published in Journal of Clinical Oncology.

Repeat-dose patients showed median progression-free survival of 16.1 months vs ~6.9 months standard of care, with no dose-limiting toxicities.

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Positive

  • Repeat-dose DeltEx DRI patients achieved mPFS of 16.1 months vs ~6.9-month SOC benchmark
  • All 13 patients showed mPFS of 9.9 months, a 43.5% improvement over SOC benchmark
  • Repeat-dose cohort reported median overall survival of 19.5 months vs ~14.6-month historical SOC mOS
  • No dose-limiting toxicities, cytokine release syndrome, or ICANS observed in Phase 1 trial
  • Peer-reviewed Phase 1 data published in Journal of Clinical Oncology, supporting continued development

Negative

  • Phase 1 trial enrolled only 13 patients, limiting statistical strength of outcomes
  • Efficacy comparisons are based on historical standard-of-care benchmarks, not a randomized control arm

News Market Reaction – INAB

+1.45% 2.6x vol
3 alerts
+1.45% Session close to close
-19.1% Trough Tracked
$13.33M Market Cap
2.6x Rel. Volume

In the Jul 9 session, INAB gained 1.45%, reflecting a mild positive market reaction. Argus tracked a trough of -19.1% from its starting point during tracking. Our momentum scanner triggered 3 alerts that day, indicating moderate trading interest and price volatility. Trading volume was elevated at 2.6x the daily average, suggesting notable buying interest.

Data tracked by StockTitan Argus on the day of publication.

Market Context

Publication of DeltEx DRI Phase 1 data in JCO, including 16.1-month median PFS in repeat-dose GBM pa...
Analysis

Publication of DeltEx DRI Phase 1 data in JCO, including 16.1-month median PFS in repeat-dose GBM patients, underscores meaningful clinical signals. Investors must weigh this against an effective $200,000,000 shelf and prior newsflow that has not translated into sustained strength.

Key Figures

mPFS repeat-dose: 16.1 months SOC mPFS benchmark: 6.9 months Patients treated: 13 patients +5 more
8 metrics
mPFS repeat-dose 16.1 months Repeat-dose DeltEx DRI patients in Phase 1 GBM trial
SOC mPFS benchmark 6.9 months Typical standard-of-care progression-free survival in newly diagnosed GBM
Patients treated 13 patients Total enrolled across three Phase 1 DeltEx DRI cohorts
Dose levels 1, 3, or up to 6 doses DeltEx DRI dosing per cohort in 28-day cycles
All-patient mPFS 9.9 months Median PFS across all 13 DeltEx DRI-treated GBM patients
PFS improvement 43.5% Improvement over 6.9-month SOC mPFS in all treated patients
mOS repeat-dose 19.5 months Median OS in repeat-dose DeltEx DRI GBM patients
Historical SOC mOS 14.6 months Historical median OS for comparable GBM standard-of-care population

Historical Context

5 past events · Latest: Jun 03 (Positive)
Pattern 5 events
Date Event Sentiment 24h Move Catalyst
Jun 03 Scientific publication Positive -1.3% Peer-reviewed Nature Communications review on γδ T cell engineering and therapies.
Jun 01 Clinical data update Positive -7.5% ASCO 2026 presentation of updated DeltEx DRI survival data in GBM.
May 07 Earnings and pipeline Positive -1.3% Q1 2026 results plus DeltEx DRI GBM survival and cash position update.
May 06 Conference schedule Positive -2.5% Announcement of R&D Day and multiple conference presentations on γδ T programs.
Apr 03 Equity incentives Neutral -2.1% Inducement stock option grants to new employees under Nasdaq listing rule.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Pattern Detected

Recent news and clinical updates have generally been followed by negative next‑day price reactions, even when the underlying disclosures were constructive.

