Biliary Drainage During Neoadjuvant Chemotherapy in Pancreatic Cancer: Evidence and Practical Recommendations
Simple Summary
Abstract
1. Introduction
2. Rationale for Preoperative Biliary Drainage in the NAC Setting
3. Endoscopic Transpapillary Drainage via ERCP
4. 10 mm Standard vs. 6 mm “Slim” Metal Stents
5. EUS-Guided Biliary Drainage as a Salvage or Primary Strategy
6. Percutaneous Transhepatic Biliary Drainage
7. Key Takeaways and Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
References
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| Study (Year) | Design/Setting | Population | Comparison | Key Biliary Outcomes | Surgery-Related Outcomes | Key NAC/Surgery-Relevant Message |
|---|---|---|---|---|---|---|
| Gardner et al. (2016) [12] | RCT | PC on NAT | 10 mm CSEMS vs. 10 mm USEMS vs. PS | CSEMS demonstrated longer time to occlusion | Attempted surgical resection rates equivalent | CSEMS associated with fewer NAC delays; cost-effectiveness comparable |
| Seo et al. (2019) [11] | RCT | PC on NAT | 8/10 mm CSEMS vs. 8/10-mm USEMS | No significant difference in clinical success, stent patency, or AEs | Curative-intent surgery rates and operative difficulty similar between groups | Both covered and uncovered SEMSs acceptable; selection should consider removability and risk of tumor ingrowth |
| Tamura et al. (2021) [13] | RCT | BR PC on NAC | 10 mm CSEMS vs. PS | CSEMS showed fewer RBO and reintervention events | No significant difference in postoperative AEs | CSEMS better suited for the NAC course than PS |
| Lyu et al. (2023) [15] | Meta-analysis | PC on NAT | SEMS vs. PS | SEMS associated with reduced RBO and reintervention rates | No significant differences in postoperative complications, bile leakage, or R0 resection rates | SEMS supports uninterrupted NAC compared with PS |
| Kumar et al. (2023) [14] | Meta-analysis | PC on NAT or CRT | SEMS vs. PS | SEMS demonstrated better patency and fewer stent-related AEs | R0 resection and postoperative complication rates equivalent | SEMS minimized treatment interruptions |
| Strategy | Patency & RBO | Reinterventions | AEs (Biliary-Specific) | Impact on NAC | Impact on Surgery & QOL |
|---|---|---|---|---|---|
| Endoscopic Plastic Stent | Short patency; high rate of RBO within 1–2 months | Planned exchanges every 4–8 weeks; frequent unscheduled ERCPs | Cholangitis common; PEP possible (~5% per ERCP) | Frequent interruptions or delays due to clogging or cholangitis | Internal drainage; easy removal at surgery; frequent interventions negatively affect QOL |
| Endoscopic Metal Stent (10 mm CSEMS) | Long patency; low RBO rates throughout typical NAC | Usually none; reintervention only if RBO or stent-related event occurs | Low cholangitis rate; PEP ~5%; cholecystitis ~5%; stent migration ~5% | Fewer biliary events, enabling uninterrupted NAC; no scheduled exchanges required | Internal drainage; typically removable during surgery; minimal impact on surgical field |
| “Slim” Metal Stent (6 mm CSEMS) | Generally good patency; RBO rates low to moderate (data heterogeneous) | Usually none; possible increase if RBO/stent-related events occur (conflicting evidence) | Some studies show lower rates of cholecystitis and PEP; others report higher migration or RBO rates | Promising for maintaining uninterrupted NAC, though evidence remains inconsistent | Internal drainage; removal feasible; clinical role not yet established (limited to retrospective data) |
| EUS-Guided Biliary Drainage (EUS-CDS or EUS-HGS) | High patency during NAC; durable internal drainage tract | Typically none; reintervention if RBO occurs | Low cholangitis rate; bile leakage, abscess, or bleeding possible; pancreatitis rare | Generally allows for continuation of NAC; delays occur mainly if EUS-related AEs develop | Internal drainage; CDS stent usually resected with specimen; HGS tract outside surgical field; requires high procedural expertise |
| Percutaneous Transhepatic Biliary Drainage | Effective while catheter remains patent; requires maintenance | Routine tube exchanges every 4–6 weeks; dislodgement or occlusion relatively common | Cholangitis and catheter-site infections possible; bleeding and tract seeding rare but reported | NAC can proceed if patient stable, but infections or revisions may cause treatment delay; higher procedural burden | External drainage device reduces QOL; risk of tract-related issues and tumor implantation; surgery feasible but with higher infection risk |
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Inoue, T.; Nakamura, M.; Ito, K. Biliary Drainage During Neoadjuvant Chemotherapy in Pancreatic Cancer: Evidence and Practical Recommendations. Cancers 2026, 18, 467. https://doi.org/10.3390/cancers18030467
Inoue T, Nakamura M, Ito K. Biliary Drainage During Neoadjuvant Chemotherapy in Pancreatic Cancer: Evidence and Practical Recommendations. Cancers. 2026; 18(3):467. https://doi.org/10.3390/cancers18030467
Chicago/Turabian StyleInoue, Tadahisa, Masanao Nakamura, and Kiyoaki Ito. 2026. "Biliary Drainage During Neoadjuvant Chemotherapy in Pancreatic Cancer: Evidence and Practical Recommendations" Cancers 18, no. 3: 467. https://doi.org/10.3390/cancers18030467
APA StyleInoue, T., Nakamura, M., & Ito, K. (2026). Biliary Drainage During Neoadjuvant Chemotherapy in Pancreatic Cancer: Evidence and Practical Recommendations. Cancers, 18(3), 467. https://doi.org/10.3390/cancers18030467

