Capsule Endoscopy in Inflammatory Bowel Disease: When? To Whom?
Abstract
:1. Introduction
2. Crohn’s Disease
2.1. Capsule Retention
2.2. Superior Diagnostic Yield to Other Imaging Modalities
2.3. Increasing Diagnostic Capability of Capsule Endoscopy
2.4. Clinical Suspicion of Crohn’s Disease with Negative Conventional Modalities
2.5. Clinical Applications for the Assessment of Established Crohn’s Disease
2.5.1. Assessment of Disease Activity, Extent, and Phenotype
2.5.2. Inflammatory Bowel Disease Unclassified
2.5.3. Treat-to-Target Monitoring in the Management of Crohn’s Disease
2.5.4. Assessment of Post-Operative Recurrence
2.5.5. Pan-Enteric Capsule Endoscopy for Crohn’s Disease
3. Ulcerative Colitis
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
CE | capsule endoscopy |
SBFT | small bowel follow-through |
SBCUS | small bowel contrast ultrasound |
CTE | CT enterography |
MRE | MR enterography |
CD | Crohn’s disease |
UC | ulcerative colitis |
CCE | colon capsule endoscopy |
IBD | inflammatory bowel disease |
SCD | suspected Crohn’s disease |
SBCE | small bowel capsule endoscopy |
ECD | established Crohn’s disease |
SBCD | small bowel Crohn’s disease |
CR | capsule retention |
CI | confidence interval |
PC | patency capsule |
NPV | negative predictive value |
OR | odds ratio |
AFR | adaptive frame rate |
PCC | PillCam Crohn’s capsule |
FICE | flexible spectral color enhancement |
FC | fecal calprotectin |
LS | Lewis score |
CECDAI | capsule endoscopy Crohn’s disease activity index |
IBDU | unspecified inflammatory bowel disease |
PCE | pan-enteric capsule endoscopy |
MES | Mayo endoscopic score |
UCEIS | ulcerative colitis endoscopic index score |
CSUC | capsule scoring of ulcerative colitis |
AI | Artificial intelligence |
DOR | diagnostic odds ratio |
PLR | positive likelihood ratio |
SBI | suspected blood indicator |
PEG | polyethylene glycol |
PEG-Asc | PEG solution containing ascorbic acid |
ICC | intraclass correlation coefficient |
References
- Iddan, G.; Meron, G.; Glukhovsky, A.; Swain, P. Wireless capsule endoscopy. Nature 2000, 405, 417. [Google Scholar] [CrossRef]
- Appleyard, M.; Glukhovsky, A.; Swain, P. Wireless-capsule diagnostic endoscopy for recurrent small-bowel bleeding. N. Engl. J. Med. 2001, 344, 232–233. [Google Scholar] [CrossRef]
- Hong, S.M.; Jung, S.H.; Baek, D.H. Diagnostic Yields and Clinical Impacts of Capsule Endoscopy. Diagnostics 2021, 11, 1842. [Google Scholar] [CrossRef] [PubMed]
- Eliakim, R.; Fireman, Z.; Gralnek, I.M.; Yassin, K.; Waterman, M.; Kopelman, Y.; Lachter, J.; Koslowsky, B.; Adler, S.N. Evaluation of the PillCam Colon capsule in the detection of colonic pathology: Results of the first multicenter, prospective, comparative study. Endoscopy 2006, 38, 963–970. [Google Scholar] [CrossRef] [PubMed]
- Hong, S.W.; Ye, B.D. The first step to unveil the epidemiology of inflammatory bowel disease in Central Asia. Intest. Res. 2020, 18, 345–346. [Google Scholar] [CrossRef]
- Yen, H.H.; Weng, M.T.; Tung, C.C.; Wang, Y.T.; Chang, Y.T.; Chang, C.H.; Shieh, M.J.; Wong, J.M.; Wei, S.C. Epidemiological trend in inflammatory bowel disease in Taiwan from 2001 to 2015: A nationwide populationbased study. Intest. Res. 2019, 17, 54–62. [Google Scholar] [CrossRef] [Green Version]
- Sood, A.; Kaur, K.; Singh, A.; Midha, V.; Mahajan, R.; Bansal, N.; Mehta, V.; Singh, D. Trends of inflammatory bowel disease at a tertiary care center in northern India. Intest. Res. 2021, 19, 282–290. [Google Scholar] [CrossRef]
- Sood, A.; Kaur, K.; Mahajan, R.; Midha, V.; Singh, A.; Sharma, S.; Puri, A.S.; Goswami, B.; Desai, D.; Pai, C.G.; et al. Colitis and Crohn’s Foundation (India): A first nationwide inflammatory bowel disease registry. Intest. Res. 2021, 19, 206–216. [Google Scholar] [CrossRef]
- González-Suárez, B.; Rodriguez, S.; Ricart, E.; Ordás, I.; Rimola, J.; Díaz-González, Á.; Romero, C.; de Miguel, C.R.; Jáuregui, A.; Araujo, I.K.; et al. Comparison of Capsule Endoscopy and Magnetic Resonance Enterography for the Assessment of Small Bowel Lesions in Crohn’s Disease. Inflamm. Bowel Dis. 2018, 24, 775–780. [Google Scholar] [CrossRef]
