Jan Bureš, Věra Radochová, Jaroslav Květina, Darina Kohoutová, Martin Vališ, Stanislav Rejchrt, Jana Žďárová Karasová, Ondřej Soukup, Štěpán Suchánek, Miroslav Zavoral
{"title":"实验猪胃肠传输时间、腔内pH值、压力和温度的无线监测:一项初步研究。","authors":"Jan Bureš, Věra Radochová, Jaroslav Květina, Darina Kohoutová, Martin Vališ, Stanislav Rejchrt, Jana Žďárová Karasová, Ondřej Soukup, Štěpán Suchánek, Miroslav Zavoral","doi":"10.14712/18059694.2023.9","DOIUrl":null,"url":null,"abstract":"<p><strong>Background: </strong>There is no single gold standard for investigation of gastrointestinal motility function. Wireless motility monitoring involves a novel concept which provides a complex information on gastrointestinal function (gastrointestinal transit time, intra-luminal pH, pressure and temperature). Gastrointestinal motility functions of experimental pigs are very similar to those of humans. That is why porcine studies have already provided suitable experimental models for several preclinical projects.</p><p><strong>Aims: </strong>The aim of our study was to adopt methods of non-invasive wireless monitoring of gastrointestinal functions in experimental pigs.</p><p><strong>Methods: </strong>Five experimental adult female pigs were enrolled into the study. Wireless motility capsules were delivered into the porcine stomach endoscopically. Gastrointestinal transit and intra-luminal conditions were recorded for five days.</p><p><strong>Results: </strong>Records of animals provided good (3 pigs) or very good quality files (2 pigs). 31150 variables were evaluated. Mean time of the presence of capsules in the stomach was 926 ± 295 min, transfer of a capsule from the stomach into the duodenum lasted 5-34 min. Mean small intestinal transit time was 251 ± 43 min. Food intake was associated with an increase of gastric luminal temperature and a decrease of intra-gastric pressure. The highest intra-luminal pH was present in the ileum. The highest temperature and the lowest intra-luminal pressure were found in the colon. All data displayed a substantial inter-individual variability.</p><p><strong>Conclusions: </strong>This pilot study has proven that a long-term function monitoring of the gastrointestinal tract by means of wireless motility capsules in experimental pigs is feasible. However, both ketamine-based induction of general anaesthesia as well as long-lasting general anaesthesia (> 6 hours) should be avoided to prevent retention of a capsule in the porcine stomach.</p>","PeriodicalId":35758,"journal":{"name":"Acta medica (Hradec Kralove)","volume":"66 1","pages":"11-18"},"PeriodicalIF":0.0000,"publicationDate":"2023-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Wireless Monitoring of Gastrointestinal Transit Time, Intra-luminal pH, Pressure and Temperature in Experimental Pigs: A Pilot Study.\",\"authors\":\"Jan Bureš, Věra Radochová, Jaroslav Květina, Darina Kohoutová, Martin Vališ, Stanislav Rejchrt, Jana Žďárová Karasová, Ondřej Soukup, Štěpán Suchánek, Miroslav Zavoral\",\"doi\":\"10.14712/18059694.2023.9\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Background: </strong>There is no single gold standard for investigation of gastrointestinal motility function. Wireless motility monitoring involves a novel concept which provides a complex information on gastrointestinal function (gastrointestinal transit time, intra-luminal pH, pressure and temperature). Gastrointestinal motility functions of experimental pigs are very similar to those of humans. That is why porcine studies have already provided suitable experimental models for several preclinical projects.</p><p><strong>Aims: </strong>The aim of our study was to adopt methods of non-invasive wireless monitoring of gastrointestinal functions in experimental pigs.</p><p><strong>Methods: </strong>Five experimental adult female pigs were enrolled into the study. Wireless motility capsules were delivered into the porcine stomach endoscopically. Gastrointestinal transit and intra-luminal conditions were recorded for five days.</p><p><strong>Results: </strong>Records of animals provided good (3 pigs) or very good quality files (2 pigs). 31150 variables were evaluated. Mean time of the presence of capsules in the stomach was 926 ± 295 min, transfer of a capsule from the stomach into the duodenum lasted 5-34 min. Mean small intestinal transit time was 251 ± 43 min. Food intake was associated with an increase of gastric luminal temperature and a decrease of intra-gastric pressure. The highest intra-luminal pH was present in the ileum. The highest temperature and the lowest intra-luminal pressure were found in the colon. All data displayed a substantial inter-individual variability.</p><p><strong>Conclusions: </strong>This pilot study has proven that a long-term function monitoring of the gastrointestinal tract by means of wireless motility capsules in experimental pigs is feasible. 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Wireless Monitoring of Gastrointestinal Transit Time, Intra-luminal pH, Pressure and Temperature in Experimental Pigs: A Pilot Study.
Background: There is no single gold standard for investigation of gastrointestinal motility function. Wireless motility monitoring involves a novel concept which provides a complex information on gastrointestinal function (gastrointestinal transit time, intra-luminal pH, pressure and temperature). Gastrointestinal motility functions of experimental pigs are very similar to those of humans. That is why porcine studies have already provided suitable experimental models for several preclinical projects.
Aims: The aim of our study was to adopt methods of non-invasive wireless monitoring of gastrointestinal functions in experimental pigs.
Methods: Five experimental adult female pigs were enrolled into the study. Wireless motility capsules were delivered into the porcine stomach endoscopically. Gastrointestinal transit and intra-luminal conditions were recorded for five days.
Results: Records of animals provided good (3 pigs) or very good quality files (2 pigs). 31150 variables were evaluated. Mean time of the presence of capsules in the stomach was 926 ± 295 min, transfer of a capsule from the stomach into the duodenum lasted 5-34 min. Mean small intestinal transit time was 251 ± 43 min. Food intake was associated with an increase of gastric luminal temperature and a decrease of intra-gastric pressure. The highest intra-luminal pH was present in the ileum. The highest temperature and the lowest intra-luminal pressure were found in the colon. All data displayed a substantial inter-individual variability.
Conclusions: This pilot study has proven that a long-term function monitoring of the gastrointestinal tract by means of wireless motility capsules in experimental pigs is feasible. However, both ketamine-based induction of general anaesthesia as well as long-lasting general anaesthesia (> 6 hours) should be avoided to prevent retention of a capsule in the porcine stomach.
期刊介绍:
Acta Medica (Hradec Králové) is a multidisciplinary medical journal published by the Faculty of Medicine in Hradec Králové - Karolinum Press, the publishing house of Charles University. The journal is peer-reviewed and published quarterly in both paper and electronic form. The language of Acta Medica is English. Offerings include review articles, original articles, brief communications, case reports, announcements and notices. The journal was founded in 1958 under the title "A Collection of Scientific Works of the Charles University Faculty of Medicine in Hradec Kralove."