Endoscopic Submucosal Dissection for Esophageal Cancer: Current and Future
Abstract
:1. Introduction
2. ESD Indications for SCC
2.1. Cancer Invasion Depth
2.2. Lateral Extent of Cancer
3. Treatment Outcomes
3.1. ESD
3.2. EMR with a Cap-Fitted Panendoscope (EMRC)
3.3. Two-Channel EMR Method
3.4. Argon Plasma Coagulation (APC)
4. ESD in the West
5. Complications
5.1. Intraprocedural Perforation
5.2. Delayed Perforation
5.3. Mediastinal Emphysema
5.4. Delayed Bleeding
5.5. Postoperative Pneumonia
5.6. Stricture
5.6.1. Local Steroid Injections
5.6.2. Oral Steroid Administration
5.6.3. Innovative Strategies Using Tissue-Engineering Approaches
Complications | Frequency | Reference |
---|---|---|
Perforation | 0–6.9% | [5,16,17,20] |
Mediastinal emphysema | 31–63% | [39,57] |
Delayed bleeding | 0–0.7% | [41,42] |
Postoperative pneumonia | 1.6–2.6% | [5,17] |
Stricture over 3/4 circumferential | over 60% | [41,58] |
Stricture whole circumferential | 100% |
Stricture Prevention Method | Stricture Rate (%) | |||
---|---|---|---|---|
Over 3/4 Circumferential | Reference | Whole Circumferential | Reference | |
No treatment | 63.8% (60/94) | [43,47,60,61,62] | 100% (30/30) | [43,44,61,63] |
Local steroid injection | 15.9% (44/276) | [43,47,62,64] | 100% (15/15) | [43,44] |
Oral steroid administration | 13.1% (16/122) | [60,61,62] | 51.3% (19/37) | [61,63] |
Local steroid injection + Oral steroid administration | 12% (3/25) | [43] | 57.1% (24/42) | [43,64] |
6. Techniques
6.1. Clip-with-Line Method
6.2. Tunnel Method
6.3. Underwater ESD/Water Pressure ESD
7. Surveillance of Metachronous Esophageal SCC after ESD
8. Expectations for Esophageal ESD
9. Future Perspectives
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Acknowledgments
Data Availability Statement
Conflicts of Interest
References
- Sung, H.; Ferlay, J.; Siegel, R.L.; Laversanne, M.; Soerjomataram, I.; Jemal, A.; Bray, F. Global Cancer Statistics 2020: GLOBOCAN Estimates of Incidence and Mortality Worldwide for 36 Cancers in 185 Countries. CA Cancer J. Clin. 2021, 71, 209–249. [Google Scholar] [CrossRef] [PubMed]
- Oyama, T. A new classification of magnified endoscopy for superficial esophageal squamous cell carcinoma. Esophagus 2011, 8, 247–251. [Google Scholar]
- Ishihara, R.; Inoue, T.; Uedo, N.; Yamamoto, S.; Kawada, N.; Tsujii, Y.; Kanzaki, H.; Hanafusa, M.; Hanaoka, N.; Takeuchi, Y.; et al. Significance of each narrow-band imaging finding in diagnosing squamous mucosal high-grade neoplasia of the esophagus. J. Gastroenterol. Hepatol. 2010, 25, 1410–1415. [Google Scholar] [CrossRef] [PubMed]
- Ishihara, R.; Yamada, T.; Iishi, H.; Kato, M.; Yamamoto, S.; Yamamoto, S.; Masuda, E.; Tatsumi, K.; Takeuchi, Y.; Higashino, K.; et al. Quantitative analysis of the color change after iodine staining for diagnosing esophageal high-grade intraepithelial neoplasia and invasive cancer. Gastrointest. Endosc. 2009, 69, 213–218. [Google Scholar] [CrossRef] [PubMed]
- Takahashi, H.; Arimura, Y.; Masao, H.; Okahara, S.; Tanuma, T.; Kodaira, J.; Kagaya, H.; Shimizu, Y.; Hokari, K.; Tsukagoshi, H.; et al. Endoscopic submucosal dissection is superior to conventional endoscopic resection as a curative treatment for early squamous cell carcinoma of the esophagus (with video). Gastrointest. Endosc. 2010, 72, 255–264. [Google Scholar] [CrossRef] [PubMed]
