Real-world outcomes of intranasal esketamine and intravenous ketamine induction therapy for treatment-resistant depression in a community clinic: a retrospective cohort study

IntroductionIntravenous (IV) ketamine and intranasal esketamine are NMDA receptor antagonists used for treatment-resistant depression (TRD). Both have demonstrated efficacy in controlled trials, but observational evidence from real-world community settings is limited.MethodsWe conducted a single-center retrospective cohort study of adults aged 18 to 65 receiving induction therapy for TRD with intranasal esketamine or IV ketamine at a community psychiatric clinic from January 1 through December 31, 2025. Patients with prior exposure to either medication or to oral ketamine derivatives were excluded. The primary outcome was change in Patient Health Questionnaire-9 (PHQ-9) score from baseline to end of induction. Secondary outcomes included response (≥50% PHQ-9 reduction), remission (final PHQ-9 ≤4), clinically meaningful improvement (≥5 PHQ-9 reduction), induction completion, and adverse events. Within-group and per-protocol analyses were exploratory.ResultsSixty-three patients met inclusion criteria (esketamine n=37; IV ketamine n=26). Baseline PHQ-9 scores were similar (18.22±4.49 vs. 18.27±5.41; P = 0.967), as was mean change from baseline (-10.31±5.59 vs. -9.50±5.69; mean difference 0.81, 95% CI -2.12 to 3.75; P = 0.589). Response rates were 64.9% vs. 69.2% (RR 0.94, 95% CI 0.66 to 1.33; P = 0.790), remission 32.4% vs. 23.1% (RR 1.41, 95% CI 0.61 to 3.26; P = 0.573), and clinically meaningful improvement 83.8% vs 73.1% (RR 1.15, 95% CI 0.87 to 1.51; P = 0.353). Induction completion exceeded 90% in both groups; one patient per cohort discontinued from intolerable side effects, and no serious adverse events occurred. Within-group PHQ-9 reduction was large: 10.31±5.59 points (paired t[34]=10.91; P<0.001; Cohen’s d=1.84) for esketamine and 9.50±5.69 points (paired t[23]=8.18; P<0.001; Cohen’s d=1.67) for ketamine. Findings remained statistically significant and clinically large under a pre-specified baseline observation carried forward (BOCF) sensitivity analysis (Cohen’s d=1.65 and 1.45).ConclusionsInduction therapy with intranasal esketamine and intravenous ketamine was associated with robust antidepressant effects in a community outpatient setting, consistent with prior trial data. The modest sample size limits power to detect between-group differences and increases the risk of type II error; the absence of statistically significant between-group differences should therefore not be interpreted as evidence of equivalence. Protocol asymmetry between arms (esketamine: 12 sessions over 8 weeks; IV ketamine: 6 sessions over 3 weeks) further limits direct comparison of endpoint values between groups. Practical considerations including insurance coverage, cost, and administration logistics may help guide treatment selection. Longitudinal follow-up is planned to characterize treatment durability.

Texas Biomed Enters Into a CRADA with U.S. Dept. of War to Help Protect Against Biological Threats

Texas Biomedical Research Institute signed a cooperative research and development agreement (CRADA) with the U.S. Department of War to help protect service members and civilians from emerging and high-consequence biological threats.

The agreement with the Capability Program Executive for Chemical, Biological, Radiological, and Nuclear Defense (CPE CBRND), which manages the nation’s investments in chemical, biological, radiological, and nuclear (CBRN) defense diagnostics and medical countermeasures (MCMs), establishes a collaborative framework to accelerate the development, testing, and validation of medical countermeasures while strengthening national preparedness, according to Cory Hallam, PhD, professor and executive vice president of Applied Science and Innovation at Texas Biomed.

“We are proud to offer our unique scientific capabilities to support the nation’s biodefense mission,” said Hallam. “Texas Biomed excels in reducing the time between scientific insight and operational impact, which is critical for proactive preparedness and responding quickly when threats emerge.” 

Collaborative framework

The CRADA establishes a framework for Texas Biomed and CPE CBRND to collaborate on MCM projects that protect global populations, including U.S. soldiers serving at home and abroad. The agreement recognizes Texas Biomed’s operational impact capabilities, including high containment research and adherence to Good Laboratory Practice standards that support FDA regulatory requirements.

The Institute is also home to one of the nation’s seven National Primate Research Centers, offering expertise in translational studies and model development.

The CRADA framework is intended to ensure that critical resources for biological threats, whether from naturally emerging diseases or engineered risks, are continuously ready and available on demand, rather than episodically, continued Hallam.

“This is a long-term investment in resilience,” added Larry Schlesinger, MD, president and CEO of Texas Biomed. “As biological threats continue to evolve, partnerships like this are increasingly essential. Under this agreement, we have the potential to build new joint capabilities that will serve the nation not just today, but for decades to come.”

The post Texas Biomed Enters Into a CRADA with U.S. Dept. of War to Help Protect Against Biological Threats appeared first on GEN – Genetic Engineering and Biotechnology News.

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