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This is a randomized clinical trial examining the use of a stiffening wire to increase depth of maximal insertion during double and single balloon enteroscopy.
BACKGROUND Small bowel endoscopy has undergone a paradigm shift in the past decade. Prior to this, the small bowel was considered a 'black hole' due to our inability to visualize it endoscopically and the limited sensitivity of radiologic studies. This all changed with the development of capsule endoscopy, which gave physicians the ability to visualize the full length of the small bowel. Although widely considered a great leap forward, video capsule endoscopy is limited by its inability to perform any form of endoscopic intervention. Thus, something was needed to biopsy and treat the abnormalities detected with capsule endoscopy. Double balloon enteroscopy (DBE) was invented in Japan in 2001. Using an overtube and two inflatable balloons, DBE enabled deep intubation of the small bowel through a series of push and pull maneuvers to accordion the small bowel over the overtube. This procedure proved highly successful in the diagnosis and treatment of small bowel diseases. Subsequently, single balloon enteroscopy (SBE) was developed consisting of a single overtube balloon. Collectively, these techniques are called balloon assisted enteroscopy.
Balloon assisted enteroscopy can be performed using an antegrade (through the mouth) or retrograde (through the anus) approach. The two approaches are considered complimentary since the antegrade approach enables visualization of the proximal and mid small bowel while the distal portion is seen with the retrograde approach. Complete enteroscopy, or visualization of the entire small intestine, occurs when an antegrade enteroscopy is performed and the tattoo left at the depth of maximal insertion is reached during a subsequent retrograde procedure. Although considered to be the gold standard for enteroscopy, this is rarely achieved outside of expert centres in Japan. The reason for this is because of loop formation in the small intestine, commonly referred to as looping (Figure 1). Looping typically worsens as the depth of insertion increases and eventually prevents forward migration of the enteroscope.
Looping is not unique to enteroscopy and is a common problem encountered during colonoscopy. During colonoscopy, loops can be removed, by pulling back and torqueing the colonoscope. However, the loop often reforms when the colonoscope is pushed forward again. To counter this problem, colonoscopes have been developed with adjustable stiffness that can be changed during the procedure (Olympus Inc., Tokyo, Japan). Using this feature, the loop can be removed and the colonoscope stiffened prior to pushing forward to prevent loop reformation.
Although variable stiffness is available in colonoscopes, the same technology cannot be incorporated into enteroscopes due to its much thinner diameter. Recently, an enteroscopy stiffening wire has been developed by Zutron Medical LLC (Kansas, USA). This through the scope wire can be inserted as needed to increase the stiffness of the enteroscope. In theory, this should improve the performance of DBE/SBE and translate into deeper insertion although this has never been investigated. The objective of this randomized clinical trial is to answer this question.
STUDY DESIGN
This is a single centre randomized clinical trial assessing whether a stiffening wire increases the depth of maximal insertion during DBE/SBE. Due to the nature of the procedure, blinding of the endoscopist is impossible. This is because even if a placebo wire is used, the enteroscope feels sufficiently different to enable unmasking. To mitigate the risk of bias, the enteroscopy will be recorded and outcomes assessed in a blinded fashion using the recorded video. Randomization will be in blocks of varying sizes and performed using sequentially labelled sealed envelopes.
STUDY INTERVENTION
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| Label | Type | Description | Intervention Names |
|---|---|---|---|
| Stiffening wire | Experimental | A stiffening wire inserted into the instrument channel of the double/single balloon enteroscope will be used. |
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| Standard technique | Active Comparator | The double/single balloon enteroscope will be used without the stiffening wire as per standard technique. |
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| Name | Type | Description | Arm Group Labels | Other Names |
|---|---|---|---|---|
| Stiffening wire | Device | The stiffening wire will be inserted into the double/single balloon enteroscope. |
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| Measure | Description | Time Frame |
|---|---|---|
| Distance gained beyond depth of maximal insertion 1 | Defined as the distance between depth of maximal insertion 1 and depth of maximal insertion 2. In cases where there is no depth of maximal insertion 2, a value of zero will be assigned. Distance will be measured using the fold counting method as follows: distance = # fold x 0.904 cm/fold. | Measured once at the time of endoscopy |
| Measure | Description | Time Frame |
|---|---|---|