- Ishihara, R.; Arima, M.; Iizuka, T.; Oyama, T.; Katada, C.; Kato, M.; Goda, K.; Goto, O.; Tanaka, K.; Yano, T.; et al. Endoscopic submucosal dissection/endoscopic mucosal resection guidelines for esophageal cancer. Dig. Endosc. 2020, 32, 452–493. [Google Scholar] [CrossRef] [PubMed][Green Version]
- Makuuchi, H. Endoscopic mucosal resection for early esophageal cancer: Indications and techniques. Dig. Endosc. 1996, 8, 175–179. [Google Scholar] [CrossRef]
- Oyama, T.; Inoue, H.; Arima, M.; Momma, K.; Omori, T.; Ishihara, R.; Hirasawa, D.; Takeuchi, M.; Tomori, A.; Goda, K. Prediction of the invasion depth of superficial squamous cell carcinoma based on microvessel morphology: Magnifying endoscopic classification of the Japan Esophageal Society. Esophagus 2017, 14, 105–112. [Google Scholar] [CrossRef][Green Version]
- Kim, S.J.; Kim, G.H.; Lee, M.W.; Jeon, H.K.; Baek, D.H.; Lee, B.E.; Song, G.A. New magnifying endoscopic classification for superficial esophageal squamous cell carcinoma. World J. Gastroenterol. 2017, 23, 4416–4421. [Google Scholar] [CrossRef]
- Fujiwara, J.; Momma, K.; Tateishi, Y. Endoscopic and pathological studies on type B2 blood vessels in estimation of invasion depth of superficial esophageal cancer. Stomach Intest. 2014, 49, 174–185. [Google Scholar]
- Mizumoto, T.; Hiyama, T.; Oka, S.; Yorita, N.; Kuroki, K.; Kurihara, M.; Yoshifuku, Y.; Sanomura, Y.; Urabe, Y.; Arihiro, K.; et al. Diagnosis of superficial esophageal squamous cell carcinoma invasion depth before endoscopic submucosal dissection. Dis. Esophagus 2018, 31, dox142. [Google Scholar] [CrossRef] [PubMed]
- Dobashi, A.; Goda, K.; Kobayashi, H. Clinical significance of type B1 vessels in the Japan esophageal society classification. Stomach Intest. 2014, 49, 153–163. [Google Scholar]
- Takeuchi, M.; Hashimoto, S.; Kobayashi, M. Prospective study of the usefulness of type B2 vessel determined by the Japan esophageal society classification of magnified endoscopy for the diagnosis of superficial esophageal squamous cell carcinoma. Stomach Intest. 2014, 49, 164–172. [Google Scholar]
- Miwata, T.; Oka, S.; Tanaka, S.; Kagemoto, K.; Sanomura, Y.; Urabe, Y.; Hiyama, T.; Chayama, K. Risk factors for esophageal stenosis after entire circumferential endoscopic submucosal dissection for superficial esophageal squamous cell carcinoma. Surg. Endosc. 2016, 30, 4049–4056. [Google Scholar] [CrossRef] [PubMed]
- Matsueda, K.; Ishihara, R. Preoperative Diagnosis and Indications for Endoscopic Resection of Superficial Esophageal Squamous Cell Carcinoma. J. Clin. Med. 2020, 10, 13. [Google Scholar] [CrossRef] [PubMed]
- Oyama, T.; Tomori, A.; Hotta, K.; Morita, S.; Kominato, K.; Tanaka, M.; Miyata, Y. Endoscopic submucosal dissection of early esophageal cancer. Clin. Gastroenterol. Hepatol. 2005, 3, S67–S70. [Google Scholar] [CrossRef]
- Tsujii, Y.; Nishida, T.; Nishiyama, O.; Yamamoto, K.; Kawai, N.; Yamaguchi, S.; Yamada, T.; Yoshio, T.; Kitamura, S.; Nakamura, T.; et al. Clinical outcomes of endoscopic submucosal dissection for superficial esophageal neoplasms: A multicenter retrospective cohort study. Endoscopy 2015, 47, 775–783. [Google Scholar] [CrossRef]
