Anders Karl Hjärpe,Anders Jeppsson,Lukas Lannemyr,Fredrik Pernbro,Camilla Hesse,Birgitta Romlin
{"title":"用于模拟体外循环的新型微型滚轴泵电路。","authors":"Anders Karl Hjärpe,Anders Jeppsson,Lukas Lannemyr,Fredrik Pernbro,Camilla Hesse,Birgitta Romlin","doi":"10.1093/icvts/ivae156","DOIUrl":null,"url":null,"abstract":"OBJECTIVES\r\nExtracorporeal circulation induces pronounced effects on haemostasis and rheology. To study these, an ex vivo simulation model is an attractive alternative but often requires large amounts of blood. We sought to create a miniaturized roller pump circuit requiring minimal amounts of blood and to test if the circuit could be used to compare coagulation, platelet function and blood rheology between a dextran-based and a crystalloid-based priming solution.\r\n\r\nMETHODS\r\nA miniaturized roller pump circuit requiring only 27 ml of blood was created. Blood samples from eight cardiac surgery patients were mixed with either a dextran-based or a crystalloid-based solution and circulated for 60 min. Coagulation was assessed by rotational thromboelastometry (ROTEM), and platelet function by impedance aggregometry and flow cytometry, before and at 5 and 60 min of circulation.\r\n\r\nRESULTS\r\nA time-dependent impairment of coagulation was observed in both groups. Maximum clot firmness was lower with dextran-based than with crystalloid-based priming at 5 min (HEPTEM 37 ± 4 vs 43 ± 4 mm, p < 0.001; EXTEM 37 ± 4 vs 43 ± 4 mm, p < 0.001; FIBTEM 3 ± 2 vs 9 ± 2 mm, p < 0.001) and at 60 min (HEPTEM 29 ± 9 vs 38 ± 5 mm, p < 0.001; EXTEM 30 ± 7 vs 39 ± 5 mm, p < 0.001; FIBTEM 3 ± 2 vs 8 ± 3 mm, p = 0.002). The EXTEM clotting time was longer with dextran-based solution at 5 (109 ± 19 vs 63 ± 7 sec, p < 0.001) and at 60 min (176 ± 72 vs 73 ± 7 sec, p = 0.004).\r\n\r\nCONCLUSIONS\r\nThe novel miniaturized roller pump circuit can be used to mimic extracorporeal circulation for selected research questions. Dextran-based priming caused a significant impairment in haemostasis compared with a standard crystalloid solution.","PeriodicalId":73406,"journal":{"name":"Interdisciplinary cardiovascular and thoracic surgery","volume":"30 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-09-18","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"A novel miniaturized roller pump circuit for simulation of extracorporeal circulation.\",\"authors\":\"Anders Karl Hjärpe,Anders Jeppsson,Lukas Lannemyr,Fredrik Pernbro,Camilla Hesse,Birgitta Romlin\",\"doi\":\"10.1093/icvts/ivae156\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"OBJECTIVES\\r\\nExtracorporeal circulation induces pronounced effects on haemostasis and rheology. To study these, an ex vivo simulation model is an attractive alternative but often requires large amounts of blood. We sought to create a miniaturized roller pump circuit requiring minimal amounts of blood and to test if the circuit could be used to compare coagulation, platelet function and blood rheology between a dextran-based and a crystalloid-based priming solution.\\r\\n\\r\\nMETHODS\\r\\nA miniaturized roller pump circuit requiring only 27 ml of blood was created. Blood samples from eight cardiac surgery patients were mixed with either a dextran-based or a crystalloid-based solution and circulated for 60 min. Coagulation was assessed by rotational thromboelastometry (ROTEM), and platelet function by impedance aggregometry and flow cytometry, before and at 5 and 60 min of circulation.\\r\\n\\r\\nRESULTS\\r\\nA time-dependent impairment of coagulation was observed in both groups. Maximum clot firmness was lower with dextran-based than with crystalloid-based priming at 5 min (HEPTEM 37 ± 4 vs 43 ± 4 mm, p < 0.001; EXTEM 37 ± 4 vs 43 ± 4 mm, p < 0.001; FIBTEM 3 ± 2 vs 9 ± 2 mm, p < 0.001) and at 60 min (HEPTEM 29 ± 9 vs 38 ± 5 mm, p < 0.001; EXTEM 30 ± 7 vs 39 ± 5 mm, p < 0.001; FIBTEM 3 ± 2 vs 8 ± 3 mm, p = 0.002). The EXTEM clotting time was longer with dextran-based solution at 5 (109 ± 19 vs 63 ± 7 sec, p < 0.001) and at 60 min (176 ± 72 vs 73 ± 7 sec, p = 0.004).