Key Terms

progression-free survival, overall survival, cytokine release syndrome, immune effector cell-associated neurotoxicity, +2 more
6 terms
progression-free survival medical
"Repeat-dose patients achieved median progression-free survival ..."
Progression-free survival is the length of time during and after a treatment that a patient's disease does not get worse, measured from the start of treatment until the disease shows measurable signs of progression or the patient dies. Investors care because longer progression-free survival in clinical trials often signals that a drug is effective, improving chances of regulatory approval, market adoption, and revenue potential—think of it as a stopwatch showing how long a therapy can keep the illness at bay.
overall survival medical
"Overall survival (OS) was equally notable: median OS in repeat-dose patients..."
Overall survival is the average or median length of time patients remain alive after starting a treatment or entering a clinical study, measured regardless of cause of death. Investors care because it is a clear, hard measure of a therapy’s real-world benefit — like timing how long a new battery actually runs — and strong improvements in overall survival can drive regulatory approval, market adoption and revenue potential.
cytokine release syndrome medical
"no cytokine release syndrome (CRS), and no immune effector cell-associated..."
An intense immune overreaction in which the body's defense system releases a large surge of signaling proteins, causing fever, low blood pressure, breathing trouble or organ stress; imagine the immune system's alarm going into overdrive and flooding the body with emergency responders. Investors care because this side effect can slow or block regulatory approval, increase clinical trial costs and liabilities, limit how widely a therapy can be used, and therefore affect a drug's market value and sales potential.
immune effector cell-associated neurotoxicity medical
"no immune effector cell-associated neurotoxicity (ICANS) observed."
A neurological condition that can occur after treatment with engineered immune cells, such as CAR-T therapies, caused by an intense immune response that affects brain function. Symptoms range from confusion, trouble speaking, and tremors to seizures or coma; like an immune-driven electrical storm in the brain, it can change how a therapy is used, its safety labeling, and the costs and logistics of delivering the treatment—factors that affect clinical and commercial outcomes.
glioblastoma medical
"GBM is the most common malignant primary brain tumor in adults..."
Glioblastoma is a fast-growing and aggressive type of brain tumor that can affect a person's thinking, movement, or senses. Its seriousness and difficulty to treat can lead to significant health impacts, making it a concern for medical research and drug development. For investors, advances or setbacks in glioblastoma treatments can influence biotech companies and healthcare markets focused on cancer therapies.
intracranial medical
"intracranial injection of ex vivo expanded and activated gamma-delta T cells..."
Inside the skull; relating to structures or conditions located within the head cavity that contains the brain and its membranes. For investors, “intracranial” signals medical products, treatments or risks that deal with delicate, high-stakes areas where safety, regulatory approval and clinical results strongly influence market value — think of it like working in a small, crowded room where any change can have outsized effects on the whole system.

AI-generated analysis. How Rhea-AI works. Not financial advice.

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  • First peer-reviewed publication of chemotherapy-resistant gamma-delta T cells (DeltEx Drug Resistant Immunotherapy or DRI) clinical results in newly diagnosed glioblastoma
  • Repeat-dose patients achieved median progression-free survival (mPFS) of 16.1 months, more than double the ~6.9-month standard of care benchmark, with no dose-limiting toxicities (DLTs)

NEW YORK, July 09, 2026 (GLOBE NEWSWIRE) -- IN8bio, Inc. (Nasdaq: INAB), a clinical-stage biopharmaceutical company developing innovative gamma-delta (γδ) T cell therapies and T cell engagers for cancer and autoimmune diseases, today announced the publication of peer-reviewed clinical data from its Phase 1 trial of INB-200 in The Journal of Clinical Oncology (JCO), one of the most prestigious oncology journals.

The publication, titled: “Intracranial injection of ex vivo expanded and activated gamma-delta T cells engineered with a MGMT-expressing lentivector in patients with primary glioblastoma,” reports results from the first-in-human study of an autologous, genetically modified γδ T cell therapy. The expanded, activated γδ T cells are engineered to be resistant to chemotherapy (DeltEx DRI) and delivered intracranially in combination with standard of care (SOC) temozolomide chemotherapy (TMZ).

The Phase 1 trial is a frequency-escalation study of DeltEx DRI in GBM patients in combination with the SOC Stupp regimen (surgical resection followed by chemoradiation and maintenance chemotherapy). A total of 13 patients were enrolled and treated across three cohorts with subjects in their respective cohorts receiving 1, 3, or up to 6 doses of DeltEx DRI in 28-day cycles during maintenance chemotherapy. Evaluations included the safety and feasibility of repeated intracranial administration during maintenance chemotherapy.

