The future of endoscopic resection for early gastric cancer.
endoscopic submucosal dissection
gastric cancer
virtual chromoendoscopy
Journal
Journal of surgical oncology
ISSN: 1096-9098
Titre abrégé: J Surg Oncol
Pays: United States
ID NLM: 0222643
Informations de publication
Date de publication:
Jun 2022
Jun 2022
Historique:
received:
22
01
2022
accepted:
20
02
2022
entrez:
28
4
2022
pubmed:
29
4
2022
medline:
3
5
2022
Statut:
ppublish
Résumé
Endoscopic resection for early gastric cancer is recommended when the risk of lymph node metastasis is negligible and should be performed through submucosal dissection due to well-established short- and long-term results. To overcome technical difficulties and decrease adverse events some techniques have been studied. This review outlines current strategies for improving patient selection and highlights innovative techniques that help minimize adverse events. Moreover, we discuss how to improve management after curative and noncurative resections.
Types de publication
Journal Article
Review
Langues
eng
Sous-ensembles de citation
IM
Pagination
1110-1122Informations de copyright
© 2022 Wiley Periodicals LLC.
Références
Japanese Gastric Cancer Association. Japanese classification of gastric carcinoma - 2nd English edition. Gastric Cancer. 1998;1(1):10-24.
Gotoda T, Yanagisawa A, Sasako M, et al. Incidence of lymph node metastasis from early gastric cancer: estimation with a large number of cases at two large centers. Gastric Cancer. 2000;3(4):219-225.
Abdelfatah MM, Barakat M, Lee H, et al. The incidence of lymph node metastasis in early gastric cancer according to the expanded criteria in comparison with the absolute criteria of the Japanese Gastric Cancer Association: a systematic review of the literature and meta-analysis. Gastrointest Endosc. 2018;87(2):338-347.
Chen J, Zhao G, Wang Y. Analysis of lymph node metastasis in early gastric cancer: a single institutional experience from China. World J Surg Oncol. 2020;18(1):57.
Japanese Gastric Cancer Association. Japanese gastric cancer treatment guidelines 2018 (5th edition). Gastric Cancer. 2021;24(1):1-21.
National Comprehensive Cancer Network. NCCN clinical practice guidelines in oncology. Gastric Cancer. Version 3.2020. 2020. https://www.nccn.org/professionals/physician_gls/pdf/gastric.pdf
Hasuike N, Ono H, Boku N, et al. A non-randomized confirmatory trial of an expanded indication for endoscopic submucosal dissection for intestinal-type gastric cancer (cT1a): the Japan Clinical Oncology Group study (JCOG0607). Gastric Cancer. 2018;21(1):114-123.
Kim JH. Strategy for curative endoscopic resection of undifferentiated-type early gastric cancer. Clin Endosc. 2019;52(1):9-14.
Ryu KW, Kim YW, Lee JH, et al. Surgical complications and the risk factors of laparoscopy-assisted distal gastrectomy in early gastric cancer. Ann Surg Oncol. 2008;15(6):1625-1631.
Libanio D, Braga V, Ferraz S, et al. Prospective comparative study of endoscopic submucosal dissection and gastrectomy for early neoplastic lesions including patients' perspectives. Endoscopy. 2019;51(1):30-39.
Inoue H, Takeshita K, Hori H, Muraoka Y, Yoneshima H, Endo M. Endoscopic mucosal resection with a cap-fitted panendoscope for esophagus, stomach, and colon mucosal lesions. Gastrointest Endosc. 1993;39(1):58-62.
Ono H, Kondo H, Gotoda T, et al. Endoscopic mucosal resection for treatment of early gastric cancer. Gut. 2001;48(2):225-229.
Gotoda T, Kondo H, Ono H, et al. A new endoscopic mucosal resection procedure using an insulation-tipped electrosurgical knife for rectal flat lesions: report of two cases. Gastrointest Endosc. 1999;50(4):560-563.
