A putative Chondroprotective role for IL-1β and MPO in herbal treatment of experimental osteoarthritis

Show simple item record

dc.contributor.author Aborehab N.M.
dc.contributor.author El Bishbishy M.H.
dc.contributor.author Refaiy A.
dc.contributor.author Waly N.E.
dc.contributor.other MSA University
dc.contributor.other Department of Biochemistry
dc.contributor.other Faculty of Pharmacy
dc.contributor.other Giza
dc.contributor.other 11787
dc.contributor.other Egypt; MSA University
dc.contributor.other Department of Pharmacognosy
dc.contributor.other Faculty of Pharmacy
dc.contributor.other Giza
dc.contributor.other 11787
dc.contributor.other Egypt; Assiut University
dc.contributor.other Department of Pathology Faculty of Medicine
dc.contributor.other Assiut
dc.contributor.other 71515
dc.contributor.other Egypt; Department of Physiology
dc.contributor.other Faculty of Medicine
dc.contributor.other Helwan University
dc.contributor.other Cairo
dc.contributor.other 11795
dc.contributor.other Egypt
dc.date.accessioned 2020-01-09T20:41:13Z
dc.date.available 2020-01-09T20:41:13Z
dc.date.issued 2017
dc.identifier.issn 14726882
dc.identifier.other https://doi.org/10.1186/s12906-017-2002-y
dc.identifier.other PubMed ID 29166937
dc.identifier.uri https://t.ly/6xMX1
dc.description Scopus
dc.description.abstract Background: Herbal treatment may have a chondroprotective and therapeutic effect on Osteoarthritis (OA). We investigated the mechanism of action of ginger and curcumin rhizomes cultivated in Egypt in treatment of OA in rat model. Methods: Thirty-five albino rats were intra-articularly injected with Monosodium Iodoacetate in the knee joint. Ginger and curcumin was orally administered at doses of 200 and 400mg/kg (F200 and F400). Serum levels of cartilage oligomeric matrix protein (COMP), hyaluronic acid (HA), malondialdehyde (MDA), myeloperoxidase (MPO), Interleukin-1 beta (IL-1?) and superoxide dismutase activity (SOD) were measured using ELISA. The composition of the herbal formula hydro-ethanolic extract was characterized using UPLC-ESI-MS. Histopathological changes in injected joints was examined using routine histopathology. Statistical analysis was performed using one-way ANOVA. Results: Serum levels of COMP, HA, MPO, MDA, and IL-1? were significantly decreased in F 200, F 400 and V groups when compared to OA group (P value <0.0001). On the other hand SOD levels were significantly elevated in treated groups compared to OA groups (P value <0.0001). Conclusions: The ginger/curcumin at 1:1 had chondroprotective effect via anti-inflammatory and antioxidant effect in rat OA model. Further pharmacological and clinical studies are needed to evaluate this effect. � 2017 The Author(s). en_US
dc.description.uri https://www.scimagojr.com/journalsearch.php?q=34441&tip=sid&clean=0
dc.language.iso English en_US
dc.publisher BioMed Central Ltd. en_US
dc.relation.ispartofseries BMC Complementary and Alternative Medicine
dc.relation.ispartofseries 17
dc.subject COMP en_US
dc.subject Curcumin en_US
dc.subject Ginger en_US
dc.subject HA en_US
dc.subject IL-1? en_US
dc.subject MDA en_US
dc.subject MPO en_US
dc.subject Osteoarthritis en_US
dc.subject alcohol en_US
dc.subject cartilage oligomeric matrix protein en_US
dc.subject curcumin en_US
dc.subject ginger extract en_US
dc.subject hyaluronic acid en_US
dc.subject interleukin 1beta en_US
dc.subject iodoacetic acid en_US
dc.subject malonaldehyde en_US
dc.subject myeloperoxidase en_US
dc.subject superoxide dismutase en_US
dc.subject cartilage oligomeric matrix protein en_US
dc.subject curcumin en_US
dc.subject hyaluronic acid en_US
dc.subject interleukin 1beta en_US