GBM is the most common malignant primary brain tumor in adults and one of the most aggressive and difficult cancers to treat, with overall survival of only ~11 months and a five-year survival of ~5%. Despite overall advances across numerous cancer therapies, survival in GBM has been almost unchanged in more than 20 years with no new drug approvals and only a single device approval. Recurrence is nearly universal with GBM patients facing rapid decline, very limited treatment options, and poor outcomes.

In the Phase 1 study, DeltEx DRI in combination with SOC demonstrated a well-tolerated safety profile with no DLTs, no cytokine release syndrome (CRS), and no immune effector cell-associated neurotoxicity (ICANS) observed. The therapy also showed compelling signals of clinical activity. Across all 13 treated patients, mPFS was 9.9 months, and a 43.5% improvement over the 6.9 months typically reported with SOC alone. The results were most striking in repeat-dose patients (those receiving 3 to 6 doses) where mPFS reached 16.1 months, more than double the SOC benchmark. Overall survival (OS) was equally notable: median OS in repeat-dose patients was 19.5 months, compared to a historical SOC mOS of approximately 14.6 months in this patient population.

“These peer-reviewed results validate the scientific foundation of our DeltEx platform and highlight the transformative potential of γδ T cells in treating solid tumors,” said William Ho, Chief Executive Officer and Co-founder of IN8bio. “Glioblastoma remains one of the most devastating cancers, and patients urgently need new treatment options. By enabling immune cells to remain active alongside conventional chemotherapy and delivering them directly to the tumor, DeltEx DRI is designed to drive meaningful synergies, improve patient outcomes, and change the treatment paradigm for this disease.”

“Publication in The Journal of Clinical Oncology represents a significant milestone for this program and for the broader effort to bring effective immunotherapies to patients with glioblastoma,” said Burt Nabors, M.D., Professor of Neurology, Director of Neuro-Oncology at the O’Neal Comprehensive Cancer Center at the University of Alabama at Birmingham, and lead investigator of the study. “This trial demonstrates that intracranial delivery of chemotherapy-resistant γδ T cells is feasible and well tolerated. The encouraging signals of prolonged disease control and absence of immune-mediated toxicity, particularly with repeated dosing, provide a compelling rationale for continued clinical development of this novel therapeutic approach.”

Despite aggressive SOC treatment, residual tumor cells persist in nearly all GBM patients, a key reason the disease remains almost universally fatal. The DeltEx DRI technology directly addresses this challenge: γδ T cells are engineered to resist being killed by the chemotherapy that is administered concurrently, then delivered intracranially to the tumor site, where they can attack residual cancer cells and potentially achieve deeper, more durable tumor responses. These JCO-published results offer meaningful evidence that this strategy can extend disease control in these patients with significant unmet need and support its continued advancement as a potential new treatment paradigm for solid tumors. IN8bio expects to provide additional updates to the DeltEx DRI program in newly diagnosed GBM later this year.

About INB-200 and INB-400 (DeltEx Drug Resistant Immunotherapy)

INB-200 and INB-400 are an autologous, genetically modified gamma-delta T cell therapy engineered with an MGMT-expressing lentivector designed to resist alkylating chemotherapy. The therapy is administered intracranially and is intended to work in combination with temozolomide to target residual tumor cells, enhance immune activation, and prolong disease control in patients with glioblastoma.

About IN8bio

IN8bio is a clinical-stage biopharmaceutical company developing γδ T cell and γδ T cell engager (TCE) product candidates to address unmet medical needs. γδ T cells are a specialized population of T cells that possess unique properties, including the ability to differentiate between healthy and diseased tissue. The Company’s pipeline is anchored by INB-600, a novel γδ T cell engager platform with potential applications across oncology and autoimmune indications. IN8bio is also advancing INB-100, an allogeneic γδ T cell candidate for adult patients with high-risk leukemias undergoing haploidentical stem cell transplantation, and INB-200/400, an autologous genetically modified γδ T cell candidate for newly diagnosed glioblastoma (GBM). For more information about IN8bio, visit www.IN8bio.com.