Facciorusso A, Antonino M, Di Maso M, Muscatiello N. Endoscopic submucosal dissection vs endoscopic mucosal resection for early gastric cancer: a meta-analysis. World J Gastrointest Endosc. 2014;6(11):555-563.
Lian J, Chen S, Zhang Y, Qiu F. A meta-analysis of endoscopic submucosal dissection and EMR for early gastric cancer. Gastrointest Endosc. 2012;76(4):763-770.
Park YM, Cho E, Kang HY, Kim JM. The effectiveness and safety of endoscopic submucosal dissection compared with endoscopic mucosal resection for early gastric cancer: a systematic review and meta-analysis. Surg Endosc. 2011;25(8):2666-2677.
Zhao Y, Wang C. Long-term clinical efficacy and perioperative safety of endoscopic submucosal dissection versus endoscopic mucosal resection for early gastric cancer: an updated meta-analysis. BioMed Res Int. 2018;2018:3152346.
Gu L, Khadaroo PA, Chen L, et al. Comparison of long-term outcomes of endoscopic submucosal dissection and surgery for early gastric cancer: a systematic review and meta-analysis. J Gastrointest Surg. 2019;23(7):1493-1501.
Meng FS, Zhang ZH, Wang YM, Lu L, Zhu JZ, Ji F. Comparison of endoscopic resection and gastrectomy for the treatment of early gastric cancer: a meta-analysis. Surg Endosc. 2016;30(9):3673-3683.
Abdelfatah MM, Barakat M, Ahmad D, et al. Long-term outcomes of endoscopic submucosal dissection versus surgery in early gastric cancer: a systematic review and meta-analysis. Eur J Gastroenterol Hepatol. 2019;31(4):418-424.
Aihara R, Mochiki E, Kamiyama Y, Kamimura H, Asao T, Kuwano H. Mucin phenotypic expression in early signet ring cell carcinoma of the stomach: its relationship with the clinicopathologic factors. Dig Dis Sci. 2004;49(3):417-424.
Huh CW, Ma DW, Kim BW, Kim JS, Lee SJ. Endoscopic submucosal dissection versus surgery for undifferentiated-type early gastric cancer: a systematic review and meta-analysis. Clin Endosc. 2021;54(2):202-210.
Suzuki H, Takizawa K, Hirasawa T, et al. Short-term outcomes of multicenter prospective cohort study of gastric endoscopic resection: ‘Real-world evidence’ in Japan. Dig Endosc. 2019;31(1):30-39.
Veitch AM, Radaelli F, Alikhan R, et al. Endoscopy in patients on antiplatelet or anticoagulant therapy: British Society of Gastroenterology (BSG) and European Society of Gastrointestinal Endoscopy (ESGE) guideline update. Gut. 2021;70(9):1611-1628.
Libanio D, Costa MN, Pimentel-Nunes P, Dinis-Ribeiro M. Risk factors for bleeding after gastric endoscopic submucosal dissection: a systematic review and meta-analysis. Gastrointest Endosc. 2016;84(4):572-586.
Hatta W, Tsuji Y, Yoshio T, et al. Prediction model of bleeding after endoscopic submucosal dissection for early gastric cancer: BEST-J score. Gut. 2021;70(3):476-484.
Yamaguchi Y, Katsumi N, Tauchi M, et al. A prospective randomized trial of either famotidine or omeprazole for the prevention of bleeding after endoscopic mucosal resection and the healing of endoscopic mucosal resection-induced ulceration. Aliment Pharmacol Ther. 2005;21(Suppl 2):S111-S115.
Nishizawa T, Suzuki H, Akimoto T, et al. Effects of preoperative proton pump inhibitor administration on bleeding after gastric endoscopic submucosal dissection: a systematic review and meta-analysis, United European. Gastroenterol J. 2016;4(1):5-10.