dc.subject malonaldehyde en_US
dc.subject peroxidase en_US
dc.subject plant extract en_US
dc.subject protective agent en_US
dc.subject superoxide dismutase en_US
dc.subject animal experiment en_US
dc.subject animal model en_US
dc.subject animal tissue en_US
dc.subject antiinflammatory activity en_US
dc.subject antioxidant activity en_US
dc.subject Article en_US
dc.subject chondroprotection en_US
dc.subject controlled study en_US
dc.subject drug effect en_US
dc.subject drug mechanism en_US
dc.subject Egypt en_US
dc.subject enzyme activity en_US
dc.subject enzyme linked immunosorbent assay en_US
dc.subject histopathology en_US
dc.subject liquid chromatography-mass spectrometry en_US
dc.subject male en_US
dc.subject nonhuman en_US
dc.subject osteoarthritis en_US
dc.subject protein blood level en_US
dc.subject randomized controlled trial en_US
dc.subject rat en_US
dc.subject animal en_US
dc.subject blood en_US
dc.subject chemistry en_US
dc.subject disease model en_US
dc.subject ginger en_US
dc.subject metabolism en_US
dc.subject Animals en_US
dc.subject Cartilage Oligomeric Matrix Protein en_US
dc.subject Curcumin en_US
dc.subject Disease Models, Animal en_US
dc.subject Ginger en_US
dc.subject Hyaluronic Acid en_US
dc.subject Interleukin-1beta en_US
dc.subject Male en_US
dc.subject Malondialdehyde en_US
dc.subject Osteoarthritis en_US
dc.subject Peroxidase en_US
dc.subject Plant Extracts en_US
dc.subject Protective Agents en_US
dc.subject Superoxide Dismutase en_US
dc.title A putative Chondroprotective role for IL-1β and MPO in herbal treatment of experimental osteoarthritis en_US
dc.type Article en_US
dcterms.isReferencedBy Zhang, W., Ouyang, H., Dass, C.R., Xu, J., Current research on pharmacologic and regenerative therapies for osteoarthritis (2016) Bone Res, 4, p. 15040; Hootman, J.M., Helmick, C.G., Projections of US prevalence of arthritis and associated activity limitations (2006) Arthritis Rheum, 54 (1), pp. 226-229; Cialdai, C., Giuliani, S., Valenti, C., Tramontana, M., Maggi, C.A., Comparison between oral and intra-articular antinociceptive effect of dexketoprofen and tramadol combination in monosodium iodoacetate-induced osteoarthritis in rats (2013) Eur J Pharmacol, 714 (1-3), pp. 346-351; Hunter, D.J., Felson, D.T., Osteoarthritis (2006) BMJ, 332 (7542), pp. 639-642; Al-Saffar, F.J., Ganabadi, S., Fakurazi, S., Yaakub, H., Lip, M., Chondroprotective effect of Zerumbone on monosodium Iodoacetate induced osteoarthritis in rats (2010) J Appl Sci, 10 (4), pp. 248-260; Berenbaum, F., Osteoarthritis year 2010 in review: pharmacological therapies (2011) Osteoarthr Cartil, 19 (4), pp. 361-365; Hawker, G.A., Mian, S., Bednis, K., Stanaitis, I., Osteoarthritis year 2010 in review: non-pharmacologic therapy (2011) Osteoarthr Cartil, 19 (4), pp. 366-374; Nagase, H., Kumakura, S., Shimada, K., Establishment of a novel objective and quantitative method to assess pain-related behavior in monosodium iodoacetate-induced osteoarthritis in rat knee (2012) J Pharmacol Toxicol Methods, 65 (1), pp. 29-36; Bianchi, E., Di Cesare Mannelli, L., Menicacci, C., Lorenzoni, P., Agliano, M., Ghelardini, C., Prophylactic role of acetyl-l-carnitine on knee lesions and associated pain in a rat model of osteoarthritis (2014) Life Sci, 106 (1-2), pp. 32-39; Moilanen, L.J., Hamalainen, M., Nummenmaa, E., Ilmarinen, P., Vuolteenaho, K., Nieminen, R.M., Lehtimaki, L., Moilanen, E., Monosodium iodoacetate-induced inflammation and joint pain are reduced in TRPA1 deficient mice--potential role of TRPA1 in osteoarthritis (2015) Osteoarthr Cartil, 23 (11), pp. 2017-2026; Aborehab, N.M., El Bishbishy, M.H., Waly, N.E., Resistin mediates tomato and broccoli