Red Blood Cell Microparticles Limit Hematoma Growth in Intracerebral Hemorrhage.

Rehni, Ashish K; Cho, Sunjoo; Quero, Hever Navarro; Shukla, Vibha; Zhang, Zhexuan; Dong, Chuanhui; Zhao, Weizhao; Perez-Pinzon, Miguel A et al. · Stroke · 2022

basic_science · Level V

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Abstract

Spontaneous intracerebral hemorrhage (sICH) is the deadliest stroke subtype with no effective therapies. Limiting hematoma expansion is a promising therapeutic approach. Red blood cell-derived microparticles (RMPs) are novel hemostatic agents. Therefore, we studied the potential of RMPs in limiting hematoma growth and improving outcomes post-sICH. sICH was induced in rats by intrastriatal injection of collagenase. RMPs were prepared from human RBCs by high-pressure extrusion. Behavioral and hematoma/lesion volume assessment were done post-sICH. The optimal dose, dosing regimen, and therapeutic time window of RMP therapy required to limit hematoma growth post-sICH were determined. We also evaluated the effect of RMPs on long-term behavioral and histopathologic outcomes post-sICH. RMP treatment limited hematoma growth following sICH. Hematoma volume (mm<sup>3</sup>) for vehicle- and RMP- (2.66×10<sup>10</sup> particles/kg) treated group was 143±8 and 86±4, respectively. The optimal RMP dosing regimen that limits hematoma expansion was identified. RMPs limit hematoma volume when administered up to 4.5-hour post-sICH. Hematoma volume in the 4.5-hour post-sICH RMP treatment group was lower by 24% when compared with the control group. RMP treatment also improved long-term histopathologic and behavioral outcomes post-sICH. Our results demonstrate that RMP therapy limits hematoma growth and improves outcomes post-sICH in a rodent model. Therefore, RMPs have the potential to limit hematoma growth in sICH patients.

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