Araştırma Makalesi
BibTex RIS Kaynak Göster
Yıl 2018, Sayı: 3, 116 - 120, 01.12.2018

Öz

Kaynakça

  • Assimopoulou, A. N., Sinakos, Z., & Papageorgiou, V. P. (2005). Radical scavenging activity of Crocus sativus L. extract and its bioactive constituents. Phytotherapy Research, 19, 997‑1000. Aung, H. H., Wang ,C. Z., Ni, M., & Fishbein, A. (2007). Mehendale SR, Xie JT, et al. Crocin from Crocus sativus possesses significant anti‑proliferation effects on human colorectal cancer cells. Experimental Oncology, 29:175‑80. Bar‐Or, D., Curtis, G., Rao, N., Bampos, N., & Lau, E. (2001). Characterization of the Co2+ and Ni2+ binding amino‐acid residues of the N‐terminus of human albumin: An insight into the mechanism of a new assay for myocardial ischemia. European Journal of Biochemistry, 268(1), 42-48. Braunersreuther, V., & Jaquet, V. (2006). Reactive oxygen species in myocardial reperfusion injury: from physiopathology to therapeutic approaches. Current Pharmaceutical Biotechnology,13, 97-114. Ertekin, A., & Apaydin Yildirim, B. (2018). Protective Effects of Hesperidin and Coenzyme Q10 on Experimental Gastrocnemius Muscle Ischemia/Reperfusion Model in Rats. International Journal of Veterinary Health Science&Research, 6(1), 219-224. Fernández, J. (2006). Anticancer properties of saffron, Crocus sativus Linn. Adv Phytomedicine, 2, 313‑30. Garcia-de-la-Asuncion, J., Perez-Solaz, A., Carrau, M., Javier Belda, F., Perez-Griera, J., &Garriges, B. (2012). Different oxidative stress marker levels in blood from the operated knee or the antecubital vein in patients undergoing knee surgery: a tourniquet-induced ischemia-reperfusion model. Redox Report, 17, 194-9. Goth, L. (1991). A simple method for determenation of serum catalase activity and revision of serum catalase activity and revision of reference range. Clinica Chimica Acta. 196, 143–152. Green, L. C., Wagner, D. A., Glogowski, J., Skipper P. L., Wishnok, J. S. &Tannenbaum, S. R. (1982). Analysis of nitrate, nitrite and 15N nitrate in biological fluids. Analytical Biochemistry, 126:131-138. Green, T. R., Bennett, S. R., & Nelson, V. M. (1994). Specificity and properties of propofol as an antioxidant free radical scavenger. Toxicology and Applied Pharmacology, 129, 163-9. Hensley, K., Robinson, K. A., Gabbita, S. P., Salsman, S., & Floyd, R. A. (2000). Reactive oxygen species, cell signaling, and cell injury. Free Radica Biology & Medicine, 28(10):1456–1462. Hosseinzadeh, H., Abootorabi, A., & Sadeghnia, H. R. (2008). Protective effect of Crocus sativus stigma extract and crocin (trans‑crocin 4) on methyl methanesulfonate‑induced DNA damage in mice organs. DNA Cell Biology, 27, 657‑64. Hosseinzadeh, H., Shamsaie, F., & Mehri, S. (2009). Antioxidant activity of aqueous and ethanolic extracts of Crocus sativus L. stigma and its bioactive constituent, crocin and safranal. Pharmacognosy Magazine, 5, 419‑24. Khayatnouri, M., Safavi, S. E., Safarmashaei, S., Babazadeh, D., & Mikailpourardabili, B. (2011). The effect of saffron orally administration on spermatogenesis index in rat. Advanced in Environmental Biology, 5, 1514‑21. Kılıç, Y., Özer, A., Tatar, T.,Zor, M. H., Kirişçi, M., Kartal, H., Dursun, A. D., Billur, D., Arslan, M., & Küçük, A. (2017). Effect of picroside II on hind limb ischemia reperfusion injury in rats. Drug Design Development and Therapy, 11, 1917–1925. Lowry, O. H., Rosebrough, N. J., Farr, A. L., & Randall, R.J. (1951). Protein measurement with Folin’s phenol reagent. Journal of Biological Chemistry, 193;265-275. Matkovics, B., Szabo, L., & Varga, I.S. (1988). Determination of enzyme activities in lipid peroxidation and glutathione pathways. Laboratoriumi Diagnosztika, 15, 248–249. Nair, S. C., Kurumboor, S. K., & Hasegawa, J. H. (1995). Saffron chemoprevention in biology and medicine: A review. Cancer Biotherapy, 10, 257‑64. Renault, F., Chabriere, E., Andrieu, J. P., Dublet, B., Massona, P., Rochua, D. (2006). Tandem purification of two HDL-associated partner proteins in human plasma, paraoxonase (PON1) and phosphate binding protein (HPBP) using hydroxyapatite chromatography. Journal of Chromatography B, 836, 15-21. Robbins, S. L., Kumar, V., Abbas, A. K., & Aster, J. C. (2012). Robbins basic pathology. Elsevier Health Sciences Sun, Y., Oberley, L. W., & Li, Y. (1988). A simple method for clinical assay of superoxide dismutase. Clinical Chemistry, 34, 497-500. Tietze, F. (1969). Enzymic method for quantitavite determination of nanogram amounts of total and oxidized glutathione. Analytical Biocheistry,. 27, 502-522. Turer, A. T., & Hill, J. A. (2010). Pathogenesis of myocardial ischemia- reperfusion injury and rationale for therapy. American Journal of Cardiology, 106, 360-8. 
 Yoshioka, T., Kawada, K., Shimada, T., & Mori, M. (1979). Lipid peroxidation in maternal and cord blood and protective mechanism against activated oxygen toxicity in the blood. American Journal of Obstetrics Gynecology. 135, 372-376.

