Clinical trial · Interventional
Perioperative Treatment of High-risk Resectable CCA With HAIC Plus A+T: Neobrave CCA
Perioperative Treatment of High-risk Resectable Cholangiocarcinoma With Hepatic Arterial Infusion Chemotherapy (HAIC) Combined With Atezo/Bevacizumab: a Multicenter Phase II Study (NeoBrave CCA)
- Source
- ClinicalTrials.gov
- Retrieved
- Sep 8, 2026
- Layer
- normalized (units and labels harmonized; values unchanged)
- Run
- ING-CLINICALTRIALS-20260908-000001
Why stopped (as posted): Difficulty of participants enrollment
Summary
Brief summary (as posted)
Among resectable biliary tract cancers (BTC) patients, surgery has historically been the standard treatment, but even with curative surgery, the cure rates remain relatively low, with most patients relapsing in the short term and a 5-year survival rate of approximately 50% or lower. In BTC, numerous exploratory studies on neoadjuvant treatment have been conducted, yielding varying results, but overall indicating that neoadjuvant therapy can enhance R0 resection rates and prolong survival in certain patients, particularly those with borderline resectable and locally advanced BTC. Currently, there remains a lack of large prospective randomized controlled phase III clinical trials confirming the exact benefits of neoadjuvant and adjuvant therapies for BTC. The SWOG 1815 study is a randomized, open-label phase III trial comparing GAP with Gemcitabine/Cisplatin (GC) in patients with advanced BTC. In exploratory subgroup analyses, GAP improved mOS compared to GC in patients with locally advanced disease (19.2 vs. 13.7 months; HR 0.67, 95% CI 0.42-1.06, p = 0.09). Thus, patients with locally advanced disease may benefit more from GAP treatment. In another multi-institutional, single-arm, phase II trial, patients received a total of 4 cycles of preoperative GAP (Gemcitabine 800 mg/m2, Cisplatin 25 mg/m2, nab-Paclitaxel 100 mg/m2, administered on days 1 and 8 of a 21-day cycle) before attempting radical surgical resection. The median follow-up time for all patients was 17 months; the disease control rate was 90%. Therefore, the preoperative neoadjuvant therapy of Gemcitabine, Cisplatin, and nab-Paclitaxel for iCCA is feasible and safe, with no adverse effects on perioperative outcomes. More recently, neoadjuvant D + GemCis was confirmed to result in a higher surgical resection rate among patients with locally advanced BTC, and surgical resection was associated with higher survival rates. The investigators previously explored a prospective phase II study and showed promising results of HAIC using oxaliplatin and 5-fluorouracil for perihilar cholangiocarcinoma (pCCA), with an objective response rate (ORR) of 67.6%, a mPFS of 12.2 months, and a mOS of 20.5 months. Another phase II prospective study enrolled 32 untreated BTC patients and used HAIC combined with anti-PD-1 monoclonal antibody and bevacizumab as a first-line treatment regimen, the ORR was 84.3%, and the disease control rate (DCR) was 96.9%, with one-year PFS and OS rates of 53.8% and 80.4%, respectively.
Conditions
Conditions (2)
Free-text conditions as registered, with the CancerIndex entity they were reconciled to and the match type.