- Mekhjian, H.S.; Switz, D.M.; Melnyk, C.S.; Rankin, G.B.; Brooks, R.K. Clinical features and natural history of Crohn’s disease. Gastroenterology 1979, 77, 898–906. [Google Scholar] [CrossRef]
- Steinhardt, H.J.; Loeschke, K.; Kasper, H.; Holtermüller, K.H.; Schäfer, H. European Cooperative Crohn’s Disease Study (ECCDS): Clinical features and natural history. Digestion 1985, 31, 97–108. [Google Scholar] [CrossRef]
- Saibeni, S.; Rondonotti, E.; Iozzelli, A.; Spina, L.; Tontini, G.E.; Cavallaro, F.; Ciscato, C.; de Franchis, R.; Sardanelli, F.; Vecchi, M. Imaging of the small bowel in Crohn’s disease: A review of old and new techniques. World J. Gastroenterol. 2007, 13, 3279–3287. [Google Scholar] [CrossRef] [PubMed]
- Chernish, S.M.; Maglinte, D.D.; O’Connor, K. Evaluation of the small intestine by enteroclysis for Crohn’s disease. Am. J. Gastroenterol. 1992, 87, 696–701. [Google Scholar]
- Lamb, C.A.; Kennedy, N.A.; Raine, T.; Hendy, P.A.; Smith, P.J.; Limdi, J.K.; Hayee, B.; Lomer, M.C.E.; Parkes, G.C.; Selinger, C.; et al. British Society of Gastroenterology consensus guidelines on the management of inflammatory bowel disease in adults. Gut 2019, 68, s1–s106. [Google Scholar] [CrossRef] [Green Version]
- González, A.E.; Castillejo, Ó.N.; Sainz, I.F.U.; López-García, A.; Pomares, Ó.M.; Abdo, Y.Z. Use of capsule endoscopy in inflammatory bowel disease in clinical practice in Spain. Results from a national survey. Gastroenterol. Hepatol. 2021, 44, 696–703. [Google Scholar] [CrossRef]
- D’Haens, G.; Löwenberg, M.; Samaan, M.A.; Franchimont, D.; Ponsioen, C.; van den Brink, G.R.; Fockens, P.; Bossuyt, P.; Amininejad, L.; Rajamannar, G.; et al. Safety and Feasibility of Using the Second-Generation Pillcam Colon Capsule to Assess Active Colonic Crohn’s Disease. Clin. Gastroenterol. Hepatol. 2015, 13, 1480–1486.e1483. [Google Scholar] [CrossRef] [PubMed]
- Hosoe, N.; Matsuoka, K.; Naganuma, M.; Ida, Y.; Ishibashi, Y.; Kimura, K.; Yoneno, K.; Usui, S.; Kashiwagi, K.; Hisamatsu, T.; et al. Applicability of second-generation colon capsule endoscope to ulcerative colitis: A clinical feasibility study. J. Gastroenterol. Hepatol. 2013, 28, 1174–1179. [Google Scholar] [CrossRef]
- Seidman, E.G.; Sant’Anna, A.M.; Dirks, M.H. Potential applications of wireless capsule endoscopy in the pediatric age group. Gastrointest. Endosc. Clin. N. Am. 2004, 14, 207–217. [Google Scholar] [CrossRef]
- Rezapour, M.; Amadi, C.; Gerson, L.B. Retention associated with video capsule endoscopy: Systematic review and meta-analysis. Gastrointest. Endosc. 2017, 85, 1157–1168.e1152. [Google Scholar] [CrossRef]
- Pasha, S.F.; Pennazio, M.; Rondonotti, E.; Wolf, D.; Buras, M.R.; Albert, J.G.; Cohen, S.A.; Cotter, J.; D’Haens, G.; Eliakim, R.; et al. Capsule Retention in Crohn’s Disease: A Meta-analysis. Inflamm. Bowel Dis. 2020, 26, 33–42. [Google Scholar] [CrossRef]
- Zhang, W.; Han, Z.L.; Cheng, Y.; Xu, Y.Z.; Xiao, K.; Li, A.M.; Wang, Y.D.; Li, Y.; Liu, S.D. Value of the patency capsule in pre-evaluation for capsule endoscopy in cases of intestinal obstruction. J. Dig. Dis. 2014, 15, 345–351. [Google Scholar] [CrossRef]
- Rozendorn, N.; Klang, E.; Lahat, A.; Yablecovitch, D.; Kopylov, U.; Eliakim, A.; Ben-Horin, S.; Amitai, M.M. Prediction of patency capsule retention in known Crohn’s disease patients by using magnetic resonance imaging. Gastrointest. Endosc. 2016, 83, 182–187. [Google Scholar] [CrossRef]
- Rondonotti, E.; Soncini, M.; Girelli, C.M.; Russo, A.; de Franchis, R. Short article: Negative small-bowel cross-sectional imaging does not exclude capsule retention in high-risk patients. Eur. J. Gastroenterol. Hepatol. 2016, 28, 871–875. [Google Scholar] [CrossRef]