Forward-Looking Statements

This press release may contain forward-looking statements made pursuant to the safe harbor provisions of the Private Securities Litigation Reform Act of 1995. These statements may be identified by words such as “aims,” “anticipates,” “believes,” “could,” “estimates,” “expects,” “forecasts,” “goal,” “intends,” “may,” “plans,” “possible,” “potential,” “seeks,” “will” and variations of these words or similar expressions that are intended to identify forward-looking statements, although not all forward-looking statements contain these words. Forward-looking statements in this press release include, but are not limited to, statements regarding: the therapeutic potential of IN8bio’s product candidates; the potential of DeltEx DRI γδ T cell therapy to improve outcomes in patients with newly diagnosed glioblastoma; IN8bio’s ability to achieve anticipated milestones, including continued clinical development and regulatory engagement; and other statements that are not historical fact. IN8bio may not actually achieve the plans, intentions or expectations disclosed in these forward-looking statements, and you should not place undue reliance on these forward-looking statements. Actual results or events could differ materially from those anticipated as a result of various factors, including: risks to clinical trial progress, patient enrollment and follow-up; uncertainties inherent in the initiation and completion of clinical trials; whether outcomes from prior studies will be predictive of future clinical results; and other important factors described in greater detail in the section entitled “Risk Factors” in IN8bio’s most recent filings with the Securities and Exchange Commission (SEC). Any forward-looking statements contained in this press release speak only as of the date hereof, and IN8bio expressly disclaims any obligation to update any forward-looking statements contained herein, except as otherwise required by law.

Investors & Company Contacts:

IN8bio, Inc.
Patrick McCall
646.933.5603
pfmccall@IN8bio.com

Media Contact

Kimberly Ha
KKH Advisors
917.291.5744
kimberly.ha@kkhadvisors.com


FAQ

What did IN8bio (NASDAQ: INAB) announce about DeltEx DRI in glioblastoma on July 9, 2026?

IN8bio announced peer-reviewed Phase 1 results for DeltEx DRI (INB-200) in newly diagnosed glioblastoma. According to IN8bio, repeat-dose patients reached median progression-free survival of 16.1 months, with a favorable safety profile and no dose-limiting toxicities, cytokine release syndrome, or ICANS reported.

How did DeltEx DRI affect progression-free survival in newly diagnosed glioblastoma patients (INAB)?

DeltEx DRI was associated with longer progression-free survival in this Phase 1 study. According to IN8bio, all 13 patients had median PFS of 9.9 months, while repeat-dose patients reached 16.1 months, compared with an approximately 6.9-month standard-of-care benchmark in similar glioblastoma populations.

What were the safety results of IN8bio's Phase 1 INB-200 trial in glioblastoma?

The Phase 1 INB-200 trial reported a favorable safety profile. According to IN8bio, no dose-limiting toxicities, no cytokine release syndrome, and no immune effector cell-associated neurotoxicity syndrome (ICANS) were observed, and repeated intracranial dosing during maintenance chemotherapy was feasible in newly diagnosed glioblastoma patients.

How did overall survival outcomes look for repeat-dose DeltEx DRI patients in the INAB trial?

Repeat-dose DeltEx DRI patients showed encouraging overall survival in this early study. According to IN8bio, median overall survival reached 19.5 months, compared with an approximately 14.6-month historical median overall survival reported for similar standard-of-care glioblastoma patient populations.

What is DeltEx Drug Resistant Immunotherapy (DRI) and how is it used in glioblastoma?

DeltEx DRI uses chemotherapy-resistant gamma-delta T cells engineered with an MGMT-expressing lentivector. According to IN8bio, these autologous cells are delivered intracranially alongside standard temozolomide-based therapy, aiming to attack residual tumor cells while remaining active during concurrent chemotherapy in newly diagnosed glioblastoma.

Why is Journal of Clinical Oncology publication important for IN8bio (INAB) investors?

Publication in Journal of Clinical Oncology adds independent, peer-reviewed visibility to IN8bio’s INB-200 program. According to IN8bio, the paper details feasibility, safety, and progression-free survival data, which may help support further clinical development and inform investor views on the company’s DeltEx DRI platform.