Lin Chai-Ching, Chiang Tien-Huang, Chen Wei-Jung, Sun Yu-Yo, Lee Yi-Hsuan, Lin Muh-Shi
Department of Biotechnology and Animal Science, College of Bioresources, National Ilan University, Yilan, Taiwan.
Department of Pediatrics, Emory University School of Medicine, Atlanta, GA, USA.
Injury. 2015 Dec;46(12):2341-50. doi: 10.1016/j.injury.2015.07.040. Epub 2015 Aug 8.
CISD2 is known to have roles in calcium metabolism, anti-apoptosis, and longevity. However, whether CISD2 is involved in the inflammatory response associated with injuries of the central nervous system (CNS) remains unclear. This issue is particularly relevant for traumatic spinal cord injuries (SCIs), which lack therapeutic targeting and often cause long-term disability in patients. The authors previously demonstrated the neuroprotective effects of curcumin against RANTES-mediated neuroinflammation. In this study, we investigated (1) the role of CISD2 in injury-induced inflammation and (2) whether curcumin influences CISD2 expression in acute SCI.
The efficacy of curcumin treatment (40 mg/kg i.p.) was evaluated in an animal model of SCI. In a neural cell culture model, lipopolysaccharide (LPS) was administrated to induce inflammation with the aim of mimicking the situation commonly encountered in SCI. Additionally, knockdown of CISD2 expression by siRNA (siCISD2) in LPS-challenged neural cells was performed to verify the causal relationship between CISD2 and SCI-related inflammation.
The injuries were shown to reduce CISD2 mRNA and protein expression in vivo, and CISD2-positive cells were upregulated by the curcumin treatment. LPS led to a decrease in CISD2 expression in vitro; however, treatment with 1 μM curcumin attenuated the downregulation of CISD2. Furthermore, in a cellular model of LPS-induced injury, the loss of CISD2 function caused by siCISD2 resulted in a pronounced iNOS increase as well as a decrease in BCL2 expression.
To the best of our knowledge, this is the first study to report the following: (1) CISD2 exerts anti-apoptotic and anti-inflammatory effects in neural cells; and (2) curcumin can attenuate the downregulation of CISD2 in SCI and LPS-treated astrocytes.
已知CISD2在钙代谢、抗凋亡和长寿方面发挥作用。然而,CISD2是否参与与中枢神经系统(CNS)损伤相关的炎症反应仍不清楚。这个问题对于创伤性脊髓损伤(SCI)尤为重要,因为SCI缺乏治疗靶点,且常常导致患者长期残疾。作者之前证明了姜黄素对RANTES介导的神经炎症具有神经保护作用。在本研究中,我们调查了(1)CISD2在损伤诱导的炎症中的作用,以及(2)姜黄素是否影响急性SCI中CISD2的表达。
在SCI动物模型中评估姜黄素治疗(腹腔注射40mg/kg)的疗效。在神经细胞培养模型中,给予脂多糖(LPS)以诱导炎症,目的是模拟SCI中常见的情况。此外,在LPS刺激的神经细胞中通过小干扰RNA(siRNA,siCISD2)敲低CISD2表达,以验证CISD2与SCI相关炎症之间的因果关系。
体内损伤显示可降低CISD2 mRNA和蛋白表达,姜黄素治疗可使CISD2阳性细胞上调。LPS导致体外CISD2表达降低;然而,用1μM姜黄素处理可减轻CISD2的下调。此外,在LPS诱导损伤的细胞模型中,siCISD2导致的CISD2功能丧失导致诱导型一氧化氮合酶(iNOS)显著增加以及BCL2表达降低。
据我们所知,这是第一项报告以下内容的研究:(1)CISD2在神经细胞中发挥抗凋亡和抗炎作用;(2)姜黄素可减轻SCI和LPS处理的星形胶质细胞中CISD2的下调。