| Condition (as posted) | Mapped entity | Match | Confidence |
|---|---|---|---|
| Intrahepatic Cholangiocarcinoma (Icc) | Intrahepatic Cholangiocarcinoma | ONTOLOGY_EXACT | 0.85 |
| Perihilar Cholangiocarcinoma | — | UNRESOLVED | — |
Interventions
Interventions (1)
| Intervention | Type | Mapped drug | Match |
|---|---|---|---|
| Gemcitabine Oxaliplatin and 5FU | Combination Product | — | UNRESOLVED |
Design
Arms and outcomes
Arms (1)
- type
- EXPERIMENTAL
- label
- Neobrave
- description
- Perioperative treatment
- interventionNames
- Combination Product: Gemcitabine Oxaliplatin and 5FU
Primary outcomes (1)
- measure
- MPR
- timeFrame
- From the date of treatment beginning to the date of pathological results after the surgery, assessed up to 6 months since the date of treatment beginning
- description
- the proportion of residual active tumor cells ≤50%
Secondary outcomes (8)
- measure
- pCR
- timeFrame
- From the date of treatment beginning to the date of pathological results after the surgery, assessed up to 6 months since the date of treatment beginning
Eligibility
Eligibility (as posted)
- Sex
- All
- Minimum age
- 18 Years
- Maximum age
- 80 Years
Show eligibility criteria text
Inclusion Criteria: 1\. Age: 18-80 years, regardless of gender; 2. Diagnosis of intrahepatic cholangiocarcinoma or perihilar cholangiocarcinoma confirmed by pathological tissue/cytological diagnosis; 3. Meeting the criteria for surgical resection; 4. Presence of high-risk recurrence factors: iCCA (single mass \>5cm, or multiple lesions, or accompanied by satellite lesions, or accompanied by portal vein/hepatic vein invasion, or CA199 \>200U/ml); pCCA (invasion of secondary branches of the bile duct, or invasion of portal vein/hepatic artery, or accompanied by intrahepatic metastasis); 5. Eastern Cooperative Oncology Group (ECOG) performance status (PS) score of 0-1; 6. Child-Pugh class A; 7. Normal major organ function, meeting the following standards: 1. Blood routine examination: A. Hb≥90 g/L; B. ANC≥1.5×10\^9/L; C. PLT≥75×10\^9/L; 2. Biochemical examination: A. ALB ≥30g/L; B. ALT and AST\<5×ULN; C. TBiL ≤2×ULN; D. Creatinine ≤1.5×ULN; (3) Coagulation function: A. International normalized ratio (INR) ≤1.5×ULN; B. Activated partial thromboplastin time (APTT) ≤1.5×ULN. 8. Subjects voluntarily join this study, sign informed consent, have good compliance, and cooperate with follow-up. Exclusion Criteria: 1. Regional multiple lymph node metastases or fusion, retroperitoneal lymph node metastases; 2. Peritoneal metastasis, distant metastasis; 3. Previous systemic treatment, including but not limited to chemotherapy, targeted therapy, immunotherapy; 4. Previous local treatment, including but not limited to HAIC, TACE, TARE, ablation, radiotherapy, etc.; 5. Severe hepatic artery variation; 6. Allergy to contrast agents; 7. Allergy to oxaliplatin; 8. Vaccination with live attenuated vaccine within 4 weeks prior to first administration or planned during the study period; 9. Presence of \> grade 1 peripheral neuropathy; 10. Presence of any active autoimmune disease or history of autoimmune disease; 11. Complication of other malignancies (except for basal cell or squamous cell skin cancer or cervical carcinoma in situ that was treated curatively); 12. Human immunodeficiency virus (HIV) infection or known acquired immune deficiency syndrome (AIDS); 13. Within 6 months prior to entering the study, occurrences of the following: myocardial infarction, severe/unstable angina, NYHA class II heart failure or above, poorly controlled arrhythmias (including QTcF interval male \>450 ms, female \>470 ms, QTcF interval calculated using the Fridericia formula), symptomatic congestive heart failure; 14. Hypertension that cannot be well controlled with antihypertensive medications (systolic blood pressure ≥140 mmHg or diastolic pressure ≥90 mmHg); 15. Abnormal coagulation function (INR\>1.5 or APTT\>1.5×ULN), with bleeding tendency or currently undergoing thrombolytic therapy, anticoagulant therapy, or antiplatelet therapy; 16. Known hereditary or acquired bleeding and thrombosis tendencies, such as hemophilia, coagulation function disorders, thrombocytopenia, splenomegaly, etc.; 17. Significant hemoptysis occurring within 2 months before entering the study, or daily sputum blood volume reaching half a teaspoon (2.5 ml) or more; 18. Patients at risk of gastrointestinal bleeding, including: (1) Presence of active peptic ulcer lesions; (2) History of melena or hematemesis within the past 3 months; (3) For stool occult blood (+) or (+/-), need to retest stool routine within 1 week; if still (+) or (+/-), esophagogastroduodenoscopy is needed; if ulcers or bleeding diseases are present and considered to have potential bleeding risks by the treating physician; 19. Thrombotic events occurring within 6 months prior to entering the study, such as cerebrovascular accidents (including transient ischemic attacks, intracerebral hemorrhage, cerebral infarction), deep vein thrombosis, and pulmonary embolism; 20. Infections requiring drug intervention occurring within 4 weeks prior to first medication (such as requiring intravenous antibiotics, antifungal or antiviral medications), or fever of unknown origin \>38.5°C during screening/ prior to first medication; 21. Participation in any other drug clinical trials within 4 weeks prior to first administration; 22. Known history of substance abuse or drug addiction; 23. Presence of other serious physical or mental diseases or abnormal laboratory tests that may increase the risk of participation in the study or interfere with study results, and patients deemed unsuitable for participation in this study by the investigator.
