TRPM7 mediates endoplasmic reticulum stress and ferroptosis in sepsis-induced myocardial injury.

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2023-06-01 Epub Date: 2023-06-02 DOI:10.1007/s10863-023-09968-5
Wenlong Deng, Guobin Ren, Jiajing Luo, She Gao, Weihong Huang, Weitao Liu, Shupei Ye
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Abstract

Transient receptor potential melastatin 7 (TRPM7), a non-selective cation channel, was significantly upregulated in the blood of patients with sepsis. This study focuses on the preliminary exploration of the probable regulatory mechanism of TRPM7 in sepsis-induced myocardial injury (SIMI). HL-1 cardiac muscle cell line was treated with lipopolysaccharide (LPS) to mimic SIMI in vitro, and TRPM7 level was assessed. The impacts of TRPM7 knockdown on cellular inflammation response, oxidative stress, apoptosis, endoplasmic reticulum (ER) stress, and ferroptosis were identified. In order to explore the mechanism, ER stress agonist tunicamycin (TM) or ferroptosis inducer erastin was applied to treat HL-1 cells. The influences of TM and erastin on the aforementioned aspects were evaluated. TRPM7 was elevated in response to LPS stimulation, and its knockdown reduced the secretion of inflammatory factors and oxidative stress degree. Moreover, TRPM7 knockdown significantly suppressed cell apoptosis, ER stress, and ferroptosis. TM and erastin reversed the functions of TRPM7 knockdown, indicating ER stress and ferroptosis mediated in the regulation of TRPM7. This research proposes the possibility of TRPM7 as a marker or target for SIMI, and provides theoretical support for follow-up research.

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TRPM7在败血症诱导的心肌损伤中介导内质网应激和脱铁性贫血。
脓毒症患者血液中瞬时受体电位美伐他汀7(TRPM7),一种非选择性阳离子通道,显著上调。本研究的重点是初步探讨TRPM7在败血症诱导的心肌损伤(SIMI)中的可能调节机制。用脂多糖(LPS)处理HL-1心肌细胞系以模拟体外SIMI,并评估TRPM7水平。确定了TRPM7敲低对细胞炎症反应、氧化应激、细胞凋亡、内质网(ER)应激和脱铁性贫血的影响。为了探讨其机制,应用内质网应激激动剂衣霉素(TM)或脱铁诱导剂erastin治疗HL-1细胞。评价了TM和erastin对上述方面的影响。TRPM7在LPS刺激下升高,其敲低降低了炎症因子的分泌和氧化应激程度。此外,TRPM7敲低显著抑制细胞凋亡、内质网应激和脱铁性贫血。TM和erastin逆转了TRPM7敲低的功能,表明ER应激和脱铁性贫血介导了TRPM7.本研究提出了TRPM7-作为SIMI标记或靶点的可能性,并为后续研究提供了理论支持。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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