2021 Biomaterials Science Emerging Investigators Issue: Antioxidant Response Activating nanoParticles (ARAPas) localize to atherosclerotic plaque and locally activate the Nrf2 pathway

2022 ◽  
Author(s):  
Sophie Maiocchi ◽  
Ana Cartaya ◽  
Sydney Thai ◽  
Adam W Akerman ◽  
Edward M. Bahnson

Atherosclerotic disease is the leading cause of death world-wide with few novel therapies available despite the ongoing health burden. Redox dysfunction is a well-established driver of atherosclerotic progression; however, the...

2021 ◽  
Author(s):  
Sophie Maiocchi ◽  
Ana Cartaya ◽  
Sydney Thai ◽  
Adam Akerman ◽  
Edward Bahnson

Atherosclerotic disease is the leading cause of death world-wide with few novel therapies available despite the ongoing health burden. Redox dysfunction is a well-established driver of atherosclerotic progression; however, the clinical translation of redox-based therapies is lacking. One of the challenges facing redox-based therapies is their targeted delivery to cellular domains of redox dysregulation. In the current study, we sought to develop Antioxidant Response Activating nanoParticles (ARAPas), encapsulating redox-based interventions, that exploit macrophage biology and the dysfunctional endothelium in order to selectively accumulate in atherosclerotic plaque. We employed flash nanoprecipitation (FNP) to synthesize bio-compatible polymeric nanoparticles encapsulating the hydrophobic Nrf2 activator drug, CDDO-Methyl (CDDOMe-ARAPas). Nuclear factor erythroid 2-related factor 2 (Nrf2)-activators are a promising class of redox-active drug molecules whereby activation of Nrf2 results in the expression of several antioxidant and cyto-protective enzymes that can be athero-protective. In this study, we characterize the physiochemical properties of CDDOMe-ARAPas as well as confirm their in vitro internalization by murine macrophages. Drug release of CDDOMe was determined by Nrf2-driven GFP fluorescence. Moreover, we show that these CDDOMe-ARAPas exert anti-inflammatory effects in classically activated macrophages. Finally, we show that CDDOMe-ARAPas selectively accumulate in atherosclerotic plaque of two widely-used murine models of atherosclerosis: ApoE−/− and LDLr−/− mice, and are capable of increasing gene expression of Nrf2-transcriptional targets in the atherosclerotic aortic arch. Future work will assess the therapeutic efficacy of intra-plaque Nrf2 activation with CDDOMe-ARAPas to inhibit atherosclerotic plaque progression. Overall, our present studies underline that targeting of atherosclerotic plaque is an effective means to enhance delivery of redox-based interventions.


2015 ◽  
Vol 12 (10) ◽  
pp. 12628-12642 ◽  
Author(s):  
Jinlong Li ◽  
Xiaoxu Duan ◽  
Dandan Dong ◽  
Yang Zhang ◽  
Wei Li ◽  
...  

Blood ◽  
2010 ◽  
Vol 116 (21) ◽  
pp. 2074-2074
Author(s):  
Elizabeth R. Macari ◽  
Rachel J. West ◽  
Christopher H. Lowrey

