| Literature DB >> 32677956 |
Zakari Shaibu1,2, Zhihong Chen3, Said Abdulrahman Salim Mzee2,4, Acquah Theophilus1,2, Isah Adamu Danbala2,4.
Abstract
BACKGROUND: Additional studies comparing several reconstruction methods after proximal gastrectomy have been published; of note, it is necessary to update systematic reviews and meta-analysis from the current evidence-based literature. AIM: To expand the current knowledge on feasibility and safety, and also to analyze postoperative outcomes of several reconstructive techniques after proximal gastrectomy.Entities:
Keywords: Double flap; Double tract reconstruction; Esophagogastrostomy; Gastric cancer or neoplasms; Jejunal interposition; Jejunal pouch interposition; Proximal gastrectomy
Mesh:
Year: 2020 PMID: 32677956 PMCID: PMC7367236 DOI: 10.1186/s12957-020-01936-2
Source DB: PubMed Journal: World J Surg Oncol ISSN: 1477-7819 Impact factor: 2.754
Basic characteristics of included studies
| Authors | Nationality | year | Design | Groups | Number of patients |
|---|---|---|---|---|---|
| wright et al. [ | Scotland | 1987 | RS | JI | 30 |
| Kameyama et al. [ | Japan | 2004 | RC | JI/JPI | 13/59 |
| Senmaru et al. [ | Japan | 1999 | RC | JI/JPI | 12/12 |
| Isobe et al. [ | Japan | 2014 | RC | EG/JI/JPI | 66/23/12 |
| kazuhiro et al. [ | Japan | 1998 | RC | EG/JI | 11/14 |
| Adachi et al. [ | Japan | 1999 | RC | JI | 16/14 |
| kondoh et al. [ | Japan | 2006 | RS | EG | 10 |
| Yasuda et al. [ | Japan | 2015 | RC | EG/JI | 25/21 |
| zhao et al. [ | China | 2014 | RS | JI | 35 |
| Ahn et al. [ | Japan | 2014 | RS | DTR | 43 |
| Kim et al. [ | Korea | 2016 | RS | DTR | 27 |
| Zhang et al. [ | China | 2018 | RS | EG | 62 |
| Kamitaka et al. [ | Japan | 2017 | RS | DTR | 10 |
| Nomura et al. [ | Japan | 2019 | PS | DTR/JI | 15/15 |
| Sugiyama et al. [ | Japan | 2018 | RS | DTR | 10 |
| Tokunaga et al. [ | Japan | 2008 | RS | EG/JI | 49/58 |
| Ohashi et al. [ | Japan | 2015 | RS | JI | 65 |
| Tanaka et al. [ | Japan | 2017 | RS | DTR | 10 |
| Aburatani et al. [ | Japan | 2017 | RS | DTR/EG | 19/22 |
| Yang et al. [ | Korea | 2016 | RS | DTR | 16 |
| Nakmura et al. [ | Japan | 2014 | RS | EG/JI/JPI | 65/25/12 |
| Hong et al. [ | China | 2015 | RS | DTR | 21 |
| Katai et al. [ | Japan | 2010 | RS | JI | 128 |
| Masuzawa [ | Japan | 2013 | RS | EG/JI | 49/32 |
| Takayama [ | Japan | 2018 | RS | JI | 32 |
| Kano et al. [ | Japan | 2019 | RS | DFR | 51 |
| Koruda et al. [ | Japan | 2019 | RS | DFR | 464 |
| Omori et al. [ | Japan | 2017 | RS | DFR | 32 |
| Saeki et al. [ | Japan | 2018 | RS | DFR | 13 |
