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Keywords: Curcumin
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Cellular Physiology and Biochemistry (2018) 51 (2): 681–691.
Published Online: 21 November 2018
...Qiuling Sang; Xiaoyang Liu; Libo Wang; Ling Qi; Wenping Sun; Weiyao Wang; Yajuan Sun; Haina Zhang Background/Aims: We aimed to explore the protective role of curcumin (Cur) in a cell model of Parkinson’s disease (PD) and its underlying mechanism. Methods: In this study, genes concerned with PD...
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Cellular Physiology and Biochemistry (2018) 50 (3): 1100–1112.
Published Online: 24 October 2018
... demonstrated that curcumin influences signalosome-associated kinases and the proteasome-ubiquitin system during osteoclastogenesis. The aims of this study were to explore the anti-osteolysis effect of curcumin and if possible to identify the signaling pathway involved in a model of PE-induced osteolysis...
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Cellular Physiology and Biochemistry (2018) 47 (5): 2136–2146.
Published Online: 05 July 2018
... an important role in the migration and proliferation of retinal pigment epithelium (RPE) cells, which promote PVR. Curcumin inhibits RPE cell proliferation, but it is not known whether it participates in the formation of PVR. Curcumin regulates the biological functions of EGF, which plays important roles...
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Cellular Physiology and Biochemistry (2017) 44 (2): 479–493.
Published Online: 17 November 2017
... for this disease. However, curcumin has shown neuroprotectant efficacy in a RP rat and swine model, and thus, may have neuroprotective effects in this disease. Methods: Immunofluorescence staining, electroretinogram recordings, and behavioral tests were used to analyze the effects of curcumin and the underlying...
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Cellular Physiology and Biochemistry (2018) 43 (5): 2143–2154.
Published Online: 24 October 2017
... complication of RM is acute kidney injury (AKI). This study aimed to evaluate the efficacy and mechanisms of action of curcumin-loaded nanoparticles (Cur-NP) for treatment of RM-induced AKI. Methods: Curcumin-NP was synthesized using the nanocarrier distearoylphosphatidylethanolamine-polyethylene glycol (DSPE...
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Cellular Physiology and Biochemistry (2015) 36 (1): 345–357.
Published Online: 06 May 2015
... deformability and anion transport efficiency. The aim of the present investigation, conducted on human erythrocytes, is to verify whether curcumin (1 or 10µM), a natural compound with proved antioxidant properties, may counteract Band 3-mediated anion transport alterations due to oxidative stress. Methods...
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Cellular Physiology and Biochemistry (2015) 35 (4): 1381–1393.
Published Online: 12 March 2015
... only. Distribution permitted for non-commercial purposes only. 1381 Curcumin Enhances the Radiosensitivity of U87 Cells by Inducing DUSP-2 UpRegulation Yu Qian Jianfen Ma Xiaoyi Guo Jun Sun Yongtao Yu Boqiang Cao Lei Zhang Xiaopeng Ding Jin Huang Jun Fei Shao Department of Neurosurgery, Wuxi People s...
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Cellular Physiology and Biochemistry (2015) 35 (2): 489–498.
Published Online: 16 January 2015
...Xu-yan Fu; Dong-wei Zhang; Ya-dong Li; Pi-wen Zhao; Yu-qing Tang; Jian-zhao Niu; Yu Li Background/Aim: Recent studies have demonstrated that circulating fibrocytes contribute to the formation and development of fibrosis. Curcumin, a polyphenolic compound isolated from turmeric, has been shown...
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Cellular Physiology and Biochemistry (2012) 29 (3-4): 353–360.
Published Online: 03 April 2012
...Jie Zheng; Kelsey Payne; Jori E. Taggart; Hongchao Jiang; Stuart E. Lind; Wei-Qun Ding Curcumin, a natural polyphenol in the spice turmeric, has been found to exhibit anticancer activity. Although curcumin is generally considered an antioxidant, it is also able to elicit apoptosis through...
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