Abstract Abstract 2074 Induction of fetal hemoglobin (HbF) has proven therapeutic potential to treat sickle cell disease and β-thalassemia. However, agents known to be effective in humans, including hydroxyurea, DNMT inhibitors and butyrate derivatives are not ideal due to suppression of hematopoiesis and the possibility of long-term side effects. Two natural compounds, angelicin (Lampronti, et al, Eur J Hematol 2003) and resveratrol (Rodrigue, et al, Hematology 2001) have been found to induce γ-globin gene expression in K562 cells. These agents may be important lead compounds as they are generally non-cytotoxic and are being evaluated in ongoing human trials as cancer chemopreventative agents where these and several other agents are thought to work by activating antioxidant response pathway genes. The products of these genes are enzymes involved in antioxidant and detoxification activities and include NADPH-quinone oxireductase 1 (NQO1), glutamate-cysteine ligase (GCL) and glutathione S-transferase (GST). The activation of these genes is mediated by the transcription factor, NF-E2 related factor 2 (NRF2), which binds to a specific antioxidant response element (ARE) sequence (TGACnnnGCA) in target gene promoters. The proximal γ-globin promoter contains an ARE sequence between the two CAAT boxes, suggesting that it too may be activated by NRF2. This led us to hypothesize that drugs that activate the ARE/NRF2 pathway may provide a less toxic approach to HbF induction. To test this hypothesis, we treated K562 cells with various NRF2 pathway activators. We initially tested six compounds that are known to induce antioxidant response genes at doses that did not inhibit proliferation and found the most pronounced γ-globin induction with tert-butylhydroquinone (tBHQ) (2.8 fold). We next tested tBHQ in two different primary cell culture models: erythroid precursors isolated from normal human bone marrow and in vitro erythroid differentiation of primary human CD34+ cells. In both of these models, tBHQ treatment increased γ-globin steady state mRNA levels and induced expression of NRF2 target genes. Treatment of differentiating erythroid cells caused a dose dependent increase in γ/(γ+β) mRNA and % HbF. HPLC analysis revealed the highest non-toxic concentration of tBHQ, 5μM, produced 10% HbF while the positive control, 0.5μM of 5-Azacytidine, resulted in 12% HbF compared to the untreated control at 3%. Since similar mRNA induction was seen in K562 cells, we used these cells to characterize the mechanism of tBHQ induced γ-globin expression. First, we used siRNA to decrease NRF2 mRNA levels. This resulted in a greater than 75% knockdown of NRF2 mRNA and protein and reduced tBHQ induction of γ-globin and NQO1 gene expression by 90% and 75%, respectively, compared to samples transfected with scrambled siRNA (p < 0.01). Subsequent experiments showed that tBHQ treatment resulted in NRF2 translocation to the nucleus and binding to the NQO1 and γ-globin promoters but not at negative control sites. In addition, inducing NRF2 translocation by transiently suppressing levels of its inhibitor, KEAP1, did not result in full induction of γ-globin mRNA expression, suggesting that NRF2 translocation alone is not sufficient for γ-globin induction. However, when combined with tBHQ, suppression of KEAP1 did enhance γ-globin induction. Taken together, these results suggest that NRF2/ARE pathway activation induces γ-globin mRNA expression and HbF production in primary human erythroid cells and that this is a promising strategy for further pre-clinical development. Disclosures: No relevant conflicts of interest to declare.


2014 ◽  
Vol 26 (3) ◽  
pp. 512-520 ◽  
Author(s):  
Mohammed Qaisiya ◽  
Carlos Daniel Coda Zabetta ◽  
Cristina Bellarosa ◽  
Claudio Tiribelli

2004 ◽  
Vol 49 (1) ◽  
pp. 5-26 ◽  
Author(s):  
Brian de Vries ◽  
Judy Rutherford

Creating and visiting Web memorials represent new opportunities for post-death ritual. A content analysis was conducted on a sample of 244 of the memorials found on the largest Web Cemetery: Virtual Memorial Gardens (catless.ncl.ac.uk/Obituary/memorial.html). Analyses revealed that memorials were written, in descending order of prevalence, by children (33%), friends (15%), grandchildren (11%), parents (10%), siblings (8%), spouses (4%), and various other family members. This pattern favoring younger authors may reflect the newness of this venue and facility with computer technology. The content of such memorials often contained reference to missing the deceased, rarely spoke of the cause of death, or made mention of God or religion. Memorials were more likely to be written to the deceased (e.g., in the form of a letter) rather than about or for the deceased (e.g., eulogy/obituary or tribute). Parents, family groups, and other relatives more frequently made religious references in their memorials than did other authors. In addition to the Web as a novel, untapped data source, these memorials offer intriguing opportunities for theoretical refinement (i.e., the ongoing connection between the bereaved and the deceased).


2013 ◽  
Vol 2013 ◽  
pp. 1-10 ◽  
Author(s):  
Dan Liu ◽  
Xiaoxu Duan ◽  
Dandan Dong ◽  
Caijun Bai ◽  
Xin Li ◽  
...  

Previous studies have proved that the environmental toxicant, inorganic arsenic, activates nuclear factor erythroid 2-related factor 2 (Nrf2) pathway in many different cell types. This study tried to explore the hepatic Nrf2 pathway upon arsenic treatment comprehensively, since liver is one of the major target organs of arsenical toxicity. Our results showed that inorganic arsenic significantly induced Nrf2 protein and mRNA expression in Chang human hepatocytes. We also observed a dose-dependent increase of antioxidant response element- (ARE-) luciferase activity. Both the mRNA and protein levels of NAD(P)H:quinone oxidoreductase 1 (NQO1) and heme oxygenase-1 (HO-1) were all upregulated dramatically. On the other hand, entry and accumulation of Nrf2 protein in the nucleus, while exportting the transcriptional repressor BTB and CNC homology 1 (Bach1) from nucleus to cytoplasm, were also confirmed by western blot and immunofluorescence assay. Our results therefore confirmed the arsenic-induced Nrf2 pathway activation in hepatocytes and also suggested that the translocation of Bach1 was associated with the regulation of Nrf2 pathway by arsenic. Hepatic Nrf2 pathway plays indispensable roles for cellular defenses against arsenic hepatotoxicity, and the interplay of Bach1 and Nrf2 may be helpful to understand the self-defensive responses and the diverse biological effects of arsenicals.