- Rondonotti, E.; Spada, C.; Adler, S.; May, A.; Despott, E.J.; Koulaouzidis, A.; Panter, S.; Domagk, D.; Fernandez-Urien, I.; Rahmi, G.; et al. Small-bowel capsule endoscopy and device-assisted enteroscopy for diagnosis and treatment of small-bowel disorders: European Society of Gastrointestinal Endoscopy (ESGE) Technical Review. Endoscopy 2018, 50, 423–446. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Rondonotti, E. Capsule retention: Prevention, diagnosis and management. Ann. Transl. Med. 2017, 5, 198. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Efthymiou, A.; Viazis, N.; Vlachogiannakos, J.; Georgiadis, D.; Kalogeropoulos, I.; Mantzaris, G.; Karamanolis, D.G. Wireless capsule endoscopy versus enteroclysis in the diagnosis of small-bowel Crohn’s disease. Eur. J. Gastroenterol. Hepatol. 2009, 21, 866–871. [Google Scholar] [CrossRef] [PubMed]
- Voderholzer, W.A.; Beinhoelzl, J.; Rogalla, P.; Murrer, S.; Schachschal, G.; Lochs, H.; Ortner, M.A. Small bowel involvement in Crohn’s disease: A prospective comparison of wireless capsule endoscopy and computed tomography enteroclysis. Gut 2005, 54, 369–373. [Google Scholar] [CrossRef]
- Gölder, S.K.; Schreyer, A.G.; Endlicher, E.; Feuerbach, S.; Schölmerich, J.; Kullmann, F.; Seitz, J.; Rogler, G.; Herfarth, H. Comparison of capsule endoscopy and magnetic resonance (MR) enteroclysis in suspected small bowel disease. Int. J. Colorectal. Dis. 2006, 21, 97–104. [Google Scholar] [CrossRef]
- Dionisio, P.M.; Gurudu, S.R.; Leighton, J.A.; Leontiadis, G.I.; Fleischer, D.E.; Hara, A.K.; Heigh, R.I.; Shiff, A.D.; Sharma, V.K. Capsule endoscopy has a significantly higher diagnostic yield in patients with suspected and established small-bowel Crohn’s disease: A meta-analysis. Am. J. Gastroenterol. 2010, 105, 1240–1248. [Google Scholar] [CrossRef] [PubMed]
- Choi, M.; Lim, S.; Choi, M.G.; Shim, K.N.; Lee, S.H. Effectiveness of Capsule Endoscopy Compared with Other Diagnostic Modalities in Patients with Small Bowel Crohn’s Disease: A Meta-Analysis. Gut Liver 2017, 11, 62–72. [Google Scholar] [CrossRef] [Green Version]
- Kopylov, U.; Yung, D.E.; Engel, T.; Vijayan, S.; Har-Noy, O.; Katz, L.; Oliva, S.; Avni, T.; Battat, R.; Eliakim, R.; et al. Diagnostic yield of capsule endoscopy versus magnetic resonance enterography and small bowel contrast ultrasound in the evaluation of small bowel Crohn’s disease: Systematic review and meta-analysis. Dig. Liver Dis. 2017, 49, 854–863. [Google Scholar] [CrossRef] [Green Version]
- Greener, T.; Klang, E.; Yablecovitch, D.; Lahat, A.; Neuman, S.; Levhar, N.; Avidan, B.; Yanai, H.; Dotan, I.; Chowers, Y.; et al. The Impact of Magnetic Resonance Enterography and Capsule Endoscopy on the Re-classification of Disease in Patients with Known Crohn’s Disease: A Prospective Israeli IBD Research Nucleus (IIRN) Study. J. Crohn’s Colitis 2016, 10, 525–531. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Pennazio, M.; Spada, C.; Eliakim, R.; Keuchel, M.; May, A.; Mulder, C.J.; Rondonotti, E.; Adler, S.N.; Albert, J.; Baltes, P.; et al. Small-bowel capsule endoscopy and device-assisted enteroscopy for diagnosis and treatment of small-bowel disorders: European Society of Gastrointestinal Endoscopy (ESGE) Clinical Guideline. Endoscopy 2015, 47, 352–376. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Levesque, B.G.; Cipriano, L.E.; Chang, S.L.; Lee, K.K.; Owens, D.K.; Garber, A.M. Cost effectiveness of alternative imaging strategies for the diagnosis of small-bowel Crohn’s disease. Clin. Gastroenterol. Hepatol. 2010, 8, 261–267. [Google Scholar] [CrossRef] [PubMed]
- Jiang, B.; Qian, Y.Y.; Pan, J.; Jiang, X.; Wang, Y.C.; Zhu, J.H.; Zou, W.B.; Zhou, W.; Li, Z.S.; Liao, Z. Second-generation magnetically controlled capsule gastroscopy with improved image resolution and frame rate: A randomized controlled clinical trial (with video). Gastrointest. Endosc. 2020, 91, 1379–1387. [Google Scholar] [CrossRef]
- Monteiro, S.; de Castro, F.D.; Carvalho, P.B.; Moreira, M.J.; Rosa, B.; Cotter, J. PillCam® SB3 capsule: Does the increased frame rate eliminate the risk of missing lesions? World J. Gastroenterol. 2016, 22, 3066–3068. [Google Scholar] [CrossRef] [Green Version]
- Hosoe, N.; Hayashi, Y.; Ogata, H. Colon Capsule Endoscopy for Inflammatory Bowel Disease. Clin. Endosc. 2020, 53, 550–554. [Google Scholar] [CrossRef]
- PillCam Software V9. Available online: https://www.medtronic.com/covidien/en-us/support/software/gastrointestinal-products/pillcam-software-v9.html (accessed on 22 October 2021).