- Abe, S.; Ishihara, R.; Takahashi, H.; Ono, H.; Fujisaki, J.; Matsui, A.; Takahashi, A.; Goda, K.; Kawada, K.; Koike, T.; et al. Long-term outcomes of endoscopic resection and metachronous cancer after endoscopic resection for adenocarcinoma of the esophagogastric junction in Japan. Gastrointest. Endosc. 2019, 89, 1120–1128. [Google Scholar] [CrossRef]
- 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, 58–62. [Google Scholar] [CrossRef]
- Ishihara, R.; Iishi, H.; Uedo, N.; Takeuchi, Y.; Yamamoto, S.; Yamada, T.; Masuda, E.; Higashino, K.; Kato, M.; Narahara, H.; et al. Comparison of EMR and endoscopic submucosal dissection for en bloc resection of early esophageal cancers in Japan. Gastrointest. Endosc. 2008, 68, 1066–1072. [Google Scholar] [CrossRef] [PubMed]
- Momma, K.; Fujiwara, J. [Endoscopic mucosal resection—two channel technique]. Nihon. Rinsho. 2011, 69 (Suppl. S6), 236–242. [Google Scholar] [PubMed]
- Momma, K. Endoscopic Mucosal Resection for Mucosal Cancer of the Esophagus—Two Channel Technique. Stomach Intest. 2006, 41, 8. [Google Scholar]
- Grade, A.J.; Shah, I.A.; Medlin, S.M.; Ramirez, F.C. The efficacy and safety of argon plasma coagulation therapy in Barrett’s esophagus. Gastrointest. Endosc. 1999, 50, 18–22. [Google Scholar] [CrossRef] [PubMed]
- Sagawa, T.; Takayama, T.; Oku, T.; Hayashi, T.; Ota, H.; Okamoto, T.; Muramatsu, H.; Katsuki, S.; Sato, Y.; Kato, J.; et al. Argon plasma coagulation for successful treatment of early gastric cancer with intramucosal invasion. Gut 2003, 52, 334–339. [Google Scholar] [CrossRef] [PubMed]
- Kitamura, T.; Tanabe, S.; Koizumi, W.; Mitomi, H.; Saigenji, K. Argon plasma coagulation for early gastric cancer: Technique and outcome. Gastrointest. Endosc. 2006, 63, 48–54. [Google Scholar] [CrossRef]
- Tahara, K.; Tanabe, S.; Ishido, K.; Higuchi, K.; Sasaki, T.; Katada, C.; Azuma, M.; Nakatani, K.; Naruke, A.; Kim, M.; et al. Argon plasma coagulation for superficial esophageal squamous-cell carcinoma in high-risk patients. World J. Gastroenterol. 2012, 18, 5412–5417. [Google Scholar] [CrossRef]
- Kubota, Y.; Tanabe, S.; Ishido, K.; Yano, T.; Wada, T.; Watanabe, A.; Azuma, M.; Katada, C.; Koizumi, W. Usefulness of argon plasma coagulation for superficial esophageal squamous cell neoplasia in patients at high risk or with limited endoscopic resectability. Turk. J. Gastroenterol. 2020, 31, 529–537. [Google Scholar] [CrossRef] [PubMed]
- Pimentel-Nunes, P.; Dinis-Ribeiro, M.; Ponchon, T.; Repici, A.; Vieth, M.; De Ceglie, A.; Amato, A.; Berr, F.; Bhandari, P.; Bialek, A.; et al. Endoscopic submucosal dissection: European Society of Gastrointestinal Endoscopy (ESGE) Guideline. Endoscopy 2015, 47, 829–854. [Google Scholar] [CrossRef] [PubMed][Green Version]
- Stephant, S.; Jacques, J.; Brochard, C.; Legros, R.; Lepetit, H.; Barret, M.; Lupu, A.; Rostain, F.; Rivory, J.; Ponchon, T.; et al. High proficiency of esophageal endoscopic submucosal dissection with a “tunnel + clip traction” strategy: A large french multicentric study. Surg. Endosc. 2022, 37, 2359–2366. [Google Scholar] [CrossRef]