Lee BE, Kim GH, Song GA, et al. Continuous infusion versus intermittent dosing with pantoprazole for gastric endoscopic submucosal dissection. Gut Liver. 2019;13(1):40-47.
Ono H, Yao K, Fujishiro M, et al. Guidelines for endoscopic submucosal dissection and endoscopic mucosal resection for early gastric cancer second edition. Dig Endosc. 2021;33(1):4-20.
Nishizawa T, Suzuki H, Kinoshita S, Goto O, Kanai T, Yahagi N. Second-look endoscopy after endoscopic submucosal dissection for gastric neoplasms. Dig Endosc. 2015;27(3):279-84.
Wang J, Wu Q, Yan Y, et al. Effectiveness of fibrin sealant as hemostatic technique in accelerating ESD-induced ulcer healing: a retrospective study. Surg Endosc. 2020;34(3):1191-1199.
Kikuchi D, Iizuka T, Makino S, et al. Utility of autologous fibrin glue and polyglycolic acid sheet for preventing delayed bleeding associated with antithrombotic therapy after gastric ESD. Endosc Int Open. 2019;7(11):E1542-E1548.
Hahn KY, Park JC, Lee YK, Shin SK, Lee SK, Lee YC. Efficacy of hemostatic powder in preventing bleeding after gastric endoscopic submucosal dissection in high-risk patients. J Gastroenterol Hepatol. 2018;33(3):656-663.
Jung DH, Moon HS, Park CH, Park JC. Polysaccharide hemostatic powder to prevent bleeding after endoscopic submucosal dissection in high risk patients: a randomized controlled trial. Endoscopy. 2021;53(10):994-1002.
Goto O, Oyama T, Ono H, et al. Endoscopic hand-suturing is feasible, safe, and may reduce bleeding risk after gastric endoscopic submucosal dissection: a multicenter pilot study (with video). Gastrointest Endosc. 2020;91(5):1195-1202.
Baniya R, Upadhaya S, Khan J, et al. Carbon dioxide versus air insufflation in gastric endoscopic submucosal dissection: a systematic review and meta-analysis of randomized controlled trials. Clin Endosc. 2017;50(5):464-472.
Ding X, Luo H, Duan H. Risk factors for perforation of gastric endoscopic submucosal dissection: a systematic review and meta-analysis. Eur J Gastroenterol Hepatol. 2019;31(12):1481-1488.
Yamamoto Y, Nishisaki H, Sakai H, et al. Clinical factors of delayed perforation after endoscopic submucosal dissection for gastric neoplasms. Gastroenterol Res Pract. 2017;2017:7404613.
Imaeda H, Hosoe N, Ida Y, et al. Novel technique of endoscopic submucosal dissection using an external grasping forceps for superficial gastric neoplasia. Dig Endosc. 2009;21(2):122-127.
Imaeda H, Hosoe N, Ida Y, et al. Novel technique of endoscopic submucosal dissection by using external forceps for early rectal cancer (with videos). Gastrointest Endosc. 2012;75(6):1253-1257.
Yoshida M, Takizawa K, Suzuki S, et al. Conventional versus traction-assisted endoscopic submucosal dissection for gastric neoplasms: a multicenter, randomized controlled trial (with video). Gastrointest Endosc. 2018;87(5):1231-1240.
Yoshida M, Takizawa K, Ono H, et al. Efficacy of endoscopic submucosal dissection with dental floss clip traction for gastric epithelial neoplasia: a pilot study (with video). Surg Endosc. 2016;30(7):3100-3106.
Suzuki S, Gotoda T, Kobayashi Y, et al. Usefulness of a traction method using dental floss and a hemoclip for gastric endoscopic submucosal dissection: a propensity score matching analysis (with videos). Gastrointest Endosc. 2016;83(2):337-46.