| Final depth of insertion | Defined as the distance between depth of maximal insertion 2 (or depth of maximal insertion 1 if primary outcome = 0) and the pylorus. Distance will be measured using the fold counting method. | Measured once at the time of endoscopy |
| Small bowel diagnostic rate |
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Inclusion Criteria:
Exclusion Criteria:
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| Name | Affiliation | Role |
|---|---|---|
| Michael Sey, MD | London Health Sciences Centre | Principal Investigator |
| Facility | Status | City | State | ZIP | Country | Contacts |
|---|---|---|---|---|---|---|
| London Health Sciences Centre | London | Ontario | N6A 5W9 | Canada |
| PubMed Identifier | Type | Citation | Retractions |
|---|---|---|---|
| 11174299 | Background | Yamamoto H, Sekine Y, Sato Y, Higashizawa T, Miyata T, Iino S, Ido K, Sugano K. Total enteroscopy with a nonsurgical steerable double-balloon method. Gastrointest Endosc. 2001 Feb;53(2):216-20. doi: 10.1067/mge.2001.112181. | |
| 15551254 | Background | Yamamoto H, Kita H, Sunada K, Hayashi Y, Sato H, Yano T, Iwamoto M, Sekine Y, Miyata T, Kuno A, Ajibe H, Ido K, Sugano K. Clinical outcomes of double-balloon endoscopy for the diagnosis and treatment of small-intestinal diseases. Clin Gastroenterol Hepatol. 2004 Nov;2(11):1010-6. doi: 10.1016/s1542-3565(04)00453-7. |
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| Standard technique | Device | The double/single balloon enteroscope will be used without the stiffening wire as per standard technique. |
|
Small bowel diagnosis (dichotomous variable, yes/no) is defined as the visualization of a small bowel abnormality, such as an angioectasia, Crohn's disease, stricture, polyp, mass, or foreign body). Red spots are not included. |
| Measured once at the time of endoscopy |
| Small bowel intervention rate | Small bowel therapeutics (dichotomous variable, yes/no) is defined as the application of endoscopic intervention to a small bowel abnormality, such as biopsy of a polyp/mass/ulcer, APC, dilation, polypectomy, or foreign body retrieval. | Measured once at the time of endoscopy |
| Patient comfort survey | a. To be completed after the procedure in the recovery room using a visual analogue scale (1=no pain, 10=severe pain). Patients will be assessed for intraprocedural and postprocedural pain. | Measured once at the time of endoscopy |
| Serious Adverse events | Perforation, bleeding requiring blood transfusion or hospital admission, pancreatitis, aspiration, significant hypotension (systolic blood pressure < 80 mmHg), hypoxia (oxygen saturation < 85%), or bradycardia (heart rate < 45 beats per minute). Assessed on day 0 and 7. | Measured once at the time of endoscopy |
| 15990821 | Background | May A, Nachbar L, Ell C. Double-balloon enteroscopy (push-and-pull enteroscopy) of the small bowel: feasibility and diagnostic and therapeutic yield in patients with suspected small bowel disease. Gastrointest Endosc. 2005 Jul;62(1):62-70. doi: 10.1016/s0016-5107(05)01586-5. |
| 17957636 | Background | Hartmann D, Eickhoff A, Tamm R, Riemann JF. Balloon-assisted enteroscopy using a single-balloon technique. Endoscopy. 2007 Feb;39 Suppl 1:E276. doi: 10.1055/s-2007-966616. Epub 2007 Oct 24. No abstract available. |
| 18599052 | Background | Kawamura T, Yasuda K, Tanaka K, Uno K, Ueda M, Sanada K, Nakajima M. Clinical evaluation of a newly developed single-balloon enteroscope. Gastrointest Endosc. 2008 Dec;68(6):1112-6. doi: 10.1016/j.gie.2008.03.1063. Epub 2008 Jul 2. |
| 21384320 | Background | Domagk D, Mensink P, Aktas H, Lenz P, Meister T, Luegering A, Ullerich H, Aabakken L, Heinecke A, Domschke W, Kuipers E, Bretthauer M. Single- vs. double-balloon enteroscopy in small-bowel diagnostics: a randomized multicenter trial. Endoscopy. 2011 Jun;43(6):472-6. doi: 10.1055/s-0030-1256247. Epub 2011 Mar 7. |
| 22980289 | Background | Efthymiou M, Desmond PV, Brown G, La Nauze R, Kaffes A, Chua TJ, Taylor AC. SINGLE-01: a randomized, controlled trial comparing the efficacy and depth of insertion of single- and double-balloon enteroscopy by using a novel method to determine insertion depth. Gastrointest Endosc. 2012 Nov;76(5):972-80. doi: 10.1016/j.gie.2012.06.033. Epub 2012 Sep 12. |
| 20051942 | Background | May A, Farber M, Aschmoneit I, Pohl J, Manner H, Lotterer E, Moschler O, Kunz J, Gossner L, Monkemuller K, Ell C. Prospective multicenter trial comparing push-and-pull enteroscopy with the single- and double-balloon techniques in patients with small-bowel disorders. Am J Gastroenterol. 2010 Mar;105(3):575-81. doi: 10.1038/ajg.2009.712. Epub 2010 Jan 5. |
| 21272875 | Background | Takano N, Yamada A, Watabe H, Togo G, Yamaji Y, Yoshida H, Kawabe T, Omata M, Koike K. Single-balloon versus double-balloon endoscopy for achieving total enteroscopy: a randomized, controlled trial. Gastrointest Endosc. 2011 Apr;73(4):734-9. doi: 10.1016/j.gie.2010.10.047. Epub 2011 Jan 26. |
| 16007388 | Background | Yamamoto H, Kita H. Enteroscopy. J Gastroenterol. 2005 Jun;40(6):555-62. doi: 10.1007/s00535-005-1645-5. |
| 39608590 | Derived | Archer M, Liu E, McDonald C, Yan B, Jairath V, Sey M. A randomized controlled trial of a through-the-scope stiffening wire to increase the depth of insertion during double-balloon enteroscopy. Gastrointest Endosc. 2025 Jun;101(6):1197-1200. doi: 10.1016/j.gie.2024.11.037. Epub 2024 Nov 26. |