| Literature DB >> 34750473 |
Eriko Koizumi1, Osamu Goto2, Seiichi Shinji3, Koki Hayashi3, Tsugumi Habu1, Kumiko Kirita1, Hiroto Noda1, Kazutoshi Higuchi1, Takeshi Onda1, Jun Omori1, Teppei Akimoto1, Mitsuru Kaise1, Hiroshi Yoshida3, Katsuhiko Iwakiri1.
Abstract
Prevention of postoperative anastomotic leakage in rectal surgery is still required. This study investigated the feasibility of endoscopic hand suturing (EHS) on rectal anastomosis ex vivo. By using isolated porcine colon, we prepared ten anastomoses 6-10 cm from the virtual anus. Then, we sutured anastomoses intraluminally by EHS, which involved a continuous suturing method in 5 cases and a nodule suturing method with extra corporeal ligation in 5 cases. Completeness of suturing, number of stitches, procedure time and presence of stenosis were investigated. Furthermore, the degree of stenosis was compared between the two suturing methods. In all cases, EHS were successfully completed. The median number of stitches and procedure time was 8 and 5.8 min, respectively. Stenosis was created in all continuous suturing cases whereas none was seen in nodule suturing cases. The shortening rate was significantly greater in the continuous suturing method than in the nodule suturing method. Intraluminal reinforcement of rectal anastomosis by EHS using nodule suturing with extra corporeal ligation is feasible without stenosis, which may be helpful as a countermeasure against possible postoperative anastomotic leakage in rectal surgery.Entities:
Mesh:
Year: 2021 PMID: 34750473 PMCID: PMC8576026 DOI: 10.1038/s41598-021-01396-y
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Endoscopic hand suturing for rectal anastomosis. (a) A porcine rectal model with anastomosis which is made with double stapling technique. (b) The rectal model having a virtual anus is fixed on a rubber roll with string. (c, d) The full layer at the proximal side of the anastomosis is sutured using a flexible needle holder (c), followed by suturing at the distal side (d). (e) In nodule suturing, a notched transparent straight hood is used. (f) A extracorporeally-created knot is delivered to the anastomotic site using the endoscope.
Figure 2Schemas of endoscopic hand suturing for rectal anastomosis. (a) The continuous suturing with a barbed suture. The anastomosis was sutured circumferentially. (b) The nodule-suturing method. (c) In the nodule suturing, the slipknot is created outside the tract after retrieving the needle. The knot is delivered to the lumen by using the tip of the endoscope with the notched hood (red direction) while the thread remains tensioned by the assistant (green direction).
Outcomes of endoscopic hand-suturing of rectal anastomosis in an ex vivo porcine model.
| Case no. | Suturing method | Thread | Complete | Stitches, n | Median procesdure time of suturing, minutes | Stenosis |
|---|---|---|---|---|---|---|
| 1 | Continuous suturing | 3-0 V-loc 180TM | Yes | 9 | 5.6 | Mild |
| 2 | Continuous suturing | 3-0 V-loc 180TM | Yes | 8 | 4.9 | Moderate |
| 3 | Continuous suturing | 3-0 V-loc 180TM | Yes | 6 | 8.2 | Severe |
| 4 | Continuous suturing | 3-0 V-loc 180TM | Yes | 8 | 3.3 | Moderate |
| 5 | Continuous suturing | 3-0 V-loc 180TM | Yes | 8 | 3.6 | Mild |
| 6 | Nodule suturing | 3-0 BiosynTM | Yes | 8 | 9.1 | No |
| 7 | Nodule suturing | 3-0 BiosynTM | Yes | 8 | 6.0 | No |
| 8 | Nodule suturing | 3-0 BiosynTM | Yes | 8 | 7.3 | No |
| 9 | Nodule suturing | 3-0 BiosynTM | Yes | 8 | 6.6 | No |
| 10 | Nodule suturing | 3-0 BiosynTM | Yes | 8 | 5.4 | No |
Figure 3Endoscopic images of anastomosis before and after endoscopic hand suturing. (a) Cases sutured by the continuous suturing method (Case 1–5). Case 1, mild stenosis; Case 2, moderate stenosis; Case 3, severe stenosis; Case 4, moderate stenosis; Case 5, mild stenosis. (b) Cases sutured by the nodule suturing method (Case 6–10). No stenosis.
Figure 4Changes in suturing time in the nodule-suturing method. The suturing time, defined as the duration required for creating a single nodule, becomes shorter as the number of stitches is accumulated.
Outcomes of manual suturing of flat porcine colon model.
| Case no. | Suturing method | Thread | Length of flat colon model, cm | Shortening rate, % | |
|---|---|---|---|---|---|
| Before suturing | After suturing | ||||
| 1 | Continuous suturing | 3-0 V-loc 180TM | 10.0 | 7.0 | 30.0 |
| 2 | Continuous suturing | 3-0 V-loc 180TM | 10.0 | 5.2 | 48.0 |
| 3 | Continuous suturing | 3-0 V-loc 180TM | 10.0 | 5.5 | 45.0 |
| 4 | Continuous suturing | 3-0 V-loc 180TM | 9.0 | 4.5 | 50.0 |
| 5 | Continuous suturing | 3-0 V-loc 180TM | 9.5 | 4.5 | 52.6 |
| 6 | Nodule suturing | 3-0 BiosynTM | 10.0 | 8.5 | 15.0 |
| 7 | Nodule suturing | 3-0 BiosynTM | 10.0 | 9.5 | 5.0 |
| 8 | Nodule suturing | 3-0 BiosynTM | 9.5 | 8.5 | 10.5 |
| 9 | Nodule suturing | 3-0 BiosynTM | 9.5 | 9.5 | 0.0 |
| 10 | Nodule suturing | 3-0 BiosynTM | 10.0 | 9.0 | 10.0 |
Figure 5Flat porcine colon models which sutured manually with continuous suturing method and nodule-suturing method. The flat colon models were manually sutured in line by using two types of suturing method. (a) Case 1–5: Cases sutured by the continuous suturing method. (b) Case 6–10: Cases sutured by the nodule-suturing method. The shortening rate of flat colon models by suturing with the continuous suturing method was greater than that by the nodule suturing method.