Pedersen Alisha P, Alghazali Karrer M, Hamzah Rabab N, Mulon Pierre-Yves, McCracken Megan, Rifkin Rebecca E, Mhannawee Anwer, Nima Zeid A, Griffin Christopher, Donnell Robert L, Biris Alexandru S, Anderson David E
Department of Large Animal Clinical Sciences, College of Veterinary Medicine, University of Tennessee, Knoxville, TN, United States.
Center for Integrative Nanotechnology Sciences, University of Arkansas at Little Rock, Little Rock, AR, United States.
Front Surg. 2020 Nov 11;7:587951. doi: 10.3389/fsurg.2020.587951. eCollection 2020.
Various conditions in human and veterinary medicine require intestinal resection and anastomosis, and complications from these procedures are frequent. A rapidly collapsible anastomotic guide was developed for small intestinal end-to-end anastomosis and was investigated in order to assess its utility to improve the anastomotic process and to potentially reduce complication rates. A complex manufacturing method for building a polymeric device was established utilizing biocompatible and biodegradable polyvinylpyrrolidone and polyurethane. This combination of polymers would result in rapid collapse of the material. The guide was designed as a hollow cylinder composed of overlaying shingles that separate following exposure to moisture. An study was performed using commercial pigs, with each pig receiving one standard handsewn anastomosis and one guide-facilitated anastomosis. Pigs were sacrificed after 13 days, at which time burst pressure, maximum luminal diameter, and presence of adhesions were assessed. Burst pressures were not statistically different between treatment groups, but anastomoses performed with the guide withstood 10% greater luminal burst pressure and maintained 17% larger luminal diameter than those performed using the standard handsewn technique alone. Surgeons commented that the addition of a guide eased the performance of the anastomosis. Hence, a rapidly collapsible anastomotic guide may be beneficial to the performance of intestinal anastomosis.
人类医学和兽医学中的多种病症都需要进行肠切除和吻合术,并且这些手术的并发症很常见。一种用于小肠端端吻合术的可快速折叠的吻合导向器被研发出来,并对其进行了研究,以评估其在改善吻合过程以及潜在降低并发症发生率方面的效用。利用生物相容性和可生物降解的聚乙烯吡咯烷酮和聚氨酯建立了一种用于制造聚合物装置的复杂制造方法。这种聚合物组合会导致材料快速折叠。该导向器被设计成一个空心圆柱体,由重叠的带状物组成,这些带状物在接触水分后会分开。使用商用猪进行了一项研究,每头猪接受一次标准手工缝合吻合术和一次导向辅助吻合术。13天后对猪实施安乐死,此时评估破裂压力、最大管腔直径以及粘连情况。各治疗组之间的破裂压力在统计学上没有差异,但使用导向器进行的吻合术比仅使用标准手工缝合技术进行的吻合术承受的管腔破裂压力高10%,并且管腔直径大17%。外科医生评论说,增加一个导向器使吻合术的操作更加容易。因此,一种可快速折叠的吻合导向器可能对肠吻合术的操作有益。