Translational Medicine in Uremic Vascular Calcification: Scavenging ROS Attenuates p-Cresyl Sulfate-Activated Caspase-1, NLRP3 Inflammasome and Eicosanoid Inflammation in Human Arterial Smooth Muscle Cells

We formerly proved that uremic vascular calcification (UVC) correlates tightly with oxidative elastic lamina (EL) injury and two cell fates (apoptosis and osteocytic conversion) in smooth muscle cells (SMC) of chronic kidney disease (CKD) patients and eliminating p-cresyl sulfate (PCS)-activated int...

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Main Authors: Jia-Feng Chang, Hsiao-Ling Kuo, Shih-Hao Liu, Chih-Yu Hsieh, Chih-Ping Hsu, Kuo-Chin Hung, Ting-Ming Wang, Chang-Chin Wu, Kuo-Cheng Lu, Wei-Ning Lin, Chi-Feng Hung, Wen-Chin Ko
Format: Article
Language:English
Published: MDPI AG 2022-05-01
Series:Life
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Online Access:https://www.mdpi.com/2075-1729/12/5/769
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author Jia-Feng Chang
Hsiao-Ling Kuo
Shih-Hao Liu
Chih-Yu Hsieh
Chih-Ping Hsu
Kuo-Chin Hung
Ting-Ming Wang
Chang-Chin Wu
Kuo-Cheng Lu
Wei-Ning Lin
Chi-Feng Hung
Wen-Chin Ko
author_facet Jia-Feng Chang
Hsiao-Ling Kuo
Shih-Hao Liu
Chih-Yu Hsieh
Chih-Ping Hsu
Kuo-Chin Hung
Ting-Ming Wang
Chang-Chin Wu
Kuo-Cheng Lu
Wei-Ning Lin
Chi-Feng Hung
Wen-Chin Ko
author_sort Jia-Feng Chang
collection DOAJ
description We formerly proved that uremic vascular calcification (UVC) correlates tightly with oxidative elastic lamina (EL) injury and two cell fates (apoptosis and osteocytic conversion) in smooth muscle cells (SMC) of chronic kidney disease (CKD) patients and eliminating p-cresyl sulfate (PCS)-activated intracellular ROS ameliorates the MAPK signaling pathway in a human arterial SMC (HASMC) model. Nonetheless, whether ROS scavenger attenuates PCS-triggered inflammasome activation and eicosanoid inflammation in the UVC process remains unknown. Patients with lower extremity amputation were categorized into CKD and normal control group according to renal function. We used immunohistochemistry stain to analyze UVC in arterial specimens, including oxidative injury (8-hydroxy-2′-deoxyguanosine (8-OHdG) and internal EL disruption), cytosolic phospholipase A2 (cPLA2), cyclooxygenase 2 (COX2), interleukin-1 beta (IL-1β), caspase-1 and NLRP3. To simulate the patho-mechanism of human UVC, the therapeutic effects of ROS scavenger on PCS-triggered inflammatory pathways was explored in a HASMC model. We found CKD patients had higher circulating levels of PCS and an increase in medial arterial calcification than the control group. In CKD arteries, the severity of UVC corresponded with expressions of oxidative EL disruption and 8-OHdG. Furthermore, coupling expressions of cPLA2 and COX2 were accentuated in CKD arteries, indicative of eicosanoid inflammation. Notably, tissue expressions of IL-1β, caspase-1 and NLRP3 were enhanced in parallel with UVC severity, indicative of inflammasome activation. From bedside to bench, ROS scavenger attenuates PCS-activated expressions of cPLA2/COX2, pro-caspase-1 and NLRP3 in the HASMC model. UVC as an inevitable outcome is predictive of death in CKD patients. Nonetheless, UVC remain pharmacoresistant despite the evolution of treatment for mineral-parathyroid hormone-vitamin D axis. Beyond the mineral dysregulation, the stimulation of pro-oxidant PCS alone results in eicosanoid inflammation and inflammasome activation. Concerning the key role of Caspase-1 in pyroptosis, cell fates of HASMC in uremic milieu are not limited to apoptosis and osteogenesis. In view of this, reducing ROS and PCS may act as a therapeutic strategy for UVC-related cardiovascular events in CKD patients.
