Toripalimab
DrugRecombinant humanized anti-PD-1 monoclonal antibody administered at 240 mg IV on day 3 of each 21-day cycle for 2 cycles preoperatively, followed by 240 mg IV Q3W postoperatively for up to 8 cycles.
Other names: JS001
NCT Number: NCT07757022
This study aims to integrate multi-omics data (genomics, transcriptomics, proteomics) from esophageal cancer patients with artificial intelligence and digital twin technology to construct personalized virtual patient models that precisely simulate individual responses to targeted therapies. Through a drug simulation platform, this study will rapidly screen potential effective drug combinations and optimize dosage and treatment regimens. The project attempts to replace portions of traditional clinical trials with virtual clinical trial technology, substantially shortening the R&D cycle, reducing costs, and effectively addressing the complexity of individualized treatment. Specifically, this study will conduct a head-to-head virtual clinical trial parallel to a real-world investigator-initiated trial (IIT) in patients with locally advanced esophageal squamous cell carcinoma, comparing the efficacy predictions from the virtual model with actual clinical outcomes. The ultimate goal is to explore the application of large-scale AI models in esophageal cancer targeted therapy, provide personalized treatment recommendations, and advance the implementation of precision medicine in esophageal cancer.
Trial opening soon.
Get Notified18 year–75 year
All sexes
Observational
This is a prospective, single-center, observational cohort study integrating virtual clinical trial technology. The study is designed to validate the feasibility and accuracy of AI-driven digital twin models for predicting treatment responses in esophageal cancer patients.
Background and Rationale:
China accounts for approximately half of the global esophageal cancer cases, with the highest incidence rates concentrated in the Taihang Mountain region, particularly Henan Province. Despite advances in early diagnosis and treatment, tumor heterogeneity and individual patient variability continue to limit therapeutic efficacy, especially in advanced-stage patients. Virtual clinical trial technology, which uses supercomputing to simulate drug efficacy and safety across virtual patient populations, offers a promising approach to accelerate drug screening while reducing costs and ethical constraints associated with conventional trials.
Study Population:
The study will enroll 400 patients with locally advanced (T1N1-3M0 or T2-3N0-3M0) thoracic esophageal squamous cell carcinoma (8th UICC-TNM staging), aged 18 to 75 years, with ECOG performance status 0-1 and adequate organ function. All patients must have received no prior antitumor therapy for esophageal cancer and be candidates for R0 resection.
Virtual Patient Modeling:
For each enrolled patient, peripheral blood samples will be collected prior to treatment initiation for whole-exome sequencing (WES). Multi-omics data will be integrated with clinical information to generate a personalized digital twin for each participant. These virtual patients will undergo simulated treatment and efficacy prediction using the drug efficacy prediction model.
Treatment Arms:
Surgery and Follow-up:
Surgery will be performed 4-8 weeks after the last neoadjuvant cycle using McKeown minimally invasive or open esophagectomy with two-field lymphadenectomy. Postoperative surveillance includes contrast-enhanced CT of the chest and upper abdomen and contrast-enhanced CT of the neck, performed every 3 months for 2 years, then every 6 months until year 5. Adverse events will be monitored throughout and graded according to CTCAE v5.0.
Outcomes:
The primary endpoint is Event-Free Survival (EFS), defined as the time from randomization to the first occurrence of inoperability, distant metastasis, local recurrence, or death from any cause, whichever occurs first. Secondary endpoints include pathological complete response (pCR) rate, overall survival (OS), disease-free survival (DFS), objective response rate (ORR), R0 resection rate, major pathological response (MPR) rate, quality of life (EORTC QLQ-C30 and QLQ-OES18), and safety (incidence of adverse events per CTCAE v5.0).
Virtual Clinical Trial Component:
Parallel to the real-world IIT, a virtual clinical trial will be conducted using the AI-powered drug simulation platform. The virtual predictions will be compared with actual clinical outcomes to evaluate the accuracy and reliability of the digital twin model. The study will assess the concordance between predicted and observed responses, including sensitivity, specificity, positive predictive value, and negative predictive value of the model.
Statistical Analysis:
Based on the primary endpoint EFS, a sample size of 400 patients (1:1 allocation) is planned, providing 90% power at a two-sided alpha level of 0.05 to detect a hazard ratio of 0.68, assuming a median EFS of 20 months in the control group. Efficacy analyses will be performed on the intention-to-treat (ITT) population using stratified log-rank tests and Cox proportional hazards models. Kaplan-Meier methods will estimate survival distributions. Safety analyses will be conducted on the safety set.