Fig. 15Reconstruction methods after proximal gastrectomy. a Jejunal interposition. b Double tract method. c Esophagogastrostomy. d Double flap technique. e Jejunal pouch interposition
Fig. 1Flow chart of the literature screening, exclusion and inclusion process
Qualitative analysis postoperative outcomes
| Authors | Reflux esophagitis | Anastomotic stricture | Anastomotic leakage | Residual food |
|---|---|---|---|---|
| Double tract | ||||
| Ahn et al. [ | 2/43 (4.65%) | 2/43 (4.65%) | – | 21/43 (48.9%) |
| Kim et al. [ | 2/17 (11.8%) | 0/17 (0%) | 1/17 (5.9%) | – |
| Kamitaka et al. [ | 2/10 (20%) | – | 0/10 (0%) | – |
| Nomura et al. [ | 1/15 (6.7%) | 1/15 (3.3%) | 0/15 (0%) | 2/15 (13.3%) |
| Sugiyama et al. [ | – | 0/10 (0%) | 1/10 (10%) | – |
| Aburatani et al. [ | 2/19 (10.5%) | 0 | 0 | – |
| Yang et al. [ | 0 | – | – | – |
| Tanaka et al. [ | 2/10 (20%) | 0 | 0 | 0 |
| Hong et al. [ | 0 | 0 | 0 | – |
| Total | 11/114 (9.6%) | 3/85 (3.5%) | 2/52 (3.9%) | 23/58 (39.6%) |
| Jejunal pouch interposition | ||||
| Senmaru et al. [ | – | 1/12 (8.3%) | 0 (0%) | – |
| Kameyama et al. [ | 6/46 (13.0%) | – | 9/46 (15.3%) | 23/46 (50.0%) |
| Isobe et al. [ | 2/12(16.7) | 1/12 (8.3%) | 1/12 (8.3%) | – |
| Nakamura et al [ | – | 1/12 (8.3%) | 0 | 11/12 (91.7%) |
| Total | 8/58 (13.8%) | 3/36 (8.3%) | 10/58 (17.2%) | 34/58 (58.6%) |
| Jejunal interposition | ||||
| Wright et al. [ | 2/30 (6.7%) | 1/30 (3.3%) | 3/30 (10%) | 8/30 (26.7%) |
| Senmaru et al. [ | – | 2/12 (16.7%) | 1/12 (8.3%) | – |
| Kameyama et al. [ | 3/10 (30.0%) | – | 0/10 (0.0%) | 3/10 (30.0%) |
| Isobe et al. [ | 3/23 (13.0) | 0/23 (0%) | 3/23 (13.0) | – |
| Kazuhiro et al. [ | 0/14 (0%) | 9/14 (64.3%) | 0/14 (0%) | – |
| Adachi et al. [ | 0/16 (0%) | 1/16 (6.3%) | 0/16 (0%) | – |
| Yasuda et al. [ | 1/23 (5%) | 3/21 (14.3%) | 2/21 (10%) | 17/17 (100%) |
| Zhao et al. [ | 2/31 (6.5%) | – | 0/35 (0%) | – |
| Nomura et al. [ | 1/15 (6.7%) | 1/15 (3.3%) | 0/15 (0%) | 4/15 (26.7%) |
| Tokunaga et al. [ | 3/45 (7%) | – | – | – |
| Nakamura et al. [ | – | 7/22 (31.8%) | 1/25 (4%) | 7/22 (31.8%) |
| Takayama et al. [ | – | 1/32 (3.1%) | – | – |
| Ohashi et al. [ | 22/65 (34%) | – | 6/65 (9%) | – |
| Katai et al. [ | – | 13/128 (10.2%) | 1/128 (0.8%) | – |
| Masuzawa et al. [ | 5/32 (15.6%) | 1/32 (3.1%) | 0 | – |
| Total | 42/304 (13.8%) | 39/345 (11.3%) | 15/369 (4.1%) | 39/94 (41.5%) |
| Esophagogastrostomy | ||||
| Isobe et al. [ | 12/66 (18.2%) | 2/66 (3.0%) | 1/66 (1.5%) | – |
| Kazuhiro et al. [ | 4/10 (40%) | 2/10 (20%) | 2/11 (18.2%) | – |
| Kondoh et al. [ | 4/10 (40%) | 4/10 (40%) | 0/10 (0%) | – |
| Yasuda et al. [ | 1/23 (4.3%) | 0/25 (0%) | 0/25 (0%) | – |
| Zhang et al. [ | 9/62 (14.5%) | 11/62 (7.1%) | 5/62 (8.1%) | – |
