Temporal patterns of macrophage- and neutrophil-related markers are associated with clinical outcome in heart failure patients
ESC HEART FAILURE
Authors: Klimczak-Tomaniak, Dominika; Bouwens, Elke; Schuurman, Anne-Sophie; Akkerhuis, K. Martijn; Constantinescu, Alina; Brugts, Jasper; Westenbrink, B. Daan; van Ramshorst, Jan; Germans, Tjeerd; Paczek, Leszek; Umans, Victor; Boersma, Eric; Kardys, Isabella
Abstract
Aims Evidence on the association of macrophage- and neutrophil-related blood biomarkers with clinical outcome in heart failure patients is limited, and, with the exception of C-reactive protein, no data exist on their temporal evolution. We aimed to investigate whether temporal patterns of these biomarkers are related to clinical outcome in patients with stable chronic heart failure (CHF). Methods and Results In 263 patients with CHF, we performed serial plasma measurements of scavenger receptor cysteine-rich type 1 protein M130 (CD163), tartrate-resistant acid phosphatase type 5 (TRAP), granulins (GRN), spondin-1 (SPON1), peptidoglycan recognition protein 1 (PGLYRP1), and tissue factor pathway inhibitor (TFPI). The Cardiovascular Panel III (Olink Proteomics AB, Uppsala, Sweden) was used. During 2.2 years of follow-up, we collected 1984 samples before the occurrence of the composite primary endpoint (PE) or censoring. For efficiency, we selected 567 samples for the measurements (all baseline samples, the last two samples preceding the PE, and the last sample before censoring in event-free patients). The relationship between repeatedly measured biomarker levels and the PE was evaluated by joint models. Mean (+/- standard deviation) age was 67 +/- 13 years; 189 (72%) were men; left ventricular ejection fraction (%) was 32 +/- 11. During follow-up, 70 (27%) patients experienced the PE. Serially measured biomarkers predicted the PE in a multivariable model adjusted for baseline clinical characteristics [hazard ratio (95% confidence interval) per 1-standard deviation change in biomarker]: CD163 [2.07(1.47-2.98), P < 0.001], TRAP [0.62 (0.43-0.90), P = 0.009], GRN [2.46 (1.64-3.84), P < 0.001], SPON1 [3.94 (2.50-6.50), P < 0.001], and PGLYRP1 [1.62 (1.14-2.31), P = 0.006]. Conclusions Changes in plasma levels of CD163, TRAP, GRN, SPON1, and PGLYRP1 precede adverse cardiovascular events in patients with CHF.
Tissue factor pathway inhibitor attenuates ER stress-induced inflammation in human M2-polarized macrophages
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
Authors: Espada, Sandra; Stavik, Benedicte; Holm, Sverre; Sagen, Ellen Lund; Bjerkeli, Vigdis; Skjelland, Mona; Dahl, Tuva B.; Espevik, Terje; Kanse, Sandip; Sandset, Per Morten; Skretting, Grethe; Halvorsen, Bente
Abstract
Endoplasmic reticulum (ER) stress has been shown to play a key role during the initiation and clinical progression of the cardiovascular diseases, such as atherosclerosis. We have recently shown that expression of tissue factor pathway inhibitor (TFPI) in human monocyte-derived macrophages (MDMs) was induced by cholesterol crystals (CC). In the present study we aimed to determine the role of TFPI under ER stress conditions using human MDMs. qRT-PCR and immunohistochemistry analysis were performed to determine the presence of the ER stress marker CCAAT/enhancer binding protein homologous protein (CHOP) and TFPI in human carotid plaque material and also in human MDMs polarized into pro-inflammatory M1 or anti-inflammatory M2 populations. CHOP mRNA levels were upregulated in the plaques compared to healthy vessels, and CHOP protein was localized in the same area as TFPI in the plaques. Both CHOP and TFPI mRNA levels were upregulated after CC treatment, especially in the M2 phenotype, and the ER stress inhibitor 4-phenylbutyric acid (PBA) reversed this effect. Furthermore, CC treatment increased the levels of the pro-inflammatory cytokines TNF-alpha, IL-6, and IL-8, which for TNF-alpha and IL-8 was inhibited by PBA, and reduced the levels of the anti-inflammatory cytokine IL-10 in M2 polarized macrophages. Knockdown of TFPI prior to CC treatment exacerbated TNF-alpha and IL-6 levels, but reduced IL-8 and IL-10 levels. Our results show that CC induce TFPI and cytokine expression in M2 polarized macrophages through activation of the ER stress pathway and that TFPI has a protective effect against TNF-alpha and IL-6 mediated inflammation. These mechanisms may have implications for the pathogenesis of atherosclerosis. (C) 2017 Elsevier Inc. All rights reserved.