Use of Sodium Bicarbonate Purge Solution in Impella Devices for Heparin-Induced Thrombocytopenia

Adnan M Al-Ayoubi1, Kinnari Bhavsar2, Ryan A Hobbs3

  • 1Division of Cardiothoracic Surgery, University of Iowa Hospitals and Clinics, Iowa City, IA, USA.

Heparin purge solution is recommended to be used in Impella devices to prevent biomaterial buildup and subsequent device dysfunction. The use of sodium bicarbonate purge solution in an Impella device is described in two patients with heparin-induced thrombocytopenia (HIT). The first case details a patient with severe mitral regurgitation and cardiogenic shock who had an Impella CP placed who developed HIT. Heparin purge solution was replaced by sodium bicarbonate purge solution in addition to systemic direct thrombin inhibitor (DTI) initiation. There was no significant change in Impella purge pressure or flow over the 13 days of Impella use. The second case describes a patient who developed an acute myocardial infarction and subsequent cardiogenic shock for which an Impella CP was placed who also developed HIT. Heparin purge solution was replaced by sodium bicarbonate purge solution. There was no significant change in purge pressure, flow, or motor current spikes over 11 days of use. In conclusion, we describe the successful use of a novel sodium bicarbonate purge solution utilized in patients with HIT for Impella management alone and in combination with systemic direct thrombin inhibitor therapy. This resulted in no protein deposition in the device gaps or device dysfunction.

Related Concept Videos

Anticoagulant Drugs: Low-Molecular-Weight Heparins01:30

Anticoagulant Drugs: Low-Molecular-Weight Heparins

Hemostasis is a crucial process that prevents excessive blood loss from damaged blood vessels. It involves various mechanisms such as vasoconstriction, platelet adhesion and activation, and fibrin formation. The importance of each mechanism depends on the type of vessel injury. In contrast, thrombosis is the abnormal formation of a blood clot within the blood vessels, leading to potential complications if the clot obstructs blood flow. Thrombosis can be caused by increased coagulability of the...
952
Peritoneal Dialysis I: Introduction and Procedure01:30

Peritoneal Dialysis I: Introduction and Procedure

Peritoneal dialysis (PD) is a procedure that facilitates the exchange of solutes, waste products, electrolytes, and excess fluid between the blood in the peritoneal capillaries and a dialysis solution introduced into the peritoneal cavity.Principles of Peritoneal Dialysis (PD)Diffusion: Waste products such as urea and electrolytes move from high concentrations in the blood to low concentrations in the dialysate across the peritoneal membrane. This mechanism is driven by the concentration...
350
Depolarizing Blockers: Pharmocokinetics01:19

Depolarizing Blockers: Pharmocokinetics

Depolarizing blockers are administered through intravenous injection. Succinylcholine is the most common choice of depolarizing blockers in emergency clinical practices. Although they have a rapid onset, they readily diffuse away from the motor end plate into the extracellular fluid. They are metabolized by enzymes such as liver butyrylcholinesterase and plasma pseudocholinesterases. This produces a short duration of action, typically 5-10 minutes long, unlike nondepolarizing blockers, which...
396
Hemodialysis II: Procedure and Complications01:24

Hemodialysis II: Procedure and Complications

DialyzersA hemodialysis (HD) dialyzer is a plastic cartridge containing thousands of parallel hollow fibers, which serve as semipermeable membranes. These fibers are typically made from cellulose-based or other synthetic materials. During HD, blood is pumped into the top of the cartridge and distributed among these fibers. Simultaneously, dialysis fluid, known as dialysate, is introduced into the bottom of the cartridge, bathing the outside of the fibers. Across the semipermeable membrane,...
158