Hashimoto R, Hirasawa D, Iwaki T, et al. Usefulness of the S-O clip for gastric endoscopic submucosal dissection (with video). Surg Endosc. 2018;32(2):908-914.
Hijikata Y, Ogasawara N, Sasaki M, et al. Endoscopic submucosal dissection with sheath-assisted counter traction using a novel sheath for early gastric cancers. Hepatogastroenterology. 2012;59(114):353-356.
Su YF, Cheng SW, Chang CC, Kang YN. Efficacy and safety of traction-assisted endoscopic submucosal dissection: a meta-regression of randomized clinical trials. Endoscopy. 2020;52(5):338-348.
Fernández-Esparrach G, Rodríguez de Miguel C, Uchima H. Endoscopic submucosal dissection with the insulation-tipped and dual knifefor early gastric neoplasia. Video J Encyclopedia GI Endosc. 2013;1(1):140-142.
Ko BM. History and development of accessories for endoscopic submucosal dissection. Clin Endosc. 2017;50(3):219-223.
Huang R, Yan H, Ren G, et al. Comparison of O-type hybridknife to conventional knife in endoscopic submucosal dissection for gastric mucosal lesions. Medicine. 2016;95(13):e3148.
Zhou PH, Schumacher B, Yao LQ, et al. Conventional vs. waterjet-assisted endoscopic submucosal dissection in early gastric cancer: a randomized controlled trial. Endoscopy. 2014;46(10):836-43.
Chung WC, Kim BW, Lim CH, Kim TH, Park JM, Kim JS. Grasper type scissors for endoscopic submucosal dissection of gastric epithelial neoplasia. World J Gastroenterol. 2013;19(37):6221-6227.
Visrodia K, Zakko L, Sawas T, Leggett C, Lutzke L, Wang KK. Clutch cutter knife improves the safety of endoscopic submucosal dissection among novices. Gastrointest Endosc. 2018;87:249-250.
Okamoto K, Muguruma N, Kagemoto K, et al. Efficacy of hybrid endoscopic submucosal dissection (ESD) as a rescue treatment in difficult colorectal ESD cases. Dig Endosc. 2017;29(Suppl 2):S45-S52.
Fleischmann C, Probst A, Ebigbo A, et al. Endoscopic submucosal dissection in Europe: results of 1000 neoplastic lesions from the German endoscopic submucosal dissection registry. Gastroenterology. 2021;161(4):1168-1178.
Cai M, Zhou P, Lourenco LC, Zhang D. Endoscopic full-thickness resection (EFTR) for gastrointestinal subepithelial tumors. Gastrointest Endosc Clin N Am. 2016;26(2):283-295.
Hiki N, Yamamoto Y, Fukunaga T, et al. Laparoscopic and endoscopic cooperative surgery for gastrointestinal stromal tumor dissection. Surg Endosc. 2008;22(7):1729-1735.
Inoue H, Ikeda H, Hosoya T, et al. Endoscopic mucosal resection, endoscopic submucosal dissection, and beyond: full-layer resection for gastric cancer with nonexposure technique (CLEAN-NET). Surg Oncol Clin N Am. 2012;21(1):129-40.
Goto O, Mitsui T, Fujishiro M, et al. New method of endoscopic full-thickness resection: a pilot study of non-exposed endoscopic wall-inversion surgery in an ex vivo porcine model. Gastric Cancer. 2011;14(2):183-187.
Saito H, Nishimura A, Sakimura Y, et al. Closed laparoscopic and endoscopic cooperative surgery for early gastric cancer with difficulty in endoscopic submucosal dissection: a report of three cases. Surg Case Rep. 2020;6(1):235.
Figueiroa G, Pimentel-Nunes P, Dinis-Ribeiro M, Libanio D. Gastric endoscopic submucosal dissection: a systematic review and meta-analysis on risk factors for poor short-term outcomes. Eur J Gastroenterol Hepatol. 2019;31(10):1234-1246.