\\r\\n\\r\\nCONCLUSIONS\\r\\nThe novel miniaturized roller pump circuit can be used to mimic extracorporeal circulation for selected research questions. Dextran-based priming caused a significant impairment in haemostasis compared with a standard crystalloid solution.\",\"PeriodicalId\":73406,\"journal\":{\"name\":\"Interdisciplinary cardiovascular and thoracic surgery\",\"volume\":\"30 1\",\"pages\":\"\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2024-09-18\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Interdisciplinary cardiovascular and thoracic surgery\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://doi.org/10.1093/icvts/ivae156\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"0\",\"JCRName\":\"CARDIAC & CARDIOVASCULAR SYSTEMS\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Interdisciplinary cardiovascular and thoracic surgery","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1093/icvts/ivae156","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"0","JCRName":"CARDIAC & CARDIOVASCULAR SYSTEMS","Score":null,"Total":0}
引用次数: 0
摘要
目的体外循环会对止血和流变学产生明显的影响。要研究这些影响,体内外模拟模型是一种有吸引力的替代方法,但通常需要大量血液。我们试图创建一个只需极少量血液的微型滚轴泵回路,并测试该回路是否可用于比较右旋糖酐引流液和晶体液引流液之间的凝血、血小板功能和血液流变学。将八名心脏手术患者的血样与葡聚糖或晶体液混合并循环 60 分钟。在循环前、循环 5 分钟和 60 分钟时,通过旋转血栓弹性测定法 (ROTEM) 评估凝血功能,通过阻抗聚集测定法和流式细胞仪评估血小板功能。结果两组均观察到凝血功能的时间依赖性损害。5 分钟时,右旋糖酐为基础的血凝块最大坚固度低于晶体液为基础的血凝块最大坚固度(HEPTEM 37 ± 4 vs 43 ± 4 mm,p < 0.001;EXTEM 37 ± 4 vs 43 ± 4 mm,p < 0.001; FIBTEM 3 ± 2 vs 9 ± 2 mm, p < 0.001)和 60 分钟时(HEPTEM 29 ± 9 vs 38 ± 5 mm, p < 0.001; EXTEM 30 ± 7 vs 39 ± 5 mm, p < 0.001; FIBTEM 3 ± 2 vs 8 ± 3 mm, p = 0.002)。在 5 分钟(109±19 秒 vs 63±7 秒,p < 0.001)和 60 分钟(176±72 秒 vs 73±7 秒,p = 0.004)时,使用葡聚糖溶液的 EXTEM 凝血时间更长。与标准晶体溶液相比,基于葡聚糖的引流会严重影响止血效果。
A novel miniaturized roller pump circuit for simulation of extracorporeal circulation.
OBJECTIVES
Extracorporeal circulation induces pronounced effects on haemostasis and rheology. To study these, an ex vivo simulation model is an attractive alternative but often requires large amounts of blood. We sought to create a miniaturized roller pump circuit requiring minimal amounts of blood and to test if the circuit could be used to compare coagulation, platelet function and blood rheology between a dextran-based and a crystalloid-based priming solution.
METHODS
A miniaturized roller pump circuit requiring only 27 ml of blood was created. Blood samples from eight cardiac surgery patients were mixed with either a dextran-based or a crystalloid-based solution and circulated for 60 min. Coagulation was assessed by rotational thromboelastometry (ROTEM), and platelet function by impedance aggregometry and flow cytometry, before and at 5 and 60 min of circulation.
RESULTS
A time-dependent impairment of coagulation was observed in both groups. Maximum clot firmness was lower with dextran-based than with crystalloid-based priming at 5 min (HEPTEM 37 ± 4 vs 43 ± 4 mm, p < 0.001; EXTEM 37 ± 4 vs 43 ± 4 mm, p < 0.001; FIBTEM 3 ± 2 vs 9 ± 2 mm, p < 0.001) and at 60 min (HEPTEM 29 ± 9 vs 38 ± 5 mm, p < 0.001; EXTEM 30 ± 7 vs 39 ± 5 mm, p < 0.001; FIBTEM 3 ± 2 vs 8 ± 3 mm, p = 0.002). The EXTEM clotting time was longer with dextran-based solution at 5 (109 ± 19 vs 63 ± 7 sec, p < 0.001) and at 60 min (176 ± 72 vs 73 ± 7 sec, p = 0.004).
CONCLUSIONS
The novel miniaturized roller pump circuit can be used to mimic extracorporeal circulation for selected research questions. Dextran-based priming caused a significant impairment in haemostasis compared with a standard crystalloid solution.