Selective Cerebrospinal Fluid Hypothermia: Bioengineering Development and In Vivo Study of an Intraventricular Cooling Device (V-COOL)

Author:

Beretta SimoneORCID,Versace Alessandro,Fiore Gianfranco,Piola Marco,Martini Beatrice,Bigiogera Vittorio,Coppadoro Lorenzo,Mariani Jacopo,Tinti Lorenzo,Pirovano Silvia,Monza Laura,Carone Davide,Riva Matteo,Padovano Giada,Galbiati Gilda,Santangelo Francesco,Rasponi Marco,Padelli Francesco,Giachetti Isabella,Aquino Domenico,Diamanti Susanna,Librizzi Laura,Bruzzone Maria Grazia,De Curtis Marco,Giussani Carlo,Sganzerla Erik P.,Ferrarese Carlo

Abstract

AbstractHypothermia is a promising therapeutic strategy for severe vasospasm and other types of non-thrombotic cerebral ischemia, but its clinical application is limited by significant systemic side effects. We aimed to develop an intraventricular device for the controlled cooling of the cerebrospinal fluid, to produce a targeted hypothermia in the affected cerebral hemisphere with a minimal effect on systemic temperature. An intraventricular cooling device (acronym: V-COOL) was developed by in silico modelling, in vitro testing, and in vivo proof-of-concept application in healthy Wistar rats (n = 42). Cerebral cortical temperature, rectal temperature, and intracranial pressure were monitored at increasing flow rate (0.2 to 0.8 mL/min) and duration of application (10 to 60 min). Survival, neurological outcome, and MRI volumetric analysis of the ventricular system were assessed during the first 24 h. The V-COOL prototyping was designed to minimize extra-cranial heat transfer and intra-cranial pressure load. In vivo application of the V-COOL device produced a flow rate-dependent decrease in cerebral cortical temperature, without affecting systemic temperature. The target degree of cerebral cooling (− 3.0 °C) was obtained in 4.48 min at the flow rate of 0.4 mL/min, without significant changes in intracranial pressure. Survival and neurological outcome at 24 h showed no significant difference compared to sham-treated rats. MRI study showed a transient dilation of the ventricular system (+ 38%) in a subset of animals. The V-COOL technology provides an effective, rapid, selective, and safe cerebral cooling to a clinically relevant degree of − 3.0 °C.

Funder

Ministero della Salute

Università degli Studi di Milano - Bicocca

Publisher

Springer Science and Business Media LLC

Subject

Pharmacology (medical),Neurology (clinical),Pharmacology

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