| Tokunaga et al. [ | 3/38 (8%) | – | – | – |
| Nakamura et al. [ | – | 12/55 (21.8%) | 0 | 12/55 (21.8%) |
| Masuzawa et al. [ | 9/49 (18.4%) | 2/49 (4.1%) | 0 | |
| Abutarani et al. [ | 12/22 (54.5%) | 6/22 (27.3%) | 0 | |
| Total | 54/280 (19.3%) | 39/299 (13.0%) | 8/174 (4.6%) | 12/55 (21.8%) |
| Double flap reconstruction | ||||
| Kano et al. [ | 3/51 (5.9%) | 4/51 (8%) | 0/51 (0%) | 2/51 (3.9%) |
| Koruda et al. [ | 46/464 (10.6%) | 26/464 (5.5%) | 7/464 (1.5%) | – |
| Omori et al. [ | 0/32 (0%) | 0/32 (0%) | 0/32 (0%) | – |
| Saeki et al. [ | 1/13 (7.7%) | – | 1/13 (7.7%) | – |
| Total | 50/560 (8.9%) | 30/547 (5.5%) | 8/560 (1.4%) | 2/51 (3.9%) |
Quantitative studies between JI, JPI, and EG
| Reference | Reflux Esophagitis | Anastomotic stricture | Anastomotic leakage | Infection | Residual food | Operation time | Blood loss | LOS |
|---|---|---|---|---|---|---|---|---|
| JI/JPI | ||||||||
| Senmaru et al. [ | – | 2/1 | 1/0 | 1/0 | – | 297.8 + 17.5/282.9 + 18.6 | – | 38.6 + 3.5/43.5 + 5.9 |
| Kameyama et al. [ | 3/2 | – | 0/1 | – | 30.0%/50.0% | – | – | – |
| Isobe et al. [ | 3/2 | 0/1 | 3/1 | – | – | 251.7 + 43.6/270.2 + 50.0 | 230.4 + 204.5/333.9 + 354.4 | 24.1 + 17.7/21.7 + 16.3 |
| Nakamura et al. [ | 11– | 7/1 | 1/0 | – | – | 281 + 69/311 + 68 | 393 + 338/402 + 385 | – |
| JI/EG | ||||||||
| Isobe et al. [ | 3/12 | 2/0 | 3/1 | – | – | 251.7 + 43.6/199.0 + 43.1 | 230.4 + 204.5/176.5 + 144.2 | 24.1 + 17.7/15.6 + 10.4 |
| Kazuhiro et al. [ | 0/4 | – | 0/2 | 2/0 | – | 241.2 + 10.2/186.9 + 11.7 | 424..6 + 64.1/324.0 + 61.4 | 35.0 + 3.9/28.4 + 4.3 |
| Yasuda et al. [ | 1/1 | 3/0 | 2/0 | 2/3 | – | 268.8 + 59.6/286.4 + 54.3 | 307.4 + 264.8/299.2 + 334.5 | 29.4 + 19.8/18.6 + 3.6 |
| Tokunaga et al. [ | 3/3 | – | – | – | – | 267 + 11/203 + 9 | 287 + 32/252 + 50 | – |
| Nakamura et al. [ | 11/12 | 7/12 | 1/0 | – | – | 281 + 69/198 + 25 | 393 + 338/179 + 158 | – |
| Masuzawa et al. [ | 5/9 | 1/2 | 0/0 | – | – | 230 + 43/185 + 48 | 331 + 182/280 + 247 | 23 + 31/20 + 17 |
Fig. 2Forest plot of reflux esophagitis
Fig. 3Forest plot of anastomotic leakage
Fig. 4Forest plot of anastomotic stricture
Fig. 5Forest plot of mean difference in operative time
Fig. 6Forest plot of mean difference blood loss
Fig. 7Forest plot of mean difference hospital length of stay
Fig. 8Forest plot of anastomotic leakage
Fig. 9Forest plot of anastomotic stricture
Fig. 10Forest t plot of anastomotic leakage
Fig. 11Forest plot of operative time
Fig. 12Forest plot of mean difference blood loss
Fig. 13Forest plot of hospital length of stay.
Fig. 14Funnel plot of hospital length of stay for JI and EG