extract effects on glucose homeostasis in high fat diet-induced obesity in rats (2016) BMC Complement Altern Med, 16, p. 225; Ghavipour, M., Sotoudeh, G., Ghorbani, M., Tomato juice consumption improves blood antioxidative biomarkers in overweight and obese females (2015) Clin Nutr, 34 (5), pp. 805-809; Ghavipour, M., Saedisomeolia, A., Djalali, M., Sotoudeh, G., Eshraghyan, M.R., Moghadam, A.M., Wood, L.G., Tomato juice consumption reduces systemic inflammation in overweight and obese females (2013) Br J Nutr, 109 (11), pp. 2031-2035; Zivanovic, S., Rackov, L.P., Zivanovic, A., Jevtic, M., Nikolic, S., Kocic, S., Cartilage oligomeric matrix protein - inflammation biomarker in knee osteoarthritis (2011) Bosn J Basic Med Sci, 11 (1), pp. 27-32; Ojewole, J.A., Analgesic, antiinflammatory and hypoglycaemic effects of ethanol extract of Zingiber Officinale (roscoe) rhizomes (Zingiberaceae) in mice and rats (2006) Phytother Res, 20 (9), pp. 764-772; al-Yahya, M.A., Rafatullah, S., Mossa, J.S., Ageel, A.M., Parmar, N.S., Tariq, M., Gastroprotective activity of ginger zingiber officinale rosc., in albino rats (1989) Am J Chin Med, 17 (1-2), pp. 51-56; Anosike, C.A., Obidoa, O., Ezeanyika, L.U.S., Nwuba, M.M., Anti-inflammatory and anti-ulcerogenic activity of the ethanol extract of ginger (Zingiber Officinale) (2009) Afr J Biochem Res, 3 (12), pp. 379-384; Chin, K.Y., The spice for joint inflammation: anti-inflammatory role of curcumin in treating osteoarthritis (2016) Drug Des Devel Ther, 10, pp. 3029-3042; Rahimnia, A.R., Panahi, Y., Alishiri, G., Sharafi, M., Sahebkar, A., Impact of supplementation with Curcuminoids on systemic inflammation in patients with knee osteoarthritis: findings from a randomized double-blind placebo-controlled trial (2015) Drug Res (Stuttg), 65 (10), pp. 521-525; Panahi, Y., Alishiri, G.H., Parvin, S., Sahebkar, A., Mitigation of systemic oxidative stress by Curcuminoids in osteoarthritis: results of a randomized controlled trial (2016) J Diet Suppl, 13 (2), pp. 209-220; Ramadan, G., Al-Kahtani, M.A., El-Sayed, W.M., Anti-inflammatory and anti-oxidant properties of Curcuma Longa (turmeric) versus Zingiber Officinale (ginger) rhizomes in rat adjuvant-induced arthritis (2011) Inflammation, 34 (4), pp. 291-301; Shankar, T.N., Shantha, N.V., Ramesh, H.P., Murthy, I.A., Murthy, V.S., Toxicity studies on turmeric (Curcuma Longa): acute toxicity studies in rats, guineapigs & monkeys (1980) Indian J Exp Biol, 18 (1), pp. 73-75; Vogler, G.A., Suckow, M.A., Weisbroth, S., Franklin, C.L., Anesthesia and analgesia in the laboratory rat (2006), pp. 627-695. , New York: Elsevier Academic Press; Pritzker, K.P., Gay, S., Jimenez, S.A., Ostergaard, K., Pelletier, J.P., Revell, P.A., Salter, D., van den Berg, W.B., Osteoarthritis cartilage histopathology: grading and staging (2006) Osteoarthr Cartil, 14 (1), pp. 13-29; Jiang, H., Solyom, A.M., Timmermann, B.N., Gang, D.R., Characterization of gingerol-related compounds in ginger rhizome (Zingiber Officinale Rosc.) by high-performance liquid chromatography/electrospray ionization mass spectrometry (2005) Rapid Commun Mass Spectrom, 19 (20), pp. 2957-2964; Tao, Y., Li, W., Liang, W., Van Breemen, R.B., Identification and quantification of gingerols and related compounds in ginger dietary supplements using high-performance liquid chromatography-tandem mass spectrometry (2009) J Agric Food Chem, 57 (21), pp. 10014-10021; Ahui, M.L.B., Konan, A.B., Zannou-Tchoko, V.J., Amonkan, A.K., Kati-Coulibaly, S., Offoumou, M.A., Identification of Gingerols in ginger (Zingiber Officinale roscoe) by high performance liquid chromatography-tandem mass spectrometry and