Skip to content

Effect of Endoscopic Papillary Balloon Dilation on ERCP Complications

Effect of Different Endoscopic Papillary Balloon Dilation Duration Time on Complications of Common Bile Duct Stone Patient

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02510495
Enrollment
1920
Registered
2015-07-29
Start date
2016-02-29
Completion date
2017-11-01
Last updated
2019-01-25

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Complications

Keywords

Sphincterotomy, Dilatation, Common bile duct, Pancreatitis

Brief summary

The purpose of this study is to determine how different endoscopic papillary balloon dilatation (EPBD) duration time affects the complications after endoscopic retrograde cholangiopancreatography (ERCP) in the treatment of common bile duct stones.

Detailed description

Common bile duct (CBD) stone is a common disease with high morbidity. Half century ago, surgery with bile duct exploration and T-tube drainage was the only radical treatment for the stones until a revolutionary technique was reported in 1970, which possible to remove stone by means of endoscopic sphincterotomy (EST) during endoscopic retrograde cholangiopancreatography (ERCP). Since then, EST became a very promising measure for both patients and doctors to meet the purpose of minimally invasive treatment. However, EST remains an advanced technique which requires high skills of the endoscopist. As far as patients who have anatomical biliary abnormalities, such as papillary diverticulum, are more likely to end up with severe complications such as bleeding and perforation during EST procedure. On the other hand, EST may also lead to permanent dysfunction of the Oddi's sphincter. It is currently reported that a growing number of young patients, even some children are managed with EST which is still debated due to the existence of some long-term complications. Endoscopic papillary balloon dilatation (EPBD) is an alternative technique developed to achieve the same purpose as EST but preserving Oddi's sphincter' function partially, and more than that, EPBD is easy to grasp for endoscopist. By using a columnar balloon, Oddi's sphincter can be expanded without direct transection, and the temporary relaxation of Oddi's sphincter makes it possible to remove the stones and the rest of the procedures as well. Removing common bile duct stone by EPBD was firstly reported in 1982 and proved to be safe and efficient. However, clinical observations have been found that simple EPBD has a higher incidence of developing acute pancreatitis after ERCP, especially in patients with intact papilla. The speculated reason for high post-ERCP pancreatitis (PEP) rate might be pancreatic duct orifice edema resulted from inadequate destroy of Oddi's sphincter during a balloon dilatation, leading the pancreatic duct obstructed and high ductal pressure afterward. Retrospective study has indicated the PEP rate of post-EPBD by 10% which was considered slightly higher than ordinary EST before a new modified method has been introduced by a small EST prior to EPBD. Currently small EST plus EPBD has been increasingly used in clinical and proven to be an effective treatment for improving the success rate of the common bile duct stone removal, preserving Oddi's sphincter function and lowering long-term complications. Dedicate practitioners conducted many kinds of studies about reducing post-ERCP complications, and nowadays, some of them focus on the dilation time of EPBD which would be suspected as the key point of the issues. Nonetheless, more institutes are willing to join in EPBD research as the universal concerns for post-ERCP complications increases, no common agreements achieved at present. From some prospected data, we might see confused results. Slowly inject balloon with a contrast agent and keep dilating for 1-2 minutes, until 15 seconds after the image of papilla and balloon waist disappeared is able to get the same stone removal rate as regular procedure does, and a slower balloon filling performance is helpful to protect the Oddi's sphincter function and reduce post-ERCP complications. However, other studies conclude there are no difference no matter in stone removal rate or post-ERCP pancreatitis instead of blood amylase, in which arms are 20 seconds compared 60 seconds and 30 seconds compared 60 seconds. Interestingly, there is another inspiring randomized controlled trial (RCT) study which prolong the dilation time up to 5 minutes. The author figured that PEP rate of five minutes group is smaller than that of the 1-minute group as well as stone removal. Few studies concerning the optimal duration time of EPBD which is very important to patients' safety and maximum utilization of the easier handled EPBD procedure compared to EST. Therefore this large volume multicenter prospective randomize control study targets on how different EPBD duration management affect the complications after ERCP which attempts to discover a promising method for safe therapy in common bile duct stones.