Protective Effects of Crocin on Experimental Gastrocnemius Muscle Ischemia/Reperfusion Model in Rat

Yıl 2018, Sayı: 3, 116 - 120, 01.12.2018

Öz

The aim of the present study was to define whether
Crocin, has a regulatory effect againstexperimental gastrocnemius muscle
ischemia/reperfusion injury model in rats.A total of 32 Sprague-Dawley male,
200-250g rats were randomly divided into four groups: Control, Crocin
(60mg/kg/i.p), I/R and I/R+Crocin groups. All rats were anesthetized with
xylazine and ketamine. Except for the control and Crocin group, the left lower
limbs of the other 2 groups were applied to 2 hours of ischemia and 2 hours of
reperfusion with tourniquet. SOD, MDA, GSH, CAT, GPx, MPO, NO, IMA, AOPP ve PON
levels were measured in the plasma; the levels of SOD, MDA, GSH, CAT and GPx
were determined in gastrocnemius muscle. Increases in SOD, GSH, CAT, GPx, AOPP
and PON levels, decreases in the MDA, MPO, NO and IMA levels were significant
in the Crocin groups according to the I/R group. These differences were
statistically significant. The results of this study support the possibility
that Crocin may play a protective role against skeletal muscle injury caused by
I/R in rats by reducing oxidative stress. Crocin can be safely used for
ischemia/reperfusion injury.  