pharmacologic studies of its aqueous extract on the rabbit isolated duodenum contractility (2013) J Phys Pharm Adv, 3 (2), pp. 16-26; Tanaka, K., Arita, M., Sakurai, H., Ono, N., Tezuka, Y., Analysis of chemical properties of edible and medicinal ginger by metabolomics approach (2015) Biomed Res Int, 2015, p. 671058; Herebian, D., Choi, J.H., Abd El-Aty, A.M., Shim, J.H., Spiteller, M., Metabolite analysis in Curcuma Domestica using various GC-MS and LC-MS separation and detection techniques (2009) Biomed Chromatogr, 23 (9), pp. 951-965; Nelson, A.E., Allen, K.D., Golightly, Y.M., Goode, A.P., Jordan, J.M., A systematic review of recommendations and guidelines for the management of osteoarthritis: the chronic osteoarthritis management initiative of the U.S. bone and joint initiative (2014) Semin Arthritis Rheum, 43 (6), pp. 701-712; Bove, S.E., Calcaterra, S.L., Brooker, R.M., Huber, C.M., Guzman, R.E., Juneau, P.L., Schrier, D.J., Kilgore, K.S., Weight bearing as a measure of disease progression and efficacy of anti-inflammatory compounds in a model of monosodium iodoacetate-induced osteoarthritis (2003) Osteoarthr Cartil, 11 (11), pp. 821-830; Haghighi, A.T.N., Owlia, M.B., Effects of ginger on primary knee osteoarthritis (2006) Indian J Rheumatol, 1, pp. 3-7; Ramonda, R., Lorenzin, M., Modesti, V., Campana, C., Ortolan, A., Frallonardo, P., Punzi, L., Serological markers of erosive hand osteoarthritis (2013) Eur J Intern Med, 24 (1), pp. 11-15; Verma, P., Dalal, K., Serum cartilage oligomeric matrix protein (COMP) in knee osteoarthritis: a novel diagnostic and prognostic biomarker (2013) J Orthop Res, 31 (7), pp. 999-1006; Jung, Y.O., Do, J.H., Kang, H.J., Yoo, S.A., Yoon, C.H., Kim, H.A., Cho, C.S., Kim, W.U., Correlation of sonographic severity with biochemical markers of synovium and cartilage in knee osteoarthritis patients (2006) Clin Exp Rheumatol, 24 (3), pp. 253-259; Punzi, L., Ramonda, R., Deberg, M., Frallonardo, P., Campana, C., Musacchio, E., Henrotin, Y., Coll2-1, Coll2-1NO2 and myeloperoxidase serum levels in erosive and non-erosive osteoarthritis of the hands (2012) Osteoarthr Cartil, 20 (6), pp. 557-561; Kapoor, M., Martel-Pelletier, J., Lajeunesse, D., Pelletier, J.P., Fahmi, H., Role of proinflammatory cytokines in the pathophysiology of osteoarthritis (2011) Nat Rev Rheumatol, 7 (1), pp. 33-42; Blessy, D., Suresh, K., Manoharan, S., Arokia, A., Vijayaan, M.A., Sugunadevi, G., Evaluation of chemo preventive potential of Zingiber Officinale roscoe ethanolic root extract on 7, 12-dimethyl Benz[a] anthracene induced oral carcinogenesis (2009) Res J Agric Biol Sci, 5 (5), pp. 775-781; Al-Kushi, A.G., El-Boshy, M.E., ElSawy, N.A., Shaikh Omar, O.A., Header, E.A., Pathological comparative studies on aqueous and Ethanolic extracts of Zingiber Officinale on antioxidants and Hypolipidemic effects in rats (2013) Life Science Journal, 10 (2), pp. 2393-2403; Ajith, T.A., Hema, U., Aswathy, M.S., Zingiber Officinale roscoe prevents acetaminophen-induced acute hepatotoxicity by enhancing hepatic antioxidant status (2007) Food Chem Toxicol, 45 (11), pp. 2267-2272; Leong, D.J., Choudhury, M., Hirsh, D.M., Hardin, J.A., Cobelli, N.J., Sun, H.B., Nutraceuticals: potential for chondroprotection and molecular targeting of osteoarthritis (2013) Int J Mol Sci, 14 (11), pp. 23063-23085
dcterms.source Scopus
dc.identifier.doi https://doi.org/10.1186/s12906-017-2002-y
dc.identifier.doi PubMed ID 29166937
dc.Affiliation October University for modern sciences and Arts (MSA)


Files in this item

This item appears in the following Collection(s)

Show simple item record

Search MSAR


Advanced Search

Browse

My Account