- Probst, A.; Ebigbo, A.; Eser, S.; Fleischmann, C.; Schaller, T.; Markl, B.; Schiele, S.; Geissler, B.; Muller, G.; Messmann, H. Endoscopic submucosal dissection for superficial esophageal squamous cell carcinoma: Long-term follow-up in a Western center. Clin. Endosc. 2023, 56, 55–64. [Google Scholar] [CrossRef] [PubMed]
- Chevaux, J.B.; Piessevaux, H.; Jouret-Mourin, A.; Yeung, R.; Danse, E.; Deprez, P.H. Clinical outcome in patients treated with endoscopic submucosal dissection for superficial Barrett’s neoplasia. Endoscopy 2015, 47, 103–112. [Google Scholar] [CrossRef][Green Version]
- Fujishiro, M.; Kodashima, S.; Goto, O.; Ono, S.; Niimi, K.; Yamamichi, N.; Oka, M.; Ichinose, M.; Omata, M. Endoscopic submucosal dissection for esophageal squamous cell neoplasms. Dig. Endosc. 2009, 21, 109–115. [Google Scholar] [CrossRef] [PubMed]
- Seehawong, U.; Morita, Y.; Nakano, Y.; Iwasaki, T.; Krutsri, C.; Sakaguchi, H.; Sako, T.; Takao, T.; Tanaka, S.; Toyonaga, T.; et al. Successful treatment of an esophageal perforation that occurred during endoscopic submucosal dissection for esophageal cancer using polyglycolic acid sheets and fibrin glue. Clin. J. Gastroenterol. 2019, 12, 29–33. [Google Scholar] [CrossRef] [PubMed]
- Noguchi, M.; Yano, T.; Kato, T.; Kadota, T.; Imajoh, M.; Morimoto, H.; Osera, S.; Yagishita, A.; Odagaki, T.; Yoda, Y.; et al. Risk factors for intraoperative perforation during endoscopic submucosal dissection of superficial esophageal squamous cell carcinoma. World J. Gastroenterol. 2017, 23, 478–485. [Google Scholar] [CrossRef] [PubMed]
- Iwatsubo, T.; Takeuchi, T.; Lee, S.-W.; Kawaguchi, S.; Ota, K.; Kojima, Y.; Higuchi, K. Very Delayed Perforation after Esophageal Endoscopic Submucosal Dissection and Intralesional Triamcinolone Injection. Case Rep. Gastroenterol. 2022, 16, 462–468. [Google Scholar] [CrossRef] [PubMed]
- Matsuda, Y.; Kataoka, N.; Yamaguchi, T.; Tomita, M.; Sakamoto, K.; Makimoto, S. Delayed esophageal perforation occurring with endoscopic submucosal dissection: A report of two cases. World J. Gastrointest. Surg. 2015, 7, 123–127. [Google Scholar] [CrossRef]
- Omae, M.; Konradsson, M.; Baldaque-Silva, F. Delayed perforation after endoscopic submucosal dissection treated successfully by temporary stent placement. Clin. J. Gastroenterol. 2018, 11, 118–122. [Google Scholar] [CrossRef] [PubMed]
- Sato, H.; Inoue, H.; Ikeda, H.; Grace, R.S.E.; Yoshida, A.; Onimaru, M.; Kudo, S. Clinical experience of esophageal perforation occurring with endoscopic submucosal dissection. Dis. Esophagus 2014, 27, 617–622. [Google Scholar] [CrossRef]
- Tamiya, Y.; Nakahara, K.; Kominato, K.; Serikawa, O.; Watanabe, Y.; Tateishi, H.; Takedatsu, H.; Toyonaga, A.; Sata, M. Pneumomediastinum is a frequent but minor complication during esophageal endoscopic submucosal dissection. Endoscopy 2010, 42, 8–14. [Google Scholar] [CrossRef] [PubMed]
- Nonaka, S.; Saito, Y.; Takisawa, H.; Kim, Y.; Kikuchi, T.; Oda, I. Safety of carbon dioxide insufflation for upper gastrointestinal tract endoscopic treatment of patients under deep sedation. Surg. Endosc. 2010, 24, 1638–1645. [Google Scholar] [CrossRef] [PubMed]
- Ono, S.; Fujishiro, M.; Niimi, K.; Goto, O.; Kodashima, S.; Yamamichi, N.; Omata, M. Predictors of postoperative stricture after esophageal endoscopic submucosal dissection for superficial squamous cell neoplasms. Endoscopy 2009, 41, 661–665. [Google Scholar] [CrossRef] [PubMed]