- Ogata, N.; Ohtsuka, K.; Ogawa, M.; Maeda, Y.; Ishida, F.; Kudo, S.-E. Image-Enhanced Capsule Endoscopy Improves the Identification of Small Intestinal Lesions. Diagnostics 2021, 11, 2122. [Google Scholar] [CrossRef]
- Yung, D.E.; Boal Carvalho, P.; Giannakou, A.; Kopylov, U.; Rosa, B.; Rondonotti, E.; Toth, E.; Plevris, J.N.; Koulaouzidis, A. Clinical validity of flexible spectral imaging color enhancement (FICE) in small-bowel capsule endoscopy: A systematic review and meta-analysis. Endoscopy 2017, 49, 258–269. [Google Scholar] [CrossRef] [PubMed]
- Koulaouzidis, A.; Douglas, S.; Plevris, J.N. Blue mode does not offer any benefit over white light when calculating Lewis score in small-bowel capsule endoscopy. World J. Gastrointest. Endosc. 2012, 4, 33–37. [Google Scholar] [CrossRef]
- Kim, S.H.; Chun, H.J. Capsule Endoscopy: Pitfalls and Approaches to Overcome. Diagnostics 2021, 11, 1765. [Google Scholar] [CrossRef]
- Dulai, P.S.; Singh, S.; Vande Casteele, N.; Boland, B.S.; Rivera-Nieves, J.; Ernst, P.B.; Eckmann, L.; Barrett, K.E.; Chang, J.T.; Sandborn, W.J. Should We Divide Crohn’s Disease into Ileum-Dominant and Isolated Colonic Diseases? Clin. Gastroenterol. Hepatol. 2019, 17, 2634–2643. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Fireman, Z.; Mahajna, E.; Broide, E.; Shapiro, M.; Fich, L.; Sternberg, A.; Kopelman, Y.; Scapa, E. Diagnosing small bowel Crohn’s disease with wireless capsule endoscopy. Gut 2003, 52, 390–392. [Google Scholar] [CrossRef] [PubMed]
- Ge, Z.Z.; Hu, Y.B.; Xiao, S.D. Capsule endoscopy in diagnosis of small bowel Crohn’s disease. World J. Gastroenterol. 2004, 10, 1349–1352. [Google Scholar] [CrossRef] [PubMed]
- Herrerías, J.M.; Caunedo, A.; Rodríguez-Téllez, M.; Pellicer, F.; Herrerías, J.M., Jr. Capsule endoscopy in patients with suspected Crohn’s disease and negative endoscopy. Endoscopy 2003, 35, 564–568. [Google Scholar] [CrossRef] [PubMed]
- Adler, S.N.; Yoav, M.; Eitan, S.; Yehuda, C.; Eliakim, R. Does capsule endoscopy have an added value in patients with perianal disease and a negative work up for Crohn’s disease? World J. Gastrointest. Endosc. 2012, 4, 185–188. [Google Scholar] [CrossRef]
- De Bona, M.; Bellumat, A.; Cian, E.; Valiante, F.; Moschini, A.; De Boni, M. Capsule endoscopy findings in patients with suspected Crohn’s disease and biochemical markers of inflammation. Dig. Liver Dis. 2006, 38, 331–335. [Google Scholar] [CrossRef]
- Kopylov, U.; Yablecovitch, D.; Lahat, A.; Neuman, S.; Levhar, N.; Greener, T.; Klang, E.; Rozendorn, N.; Amitai, M.M.; Ben-Horin, S.; et al. Detection of Small Bowel Mucosal Healing and Deep Remission in Patients with Known Small Bowel Crohn’s Disease Using Biomarkers, Capsule Endoscopy, and Imaging. Am. J. Gastroenterol. 2015, 110, 1316–1323. [Google Scholar] [CrossRef]
- Kopylov, U.; Nemeth, A.; Koulaouzidis, A.; Makins, R.; Wild, G.; Afif, W.; Bitton, A.; Johansson, G.W.; Bessissow, T.; Eliakim, R.; et al. Small bowel capsule endoscopy in the management of established Crohn’s disease: Clinical impact, safety, and correlation with inflammatory biomarkers. Inflamm. Bowel Dis. 2015, 21, 93–100. [Google Scholar] [CrossRef]
- Kopylov, U.; Yung, D.E.; Engel, T.; Avni, T.; Battat, R.; Ben-Horin, S.; Plevris, J.N.; Eliakim, R.; Koulaouzidis, A. Fecal calprotectin for the prediction of small-bowel Crohn’s disease by capsule endoscopy: A systematic review and meta-analysis. Eur. J. Gastroenterol. Hepatol. 2016, 28, 1137–1144. [Google Scholar] [CrossRef]
- Monteiro, S.; Barbosa, M.; Cúrdia Gonçalves, T.; Boal Carvalho, P.; Moreira, M.J.; Rosa, B.; Cotter, J. Fecal Calprotectin as a Selection Tool for Small Bowel Capsule Endoscopy in Suspected Crohn’s Disease. Inflamm. Bowel Dis. 2018, 24, 2033–2038. [Google Scholar] [CrossRef]
- Jung, E.S.; Lee, S.P.; Kae, S.H.; Kim, J.H.; Kim, H.S.; Jang, H.J. Diagnostic Accuracy of Fecal Calprotectin for the Detection of Small Bowel Crohn’s Disease through Capsule Endoscopy: An Updated Meta-Analysis and Systematic Review. Gut Liver 2021, 15, 732–741. [Google Scholar] [CrossRef] [PubMed]
- Bar-Gil Shitrit, A.; Koslowsky, B.; Livovsky, D.M.; Shitrit, D.; Paz, K.; Adar, T.; Adler, S.N.; Goldin, E. A prospective study of fecal calprotectin and lactoferrin as predictors of small bowel Crohn’s disease in patients undergoing capsule endoscopy. Scand. J. Gastroenterol. 2017, 52, 328–333. [Google Scholar] [CrossRef] [PubMed]
- Atreya, R.; Siegmund, B. Location is important: Differentiation between ileal and colonic Crohn’s disease. Nat. Rev. Gastroenterol. Hepatol. 2021, 18, 544–558. [Google Scholar] [CrossRef]
- Cohen, S.A.; Gralnek, I.M.; Ephrath, H.; Saripkin, L.; Meyers, W.; Sherrod, O.; Napier, A.; Gobin, T. Capsule endoscopy may reclassify pediatric inflammatory bowel disease: A historical analysis. J. Pediatr. Gastroenterol. Nutr. 2008, 47, 31–36. [Google Scholar] [CrossRef]