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spelling doaj.art-a7421f66c71f48919c4f2adbd62af37f2023-11-23T11:51:11ZengMDPI AGLife2075-17292022-05-0112576910.3390/life12050769Translational Medicine in Uremic Vascular Calcification: Scavenging ROS Attenuates p-Cresyl Sulfate-Activated Caspase-1, NLRP3 Inflammasome and Eicosanoid Inflammation in Human Arterial Smooth Muscle CellsJia-Feng Chang0Hsiao-Ling Kuo1Shih-Hao Liu2Chih-Yu Hsieh3Chih-Ping Hsu4Kuo-Chin Hung5Ting-Ming Wang6Chang-Chin Wu7Kuo-Cheng Lu8Wei-Ning Lin9Chi-Feng Hung10Wen-Chin Ko11Division of Nephrology, Department of Internal Medicine, En Chu Kong Hospital, New Taipei City 237, TaiwanDivision of Rheumatology, Department of Internal Medicine, En Chu Kong Hospital, New Taipei City 237, TaiwanDivision of Pathology, Department of Internal Medicine, En Chu Kong Hospital, New Taipei City 237, TaiwanDivision of Nephrology, Department of Internal Medicine, En Chu Kong Hospital, New Taipei City 237, TaiwanDepartment of Biotechnology and Pharmaceutical Technology, Yuanpei University of Medical Technology, Hsinchu 300, TaiwanDivision of Nephrology, Department of Medicine, Min-Sheng General Hospital, Taoyuan City 330, TaiwanDepartment of Orthopaedic Surgery, National Taiwan University Hospital, Taipei 100, TaiwanDepartment of Orthopaedic Surgery, En Chu Kong Hospital, New Taipei City 237, TaiwanDivision of Nephrology, Department of Medicine, Taipei Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, New Taipei City 231, TaiwanGraduate Institution of Biomedical and Pharmaceutical Science, College of Medicine, Fu Jen Catholic University, New Taipei City 242, TaiwanSchool of Medicine, Fu Jen Catholic University, New Taipei City 24205, TaiwanSchool of Medicine, Fu Jen Catholic University, New Taipei City 24205, TaiwanWe formerly proved that uremic vascular calcification (UVC) correlates tightly with oxidative elastic lamina (EL) injury and two cell fates (apoptosis and osteocytic conversion) in smooth muscle cells (SMC) of chronic kidney disease (CKD) patients and eliminating p-cresyl sulfate (PCS)-activated intracellular ROS ameliorates the MAPK signaling pathway in a human arterial SMC (HASMC) model. Nonetheless, whether ROS scavenger attenuates PCS-triggered inflammasome activation and eicosanoid inflammation in the UVC process remains unknown. Patients with lower extremity amputation were categorized into CKD and normal control group according to renal function. We used immunohistochemistry stain to analyze UVC in arterial specimens, including oxidative injury (8-hydroxy-2′-deoxyguanosine (8-OHdG) and internal EL disruption), cytosolic phospholipase A2 (cPLA2), cyclooxygenase 2 (COX2), interleukin-1 beta (IL-1β), caspase-1 and NLRP3. To simulate the patho-mechanism of human UVC, the therapeutic effects of ROS scavenger on PCS-triggered inflammatory pathways was explored in a HASMC model. We found CKD patients had higher circulating levels of PCS and an increase in medial arterial calcification than the control group. In CKD arteries, the severity of UVC corresponded with expressions of oxidative EL disruption and 8-OHdG. Furthermore, coupling expressions of cPLA2 and COX2 were accentuated in CKD arteries, indicative of eicosanoid inflammation. Notably, tissue expressions of IL-1β, caspase-1 and NLRP3 were enhanced in parallel with UVC severity, indicative of inflammasome activation. From bedside to bench, ROS scavenger attenuates PCS-activated expressions of cPLA2/COX2, pro-caspase-1 and NLRP3 in the HASMC model. UVC as an inevitable outcome is predictive of death in CKD patients. Nonetheless, UVC remain pharmacoresistant despite the evolution of treatment for mineral-parathyroid hormone-vitamin D axis. Beyond the mineral dysregulation, the stimulation of pro-oxidant PCS alone results in eicosanoid inflammation and inflammasome activation. Concerning the key role of Caspase-1 in pyroptosis, cell fates of HASMC in uremic milieu are not limited to apoptosis and osteogenesis. In view of this, reducing ROS and PCS may act as a therapeutic strategy for UVC-related cardiovascular events in CKD patients.https://www.mdpi.com/2075-1729/12/5/769Caspase-1COX2cPLA2IL-1βinflammasomeNLRP3
spellingShingle Jia-Feng Chang
Hsiao-Ling Kuo
Shih-Hao Liu
Chih-Yu Hsieh
Chih-Ping Hsu
Kuo-Chin Hung
Ting-Ming Wang
Chang-Chin Wu
Kuo-Cheng Lu
Wei-Ning Lin
Chi-Feng Hung
Wen-Chin Ko
Translational Medicine in Uremic Vascular Calcification: Scavenging ROS Attenuates p-Cresyl Sulfate-Activated Caspase-1, NLRP3 Inflammasome and Eicosanoid Inflammation in Human Arterial Smooth Muscle Cells
Life
Caspase-1
COX2
cPLA2
IL-1β
inflammasome
NLRP3
title Translational Medicine in Uremic Vascular Calcification: Scavenging ROS Attenuates p-Cresyl Sulfate-Activated Caspase-1, NLRP3 Inflammasome and Eicosanoid Inflammation in Human Arterial Smooth Muscle Cells
title_full Translational Medicine in Uremic Vascular Calcification: Scavenging ROS Attenuates p-Cresyl Sulfate-Activated Caspase-1, NLRP3 Inflammasome and Eicosanoid Inflammation in Human Arterial Smooth Muscle Cells
title_fullStr Translational Medicine in Uremic Vascular Calcification: Scavenging ROS Attenuates p-Cresyl Sulfate-Activated Caspase-1, NLRP3 Inflammasome and Eicosanoid Inflammation in Human Arterial Smooth Muscle Cells
title_full_unstemmed Translational Medicine in Uremic Vascular Calcification: Scavenging ROS Attenuates p-Cresyl Sulfate-Activated Caspase-1, NLRP3 Inflammasome and Eicosanoid Inflammation in Human Arterial Smooth Muscle Cells
title_short Translational Medicine in Uremic Vascular Calcification: Scavenging ROS Attenuates p-Cresyl Sulfate-Activated Caspase-1, NLRP3 Inflammasome and Eicosanoid Inflammation in Human Arterial Smooth Muscle Cells
title_sort translational medicine in uremic vascular calcification scavenging ros attenuates p cresyl sulfate activated caspase 1 nlrp3 inflammasome and eicosanoid inflammation in human arterial smooth muscle cells
topic Caspase-1
COX2
cPLA2
IL-1β
inflammasome
NLRP3
url https://www.mdpi.com/2075-1729/12/5/769
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