The Paris endoscopic classification of superficial neoplastic lesions: esophagus, stomach, and colon: November 30 to December 1, 2002. Gastrointest Endosc. 2003;58(6 Suppl):S3-S43.
Choi J, Kim SG, Im JP, Kim JS, Jung HC, Song IS. Endoscopic prediction of tumor invasion depth in early gastric cancer. Gastrointest Endosc. 2011;73(5):917-927.
Park JM, Ahn CW, Yi X, et al. Efficacy of endoscopic ultrasonography for prediction of tumor depth in gastric cancer. J Gastric Cancer. 2011;11(2):109-115.
Abe S, Oda I, Shimazu T, et al. Depth-predicting score for differentiated early gastric cancer. Gastric Cancer. 2011;14(1):35-40.
Tanaka K, Toyoda H, Kadowaki S, et al. Surface pattern classification by enhanced-magnification endoscopy for identifying early gastric cancers. Gastrointest Endosc. 2008;67(3):430-437.
Ok KS, Kim GH, Park do Y, et al. Magnifying endoscopy with narrow band imaging of early gastric cancer: correlation with histopathology and mucin phenotype. Gut Liver. 2016;10(4):532-541.
Nakayoshi T, Tajiri H, Matsuda K, Kaise M, Ikegami M, Sasaki H. Magnifying endoscopy combined with narrow band imaging system for early gastric cancer: correlation of vascular pattern with histopathology (including video). Endoscopy. 2004;36(12):1080-1084.
Choi J, Kim SG, Im JP, Kim JS, Jung HC, Song IS. Is endoscopic ultrasonography indispensable in patients with early gastric cancer prior to endoscopic resection? Surg Endosc. 2010;24(12):3177-3185.
Mocellin S, Pasquali S. Diagnostic accuracy of endoscopic ultrasonography (EUS) for the preoperative locoregional staging of primary gastric cancer. Cochrane Database Syst Rev. 2015;2:CD009944.
Kuroki K, Oka S, Tanaka S, et al. Clinical significance of endoscopic ultrasonography in diagnosing invasion depth of early gastric cancer prior to endoscopic submucosal dissection. Gastric Cancer. 2021;24(1):145-155.
Cheng J, Wu X, Yang A, et al. Model to identify early-stage gastric cancers with deep invasion of submucosa based on endoscopy and endoscopic ultrasonography findings. Surg Endosc. 2018;32(2):855-863.
Ribeiro H, Libanio D, Castro R, et al. Reliability of Paris Classification for superficial neoplastic gastric lesions improves with training and narrow band imaging. Endosc Int Open. 2019;7(5):E633-E640.
Kim EH, Park JC, Song IJ, et al. Prediction model for non-curative resection of endoscopic submucosal dissection in patients with early gastric cancer. Gastrointest Endosc. 2017;85(5):976-983.
Ma X, Zhang Q, Zhu S, Zhang S, Sun X. Risk factors and prediction model for non-curative resection of early gastric cancer with endoscopic resection and the evaluation. Front Med. 2021;8:637875.
Xia J, Xia T, Pan J, et al. Use of artificial intelligence for detection of gastric lesions by magnetically controlled capsule endoscopy. Gastrointest Endosc. 2021;93(1):133-139.
Wang KW, Dong M. Potential applications of artificial intelligence in colorectal polyps and cancer: Recent advances and prospects. World J Gastroenterol. 2020;26(34):5090-5100.
Kubota K, Kuroda J, Yoshida M, Ohta K, Kitajima M. Medical image analysis: computer-aided diagnosis of gastric cancer invasion on endoscopic images. Surg Endosc. 2012;26(5):1485-1489.
Zhu Y, Wang QC, Xu MD, et al. Application of convolutional neural network in the diagnosis of the invasion depth of gastric cancer based on conventional endoscopy. Gastrointest Endosc. 2019;89(4):806-815.
