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32篇 您的检索式:作者名="Urdzikova"
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1Does combined therapy of curcumin and epigallocatechin gallate have a synergistic neuroprotective effect against spinal cord injury?显示文摘Systematic inflammatory response after spinal cord injury(SCI) is one of the factors leading to lesion development and a profound degree of functional loss. Anti-inflammatory compounds, such as curcumin and epigallocatechin gallate(EGCG) are known for their neuroprotective effects. In this study, we investigated the effect of combined therapy of curcumin and EGCG in a rat model of acute SCI induced by balloon compression. Immediately after SCI, rats received curcumin, EGCG, curcumin + EGCG or saline [daily intraperitoneal doses(curcumin, 6 mg/kg; EGCG 17 mg/kg)] and weekly intramuscular doses(curcumin, 60 mg/kg; EGCG 17 mg/kg)] for 28 days. Rats were evaluated using behavioral tests(the Basso, Beattie, and Bresnahan(BBB) open-field locomotor test, flat beam test). Spinal cord tissue was analyzed using histological methods(Luxol Blue-cresyl violet staining) and immunohistochemistry(anti-glial fibrillary acidic protein, anti-growth associated protein 43). Cytokine levels(interleukin-1β, interleukin-4, interleukin-2, interleukin-6, macrophage inflammatory protein 1-alpha, and RANTES) were measured using Luminex assay. Quantitative polymerase chain reaction was performed to determine the relative expression of genes(Sort1, Fgf2, Irf5, Mrc1, Olig2, Casp3, Gap43, Gfap, Vegf, NfκB, Cntf) related to regenerative processes in injured spinal cord. We found that all treatments displayed significant behavioral recovery, with no obvious synergistic effect after combined therapy of curcumin and ECGC. Curcumin and EGCG alone or in combination increased axonal sprouting, decreased glial scar formation, and altered the levels of macrophage inflammatory protein 1-alpha, interleukin-1β, interleukin-4 and interleukin-6 cytokines. These results imply that although the expected synergistic response of this combined therapy was less obvious, aspects of tissue regeneration and immune responses in severe SCI were evident.Jiri Ruzicka Lucia Machova Urdzikova Barbora Svobodova Anubhav G. Amin Kristyna Karova Jana Dubisova Kristyna Zaviskova Sarka Kubinova Meic Schmidt Meena Jhanwar-Uniyal Pavla Jendelova 2018Neural Regeneration Research2018,13,1:4
2Transplantation of bone marrow stem cells as well as mobilization by granulocyte-colony stimulating factor promotes recovery after spinal cord injury in rats显示文摘Urdzikova L Jendelova P Glogarova K 0,,09:1
3Magnetic resonance tracking of transplanted bone marrow and embryonic stem cells labeled by iron oxide nanoparticles in rat brain and spinal cord显示文摘Jendelova P Herynek V Urdzikova L 2004J Neurosei Res2004,76,2:1
4Bone Marrow Stem Ceils and Polymer Hydrogels-Two Strategies for Spinal Cord Injury Repair显示文摘Sykova E Jendelova P Urdzikova L 2006Cellular and Molecular Neurobiology2006,26,78:1
5Acute and delayed implantation of positively charged 2-hydroxyethyl methacrylate scaffolds in spinal cord injury in the rat显示文摘Hejcl A Urdzikova L Sedy J 0,,01:1
6Low degree of anesthesia increases the risk of neurogenic pulmonary edema development显示文摘Sedy J Likavcanova K Urdzikova L 2008Med Hypotheses2008,70,:1
7Magnetic resonance tracking of transp lanted bone marrow and embryonic stem cells labeled by iron oxide nanoparticles in rat brain and spinal cord显示文摘Jendelova P Herynek V Urdzikova L 2004J Neurosci Res2004,76,2:1
8Magnetic resonance tracking of transplanted bone marrow and embryonic stem cells labeled by iron oxide nanoparticles in rat brain and spinal cord显示文摘Jendelova P Herynek V Urdzikova L 2004Neurosci Rese2004,76,:1
9Methods for behavioral testing of spinal cord injured rats 显示文摘Sedy J Urdzikova L Jendelova P 2008Neurosci Biobehav Rev2008,32,3:1
10Magnetic resonance tracking of transplanted bone marrow and embryonic stem cells labeled by iron oxide nanoparticles in rat brain and spinal cord显示文摘Jendelova P Herynek V Urdzikova L 2004J Neurosci Res2004,76,:1
11Low degree-of anesthesiain- creases the risk of neurogenic pulmonary edema development 显示文摘Sedy J Likavcanova K Urdzikova L 2008Med Hypotheses2008,,70:1
12Bone marrow stem cells and polymer hydrogels--two strategies for spinal cord injury repair显示文摘Sykova E Jendelova P Urdzikova L 2006Cell Mol Neurobiol2006,26,78:1
13Low concentration of isoflurane promotes the development of neurogenic pulmonary edema in spinal cord injured rats显示文摘Sedy J Urdzikova L Likavcanova K 0,,09:1
14A simple and reproducible model of spinal cord injury induced by epidural balloon inflation in the rat显示文摘Vanicky I Urdzikova L Saganova K 0,,:1
15A simple and reproducible model of spinal cord injury induced by epidural balloon inflation in the rat显示文摘Vanicky I Urdzikova L Saganova K 2001J Neurotrauma2001,18,12:1
16Methods for behavioral testing of spinal cord injured rats显示文摘Sedy J Urdzikova L Jendelova P 2008Neurosci Biobeh Rev2008,32,:1
17Methods for behavioral testing of spinal cord injured rats 显示文摘Sedy J Urdzikova L Jendelova P 2008Neurosei Biobehav Rev2008,32,3:1
18Magnetic resonance tracking of transplanted bone marrow and embryonic stem cells labeled by iron oxide nanoparticles in rat brain and spinal cord显示文摘Jendelova P Herynek V Urdzikova L 2004J Neurosci Res2004,76,2:1
19Magnetic resonance tracking of transplanted bone marrow and embryonic stem cells labeled by iron oxide nanoparticles in rat brain and spinal cord 显示文摘Jendelova P Herynek V Urdzikova L 2004J Neurosci Res2004,76,2:1
20Magnetic resonance tracking of transplanted bone marrow and embryonic stem cells labeled by iron oxide nanoparticles in rat brain and spinal cord 显示文摘Jendelova P Herynek V Urdzikova L 2004J Neurosci Res2004,76,2:1
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