- Dussault, C.; Gower-Rousseau, C.; Salleron, J.; Vernier-Massouille, G.; Branche, J.; Colombel, J.F.; Maunoury, V. Small bowel capsule endoscopy for management of Crohn’s disease: A retrospective tertiary care centre experience. Dig. Liver Dis. 2013, 45, 558–561. [Google Scholar] [CrossRef] [PubMed]
- Cotter, J.; Dias de Castro, F.; Moreira, M.J.; Rosa, B. Tailoring Crohn’s disease treatment: The impact of small bowel capsule endoscopy. J. Crohn’s Colitis 2014, 8, 1610–1615. [Google Scholar] [CrossRef] [Green Version]
- Gralnek, I.M.; Defranchis, R.; Seidman, E.; Leighton, J.A.; Legnani, P.; Lewis, B.S. Development of a capsule endoscopy scoring index for small bowel mucosal inflammatory change. Aliment. Pharmacol. Ther. 2008, 27, 146–154. [Google Scholar] [CrossRef]
- Cotter, J.; Dias de Castro, F.; Magalhães, J.; Moreira, M.J.; Rosa, B. Validation of the Lewis score for the evaluation of small-bowel Crohn’s disease activity. Endoscopy 2015, 47, 330–335. [Google Scholar] [CrossRef]
- Gal, E.; Geller, A.; Fraser, G.; Levi, Z.; Niv, Y. Assessment and validation of the new capsule endoscopy Crohn’s disease activity index (CECDAI). Dig. Dis. Sci. 2008, 53, 1933–1937. [Google Scholar] [CrossRef]
- Niv, Y.; Ilani, S.; Levi, Z.; Hershkowitz, M.; Niv, E.; Fireman, Z.; O’Donnel, S.; O’Morain, C.; Eliakim, R.; Scapa, E.; et al. Validation of the Capsule Endoscopy Crohn’s Disease Activity Index (CECDAI or Niv score): A multicenter prospective study. Endoscopy 2012, 44, 21–26. [Google Scholar] [CrossRef]
- Yablecovitch, D.; Lahat, A.; Neuman, S.; Levhar, N.; Avidan, B.; Ben-Horin, S.; Eliakim, R.; Kopylov, U. The Lewis score or the capsule endoscopy Crohn’s disease activity index: Which one is better for the assessment of small bowel inflammation in established Crohn’s disease? Therap. Adv. Gastroenterol. 2018, 11, 1756283x17747780. [Google Scholar] [CrossRef] [Green Version]
- Moum, B.; Ekbom, A.; Vatn, M.H.; Aadland, E.; Sauar, J.; Lygren, I.; Schulz, T.; Stray, N.; Fausa, O. Inflammatory bowel disease: Re-evaluation of the diagnosis in a prospective population based study in south eastern Norway. Gut 1997, 40, 328–332. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Maunoury, V.; Savoye, G.; Bourreille, A.; Bouhnik, Y.; Jarry, M.; Sacher-Huvelin, S.; Ben Soussan, E.; Lerebours, E.; Galmiche, J.P.; Colombel, J.F. Value of wireless capsule endoscopy in patients with indeterminate colitis (inflammatory bowel disease type unclassified). Inflamm. Bowel Dis. 2007, 13, 152–155. [Google Scholar] [CrossRef] [PubMed]
- Mow, W.S.; Lo, S.K.; Targan, S.R.; Dubinsky, M.C.; Treyzon, L.; Abreu-Martin, M.T.; Papadakis, K.A.; Vasiliauskas, E.A. Initial experience with wireless capsule enteroscopy in the diagnosis and management of inflammatory bowel disease. Clin. Gastroenterol. Hepatol. 2004, 2, 31–40. [Google Scholar] [CrossRef]
- Mehdizadeh, S.; Chen, G.; Enayati, P.J.; Cheng, D.W.; Han, N.J.; Shaye, O.A.; Ippoliti, A.; Vasiliauskas, E.A.; Lo, S.K.; Papadakis, K.A. Diagnostic yield of capsule endoscopy in ulcerative colitis and inflammatory bowel disease of unclassified type (IBDU). Endoscopy 2008, 40, 30–35. [Google Scholar] [CrossRef] [PubMed]
- Lopes, S.; Figueiredo, P.; Portela, F.; Freire, P.; Almeida, N.; Lérias, C.; Gouveia, H.; Leitão, M.C. Capsule endoscopy in inflammatory bowel disease type unclassified and indeterminate colitis serologically negative. Inflamm. Bowel Dis. 2010, 16, 1663–1668. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Di Nardo, G.; Oliva, S.; Ferrari, F.; Riccioni, M.E.; Staiano, A.; Lombardi, G.; Costamagna, G.; Cucchiara, S.; Stronati, L. Usefulness of wireless capsule endoscopy in paediatric inflammatory bowel disease. Dig. Liver Dis. 2011, 43, 220–224. [Google Scholar] [CrossRef] [PubMed]
- Na, S.Y.; Moon, W. Evolving Therapeutic Strategies in the Inflammatory Bowel Disease. Korean J. Gastroenterol. 2018, 71, 61–68. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Turner, D.; Ricciuto, A.; Lewis, A.; D’Amico, F.; Dhaliwal, J.; Griffiths, A.M.; Bettenworth, D.; Sandborn, W.J.; Sands, B.E.; Reinisch, W.; et al. STRIDE-II: An Update on the Selecting Therapeutic Targets in Inflammatory Bowel Disease (STRIDE) Initiative of the International Organization for the Study of IBD (IOIBD): Determining Therapeutic Goals for Treat-to-Target strategies in IBD. Gastroenterology 2021, 160, 1570–1583. [Google Scholar] [CrossRef]
- Watanabe, K. Clinical management for small bowel of Crohn’s disease in the treat-to-target era: Now is the time to optimize treatment based on the dominant lesion. Intest. Res. 2020, 18, 347–354. [Google Scholar] [CrossRef]
