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首页> 外文期刊>Journal of hepato-biliary-pancreatic sciences >Ultra-minimally invasive local immune cell therapy and regenerative therapy by multi-piercing surgery for abdominal solid tumor: therapeutic simulation by natural orifice translumenal endoscopic surgery-assisted needlescopic surgery using 3-mm diameter robots.
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Ultra-minimally invasive local immune cell therapy and regenerative therapy by multi-piercing surgery for abdominal solid tumor: therapeutic simulation by natural orifice translumenal endoscopic surgery-assisted needlescopic surgery using 3-mm diameter robots.

机译:腹部实体瘤的多穿刺手术进行的超微创局部免疫细胞疗法和再生疗法:使用3毫米直径机器人通过自然孔内腔内镜手术辅助的针镜手术进行治疗模拟。

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BACKGROUND/PURPOSE: We have invented multi-piercing surgery (MPS) which could potentially solve the triangular formation loss and device clashing which occur in single-port surgery (SPS), as well as restricted visual field, organ damage by needle-type instruments, and impaired removal of a resected organ from the body which occur in needlescopic surgery (NS). MPS is natural orifice translumenal endoscopic surgery (NOTES)-assisted NS. We used 3-mm diameter robots as needle-type instruments for MPS to examine the possibility of local immune cell therapy and regenerative therapy using stem cells for pancreatic cancer. METHODS: In MPS using two robots, the therapeutic cell suspension was injected into a target region of pancreas in two pigs. Both retention of a capsule of liquid cell suspension and invasive level were evaluated. RESULTS: Triangular formation could be ensured. The use of small-diameter robots allowed (1) the surgical separation of the pancreas and the retroperitoneum, and (2) the formation of the capsule containing the immune cell and stem cell suspension. The endoscope for NOTES provided a clear visual field and also assisted the removal of a resected organ from the body. The visual field of the endoscope could be oriented well by using an electromagnetic navigation system. CONCLUSIONS: MPS using small-diameter robots could potentially solve the issues inherent in SPS and NS and could allow minimally invasive local immune cell and stem cell therapy.
机译:背景/目的:我们已经发明了多穿刺手术(MPS),它有可能解决单端口手术(SPS)发生的三角形形成损失和器械碰撞,以及受限的视野,针型器械对器官的损害,以及在针灸手术(NS)中从体内切除的切除器官的功能受损。 MPS是自然孔腔内镜手术(NOTES)辅助的NS。我们使用直径为3毫米的机器人作为MPS的针式器械,以检查使用胰腺癌干细胞进行局部免疫细胞疗法和再生疗法的可能性。方法:在使用两个机器人的MPS中,将治疗性细胞悬液注射到两只猪的胰腺靶区域。评估了液体细胞悬液胶囊的保留率和侵袭性水平。结果:可以确保三角形的形成。小直径机器人的使用允许(1)胰腺和腹膜后的手术分离,以及(2)包含免疫细胞和干细胞悬液的胶囊的形成。 NOTES内窥镜提供了清晰的视野,还有助于从体内去除切除的器官。内窥镜的视野可以通过使用电磁导航系统很好地定向。结论:使用小直径机器人的MPS可以潜在地解决SPS和NS固有的问题,并可以进行微创的局部免疫细胞和干细胞治疗。

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