Larazotide acetate (AT-1001) is a synthetic peptide drug candidate designed to block zonulin-mediated opening of tight junctions between intestinal cells. It was developed specifically for celiac disease, to reduce the gut-permeability increase and downstream immune symptoms triggered by gluten exposure. It reached Phase 3 human clinical trials but its most recent Phase 3 study was discontinued in 2022 after an interim analysis showed it was unlikely to succeed. It is not an FDA-approved medication.
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Research snapshot
| Category | Current information |
|---|---|
| Peptide category | Synthetic zonulin-antagonist octapeptide |
| Primary research interest | Celiac disease symptom relief as an adjunct to a gluten-free diet |
| Highest available evidence | Published human clinical trials through Phase 3 (terminated for futility) |
| Human research available | Yes — Phase 1b/2b gluten-challenge study, Phase 2b dose-ranging trial, and a Phase 3 trial terminated in 2022 after an interim futility analysis |
| Development status | No active, ongoing pivotal registration trial identified as of the last verified date; sponsor 9 Meters Biopharma discontinued the Phase 3 program |
| Regulatory status | Not FDA-approved; not approved by any other major regulatory agency |
| Last reviewed | September 27, 2026 |
Technical identity
| Technical property | Information |
|---|---|
| Primary name | Larazotide acetate |
| Alternative names | AT-1001, AT1001 |
| Peptide sequence | Gly-Gly-Val-Leu-Val-Gln-Pro-Gly (linear octapeptide, acetate salt) |
| Amino-acid length | 8 residues |
| Molecular formula | C32H55N9O10 (free peptide, per PubChem) |
| Molecular weight | Not independently re-derived for this entry from a single authoritative source |
| CAS Registry Number | 881851-50-9 |
| PubChem CID | 9810532 |
| Chemical modifications | Acetate salt form |
| Peptide class | Zonulin-pathway antagonist, tight-junction modulator |
| Primary biological target | Zonulin signaling pathway, regulating intestinal epithelial tight-junction permeability |
| Developer or originator | Originally developed by Alba Therapeutics; most recently advanced by 9 Meters Biopharma |
| Development status | Phase 3 trial (NCT03569007) terminated 2022 after interim futility analysis; no active pivotal trial identified |
What it is
Larazotide acetate is a synthetic octapeptide (sequence Gly-Gly-Val-Leu-Val-Gln-Pro-Gly, formulated as the acetate salt) originally developed under the name AT-1001 by Alba Therapeutics, and later advanced by Innovate Biopharmaceuticals and its successor, 9 Meters Biopharma. It was designed as a “tight junction regulator”: a molecule intended to counteract zonulin, an endogenous protein signal that, in celiac disease, is released in response to gluten exposure and causes the tight junctions between intestinal epithelial cells to open, increasing intestinal permeability (“leaky gut” in permeability terms) and allowing gluten peptides greater access to the underlying immune system.
Unlike enzyme-based or immune-modulating celiac drug candidates, larazotide does not attempt to break down gluten or suppress the immune response directly. Instead, it targets the junction-opening step, with the therapeutic goal of reducing symptom flares that occur from incidental, unintentional gluten exposure in patients who are otherwise trying to maintain a gluten-free diet — not as a replacement for the gluten-free diet itself.
Larazotide has one of the more extensive clinical trial histories of any peptide discussed on this site, spanning Phase 1 pharmacokinetic and safety studies in healthy volunteers, a Phase 1b and Phase 2b acute gluten-challenge study, a large 342-patient Phase 2 dose-ranging trial, and, ultimately, a Phase 3 trial in patients with persistent symptoms despite a gluten-free diet. That Phase 3 trial (NCT03569007) was terminated in 2022 after an interim analysis indicated the trial was unlikely to meet its primary endpoint, effectively ending the drug’s most advanced late-stage development program as of the last verified update. It has also been explored, separately, in early-phase trials for gut-permeability-related conditions outside celiac disease, including Long COVID and COVID-19-associated multisystem inflammatory syndrome in children, sponsored by Massachusetts General Hospital rather than the drug’s original commercial developer.