- Le Berre, C.; Trang-Poisson, C.; Bourreille, A. Small bowel capsule endoscopy and treat-to-target in Crohn’s disease: A systematic review. World J. Gastroenterol. 2019, 25, 4534–4554. [Google Scholar] [CrossRef] [PubMed]
- Efthymiou, A.; Viazis, N.; Mantzaris, G.; Papadimitriou, N.; Tzourmakliotis, D.; Raptis, S.; Karamanolis, D.G. Does clinical response correlate with mucosal healing in patients with Crohn’s disease of the small bowel? A prospective, case-series study using wireless capsule endoscopy. Inflamm. Bowel Dis. 2008, 14, 1542–1547. [Google Scholar] [CrossRef]
- Niv, Y. Small-bowel mucosal healing assessment by capsule endoscopy as a predictor of long-term clinical remission in patients with Crohn’s disease: A systematic review and meta-analysis. Eur. J. Gastroenterol. Hepatol. 2017, 29, 844–848. [Google Scholar] [CrossRef] [PubMed]
- Melmed, G.Y.; Dubinsky, M.C.; Rubin, D.T.; Fleisher, M.; Pasha, S.F.; Sakuraba, A.; Tiongco, F.; Shafran, I.; Fernandez-Urien, I.; Rosa, B.; et al. Utility of video capsule endoscopy for longitudinal monitoring of Crohn’s disease activity in the small bowel: A prospective study. Gastrointest. Endosc. 2018, 88, 947–955.e942. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Bourreille, A.; Jarry, M.; D’Halluin, P.N.; Ben-Soussan, E.; Maunoury, V.; Bulois, P.; Sacher-Huvelin, S.; Vahedy, K.; Lerebours, E.; Heresbach, D.; et al. Wireless capsule endoscopy versus ileocolonoscopy for the diagnosis of postoperative recurrence of Crohn’s disease: A prospective study. Gut 2006, 55, 978–983. [Google Scholar] [CrossRef] [Green Version]
- Kono, T.; Hida, N.; Nogami, K.; Iimuro, M.; Ohda, Y.; Yokoyama, Y.; Kamikozuru, K.; Tozawa, K.; Kawai, M.; Ogawa, T.; et al. Prospective postsurgical capsule endoscopy in patients with Crohn’s disease. World J. Gastrointest. Endosc. 2014, 6, 88–98. [Google Scholar] [CrossRef]
- Yung, D.E.; Har-Noy, O.; Tham, Y.S.; Ben-Horin, S.; Eliakim, R.; Koulaouzidis, A.; Kopylov, U. Capsule Endoscopy, Magnetic Resonance Enterography, and Small Bowel Ultrasound for Evaluation of Postoperative Recurrence in Crohn’s Disease: Systematic Review and Meta-Analysis. Inflamm. Bowel Dis. 2017, 24, 93–100. [Google Scholar] [CrossRef] [Green Version]
- Han, Z.M.; Qiao, W.G.; Ai, X.Y.; Li, A.M.; Chen, Z.Y.; Feng, X.C.; Zhang, J.; Wan, T.M.; Xu, Z.M.; Bai, Y.; et al. Impact of capsule endoscopy on prevention of postoperative recurrence of Crohn’s disease. Gastrointest. Endosc. 2018, 87, 1489–1498. [Google Scholar] [CrossRef]
- Kusaka, J.; Shiga, H.; Kuroha, M.; Kimura, T.; Kakuta, Y.; Endo, K.; Kinouchi, Y.; Shimosegawa, T. Residual Lesions on Capsule Endoscopy Is Associated with Postoperative Clinical Recurrence in Patients with Crohn’s Disease. Dig. Dis. Sci. 2018, 63, 768–774. [Google Scholar] [CrossRef]
- Nam, J.H.; Lee, K.H.; Lim, Y.J. Examination of Entire Gastrointestinal Tract: A Perspective of Mouth to Anus (M2A) Capsule Endoscopy. Diagnostics 2021, 11, 1367. [Google Scholar] [CrossRef]
- Sung, J.; Ho, K.Y.; Chiu, H.M.; Ching, J.; Travis, S.; Peled, R. The use of Pillcam Colon in assessing mucosal inflammation in ulcerative colitis: A multicenter study. Endoscopy 2012, 44, 754–758. [Google Scholar] [CrossRef]
- Eliakim, R.; Yassin, K.; Niv, Y.; Metzger, Y.; Lachter, J.; Gal, E.; Sapoznikov, B.; Konikoff, F.; Leichtmann, G.; Fireman, Z.; et al. Prospective multicenter performance evaluation of the second-generation colon capsule compared with colonoscopy. Endoscopy 2009, 41, 1026–1031. [Google Scholar] [CrossRef]
- Cortegoso Valdivia, P.; Elosua, A.; Houdeville, C.; Pennazio, M.; Fernández-Urién, I.; Dray, X.; Toth, E.; Eliakim, R.; Koulaouzidis, A. Clinical feasibility of panintestinal (or panenteric) capsule endoscopy: A systematic review. Eur. J. Gastroenterol. Hepatol. 2021, 33, 949–955. [Google Scholar] [CrossRef] [PubMed]
- Negreanu, L.; Smarandache, G.; Mateescu, R.B. Role of capsule endoscopy Pillcam COLON 2 in patients with known or suspected Crohn’s disease who refused colonoscopy or underwent incomplete colonoscopic exam: A case series. Tech. Coloproctol. 2014, 18, 277–283. [Google Scholar] [CrossRef] [PubMed]
- Leighton, J.A.; Helper, D.J.; Gralnek, I.M.; Dotan, I.; Fernandez-Urien, I.; Lahat, A.; Malik, P.; Mullin, G.E.; Rosa, B. Comparing diagnostic yield of a novel pan-enteric video capsule endoscope with ileocolonoscopy in patients with active Crohn’s disease: A feasibility study. Gastrointest. Endosc. 2017, 85, 196–205.e191. [Google Scholar] [CrossRef] [PubMed]
- Bruining, D.H.; Oliva, S.; Fleisher, M.R.; Fischer, M.; Fletcher, J.G. Panenteric capsule endoscopy versus ileocolonoscopy plus magnetic resonance enterography in Crohn’s disease: A multicentre, prospective study. BMJ Open Gastroenterol. 2020, 7, e000365. [Google Scholar] [CrossRef]