- Isomoto, H.; Yamaguchi, N.; Minami, H.; Nakao, K. Management of complications associated with endoscopic submucosal dissection/ endoscopic mucosal resection for esophageal cancer. Dig. Endosc. 2013, 25, 29–38. [Google Scholar] [CrossRef][Green Version]
- Kadota, T.; Yano, T.; Kato, T.; Imajoh, M.; Noguchi, M.; Morimoto, H.; Osera, S.; Yoda, Y.; Oono, Y.; Ikematsu, H.; et al. Prophylactic steroid administration for strictures after endoscopic resection of large superficial esophageal squamous cell carcinoma. Endosc. Int. Open 2016, 4, E1267–E1274. [Google Scholar] [CrossRef][Green Version]
- Takahashi, H.; Arimura, Y.; Okahara, S.; Kodaira, J.; Hokari, K.; Tsukagoshi, H.; Shinomura, Y.; Hosokawa, M. A randomized controlled trial of endoscopic steroid injection for prophylaxis of esophageal stenoses after extensive endoscopic submucosal dissection. BMC Gastroenterol. 2015, 15, 1. [Google Scholar] [CrossRef][Green Version]
- Leers, J.M.; DeMeester, S.R.; Oezcelik, A.; Klipfel, N.; Ayazi, S.; Abate, E.; Zehetner, J.; Lipham, J.C.; Chan, L.; Hagen, J.A.; et al. The prevalence of lymph node metastases in patients with T1 esophageal adenocarcinoma a retrospective review of esophagectomy specimens. Ann. Surg. 2011, 253, 271–278. [Google Scholar] [CrossRef] [PubMed]
- Hanaoka, N.; Ishihara, R.; Takeuchi, Y.; Uedo, N.; Higashino, K.; Ohta, T.; Kanzaki, H.; Hanafusa, M.; Nagai, K.; Matsui, F.; et al. Intralesional steroid injection to prevent stricture after endoscopic submucosal dissection for esophageal cancer: A controlled prospective study. Endoscopy 2012, 44, 1007–1011. [Google Scholar] [CrossRef] [PubMed]
- Hashimoto, S.; Kobayashi, M.; Takeuchi, M.; Sato, Y.; Narisawa, R.; Aoyagi, Y. The efficacy of endoscopic triamcinolone injection for the prevention of esophageal stricture after endoscopic submucosal dissection. Gastrointest. Endosc. 2011, 74, 1389–1393. [Google Scholar] [CrossRef]
- Ishihara, R. Prevention of esophageal stricture after endoscopic resection. Dig. Endosc. 2019, 31, 134–145. [Google Scholar] [CrossRef]
- Zuercher, B.F.; George, M.; Escher, A.; Piotet, E.; Ikonomidis, C.; Andrejevic, S.B.; Monnier, P. Stricture prevention after extended circumferential endoscopic mucosal resection by injecting autologous keratinocytes in the sheep esophagus. Surg. Endosc. 2013, 27, 1022–1028. [Google Scholar] [CrossRef]
- Perrod, G.; Rahmi, G.; Pidial, L.; Camilleri, S.; Bellucci, A.; Casanova, A.; Viel, T.; Tavitian, B.; Cellier, C.; Clement, O. Cell Sheet Transplantation for Esophageal Stricture Prevention after Endoscopic Submucosal Dissection in a Porcine Model. PLoS ONE 2016, 11, e0148249. [Google Scholar] [CrossRef][Green Version]
- Ohki, T.; Yamato, M.; Ota, M.; Takagi, R.; Murakami, D.; Kondo, M.; Sasaki, R.; Namiki, H.; Okano, T.; Yamamoto, M. Prevention of esophageal stricture after endoscopic submucosal dissection using tissue-engineered cell sheets. Gastroenterology 2012, 143, 582–588. [Google Scholar] [CrossRef] [PubMed]
- Hochberger, J.; Koehler, P.; Wedi, E.; Gluer, S.; Rothstein, R.I.; Niemann, H.; Hilfiker, A.; Gonzalez, S.; Kruse, E. Transplantation of mucosa from stomach to esophagus to prevent stricture after circumferential endoscopic submucosal dissection of early squamous cell. Gastroenterology 2014, 146, 906–909. [Google Scholar] [CrossRef] [PubMed]
