BMC Neuroscience | |
Scutellarin regulates microglia-mediated TNC1 astrocytic reaction and astrogliosis in cerebral ischemia in the adult rats | |
Research Article | |
Chunyun Wu1  Yun Yuan1  Parakalan Rangarajan2  Eng-Ang Ling2  Yajun Wu2  Jia Lu3  Ming Fang4  Huadong Wang5  | |
[1] Department of Anatomy and Histology/Embryology, Faculty of Basic Medical Sciences, Kunming Medical University, 1168 West Chunrong Road, 650500, Kunming, Peoples’ Republic of China;Department of Anatomy, Yong Loo Lin School of Medicine, National University of Singapore, 4 Medical Drive, MD10, 117594, Singapore, Singapore;Department of Anatomy, Yong Loo Lin School of Medicine, National University of Singapore, 4 Medical Drive, MD10, 117594, Singapore, Singapore;Defence Medical and Environmental Research Institute, DSO National Laboratories, 27 Medical Drive, 117510, Singapore, Singapore;Department of Emergency and Critical Care, Guangdong General Hospital, Guangdong Academy of Medical Sciences, 510080, Guangzhou, China;Department of Anatomy, Yong Loo Lin School of Medicine, National University of Singapore, 4 Medical Drive, MD10, 117594, Singapore, Singapore;Department of Pathophysiology, School of Medicine, Jinan University, 510632, Guangzhou, China; | |
关键词: Scutellarin; Cerebral ischemia; Astrogliosis; GFAP; Notch; Nestin; Proinflammatory mediators; TNC1; | |
DOI : 10.1186/s12868-015-0219-6 | |
received in 2015-09-12, accepted in 2015-11-13, 发布年份 2015 | |
来源: Springer | |
【 摘 要 】
BackgroundScutellarin, an anti-inflammatory agent, effectively suppressed microglia activation in rats with middle cerebral artery occlusion (MCAO). Robust microglia activation, acute in onset, was followed by astrogliosis. This study was aimed to determine if scutellarin would also affect the reactive astrocytes that play an important role in tissue repair. Expression of GFAP and Notch-1 and its members: Notch receptor intracellular domain (NICD), and transcription factor hairy and enhancer of split-1 (HES-1), together with nestin and proinflammatory mediators was assessed by immunofluorescence staining in TNC1 astrocytes treated, respectively, with BV-2 conditioned medium (CM) and CM + lipopolysaccharide (LPS) (CM + L) serving as the controls, and conditioned medium derived from LPS-activated BV-2 cells pretreated with scutellarin (CM + SL). Study of the above biomarkers was then extended to reactive astrocytes in scutellarin injected MCAO rats.ResultsTNC1 astrocytes remained relatively unreactive in terms of expression of different biomarkers to direct scutellarin treatment when compared with the control cells. In comparison to cells in the control medium (CM, CM + L), they responded vigorously to CM + SL as evidenced by the enhanced protein expression of GFAP, Notch-1, NICD and HES-1 coupled with that of nestin, TNF-α, IL-1β, and iNOS by Western and immunofluorescence analysis. Electron microscopy showed marked hypertrophy and cell expansion of TNC1 astrocytes bearing many filamentous processes indicative of enhanced astrocyte reaction when treated with CM + SL. In MCAO rats, scutellarin also augmented the expression of the above markers in reactive astrocytes; moreover, astrocytes were evidently hypertrophic.ConclusionsThe results suggest that scutellarin regulates astrogliosis; more importantly, it is microglia-mediated as demonstrated in vitro. Increased expression of Notch signaling in synchrony with nestin may be linked to proliferation and “de-differentiation” of reactive astrocytes; the significance of enhanced TNF-α, IL-1β and iNOS expression in reactive astrocytes by scutellarin may be neuroprotective but this remains speculative.
【 授权许可】
CC BY
© Fang et al. 2015
【 预 览 】
Files | Size | Format | View |
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RO202311094587333ZK.pdf | 4860KB | download |
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