Kaynakça

  • Assimopoulou, A. N., Sinakos, Z., & Papageorgiou, V. P. (2005). Radical scavenging activity of Crocus sativus L. extract and its bioactive constituents. Phytotherapy Research, 19, 997‑1000. Aung, H. H., Wang ,C. Z., Ni, M., & Fishbein, A. (2007). Mehendale SR, Xie JT, et al. Crocin from Crocus sativus possesses significant anti‑proliferation effects on human colorectal cancer cells. Experimental Oncology, 29:175‑80. Bar‐Or, D., Curtis, G., Rao, N., Bampos, N., & Lau, E. (2001). Characterization of the Co2+ and Ni2+ binding amino‐acid residues of the N‐terminus of human albumin: An insight into the mechanism of a new assay for myocardial ischemia. European Journal of Biochemistry, 268(1), 42-48. Braunersreuther, V., & Jaquet, V. (2006). Reactive oxygen species in myocardial reperfusion injury: from physiopathology to therapeutic approaches. Current Pharmaceutical Biotechnology,13, 97-114. Ertekin, A., & Apaydin Yildirim, B. (2018). Protective Effects of Hesperidin and Coenzyme Q10 on Experimental Gastrocnemius Muscle Ischemia/Reperfusion Model in Rats. International Journal of Veterinary Health Science&Research, 6(1), 219-224. Fernández, J. (2006). Anticancer properties of saffron, Crocus sativus Linn. Adv Phytomedicine, 2, 313‑30. Garcia-de-la-Asuncion, J., Perez-Solaz, A., Carrau, M., Javier Belda, F., Perez-Griera, J., &Garriges, B. (2012). Different oxidative stress marker levels in blood from the operated knee or the antecubital vein in patients undergoing knee surgery: a tourniquet-induced ischemia-reperfusion model. Redox Report, 17, 194-9. Goth, L. (1991). A simple method for determenation of serum catalase activity and revision of serum catalase activity and revision of reference range. Clinica Chimica Acta. 196, 143–152. Green, L. C., Wagner, D. A., Glogowski, J., Skipper P. L., Wishnok, J. S. &Tannenbaum, S. R. (1982). Analysis of nitrate, nitrite and 15N nitrate in biological fluids. Analytical Biochemistry, 126:131-138. Green, T. R., Bennett, S. R., & Nelson, V. M. (1994). Specificity and properties of propofol as an antioxidant free radical scavenger. Toxicology and Applied Pharmacology, 129, 163-9. Hensley, K., Robinson, K. A., Gabbita, S. P., Salsman, S., & Floyd, R. A. (2000). Reactive oxygen species, cell signaling, and cell injury. Free Radica Biology & Medicine, 28(10):1456–1462. Hosseinzadeh, H., Abootorabi, A., & Sadeghnia, H. R. (2008). Protective effect of Crocus sativus stigma extract and crocin (trans‑crocin 4) on methyl methanesulfonate‑induced DNA damage in mice organs. DNA Cell Biology, 27, 657‑64. Hosseinzadeh, H., Shamsaie, F., & Mehri, S. (2009). Antioxidant activity of aqueous and ethanolic extracts of Crocus sativus L. stigma and its bioactive constituent, crocin and safranal. Pharmacognosy Magazine, 5, 419‑24. Khayatnouri, M., Safavi, S. E., Safarmashaei, S., Babazadeh, D., & Mikailpourardabili, B. (2011). The effect of saffron orally administration on spermatogenesis index in rat. Advanced in Environmental Biology, 5, 1514‑21. Kılıç, Y., Özer, A., Tatar, T.,Zor, M. H., Kirişçi, M., Kartal, H., Dursun, A. D., Billur, D., Arslan, M., & Küçük, A. (2017). Effect of picroside II on hind limb ischemia reperfusion injury in rats. Drug Design Development and Therapy, 11, 1917–1925. Lowry, O. H., Rosebrough, N. J., Farr, A. L., & Randall, R.J. (1951). Protein measurement with Folin’s phenol reagent. Journal of Biological Chemistry, 193;265-275. Matkovics, B., Szabo, L., & Varga, I.S. (1988). Determination of enzyme activities in lipid peroxidation and glutathione pathways. Laboratoriumi Diagnosztika, 15, 248–249. Nair, S. C., Kurumboor, S. K., & Hasegawa, J. H. (1995). Saffron chemoprevention in biology and medicine: A review. Cancer Biotherapy, 10, 257‑64. Renault, F., Chabriere, E., Andrieu, J. P., Dublet, B., Massona, P., Rochua, D. (2006). Tandem purification of two HDL-associated partner proteins in human plasma, paraoxonase (PON1) and phosphate binding protein (HPBP) using hydroxyapatite chromatography. Journal of Chromatography B, 836, 15-21. Robbins, S. L., Kumar, V., Abbas, A. K., & Aster, J. C. (2012). Robbins basic pathology. Elsevier Health Sciences Sun, Y., Oberley, L. W., & Li, Y. (1988). A simple method for clinical assay of superoxide dismutase. Clinical Chemistry, 34, 497-500. Tietze, F. (1969). Enzymic method for quantitavite determination of nanogram amounts of total and oxidized glutathione. Analytical Biocheistry,. 27, 502-522. Turer, A. T., & Hill, J. A. (2010). Pathogenesis of myocardial ischemia- reperfusion injury and rationale for therapy. American Journal of Cardiology, 106, 360-8. 
 Yoshioka, T., Kawada, K., Shimada, T., & Mori, M. (1979). Lipid peroxidation in maternal and cord blood and protective mechanism against activated oxygen toxicity in the blood. American Journal of Obstetrics Gynecology. 135, 372-376.
Toplam 1 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Makaleler
Yazarlar

Betul Apaydın Yıldırım

Selcuk Albayrak

Yayımlanma Tarihi 1 Aralık 2018
Yayımlandığı Sayı Yıl 2018Sayı: 3

Kaynak Göster

APA Apaydın Yıldırım, B., & Albayrak, S. (2018). Protective Effects of Crocin on Experimental Gastrocnemius Muscle Ischemia/Reperfusion Model in Rat. The Eurasia Proceedings of Science Technology Engineering and Mathematics(3), 116-120.