- Liao, Z.; Liao, G.; Yang, X.; Peng, X.; Zhang, X.; Xie, X.; Zhao, X.; Yang, S.; Fan, C.; Bai, J. Transplantation of autologous esophageal mucosa to prevent stricture after circumferential endoscopic submucosal dissection of early esophageal cancer (with video). Gastrointest. Endosc. 2018, 88, 543–546. [Google Scholar] [CrossRef]
- Liu, Y.; Li, Z.; Dou, L.; Zhang, Y.; He, S.; Zhu, J.; Ke, Y.; Liu, X.; Liu, Y.; Ng, H.; et al. Autologous esophageal mucosa with polyglycolic acid transplantation and temporary stent implantation can prevent stenosis after circumferential endoscopic submucosal dissection. Ann. Transl. Med. 2021, 9, 546. [Google Scholar] [CrossRef] [PubMed]
- Nieponice, A.; McGrath, K.; Qureshi, I.; Beckman, E.J.; Luketich, J.D.; Gilbert, T.W.; Badylak, S.F. An extracellular matrix scaffold for esophageal stricture prevention after circumferential EMR. Gastrointest. Endosc. 2009, 69, 289–296. [Google Scholar] [CrossRef]
- Schomisch, S.J.; Yu, L.; Wu, Y.; Pauli, E.M.; Cipriano, C.; Chak, A.; Lash, R.H.; Ponsky, J.L.; Marks, J.M. Commercially available biological mesh does not prevent stricture after esophageal mucosectomy. Endoscopy 2014, 46, 144–148. [Google Scholar] [CrossRef][Green Version]
- Maeda, Y.; Hirasawa, D.; Fujita, N.; Suzuki, T.; Obana, T.; Sugawara, T.; Ohira, T.; Harada, Y.; Noda, Y. Mediastinal emphysema after esophageal endoscopic submucosal dissection: Its prevalence and clinical significance. Dig. Endosc. 2011, 23, 221–226. [Google Scholar] [CrossRef]
- Katada, C.; Muto, M.; Manabe, T.; Boku, N.; Ohtsu, A.; Yoshida, S. Esophageal stenosis after endoscopic mucosal resection of superficial esophageal lesions. Gastrointest. Endosc. 2003, 57, 165–169. [Google Scholar] [CrossRef]
- Waki, K.; Ishihara, R. Prevention of stricture after semi-circumferential and whole circumferential esophageal endoscopic resection. Ann. Esophagus 2021, 6. [Google Scholar] [CrossRef]
- Zhou, G.; Yuan, F.; Cai, J.; Tang, X.; Gong, W.; Su, L.; Zhang, Y. Efficacy of prednisone for prevention of esophageal stricture after endoscopic submucosal dissection for superficial esophageal squamous cell carcinoma. Thorac. Cancer 2017, 8, 489–494. [Google Scholar] [CrossRef]
- Kataoka, M.; Anzai, S.; Shirasaki, T.; Ikemiyagi, H.; Fujii, T.; Mabuchi, K.; Suzuki, S.; Yoshida, M.; Kawai, T.; Kitajima, M. Efficacy of short period, low dose oral prednisolone for the prevention of stricture after circumferential endoscopic submucosal dissection (ESD) for esophageal cancer. Endosc. Int. Open. 2015, 3, E113–E117. [Google Scholar] [CrossRef][Green Version]
- Pih, G.Y.; Kim, D.H.; Gong, E.J.; Na, H.K.; Jung, K.W.; Lee, J.H.; Ahn, J.Y.; Choi, K.D.; Song, H.J.; Lee, G.H.; et al. Preventing esophageal strictures with steroids after endoscopic submucosal dissection in superficial esophageal neoplasm. J. Dig. Dis. 2019, 20, 609–616. [Google Scholar] [CrossRef] [PubMed]
