LONDON and PHILADELPHIA, Sept. 16, 2026 (GLOBE NEWSWIRE) -- Avacta Therapeutics (AIM: AVCT), a life sciences company developing innovative, targeted oncology drugs, announces today that it has achieved clinical proof of mechanism for AVA6103, its next-generation controlled-release pre|CISION® peptide-drug conjugate (PDC) platform in the ongoing phase 1 FOCUS-01 trial.
Preliminary data from the Phase 1a trial of AVA6103 in patients with select solid tumors demonstrate proof of mechanism with two key findings:
The alignment of these critical datasets greatly increases our confidence that the safety profile, tumor selectivity and antitumor efficacy observed in the preclinical studies of AVA6103 will translate into the clinic.
The first head-to-head comparison of AVA6103 and Enhertu®, a marketed antibody drug conjugate (ADC) that targets HER2, demonstrates that AVA6103 shows better antitumor activity vs. Enhertu®, with deep and durable responses delivered by our dose dense regimen that has been applied in the FOCUS-01 trial.
Christina Coughlin, CEO of Avacta, commented:
"We are thrilled to report the proof of mechanism data with our first Next-Generation pre|CISION® molecule in the clinic, which continues to underscore the potential of our platform to make a significant difference to cancer patients. AVA6103 moved from candidate status to Investigational New Drug application in less than a year, and has now reached an initial clinical readout with excellent safety and PK data, showing it is performing exactly as expected from the data generated in our preclinical studies.
"Our head-to-head comparison with the marketed ADC Enhertu® shows better activity in a HER2+ preclinical model even at low FAP levels, with the dose-dense regimen demonstrating advantages of AVA6103 over traditional dosing of ADCs.
"We continue our discussions with potential partners on the Next Gen assets and these data greatly increase our partnering position across the Next Gen platform. The FOCUS-01 trial continues to enroll patients into two parallel arms and we look forward to providing further updates as the trial progresses.
"With FAP expression in ~90% of solid tumors, these clinical findings provide a gateway for Avacta to link multiple payloads and access previously unaddressable markets. This is a major inflection point for our Next Gen pre|CISION® platform, providing the opportunity for pipeline expansion to benefit patients and shareholders alike."
Clinical Proof of Mechanism of AVA6103 in the FOCUS-01 Trial
Trial design and progress:
The FOCUS-01 Phase 1 clinical trial of AVA6103 is enrolling patients with locally advanced or metastatic disease with one of six indications, being: colorectal cancer, pancreatic ductal adenocarcinoma, gastric/gastroesophageal junction cancers, cervical cancer or small cell lung cancer.
Safety, tolerability and PK data in the first three dose levels are presented. Screening is ongoing for enrollment of patients into both the Q2W and Q3W arms at dose level 4.
Safety data
Patients in the FOCUS-01 trial were treated with escalating doses (1.5 mg/m2 to 4.5 mg/m2) and assessed for safety and tolerability. These data were compared with published data for Enhertu® (releasing a highly similar payload, deruxtecan) and with conventional exatecan administered in the standard regimen (once daily for five days).
Pharmacokinetic data
Patients were assessed for plasma PK properties across the first three dose levels of AVA6103 and compared to the corresponding dose levels of Enhertu®.
Preclinical efficacy comparison with Enhertu®
Outlook
Enhertu® (trastuzumab deruxtecan; T-DXd) is a protease cleavable-linker ADC, approved for both breast cancer and gastric cancer indications (an AstraZeneca/Daiichi Sankyo product). Enhertu® is a registered trademark of Daiichi Sankyo Company, Limited and AstraZeneca.
Doi et al. 2017. Safety, pharmacokinetics, and antitumour activity of trastuzumab deruxtecan (DS-8201), a HER2-targeting antibody-drug conjugate, in patients with advanced breast and gastric or gastro-oesophageal tumours: a phase 1 dose-escalation study. Lancet Oncology (2017). 18(11):1512-22. doi: 10.1016/S1470-2045(17)30604-6
Rowinsky et al. 2000. DX-8951f, a hexacyclic camptothecin analog, on a daily-times-five schedule: a phase I and pharmacokinetic study in patients with advanced solid malignancies. Journal of Clinical Oncology (2000). 18(17):3151-63. doi:10.1200/JCO.200.18.17.31
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For further information from Avacta, please contact:
| Avacta Group plc Christina Coughlin, Chief Executive Officer | https://avacta.com/ via Cohesion Bureau |
| Strand Hanson Limited (Nominated Adviser) James Harris / Chris Raggett / James Dance | www.strandhanson.co.uk |
| Zeus (Broker) James Hornigold / George Duxberry / Dominic King | www.zeuscapital.co.uk |
| Cohesion Bureau Communications / Media / Investors Richard Jarvis | avacta@cohesionbureau.com |
About Avacta - https://avacta.com/
Avacta Therapeutics is a clinical-stage life sciences company expanding the reach of highly potent cancer therapies through its proprietary pre|CISION® platform. pre|CISION® is a payload delivery system based on a tumor-specific protease (Fibroblast Activation Protein or FAP) that is designed to concentrate highly potent payloads in the tumor microenvironment while sparing normal tissues. Avacta's innovative pre|CISION® peptide drug conjugates (PDC) are a novel entry to the XDC drug class, leveraging the success of antibody drug conjugates with alternative methods of delivery beyond antibodies.
Our pre|CISION® PDCs leverage this tumor-specific release mechanism in a small molecule format to provide unique benefits over traditional antibody drug conjugates (ADC), releasing active payload in the tumor and reducing systemic exposure and toxicity which enables dosing to be optimized to deliver the best outcomes for patients. The lead clinical program is AVA6103, a Next Generation FAP-enabled controlled release pre|CISION® version of exatecan that delivers the payload directly in the tumor with limited peripheral blood exposure and is currently in clinical development as a treatment for tumor types sensitive to exatecan including cervical cancer, HR+ breast cancer, small cell lung cancer, gastric cancer, colorectal cancer and pancreatic cancer.
About FAP-Exd (AVA6103)
AVA6103 is the second clinical candidate and is the first asset in the pipeline based on the Next Generation innovative pre|CISION® controlled release mechanism that provides for prolonged release of payload directly in the tumor, minimizing systemic exposure. AVA6103 is being evaluated in the FOCUS-01 Phase 1 trial (FAP-Exd in Oncologic Cancers with Unmet needS). Preclinical data suggest this approach has optimized payload delivery with a high intratumoral concentration and prolonged exposure of released payload in the tumor, coupled with limited systemic exposure to the released payload.
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