How does it work?
Plain-English explanation
Picture the lining of the small intestine as a tightly sealed floor made of individual tiles (cells) glued together at every seam. In celiac disease, gluten exposure triggers release of a signal (zonulin) that loosens those seams, letting gluten fragments and other material leak through more easily and trigger inflammation. Larazotide is designed to work like an extra layer of glue at the seams, counteracting that loosening signal so the barrier stays tighter even when gluten is present.
Technical explanation
Larazotide acetate is proposed to act locally within the gut lumen as a tight-junction regulator, antagonizing zonulin-dependent signaling that leads to disassembly of tight-junction protein complexes (such as those involving claudins, occludin, and ZO-1) between enterocytes. By limiting this junction opening, it is intended to reduce paracellular permeability increases associated with gluten exposure in celiac disease, thereby reducing translocation of immunogenic gluten peptides across the epithelial barrier. It is formulated for oral administration and is intended to act locally in the gut rather than being appreciably systemically absorbed, which is consistent with the pharmacokinetic and safety profile reported from its Phase 1 studies in healthy volunteers.
Potential benefits and research applications
Reducing symptoms from gluten exposure in treated celiac disease
What is being investigated: whether larazotide reduces gastrointestinal symptoms (abdominal pain, bloating, diarrhea) in celiac disease patients who remain symptomatic despite an established gluten-free diet, and whether it blunts the effects of an acute, controlled gluten challenge. How the effect might occur: by limiting zonulin-driven tight-junction opening and the resulting immune activation from gluten exposure. Evidence: registered, published human clinical trials, including a Phase 1b/2b gluten-challenge study and a 342-patient Phase 2 dose-ranging trial. Strength: mixed — some earlier-phase studies reported statistically significant improvement on certain symptom measures, particularly in a gluten-challenge model, but the definitive Phase 3 trial designed to confirm a clinical benefit was stopped early for futility. Limitation: no trial has yet produced a result sufficient to support regulatory approval, and the drug’s efficacy in a normal, real-world persistent-symptom population on a gluten-free diet has not been established.
Gut-barrier support in non-celiac permeability-related conditions
What is being investigated: use of larazotide in conditions proposed to involve intestinal barrier dysfunction outside celiac disease, including post-acute COVID-19 syndrome (“Long COVID”) and pediatric multisystem inflammatory syndrome associated with COVID-19 (MIS-C). How the effect might occur: the same proposed tight-junction-stabilizing mechanism, applied to a different suspected trigger of gut permeability. Evidence: is being investigated in early-phase, investigator-initiated trials (sponsored by Massachusetts General Hospital, not celiac-focused developers). Strength: preliminary; these are exploratory studies, and one related MIS-C trial (NCT05022303) was terminated. Limitation: this application rests on the “leaky gut” hypothesis in these other conditions, which is itself an active and unsettled area of research, not an established mechanism of disease.
What dosage information circulates?
Figures in this section summarize amounts and schedules reported in published research or circulating online. Their inclusion documents what is reported and does not establish that a regimen is verified, safe, effective, or appropriate.
| Reported use or research objective | Route reported | Amount reported | Frequency reported | Reported duration | Evidence or source category |
|---|---|---|---|---|---|
| Celiac disease, Phase 2b dose-ranging | Oral | 0.5, 1, or 2 mg | Three times daily (TID) | 12 weeks | Published human clinical trial (NCT01396213, n=342) |
| Gluten-challenge study, Phase 1b/2b | Oral | Doses in a similar range to the Phase 2b trial | Multiple times daily | Short-term controlled gluten challenge | Published human clinical trial (NCT00889473; PMID 25683116) |
| Persistent symptom relief, Phase 3 (terminated) | Oral | Not reported to a definitive dose-response result; trial stopped before completion | Not reported to a definitive result | Planned 12 weeks; terminated at interim analysis | Registered but terminated trial (NCT03569007, n=307) |
| General “research compound” framing | Oral | Largely repeats the 0.5-2 mg trial-dose range | Multiple times daily, per trial pattern | Not established | Community / vendor reported, tracing back to the published trial doses rather than an independent origin |
Amounts studied in human research
Larazotide has been studied at multiple oral doses across its trial program. The pivotal Phase 2 dose-ranging trial (NCT01396213, n=342) evaluated three doses — 0.5 mg, 1 mg, and 2 mg — each dosed three times daily (TID), as an adjunct to a gluten-free diet, over a 12-week double-blind treatment period. Earlier Phase 1b/2b gluten-challenge work (NCT00889473) tested larazotide at doses in a similar range during a controlled, short-term gluten challenge rather than everyday dietary exposure. The subsequent Phase 3 trial (NCT03569007) evaluated larazotide against placebo for relief of persistent symptoms over a 12-week period in patients already on a gluten-free diet, but was terminated before reporting a definitive dose-response efficacy result, after an interim analysis did not support continuing the trial.