- Sato, H.; Inoue, H.; Kobayashi, Y.; Maselli, R.; Santi, E.G.; Hayee, B.; Igarashi, K.; Yoshida, A.; Ikeda, H.; Onimaru, M.; et al. Control of severe strictures after circumferential endoscopic submucosal dissection for esophageal carcinoma: Oral steroid therapy with balloon dilation or balloon dilation alone. Gastrointest. Endosc. 2013, 78, 250–257. [Google Scholar] [CrossRef] [PubMed]
- Hanaoka, N.; Ishihara, R.; Uedo, N.; Takeuchi, Y.; Higashino, K.; Akasaka, T.; Kanesaka, T.; Matsuura, N.; Yamasaki, Y.; Hamada, K.; et al. Refractory strictures despite steroid injection after esophageal endoscopic resection. Endosc. Int. Open. 2016, 4, E354–E359. [Google Scholar] [CrossRef][Green Version]
- Yoshida, M.; Takizawa, K.; Nonaka, S.; Shichijo, S.; Suzuki, S.; Sato, C.; Komori, H.; Minagawa, T.; Oda, I.; Uedo, N.; et al. Conventional versus traction-assisted endoscopic submucosal dissection for large esophageal cancers: A multicenter, randomized controlled trial (with video). Gastrointest. Endosc. 2020, 91, 55–65.e52. [Google Scholar] [CrossRef] [PubMed]
- Koike, Y.; Hirasawa, D.; Fujita, N.; Maeda, Y.; Ohira, T.; Harada, Y.; Suzuki, K.; Yamagata, T.; Tanaka, M. Usefulness of the thread-traction method in esophageal endoscopic submucosal dissection: Randomized controlled trial. Dig. Endosc. 2015, 27, 303–309. [Google Scholar] [CrossRef]
- Zhai, Y.Q.; Li, H.K.; Linghu, E.Q. Endoscopic submucosal tunnel dissection for large superficial esophageal squamous cell neoplasms. World J. Gastroenterol. 2016, 22, 435–445. [Google Scholar] [CrossRef]
- Zhang, T.; Zhang, H.; Zhong, F.; Wang, X. Efficacy of endoscopic submucosal tunnel dissection versus endoscopic submucosal dissection for superficial esophageal neoplastic lesions: A systematic review and meta-analysis. Surg. Endosc. 2021, 35, 52–62. [Google Scholar] [CrossRef]
- Yahagi, N.; Nishizawa, T.; Sasaki, M.; Ochiai, Y.; Uraoka, T. Water pressure method for duodenal endoscopic submucosal dissection. Endoscopy 2017, 49, E227–E228. [Google Scholar] [CrossRef][Green Version]
- Akasaka, T.; Takeuchi, Y.; Uedo, N.; Ishihara, R.; Iishi, H. “Underwater” endoscopic submucosal dissection for superficial esophageal neoplasms. Gastrointest. Endosc. 2017, 85, 251–252. [Google Scholar] [CrossRef]
- Masunaga, T.; Kato, M.; Yahagi, N. Successful endoscopic submucosal dissection using the water pressure method for cervical esophageal cancer. Dig. Endosc. 2021, 33, e93–e94. [Google Scholar] [CrossRef]
- Shimizu, Y.; Tukagoshi, H.; Fujita, M.; Hosokawa, M.; Kato, M.; Asaka, M. Metachronous squamous cell carcinoma of the esophagus arising after endoscopic mucosal resection. Gastrointest. Endosc. 2001, 54, 190–194. [Google Scholar] [CrossRef]
- Katada, C.; Yokoyama, T.; Yano, T.; Kaneko, K.; Oda, I.; Shimizu, Y.; Doyama, H.; Koike, T.; Takizawa, K.; Hirao, M.; et al. Alcohol Consumption and Multiple Dysplastic Lesions Increase Risk of Squamous Cell Carcinoma in the Esophagus, Head, and Neck. Gastroenterology 2016, 151, 860–869. [Google Scholar] [CrossRef] [PubMed][Green Version]
- Wang, W.L.; Chang, I.W.; Chen, C.C.; Chang, C.Y.; Tseng, C.H.; Tai, C.M.; Lin, J.T.; Wang, H.P.; Lee, C.T. The in vivo tissue effect of endoscopic balloon-based radiofrequency ablation in treating esophageal squamous cell neoplasia. United Eur. Gastroenterol. J. 2018, 6, 656–661. [Google Scholar] [CrossRef]
