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In Vitro Antioxidant Property of Convolvulus aucheri and Its NO Inhibitory Potential in LPS-activated NSCLC Cells

Yıl 2019, Cilt: 9 Sayı: 3, 1282 - 1288, 01.09.2019
https://doi.org/10.21597/jist.537673

Öz

Latterly, scientists have turned into progressively curious about therapeutic herbs. A lot of Convolvulus taxa display different biologic activities. In this study, we aimed to evaluate nitric oxide (NO) inhibitive effect of Convolvulus aucheri in LPS-induced non-small cell lung cancer (NSCLC) cells, such as HCC78 and H1975 and determine its antioxidant capacity. While Griess assay was applied to determine the nitrite level as an index of NO production, β-carotene/linoleic acid test was used for the determining antioxidant effect. Cytotoxic activity of C. aucheri extract was detected by using CellTiter-Glo assay. The extract induced a bigger cytotoxic activity on H1975 cells than the HCC78 cells and decreased NO production in concentration-dependent manner. The highest inhibitory potential against NO formation was observed to be 113.06 μM nitrite at a concentration of 40 μg/mL in HCC78 cells. As for the antioxidant activity, C. aucheri showed the highest antioxidant activity of 70.89%. These data bring to mind that C. aucheri may be a useful source for exploration new anticancer compounds.