Yoon HJ, Kim S, Kim JH, et al. A lesion-based convolutional neural network improves endoscopic detection and depth prediction of early gastric cancer. J Clin Med. 2019;8(9):1310.
Nagao S, Tsuji Y, Sakaguchi Y, et al. Highly accurate artificial intelligence systems to predict the invasion depth of gastric cancer: efficacy of conventional white-light imaging, nonmagnifying narrow-band imaging, and indigo-carmine dye contrast imaging. Gastrointest Endosc. 2020;92(4):866-873.
Jiang K, Jiang X, Pan J, et al. Current evidence and future perspective of accuracy of artificial intelligence application for early gastric cancer diagnosis with endoscopy: a systematic and meta-analysis. Front Med. 2021;8:629080.
Jeong SH, An J, Kwon KA, et al. Predictive risk factors associated with synchronous multiple early gastric cancer. Medicine. 2017;96(26):e7088.
Pimentel-Nunes P, Dinis-Ribeiro M, Ponchon T, et al. Endoscopic submucosal dissection: European Society of Gastrointestinal Endoscopy (ESGE) guideline. Endoscopy. 2015;47(9):829-854.
Ortigão R, Figueirôa G, Frazzoni L, et al. Risk factors for gastric metachronous lesions after endoscopic or surgical resection. Endoscopy. 2022.
Nakajima T, Oda I, Gotoda T, et al. Metachronous gastric cancers after endoscopic resection: how effective is annual endoscopic surveillance? Gastric Cancer. 2006;9(2):93-98.
Kobayashi M, Narisawa R, Sato Y, Takeuchi M, Aoyagi Y. Self-limiting risk of metachronous gastric cancers after endoscopic resection. Dig Endosc. 2010;22(3):169-173.
Tanabe S, Ishido K, Matsumoto T, et al. Long-term outcomes of endoscopic submucosal dissection for early gastric cancer: a multicenter collaborative study. Gastric Cancer. 2017;20(Suppl 1):S45-S52.
Japanese Gastric Cancer Association. Japanese gastric cancer treatment guidelines 2014 (ver. 4). Gastric Cancer. 2017;20(1):1-19.
Hatta W, Gotoda T, Oyama T, et al. System to stratify curability after endoscopic submucosal dissection for early gastric cancer: “eCura system”. Am J Gastroenterol. 2017;112(6):874-881.
Niwa H, Ozawa R, Kurahashi Y, et al. The eCura system as a novel indicator for the necessity of salvage surgery after non-curative ESD for gastric cancer: a case-control study. PLOS One. 2018;13(10):e0204039.
Hatta W, Gotoda T, Oyama T, et al. Is the eCura system useful for selecting patients who require radical surgery after noncurative endoscopic submucosal dissection for early gastric cancer? A comparative study. Gastric Cancer. 2018;21(3):481-489.
Takeuchi H, Goto O, Yahagi N, Kitagawa Y. Function-preserving gastrectomy based on the sentinel node concept in early gastric cancer. Gastric Cancer. 2017;20(Suppl 1):S53-S59.
Abe N, Takeuchi H, Ohki A, et al. Long-term outcomes of combination of endoscopic submucosal dissection and laparoscopic lymph node dissection without gastrectomy for early gastric cancer patients who have a potential risk of lymph node metastasis. Gastrointest Endosc. 2011;74(4):792-797.
Kitagawa Y, Takeuchi H, Takagi Y, et al. Sentinel node mapping for gastric cancer: a prospective multicenter trial in Japan. J Clin Oncol. 2013;31(29):3704-3710.
Miyashiro I, Hiratsuka M, Sasako M, et al. High false-negative proportion of intraoperative histological examination as a serious problem for clinical application of sentinel node biopsy for early gastric cancer: final results of the Japan Clinical Oncology Group multicenter trial JCOG0302. Gastric Cancer. 2014;17(2):316-323.