Neurosurgery ◽  
1990 ◽  
Vol 27 (3) ◽  
pp. 343-348 ◽  
Author(s):  
Robert J. Dempsey ◽  
Louise A. Diana ◽  
Robert W. Moore

Abstract Noninvasive duplex scanning of carotid artery atherosclerotic plaque was performed in 286 consecutive patients referred to a cerebrovascular diagnostic laboratory. The presence and thickness of such plaque in the region of the carotid bifurcation were examined for association with the degree of vessel stenosis, age, sex, smoking history, history of prior transient ischemic attack or stroke, and systemic manifestations of atherosclerotic disease. Atherosclerotic plaque thickness was positively correlated with degree of vessel stenosis (P&lt; 0.0001). Both parameters were independent predictors of cerebrovascular events but plaque thickness was a better predictor of prior transient ischemic attacks (P&lt;0.05), and vessel stenosis was a better predictor of prior stroke (P&lt;0.005). Patient age (P&lt;0.001) and pack-years of cigarette use (P&lt;0.001) were independent positive predictors of carotid atherosclerotic plaque thickness. The greatest effect of smoking and atherosclerotic plaque thickness was seen in heavy smokers younger than age 55. Both carotid artery plaque thickness and pack-years of smoking were significant independent predictors of other systemic manifestations of atherosclerotic disease (P&lt;0.05). Such noninvasive scanning of carotid artery atherosclerotic plaque demonstrates the significant role of age and smoking in the progression of disease. It also suggests a significant role for carotid atherosclerotic artery plaque in the pathophysiology of cerebrovascular events, especially transient ischemic attacks, even prior to the production of a flow-limiting stenosis. Finally, noninvasive screening of carotid artery plaque may provide a useful marker for the patient at risk for systemic atherosclerotic disease and identify the patient for whom maximal atherosclerotic risk factor modification is needed.


2018 ◽  
Vol 2018 ◽  
pp. 1-10 ◽  
Author(s):  
Roberto Mota ◽  
Matthew J. Campen ◽  
Matthew E. Cuellar ◽  
William S. Garver ◽  
Jacob Hesterman ◽  
...  

Atherosclerosis-related morbidity and mortality remain a global concern. Atherosclerotic disease follows a slow and silent progression, and the transition from early-stage lesions to vulnerable plaques remains difficult to diagnose. Inflammation is a key component of the development of atherosclerotic plaque and consequent life-threatening complications. This study assessed 111In-DANBIRT as an in vivo, noninvasive SPECT/CT imaging probe targeting an inflammatory marker, Lymphocyte Function Associated Antigen-1 (LFA-1), in atherosclerotic plaques. Methods. Selective binding of 111In-DANBIRT was assessed using Sprague-Dawley rats exposed to filtered air and ozone (1 ppm) by inhalation for 4 hours to induce a circulating leukocytosis and neutrophilia in peripheral blood. After 24 hours, whole blood was collected and incubated with radiolabeled DANBIRT (68Ga-DANBIRT and 111In-DANBIRT). Isolated cell component smeared slides using cytospin technique were stained with Wright-Giemsa stain. Apolipoprotein E-deficient (apoE−/−) mice were fed either a normal diet or a high-fat diet (HFD) for 8 weeks. Longitudinal SPECT/CT imaging was performed 3 hours after administration at baseline, 4, and 8 weeks of HFD diet, followed by tissue harvesting for biodistribution, serum lipid analysis, and histology. 3D autoradiography was performed in both groups 24 hours after administration of 111In-DANBIRT. Results. Increased specific uptake of radiolabeled DANBIRT by neutrophils in the ozone-exposed group was evidenced by the acute immune response due to 4-hour ozone exposure. Molecular imaging performed at 3 hours using SPECT/CT imaging evidenced an exponential longitudinal increase in 111In-DANBIRT uptake in atherosclerosis lesions in HFD-fed mice compared to normal-diet-fed mice. Such results were consistent with increased immune response to vascular injury in cardiovascular and also immune tissues, correlated by 24 hours after administration of 3D autoradiography. Histologic analysis confirmed atherosclerotic disease progression with an increased vascular lesion area in HFD-fed mice compared to normal-diet-fed mice. Conclusion. 111In-DANBIRT is a promising molecular imaging probe to assess inflammation in evolving atheroma and atherosclerotic plaque.


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