Interventions

PROCEDURE30 group

A small sphincterotomy (EST) was performed prior to the EPBD, the length of a small sphincterotomy was considered as no larger than the range which from the orifice to the top one-third of the papilla. a CRE balloon (diameter 8, 9, 10, 11, 12, 13.5, 15; Boston Scientific) was chosen according to the diameter of bile duct. It was placed across the papilla orifice and then gradually filled with diluted contrast in 15 seconds. When the waist disappeared, the balloon was inflated till 30 seconds prior deflated. The stones were then retrieved by a basket or retrieval balloon. Mechanical lithotripsy was used if necessary.

PROCEDURE60 group

A small sphincterotomy (EST) was performed prior to the EPBD, the length of a small sphincterotomy was considered as no larger than the range which from the orifice to the top one-third of the papilla. a CRE balloon (diameter 8, 9, 10, 11, 12, 13.5, 15; Boston Scientific) was chosen according to the diameter of bile duct. It was placed across the papilla orifice and then gradually filled with diluted contrast in 15 seconds. When the waist disappeared, the balloon was inflated till 60 seconds prior deflated. The stones were then retrieved by a basket or retrieval balloon. Mechanical lithotripsy was used if necessary.

PROCEDURE180 group

A small sphincterotomy (EST) was performed prior to the EPBD, the length of a small sphincterotomy was considered as no larger than the range which from the orifice to the top one-third of the papilla. a CRE balloon (diameter 8, 9, 10, 11, 12, 13.5, 15; Boston Scientific) was chosen according to the diameter of bile duct. It was placed across the papilla orifice and then gradually filled with diluted contrast in 15 seconds. When the waist disappeared, the balloon was inflated till 180 seconds prior deflated. The stones were then retrieved by a basket or retrieval balloon. Mechanical lithotripsy was used if necessary.

PROCEDURE300 group

A small sphincterotomy (EST) was performed prior to the EPBD, the length of a small sphincterotomy was considered as no larger than the range which from the orifice to the top one-third of the papilla. a CRE balloon (diameter 8, 9, 10, 11, 12, 13.5, 15; Boston Scientific) was chosen according to the diameter of bile duct. It was placed across the papilla orifice and then gradually filled with diluted contrast in 15 seconds. When the waist disappeared, the balloon was inflated till 300 seconds prior deflated. The stones were then retrieved by a basket or retrieval balloon. Mechanical lithotripsy was used if necessary.

Sponsors

Hepatopancreatobiliary Surgery Institute of Gansu Province
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
TRIPLE (Subject, Investigator, Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Age≥18 years * CBD stone patients, stone diameter≤1.5cm, CBD diameter≤2cm

Exclusion criteria

* Unwillingness or inability to consent for the study * Coagulation dysfunction (INR\> 1.3) and low peripheral blood platelet count (\<50×109 / L) or using anti-coagulation drugs * Previous EST or EPBD * Prior surgery of Bismuth Ⅱ and Roux-en-Y * Benign or malignant CBD stricture * Preoperative coexistent diseases: acute pancreatitis, GI tract hemorrhage, severe liver disease, primary sclerosing cholangitis (PSC), septic shock * Combined with Mirizzi syndrome and intrahepatic bile duct stones * Malignant disease * Biliary-duodenal fistula confirmed during ERCP * Pregnant women

Design outcomes

Primary

MeasureTime frameDescription
Post-ERCP pancreatitisWithin 7 days after ERCPUpper abdominal pain with serum amylase elevation no less than 462 U/L after the procedure

Secondary

MeasureTime frameDescription
Rate of mechanical lithotripsyUp to 2 hoursThe proportion of patients whose stones need mechanical lithotripsy before removed
X-ray exposure timeUp to 2 hoursThe total radiography time during ERCP
HemorrhageWithin 7 days after ERCPMaintained positive fecal occult blood test appears
PerforationWithin 7 days after ERCPCT scan shows retroperitoneal space fluid or gas
Acute cholangitisWithin 7 days after ERCPIntermittent chills and fever after ERCP
Success rate of stone extraction in the initial attemptUp to 2 hoursThe proportion of patients with all stones removed in first attempt after EPBD
Operation timeUp to 2 hoursFrom successful biliary intubation to end of operation
Average hospital stayUp to 30 daysLength of stay in hospital
Stone clearance rateUp to 2 hoursThe proportion of patients with all stones removed
Pancreatic duct insertion timesUp to 2 hoursTimes of any accessories goes into the pancreatic duct, no matter how depth
PainWithin 7 days after ERCPUpper abdominal pain after ERCP measured by Numerical Rating Scale

Countries

China

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Mar 3, 2026