| Literature DB >> 23241445 |
Jeong-Eun Huh1, Byung-Kwan Seo, Yong-Hyeon Baek, Sanghoon Lee, Jae-Dong Lee, Do-Young Choi, Dong-Suk Park.
Abstract
BACKGROUND: WIN-34B is a novel Oriental medicine, which represents the n-butanol fraction prepared from dried flowers of Lonicera japonica Thunb and dried roots of Anemarrhena asphodeloides BUNGE. The component herb of WIN-34B is used for arthritis treatment in East Asian countries. The aim of this study was to determine the cartilage-protective effects and mechanisms of WIN-34B and its major phenolic compounds, chlorogenic acid and mangiferin, in osteoarthritis (OA) human cartilage explants culture and chondrocytes.Entities:
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Year: 2012 PMID: 23241445 PMCID: PMC3559294 DOI: 10.1186/1472-6882-12-256
Source DB: PubMed Journal: BMC Complement Altern Med ISSN: 1472-6882 Impact factor: 3.659
Figure 1Representative HPLC chromatogram of the extracts of WIN-34B and its standard compounds. HPLC chromatogram of WIN-34B (A), major compound of chlorogenic acid (B) and mangiferin (C). Chlorogenic acid was detected at approximately 14 min and mangiferin was detected at approximately 18 min at 254 nm in this system.
Primer Design for Quantitative RT-PCR Analysis
| Aggrecan | Fw: 5′-TGAGGAGGGCTGGAACAAGTACC-3′ | 58°C (32) |
| Rv: 5′-GGAGGTGGTAATTGCAGG GAACA-3′ | ||
| Col II | Fw: 5′-AACACTGCCAACGTCCAGAT-3’ | 58°C (32) |
| Rv: 5′-CTGACGCACGGTATAGGTGA-3’ | ||
| ADAMTS-4 | Fw: 5’-GTCTGTGTC CAGGGCCGATGC-3’ | 55°C (32) |
| Rv: 5’-GCCGCCGAAGGATCTCCAGAA-3’ | ||
| ADAMTS-5 | Fw: 5’-GCGGATGTGTGCAAGCTGACC-3’ | 55°C (32) |
| Rv: 5’-AGTAGCC CATGCCATGCAGGA-3’ | ||
| MMP-1 | Fw: 5’-TCAGTTCGTCCTCACTCCAG-3’ | 58°C (32) |
| Rv: 5’-TTGGTCCACCTGTCATCTTC-3’ | ||
| MMP-3 | Fw: 5’-ATGGACCTTCTTCAGCAA-3’ | 58°C (32) |
| Rv: 5’-TCATTATGTCAGCCTCTC-3’ | ||
| MMP-13 | Fw: 5’-AGGAGCATGGCGACTTCTAC-3’ | 58°C (32) |
| Rv: 5’-TAA AAA CAG CTC CGC ATC AA-3’ | ||
| TIMP-1 | Fw: 5’-GCA ACTCCGACCTTGTCATC-3’ | 58°C (32) |
| Rv: 5’-AGCGTAGGTCTTGGTGAAGC-3’ | ||
| TIMP-3 | Fw:5’-GGCGGCAGCAGCGGCAATGAC-3’ | 58°C (32) |
| Rv:5’-TACCAGCTTCTTCCCCACCACCTT-3’ | ||
| β-actin | Fw: 5’-GCTCTCCAGAACATCACTCCTGCC-3’ | 58°C (27) |
| Rv: 5’-CGTTGTCATACCAGGAAATGAGCTT-3’ | ||
aFw, forward; Rv, reverse; GAPDH, glyceraldehyde-3-phosphate dehydrogenase; Tm, temperature
Figure 2Effect of WIN-34B and its major compounds on the cytotoxicity of IL-1β-stimulated human cartilage explants culture and chondrocytes.
Figure 3Effect of WIN-34B and its major compounds on cartilage protection of IL-1β-stimulated human cartilage explants culture.
Figure 4Histochemical analysis of proteoglycan and collagen in IL-1β-stimulated human cartilage explants culture.
Figure 5Effect of WIN-34B and its major compounds on the level of matrix proteinases and tissue inhibitor of matrix proteinases in human cartilage explants.
Figure 6Effect of WIN-34B and its major compounds on the productions of inflammatory mediators in IL-1β-stimulated cartilage explants culture.
Figure 7Effect of WIN-34B and its major compounds on pERK, pJNK, and pp38 MAPK proteins in IL-1β-stimulated human cartilage explants.