- Chen, Z.; Dou, L.; Liu, Y.; Zhang, Y.; He, S.; Xue, L.; Wang, G. Combination of Endoscopic Resection and Radiofrequency Ablation for the Treatment of Esophageal Squamous Cell Neoplasia With Multiple Lugol-Voiding Lesions. Front. Oncol. 2021, 11, 786015. [Google Scholar] [CrossRef] [PubMed]
- Matsueda, K.; Ishihara, R.; Morishima, T.; Okubo, Y.; Kawakami, Y.; Sakurai, H.; Nakamura, T.; Tani, Y.; Miyake, M.; Shichijo, S.; et al. Impact of endoscopic surveillance on mortality of metachronous esophageal and head and neck cancer after esophageal endoscopic resection. J. Gastroenterol. Hepatol. 2022, 37, 2098–2104. [Google Scholar] [CrossRef] [PubMed]
- Tanaka, I.; Hirasawa, D.; Saito, H.; Akahira, J.; Fujishima, F.; Matsuda, T. Stepwise endoscopic submucosal dissection for circumferential Barrett’s esophageal dysplasia and carcinoma: A case series. Endosc. Int. Open. 2022, 10, E215–E221. [Google Scholar] [CrossRef]
- Shiwaku, H.; Okada, H.; Shiwaku, A.; Tanaka, K.; Shimaoka, H.; Maki, K.; Yoshimura, F.; Hasegawa, S. Endoscopic full-thickness resection of an esophageal leiomyoma located in close proximity to the azygos vein. DEN Open. 2022, 2, e30. [Google Scholar] [CrossRef]
- Zhu, S.; Lin, J.; Huang, S. Successful en bloc endoscopic full-thickness resection of a giant cervical esophageal leiomyoma originating from muscularis propria. J. Cardiothorac. Surg. 2019, 14, 16. [Google Scholar] [CrossRef][Green Version]
- Veronesi, U.; Paganelli, G.; Galimberti, V.; Viale, G.; Zurrida, S.; Bedoni, M.; Costa, A.; de Cicco, C.; Geraghty, J.G.; Luini, A.; et al. Sentinel-node biopsy to avoid axillary dissection in breast cancer with clinically negative lymph-nodes. Lancet 1997, 349, 1864–1867. [Google Scholar] [CrossRef]
- Russell-Jones, R.; Acland, K. Sentinel node biopsy in the management of malignant melanoma. Clin. Exp. Dermatol. 2001, 26, 463–468. [Google Scholar] [CrossRef]
- Mattsson, J.; Bergkvist, L.; Abdiu, A.; Aili Low, J.F.; Naredi, P.; Ullberg, K.; Garpered, U.; Hakansson, A.; Ingvar, C. Sentinel node biopsy in malignant melanoma: Swedish experiences 1997–2005. Acta Oncol. 2008, 47, 1519–1525. [Google Scholar] [CrossRef] [PubMed]
- Nihei, K.; Minashi, K.; Yano, T.; Shimoda, T.; Fukuda, H.; Muto, M.; Investigators, J.-G. Final Analysis of Diagnostic Endoscopic Resection Followed by Selective Chemoradiotherapy for Stage I Esophageal Cancer: JCOG0508. Gastroenterology 2023, 164, 296–299. [Google Scholar] [CrossRef] [PubMed]
- Tie, J.; Cohen, J.D.; Lahouel, K.; Lo, S.N.; Wang, Y.; Kosmider, S.; Wong, R.; Shapiro, J.; Lee, M.; Harris, S.; et al. Circulating Tumor DNA Analysis Guiding Adjuvant Therapy in Stage II Colon Cancer. N. Engl. J. Med. 2022, 386, 2261–2272. [Google Scholar] [CrossRef] [PubMed]
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Okubo, Y.; Ishihara, R. Endoscopic Submucosal Dissection for Esophageal Cancer: Current and Future. Life 2023, 13, 892. https://doi.org/10.3390/life13040892
Okubo Y, Ishihara R. Endoscopic Submucosal Dissection for Esophageal Cancer: Current and Future. Life. 2023; 13(4):892. https://doi.org/10.3390/life13040892
Chicago/Turabian StyleOkubo, Yuki, and Ryu Ishihara. 2023. "Endoscopic Submucosal Dissection for Esophageal Cancer: Current and Future" Life 13, no. 4: 892. https://doi.org/10.3390/life13040892