Amounts studied in animal research
Not consistently reported in the sources reviewed for this entry; larazotide’s public trial record is dominated by its human clinical program rather than a widely cited animal dosing literature.
Practitioner and community-reported protocols
Because larazotide has never been an approved or commercially marketed drug, there is not an established practitioner-prescribed dosing convention outside its clinical trials. Some compounding pharmacies and research-chemical vendors offer “larazotide” products referencing the 0.5–2 mg oral, multiple-times-daily range used in trials, but these are not clinically validated, approved, or standardized protocols. Community and vendor material largely repeats the trial dose figures rather than reporting independently derived protocols. Evidence category: community/vendor reported, tracing back to the published trial doses rather than an independent origin.
What circulates E5
Because larazotide has never been an approved or commercially marketed drug, there is no established practitioner-prescribed dosing convention outside its clinical trials.
Some compounding pharmacies and research-chemical vendors offer "larazotide" products referencing the 0.5 to 2 mg oral, multiple-times-daily range used in its trials, but these are not clinically validated, approved, or standardized protocols. Community and vendor material largely repeats the trial dose figures rather than reporting independently derived protocols, tracing back to the published trial doses rather than an independent origin.
Recorded as an observation about what is published elsewhere. No figure here is a dose, a protocol, or a recommendation, and nothing in this section is evidence that any amount is safe or effective.
Side effects, risks, and limitations
Across its published trials, larazotide has generally been reported as well tolerated, with gastrointestinal adverse effects (such as headache, nausea, and mild GI upset) reported at rates similar to or only modestly above placebo, consistent with a drug intended to act locally in the gut with limited systemic absorption. However, because the pivotal Phase 3 trial was terminated for futility rather than completed and fully reported, a complete, confirmatory safety and efficacy dataset from that trial is not available. Key limitations include: efficacy results across the trial program have been inconsistent between studies and endpoints (some Phase 2 measures reached statistical significance while others, and ultimately the Phase 3 primary endpoint outlook, did not); the drug has not been evaluated long-term outside trial settings; and any larazotide obtained outside a regulated clinical trial or approved pharmaceutical supply chain (for example, from research-chemical vendors) carries the same purity, identity, and quality-control uncertainties that apply to any unapproved peptide product.
Regulatory and developmental status
Larazotide acetate is not approved by the FDA or any other major regulatory agency for any indication. Its most advanced program was a Phase 3 trial in celiac disease patients with persistent symptoms on a gluten-free diet (NCT03569007, sponsor 9 Meters Biopharma, enrollment 307), which began in 2019 and was terminated in 2022 after an interim analysis indicated the study was unlikely to meet its primary endpoint (a binary responder analysis based on reduction in Celiac Disease Patient-Reported Outcome Abdominal Domain scores); the sponsor publicly announced that the interim analysis did not support continuing the trial. Earlier programs included a completed Phase 2b dose-ranging trial (NCT01396213) and a Phase 1b/2b gluten-challenge study (NCT00889473), both completed by 2013. Separately, smaller investigator-initiated Phase 2 studies of larazotide in Long COVID (NCT05747534, completed) and pediatric MIS-C (NCT05022303, terminated) have been run by Massachusetts General Hospital, independent of the celiac disease development program; these are not evidence of progress toward approval for celiac disease. As of the last verified date, no active, ongoing pivotal registration trial for larazotide in celiac disease was identified. Date verified: 2026-09-20.
