Kishimoto Satoru, Takewa Yoshiaki, Tsukiya Tomonori, Mizuno Toshihide, Date Kazuma, Sumikura Hirohito, Fujii Yutaka, Ohnuma Kentaro, Togo Konomi, Katagiri Nobumasa, Naito Noritsugu, Kishimoto Yuichiro, Nakamura Yoshinobu, Nishimura Motonobu, Tatsumi Eisuke
Department of Artificial Organs, National Cerebral and Cardiovascular Center Research Institute, 5-7-1 Fujishiro-dai, Suita, Osaka, 565-8565, Japan.
Division of Organ Regeneration Surgery, Department of Surgery, Faculty of Medicine, Tottori University, Tottori, Japan.
J Artif Organs. 2018 Mar;21(1):23-30. doi: 10.1007/s10047-017-0989-y. Epub 2017 Sep 12.
The management of heart failure patients presenting in a moribund state remains challenging, despite significant advances in the field of ventricular assist systems. Bridge to decision involves using temporary devices to stabilize the hemodynamic state of such patients while further assessment is performed and a decision can be made regarding patient management. We developed a new temporary left ventricular assist system employing a disposable centrifugal pump with a hydrodynamically levitated bearing. We used three adult goats (body weight, 58-68 kg) to investigate the 30-day performance and hemocompatibility of the newly developed left ventricular assist system, which included the pump, inflow and outflow cannulas, the extracorporeal circuit, and connectors. Hemodynamic, hematologic, and blood chemistry measurements were investigated as well as end-organ effect on necropsy. All goats survived for 30 days in good general condition. The blood pump was operated at a rotational speed of 3000-4500 rpm and a mean pump flow of 3.2 ± 0.6 L min. Excess hemolysis, observed in one goat, was due to the inadequate increase in pump rotational speed in response to drainage insufficiency caused by continuous contact of the inflow cannula tip with the left ventricular septal wall in the early days after surgery. At necropsy, no thrombus was noted in the pump, and no damage caused by mechanical contact was found on the bearing. The newly developed temporary left ventricular assist system using a disposable centrifugal pump with hydrodynamic bearing demonstrated consistent and satisfactory hemodynamic performance and hemocompatibility in the goat model.
尽管心室辅助系统领域取得了重大进展,但对处于濒死状态的心力衰竭患者的管理仍然具有挑战性。过渡到决策阶段涉及使用临时装置来稳定此类患者的血流动力学状态,同时进行进一步评估并就患者管理做出决策。我们开发了一种新的临时左心室辅助系统,该系统采用带有流体动力学悬浮轴承的一次性离心泵。我们使用三只成年山羊(体重58 - 68千克)来研究新开发的左心室辅助系统的30天性能和血液相容性,该系统包括泵、流入和流出插管、体外循环回路以及连接器。研究了血流动力学、血液学和血液化学测量结果以及尸检时的终末器官效应。所有山羊均存活30天,总体状况良好。血泵以3000 - 4500转/分钟的转速运行,平均泵流量为3.2±0.6升/分钟。在一只山羊中观察到的过度溶血是由于术后早期流入插管尖端持续接触左心室间隔壁导致引流不足时,泵转速增加不足所致。尸检时,泵内未发现血栓,轴承上也未发现机械接触造成的损伤。新开发的使用带有流体动力学轴承的一次性离心泵的临时左心室辅助系统在山羊模型中表现出一致且令人满意的血流动力学性能和血液相容性。