- Hausmann, J.; Schmelz, R.; Walldorf, J.; Filmann, N.; Zeuzem, S.; Albert, J.G. Pan-intestinal capsule endoscopy in patients with postoperative Crohn’s disease: A pilot study. Scand. J. Gastroenterol. 2017, 52, 840–845. [Google Scholar] [CrossRef]
- Oliva, S.; Aloi, M.; Viola, F.; Mallardo, S.; Civitelli, F.; Maccioni, F.; Hassan, C.; Papoff, P.; Cucchiara, S.; Cohen, S.A. A Treat to Target Strategy Using Panenteric Capsule Endoscopy in Pediatric Patients with Crohn’s Disease. Clin. Gastroenterol. Hepatol. 2019, 17, 2060–2067.e2061. [Google Scholar] [CrossRef]
- Niv, Y.; Gal, E.; Gabovitz, V.; Hershkovitz, M.; Lichtenstein, L.; Avni, I. Capsule Endoscopy Crohn’s Disease Activity Index (CECDAIic or Niv Score) for the Small Bowel and Colon. J. Clin. Gastroenterol. 2018, 52, 45–49. [Google Scholar] [CrossRef]
- Eliakim, R.; Yablecovitch, D.; Lahat, A.; Ungar, B.; Shachar, E.; Carter, D.; Selinger, L.; Neuman, S.; Ben-Horin, S.; Kopylov, U. A novel PillCam Crohn’s capsule score (Eliakim score) for quantification of mucosal inflammation in Crohn’s disease. United Eur. Gastroenterol. J. 2020, 8, 544–551. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Arieira, C.; Magalhães, R.; Dias de Castro, F.; Boal Carvalho, P.; Rosa, B.; Moreira, M.J.; Cotter, J. CECDAIic—A new useful tool in pan-intestinal evaluation of Crohn’s disease patients in the era of mucosal healing. Scand. J. Gastroenterol. 2019, 54, 1326–1330. [Google Scholar] [CrossRef] [PubMed]
- Tai, F.W.D.; Ellul, P.; Elosua, A.; Fernandez-Urien, I.; Tontini, G.E.; Elli, L.; Eliakim, R.; Kopylov, U.; Koo, S.; Parker, C.; et al. Panenteric capsule endoscopy identifies proximal small bowel disease guiding upstaging and treatment intensification in Crohn’s disease: A European multicentre observational cohort study. United Eur. Gastroenterol. J. 2021, 9, 248–255. [Google Scholar] [CrossRef]
- Yamada, K.; Nakamura, M.; Yamamura, T.; Maeda, K.; Sawada, T.; Mizutani, Y.; Ishikawa, E.; Ishikawa, T.; Kakushima, N.; Furukawa, K.; et al. Diagnostic yield of colon capsule endoscopy for Crohn’s disease lesions in the whole gastrointestinal tract. BMC Gastroenterol. 2021, 21, 75. [Google Scholar] [CrossRef]
- Usui, S.; Hosoe, N.; Matsuoka, K.; Kobayashi, T.; Nakano, M.; Naganuma, M.; Ishibashi, Y.; Kimura, K.; Yoneno, K.; Kashiwagi, K.; et al. Modified bowel preparation regimen for use in second-generation colon capsule endoscopy in patients with ulcerative colitis. Dig. Endosc. 2014, 26, 665–672. [Google Scholar] [CrossRef] [PubMed]
- Shi, H.Y.; Chan, F.K.L.; Higashimori, A.; Kyaw, M.; Ching, J.Y.L.; Chan, H.C.H.; Chan, J.C.H.; Chan, A.W.H.; Lam, K.L.Y.; Tang, R.S.Y.; et al. A prospective study on second-generation colon capsule endoscopy to detect mucosal lesions and disease activity in ulcerative colitis (with video). Gastrointest. Endosc. 2017, 86, 1139–1146.e6. [Google Scholar] [CrossRef] [PubMed]
- Takano, R.; Osawa, S.; Uotani, T.; Tani, S.; Ishida, N.; Tamura, S.; Yamade, M.; Iwaizumi, M.; Hamaya, Y.; Furuta, T.; et al. Evaluating mucosal healing using colon capsule endoscopy predicts outcome in patients with ulcerative colitis in clinical remission. World J. Clin. Cases 2018, 6, 952–960. [Google Scholar] [CrossRef] [PubMed]
- Okabayashi, S.; Kobayashi, T.; Nakano, M.; Toyonaga, T.; Ozaki, R.; Tablante, M.C.; Kuronuma, S.; Takeuchi, O.; Hibi, T. A Simple 1-Day Colon Capsule Endoscopy Procedure Demonstrated to be a Highly Acceptable Monitoring Tool for Ulcerative Colitis. Inflamm. Bowel Dis. 2018, 24, 2404–2412. [Google Scholar] [CrossRef]
- Adler, S.N.; González Lama, Y.; Matallana Royo, V.; Suárez Ferrer, C.; Schwartz, A.; Bar-Gil Shitrit, A. Comparison of small-bowel colon capsule endoscopy system to conventional colonoscopy for the evaluation of ulcerative colitis activity. Endosc. Int. Open 2019, 7, e1253–e1261. [Google Scholar] [CrossRef] [Green Version]
- Peyrin-Biroulet, L.; Sandborn, W.; Sands, B.E.; Reinisch, W.; Bemelman, W.; Bryant, R.V.; D’Haens, G.; Dotan, I.; Dubinsky, M.; Feagan, B.; et al. Selecting Therapeutic Targets in Inflammatory Bowel Disease (STRIDE): Determining Therapeutic Goals for Treat-to-Target. Am. J. Gastroenterol. 2015, 110, 1324–1338. [Google Scholar] [CrossRef]
- Hosoe, N.; Nakano, M.; Takeuchi, K.; Endo, Y.; Matsuoka, K.; Abe, T.; Omori, T.; Hayashida, M.; Kobayashi, T.; Yoshida, A.; et al. Establishment of a Novel Scoring System for Colon Capsule Endoscopy to Assess the Severity of Ulcerative Colitis-Capsule Scoring of Ulcerative Colitis. Inflamm. Bowel Dis. 2018, 24, 2641–2647. [Google Scholar] [CrossRef] [PubMed]