Frequently asked questions
What is larazotide acetate?
It is a synthetic peptide drug candidate (AT-1001) designed to block zonulin-driven opening of intestinal tight junctions, studied primarily as an add-on treatment for celiac disease symptoms.
Did larazotide pass its Phase 3 trial?
No. Its Phase 3 trial (NCT03569007) was terminated in 2022 after an interim analysis showed it was unlikely to meet its primary endpoint; the sponsor, 9 Meters Biopharma, discontinued the study rather than complete it.
What dosage was studied in clinical trials?
The main Phase 2 dose-ranging trial tested 0.5 mg, 1 mg, and 2 mg doses taken three times daily over 12 weeks, in addition to a gluten-free diet.
Is larazotide approved for celiac disease?
No. It is not approved by the FDA or any other major regulator and is not commercially available as a prescription medication.
Does larazotide replace the need for a gluten-free diet?
No. In every trial conducted, larazotide was studied as an adjunct to an ongoing gluten-free diet, not as a substitute for it.
Has larazotide been studied for conditions other than celiac disease?
Yes, in smaller, separate investigator-initiated trials for Long COVID and pediatric multisystem inflammatory syndrome (MIS-C), based on the same proposed gut-permeability mechanism; these are exploratory and not part of the original celiac disease development program.
What side effects have been reported?
Trials have generally reported mild gastrointestinal effects such as headache and nausea, at rates similar to placebo in most studies, though a full safety dataset from the terminated Phase 3 trial was not completed.
Who developed larazotide?
It was originally developed by Alba Therapeutics as AT-1001, later advanced by Innovate Biopharmaceuticals, which became 9 Meters Biopharma.
What remains unknown?
Whether any future trial design could demonstrate a clear, reproducible clinical benefit; why efficacy signals were inconsistent across the drug’s trial history; and whether development will continue given the Phase 3 outcome.
Bottom line
Larazotide acetate has a genuinely deep clinical trial history for a peptide of this kind, including a large Phase 2 dose-ranging study and a full Phase 3 program — which is more rigorous testing than most peptides discussed on this site have received. But that same trial history ends, as of the last verified update, with the pivotal Phase 3 trial stopped for futility, not with a positive, approvable result. It has real published human dosing data (0.5–2 mg TID studied in Phase 2), but no confirmed clinical benefit sufficient for approval, and no established role outside of clinical trials.
Live registry status
These are the registered trials this page cites, pulled from ClinicalTrials.gov and refreshed automatically. Status and dates are what the registry currently shows. Listing a trial here does not mean it produced a positive result.
| Trial | Phase | Status | Sponsor | Enrolled | Primary completion | Registry updated |
|---|---|---|---|---|---|---|
| AT1001 for the Treatment of Long COVID NCT05747534 | Phase 2 | Completed | Massachusetts General Hospital | 107 | Jun 18, 2026 | Aug 18, 2026 |
| AT1001 for the Treatment of COVID-19 Related MIS-C NCT05022303 | Phase 2 | Terminated | Massachusetts General Hospital | 12 | May 15, 2024 | Jun 13, 2024 |
| Study to Evaluate the Efficacy and Safety of Larazotide Acetate for the Relief of CeD Symptoms NCT03569007 | Phase 3 | Terminated | 9 Meters Biopharma, Inc. | 307 | Jul 21, 2022 | Jul 26, 2022 |
| Study of the Efficacy of Larazotide Acetate to Treat Celiac Disease NCT00889473 | Phase 2 | Completed | 9 Meters Biopharma, Inc. | 42 | Nov 2009 | Sep 20, 2017 |
| A Double-blind Placebo-controlled Study to Evaluate Larazotide Acetate for the Treatment of Celiac Disease NCT01396213 | Phase 2 | Completed | 9 Meters Biopharma, Inc. | 342 | Aug 20, 2013 | Sep 20, 2017 |