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An Hb-mediated circulating macrophage contributing to pulmonary vascular remodeling in sickle cell disease
Katherine Redinus, Jin Hyen Baek, Ayla Yalamanoglu, Hye Kyung H. Shin, Radu Moldova, Julie W. Harral, Delaney Swindle, David Pak, Scott K. Ferguson, Rachelle Nuss, Kathryn Hassell, Eva Nozik-Grayck, Andre F. Palmer, Mehdi A. Fini, Vijaya Karoor, Kurt R. Stenmark, Paul W. Buehler, David C. Irwin
Katherine Redinus, Jin Hyen Baek, Ayla Yalamanoglu, Hye Kyung H. Shin, Radu Moldova, Julie W. Harral, Delaney Swindle, David Pak, Scott K. Ferguson, Rachelle Nuss, Kathryn Hassell, Eva Nozik-Grayck, Andre F. Palmer, Mehdi A. Fini, Vijaya Karoor, Kurt R. Stenmark, Paul W. Buehler, David C. Irwin
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Research Article Cell biology Vascular biology

An Hb-mediated circulating macrophage contributing to pulmonary vascular remodeling in sickle cell disease

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Abstract

Circulating macrophages recruited to the lung contribute to pulmonary vascular remodeling in various forms of pulmonary hypertension (PH). In this study we investigated a macrophage phenotype characterized by intracellular iron accumulation and expression of antioxidant (HO-1), vasoactive (ET-1), and proinflammatory (IL-6) mediators observed in the lung tissue of deceased sickle cell disease (SCD) patients with diagnosed PH. To this end, we evaluated an established rat model of group 5 PH that is simultaneously exposed to free hemoglobin (Hb) and hypobaric hypoxia (HX). Here, we tested the hypothesis that pulmonary vascular remodeling observed in human SCD with concomitant PH could be replicated and mechanistically driven in our rat model by a similar macrophage phenotype with iron accumulation and expression of a similar mixture of antioxidant (HO-1), vasoactive (ET-1), and inflammatory (IL-6) proteins. Our data suggest phenotypic similarities between pulmonary perivascular macrophages in our rat model and human SCD with PH, indicating a potentially novel maladaptive immune response to concomitant bouts of Hb and HX exposure. Moreover, by knocking out circulating macrophages with gadolinium trichloride (GdCl3), the response to combined Hb and hypobaric HX was significantly attenuated in rats, suggesting a critical role for macrophages in the exacerbation of SCD PH.

Authors

Katherine Redinus, Jin Hyen Baek, Ayla Yalamanoglu, Hye Kyung H. Shin, Radu Moldova, Julie W. Harral, Delaney Swindle, David Pak, Scott K. Ferguson, Rachelle Nuss, Kathryn Hassell, Eva Nozik-Grayck, Andre F. Palmer, Mehdi A. Fini, Vijaya Karoor, Kurt R. Stenmark, Paul W. Buehler, David C. Irwin

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Figure 1

Microscopic examination of peripheral lung tissue slices of deceased sickle cell disease patients with confirmed pulmonary hypertension.

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Microscopic examination of peripheral lung tissue slices of deceased sic...
(A) Verhoeff Van Gieson– (top row) and H&E-stained (bottom row) lung tissue sections (original magnification, ×10) showing extensive constrictive lesions in the pulmonary vasculature remodeling characterized by (top row) intimal thickening and recanalization channels (obtained from 2 deceased patients), (bottom left) plexiform lesion formation, and (bottom right) medial thickening in the pulmonary artery. (B) Lung tissue from person without sickle cell disease or confirmed pulmonary hypertension (PH). Normal medial layer in the pulmonary arterial wall (original magnification, ×10); iron staining was negative in human control lung tissue for any cells, including vascular, perivascular, or alveolar regions (original magnification, ×20). (C) In contrast to human control tissue, many perivascular and alveolar cells stain positive for iron in tissue from sickle cell disease (SCD) with confirmed PH (original magnification, ×20) that also stain positive for CD163 and HO-1, demonstrating a macrophage phenotype. (D) In SCD with PH, the iron-laden cells staining positive for HO-1 also stain positive for ET-1 and IL-6, suggesting a unique prooxidant (Fe+), antioxidant (HO-1), vasoactive (ET-1), and inflammatory macrophage phenotype. (E) Zoomed-in perivascular and alveolar regions containing this macrophage phenotype (original magnification, ×20). PV, perivascular; AV, alveolar.

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ISSN 2379-3708

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