- Matsubayashi, M.; Kobayashi, T.; Okabayashi, S.; Nakano, M.; Sagami, S.; Ozaki, R.; Kiyohara, H.; Morikubo, H.; Asonuma, K.; Miyatani, Y.; et al. Determining the usefulness of Capsule Scoring of Ulcerative Colitis in predicting relapse of inactive ulcerative colitis. J. Gastroenterol. Hepatol. 2021, 36, 943–950. [Google Scholar] [CrossRef] [PubMed]
- Deding, U.; Cortegoso Valdivia, P.; Koulaouzidis, A.; Baatrup, G.; Toth, E.; Spada, C.; Fernández-Urién, I.; Pennazio, M.; Bjørsum-Meyer, T. Patient-Reported Outcomes and Preferences for Colon Capsule Endoscopy and Colonoscopy: A Systematic Review with Meta-Analysis. Diagnostics 2021, 11, 1730. [Google Scholar] [CrossRef] [PubMed]
Author Year | Study Design | Topic | Study Papulation | Findings |
---|---|---|---|---|
Fireman 2003 [44] | Prospective observational | Effectiveness of CE in SCD | 17 SCD undetected by conventional modalities | 12 (71%) patients were diagnosed with SBCD |
Herrerias 2003 [46] | Prospective observational | Effectiveness of CE in SCD | 21 SCD undetected by conventional modalities | Pathologic findings in 12 (57%) patients 9 (43%) patients were diagnosed with SBCD |
Ge 2004 [45] | Prospective observational | Effectiveness of CE in SCD | 20 SCD undetected by conventional modalities | 13 (65%) patients were diagnosed with SBCD |
De Bona 2006 [48] | Prospective observational | Effectiveness of CE in SCD with increased biochemical markers | Group 1: 12 clinical SCD only Group 2: 26 clinical SCD + positive biochemical markers | Overall diagnostic yield: 39% (13 diagnostic and 2 suspicious for SBCD) Group 1 vs. Group 2: 8.3% vs. 46.2% (p = 0.022) |
Adler 2012 [47] | Prospective observational | Role of CE in patients with persistent perianal disease | 25 patients with perianal disease and negative conventional modalities | 6 patients (24%) were diagnosed with SBCD |
Kopylov 2016 [51] | Meta-analysis | Predictive value of FC to diagnose SBCD by CE findings in SCD | 5 studies (305 patients) with SCD and negative ileocolonocsopy | FC ≥ 50 ug/g: sensitivity 89%, specificity 55%, DOR 10.3, NPV 92% in predicting CE findings for SBCD FC < 50 ug/g: very low PLR |
Bar-Gil Shitrit 2017 [54] | Prospective observational | Predictive value of FC to diagnose SBCD by CE findings | 68 patients underwent CE for any indications with negative ileocolonoscopy | Median FC: SBCD (23 patients) vs. non-SBCD (45 patients) = 169 mg/kg vs. 40 mg/kg (p = 0.004) |
Monteiro 2018 [52] | Retrospective observational | Predictive value of FC to diagnose SBCD by CE findings in SCD | 75 SCD with negative ileocolonoscopy | In 37 patients with FC ≥ 100 µg/g, an LS ≥ 135 was found in 33 (89.2%) |
Jung 2021 [53] | Meta-analysis | Predictive value of FC to diagnose SBCD by CE findings in SCD | 8 studies (696 patients) with SCD and negative ileocolonoscopy | FC ≥ 100 ug/g: sensitivity 75%, specificity 74%, DOR 9.0 in predicting CE findings for SBCD |
Author Year | Study Design | Topic | Study Papulation | Bowel Cleansing | Concomitant Prokinetics | Major Findings |
---|---|---|---|---|---|---|
Hosoe 2013 [17] | Prospective observational | Assessment disease activity of UC using CCE-2 | 29 UC patients | 2 L PEG | Mosapride, metoclopramide |
|
Usui 2014 [96] | Prospective observational | Bowel cleansing regimen | 20 UC patients | 2.2 L PEG + magnesium citrate | Mosapride, metoclopramide |
|
Shi 2017 [97] | Prospective observational | Assessment disease activity of UC using CCE-2 | 150 UC patients | 4 L PEG + phosphate soda | Metoclopramide |
|
Takano 2018 [98] | Prospective observational | Assessment disease activity of UC using CCE-2 | 30 UC patients | 2 L PEG + 1.4 L water + magnesium citrate | Mosapride |
|
Okabayashi 2018 [99] | Prospective observational | Factors associated with colonic transit time and acceptability of CCE-2 | 33 UC patients | 2 L PEG-Asc + 1 L water + 20 mL castor oil | Metoclopramide |
|
Adler 2019 [100] | Prospective observational | Assessment disease activity of UC using CCE-2 | 23 UC patients | 2 L PEG + 0.75 L trisulfate + 1.5 L water | Metoclopramide |
|
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Na, S.-Y.; Lim, Y.-J. Capsule Endoscopy in Inflammatory Bowel Disease: When? To Whom? Diagnostics 2021, 11, 2240. https://doi.org/10.3390/diagnostics11122240
Na S-Y, Lim Y-J. Capsule Endoscopy in Inflammatory Bowel Disease: When? To Whom? Diagnostics. 2021; 11(12):2240. https://doi.org/10.3390/diagnostics11122240
Chicago/Turabian StyleNa, Soo-Young, and Yun-Jeong Lim. 2021. "Capsule Endoscopy in Inflammatory Bowel Disease: When? To Whom?" Diagnostics 11, no. 12: 2240. https://doi.org/10.3390/diagnostics11122240
APA StyleNa, S.-Y., & Lim, Y.-J. (2021). Capsule Endoscopy in Inflammatory Bowel Disease: When? To Whom? Diagnostics, 11(12), 2240. https://doi.org/10.3390/diagnostics11122240