References
Publications (30)
- BACKGROUNDWang X, Hu J, Cao G, Zhu X, Cui Y, Ji X, Li X, Yang R, Chen H, Xu H, Liu P, Li J, Li J, Hao C, Xing B, Shen L. Phase II Study of Hepatic Arterial Infusion Chemotherapy with Oxaliplatin and 5-Fluorouracil for Advanced Perihilar Cholangiocarcinoma. Radiology. 2017 May;283(2):580-589. doi: 10.1148/radiol.2016160572. Epub 2016 Nov 7. PMID 27820684
- BACKGROUNDFranssen S, Holster JJ, Jolissaint JS, Nooijen LE, Cercek A, D'Angelica MI, Homs MYV, Wei AC, Balachandran VP, Drebin JA, Harding JJ, Kemeny NE, Kingham TP, Klumpen HJ, Mostert B, Swijnenburg RJ, Soares KC, Jarnagin WR, Groot Koerkamp B. Gemcitabine with Cisplatin Versus Hepatic Arterial Infusion Pump Chemotherapy for Liver-Confined Unresectable Intrahepatic Cholangiocarcinoma. Ann Surg Oncol. 2024 Jan;31(1):115-124. doi: 10.1245/s10434-023-14409-z. Epub 2023 Oct 9. PMID 37814188
- BACKGROUNDFranssen S, Soares KC, Jolissaint JS, Tsilimigras DI, Buettner S, Alexandrescu S, Marques H, Lamelas J, Aldrighetti L, Gamblin TC, Maithel SK, Pulitano C, Margonis GA, Weiss MJ, Bauer TW, Shen F, Poultsides GA, Marsh JW, Cercek A, Kemeny N, Kingham TP, D'Angelica M, Pawlik TM, Jarnagin WR, Koerkamp BG. Comparison of Hepatic Arterial Infusion Pump Chemotherapy vs Resection for Patients With Multifocal Intrahepatic Cholangiocarcinoma. JAMA Surg. 2022 Jul 1;157(7):590-596. doi: 10.1001/jamasurg.2022.1298. PMID 35544131
- BACKGROUNDFinn RS, Qin S, Ikeda M, Galle PR, Ducreux M, Kim TY, Kudo M, Breder V, Merle P, Kaseb AO, Li D, Verret W, Xu DZ, Hernandez S, Liu J, Huang C, Mulla S, Wang Y, Lim HY, Zhu AX, Cheng AL; IMbrave150 Investigators. Atezolizumab plus Bevacizumab in Unresectable Hepatocellular Carcinoma. N Engl J Med. 2020 May 14;382(20):1894-1905. doi: 10.1056/NEJMoa1915745. PMID 32402160
- BACKGROUNDHack SP, Verret W, Mulla S, Liu B, Wang Y, Macarulla T, Ren Z, El-Khoueiry AB, Zhu AX. IMbrave 151: a randomized phase II trial of atezolizumab combined with bevacizumab and chemotherapy in patients with advanced biliary tract cancer. Ther Adv Med Oncol. 2021 Jul 31;13:17588359211036544. doi: 10.1177/17588359211036544. eCollection 2021.