Study Duration:
The study is anticipated to enroll participants from January 2026 to June 2028, with final data collection completed by December 2028.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Recombinant humanized anti-PD-1 monoclonal antibody administered at 240 mg IV on day 3 of each 21-day cycle for 2 cycles preoperatively, followed by 240 mg IV Q3W postoperatively for up to 8 cycles.
Other names: JS001
Administered at 175 mg/m2 IV on day 1 of each 21-day cycle for 2 cycles preoperatively.
Other names: PTX
Administered at 75 mg/m2 IV on day 1 of each 21-day cycle for 2 cycles preoperatively.
Other names: DDP
Time frame: From randomization up to 36 months
Event-Free Survival (EFS) is defined as the time from randomization to the first occurrence of any of the following events: inoperability due to any cause, distant metastasis, local recurrence, or death from any cause, whichever occurs first. Distant metastasis is confirmed by: (1) pathological confirmation of squamous cell carcinoma metastasis in other organs, soft tissues, or skin; (2) PET-CT revealing non-local recurrent hypermetabolic soft tissue lesions; or (3) CT, MRI, or abdominal ultrasound diagnosis of distant metastasis.
Time frame: At the time of surgery (approximately 4-8 weeks after completion of neoadjuvant therapy)
Pathological complete response (pCR) is defined as the absence of viable tumor cells in the primary tumor and all resected lymph nodes (ypT0 ypN0) after neoadjuvant therapy, assessed according to the Ryan tumor regression grade (TRG) criteria.
Time frame: From randomization up to 36 months
Overall Survival (OS) is defined as the time from randomization to death from any cause. Participants who are alive at the time of analysis will be censored at the date of last known contact.
Time frame: From surgery up to 36 months
Disease-Free Survival (DFS) is defined as the time from curative-intent surgery to the first occurrence of disease recurrence (local or distant) or death from any cause, whichever occurs first.
Time frame: Up to 24 months
Objective Response Rate (ORR) is defined as the proportion of patients achieving either a complete response (CR) or partial response (PR) according to the Response Evaluation Criteria in Solid Tumors (RECIST) version 1.1 criteria.
Time frame: At the time of surgery (approximately 4-8 weeks after completion of neoadjuvant therapy)
R0 resection rate is defined as the proportion of patients achieving microscopically margin-negative resection, confirmed by the absence of tumor cells at the proximal, distal, and circumferential resection margins on pathological examination.
Time frame: At the time of surgery (approximately 4-8 weeks after completion of neoadjuvant therapy)
Major pathological response (MPR) is defined as the proportion of patients with ≤10% viable tumor cells remaining in the resected primary tumor specimen after neoadjuvant therapy, assessed according to the Ryan tumor regression grade (TRG) criteria.
Time frame: From randomization up to 36 months
Quality of life assessed using the EORTC QLQ-OES18 esophageal cancer-specific module. Scores range from 0 to 100; higher scores indicate worse symptoms. Administered at baseline and at each follow-up visit.
Time frame: From randomization up to 36 months
Quality of life assessed using the European Organisation for Research and Treatment of Cancer (EORTC) Quality of Life Questionnaire Core 30 (QLQ-C30) version 3.0. Scores range from 0 to 100; higher scores indicate better functioning and quality of life for global health status and functional scales, while higher scores indicate worse symptoms for symptom scales. Administered at baseline and at each follow-up visit.
Time frame: From the signing of informed consent through 30 days after the last dose of study treatment (or 90 days for serious adverse events)
Incidence and severity of adverse events (AEs) and serious adverse events (SAEs), graded according to the National Cancer Institute Common Terminology Criteria for Adverse Events (NCI CTCAE) version 5.0.
Contact information is provided by the study sponsor or research team.
Song, M.D./Ph.D
CONTACT
Yan Zheng, M.D./Ph.D
CONTACT
(+86)0371-65587610
Henan Cancer Hospital
Other Gov
Construction of Artificial Intelligence Model for Esophageal Cancer Digital Twin Patients and Drug Efficacy Simulation Verification Based on Supercomputing Platform and Multi-Omics Data
Acronym: ESCA-DT
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View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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