Kaynakça

  • Al-Dabbas MM, 2017. Antioxdant activity of different extracts from the aerial part of Moringa peregrina (Forssk.) Fiori, from Jordan. Pakistan Journal of Pharmaceutical Sciences, 30(6): 2151-2157.
  • Al Dhaheri Y, Attoub S, Arafat K, AbuQamar S, Viallet J, et al., 2013. Anti-Metastatic and Anti-Tumor Growth Effects of Origanum majorana on Highly Metastatic Human Breast Cancer Cells: Inhibition of NFκB Signaling and Reduction of Nitric Oxide Production. PLoS ONE, 8(7): e68808.
  • Atta AH, El-Sooud KA, 2004. Antinociceptive effect of some Egyptian medicinal plant extracts. Journal of Ethnopharmacology, 95: 235-238.
  • Atta AH, Mohamed NH, Nasr SM, Mouneir SM, 2007. Phytochemical and pharmacological studies on Convolvulus fatmensis Ktze. Journal of Natural Remedies, 7: 109-119.
  • Cengiz S, Mammadov R, Aykurt C, Tasdelen G, 2015. Variations in antioxidant enzyme levels of rats exposed to ethanol extracts of Convolvulus species. Industrial Crops and Products, 74: 304-308.
  • Choudhari SK, Chaudhary M, Bagde S, Gadbail AR, Joshi V, 2013. Nitric oxide and cancer: a review. World Journal of Surgical Oncology, 11: 118.
  • Derici MK, Demirel-Yılmaz E, 2017. Nitrik oksitin kanser gelişimi ve metastaz üzerine etkileri. Türk Hijyen ve Deneysel Biyoloji Dergisi, 74(2): 161-174.
  • Du GR, Li MJ, Ma FW, Liang D, 2009. Antioxidant capacity and the relationship with polyphenol and Vitamin C in Actinidia fruits. Food Chemistry, 113: 557-562.
  • El-Askary HI, Abou-Hussein DR, Shehab NG, Sleem AA, 2006. Bioactive caffeoylquinic acid derivatives from Convolvulus hystrix Vahl. Bulletin of Faculty of Pharmacy, Cairo University, 44: 127-134.
  • Elzaawely AA, Tawata S, 2012. Antioxidant activity of phenolic Rich Fraction Obtained from Convolvulus arvensis L. leaves grown in Egypt. Asian Journal of Crop Science, 4(1): 1-9.
  • Güner A, Aslan S, Ekim T, Vural M, Babaç MT, 2012. Türkiye Bitkileri Listesi (Damarlı Bitkiler). İstanbul, Turkey: Flora Araştırmaları Derneği ve Nezahat Gökyiğit Botanik Bahçesi Yayını (in Turkish).
  • Jacobs J, NRCS, 2007. Invasive Species Specialist, Ecology and management of field bindweed [Convolvulus arvensis L.] Natural resources conservation service Invasive species. Technical Note No., MT-9, 1-9.
  • Krzaczek T, Bogucka-Kocka A, Ryn D, 2004. Chromatographical analysis of phenolic compounds in herb Convolvulus arvensis L. Herba Polonica, 50: 17-22.
  • Mammadov R, 2014. Secondary Metabolites in Spermatophyta. 428 pp., Nobel Press, Ankara, Turkey (in Turkish).
  • Menemen Y, Williams CA, Jury SL, 2002. Flavonoid patterns in Convolvulus L. (Convolvulaceae) species from Morocco. Pakistan Journal of Botany, 34: 291-295.
  • Meng XL, Riordan NH, Casciari JJ, Zhu Y, Gonzalez JM, Miranda-Massari JR, Riordan HD, 2002. Effect of High Molecular Mass Convolvulus arvensis Extract on Tumor Growth and Angiogenesis. Pharmacognosis, 21: 323-328.
  • Mohsen SM, Ammar ASM, 2009. Total phenolic contents and antioxidant activity of corn tassel extracts. Food Chemistry, 112: 595-598.
  • Nacef S, Jannet HB, Abreu P, Mighri Z, 2010. Phenolic constituents of Convolvulus dorycnium flowers. Phytochemistry Letters, 3: 66-69.
  • Nakagawa T, Yokozawa T, 2002. Direct scavenging of nitric oxide by green tea. Food and Chemical Toxicology, 40: 1745-1750.
  • Noda N, Kogetsu H, Kawasaki T, Miyahara K, 1990. Scammonins I and II, the resin glycosides of radix Scammoniae from Convolvulus scammonia. Phytochemistry, 29: 3565- 3569.
  • Ozay C, Mammadov R, Tasdelen G, Karagur ER, Akca H, 2015. Potential antioxidant, antiproliferative and hepatoprotective effects of Crataegus meyeri. Journal of Food Biochemistry, 39: 548-553.
  • Rachitha P, Krupashree K, Jayashree GV, Kandikattu HK, Amruta N, Gopalan N, Rao MK, Khanum F, 2018. Chemical composition, antioxidant potential, macromolecule damage and neuroprotective activity of Convolvulus pluricaulis. Journal of Traditional and Complementary Medicine, 8: 483-496.
  • Sadeghi-Aliabadi H, Ghasemi N, Kohi M, 2008. Cytotoxic effect of Convolvulus arvensis extracts on human cancerous cell line. Research in Pharmaceutical Sciences, 3(1): 31-34.
  • Schmidt B, Ribnicky DM, Poulev A, Logendra S, Cefalu WT, Raskin I, 2008. A natural history of botanical therapeutics. Metabolism, 57 (Suppl 1): S3-9.
  • Sokmen A, Gulluce M, Akpulat HA, Daferera D, Tepe B, Polissiou M, Sokmen M, Sahin F, 2004. The in vitro antimicrobial and antioxidant activities of the essential oils and methanol extracts of endemic Thymus spathulifolius. Food Control, 15(8): 627-634.
  • Tepe B, Daferera D, Tepe AS, Polissiou M, Sokmen A, 2007. Antioxidant activity of the essential oil and various extracts of Nepeta flavida Hub.-Mor. from Turkey. Food Chemistry, 103: 1358-1364.
  • Tawaha K, Alali FQ, Gharaibeh M, Mohammad M, El-Elimat T, 2007. Antioxidant activity and total phenolic content of selected Jordanian plant species. Food Chemistry, 104: 1372-1378.
  • Thakral J, Borar S, Kalia AN, 2010. Antioxidant Potential Fractionation from Methanol Extract of Aerial Parts of Convolvulus arvensis Linn (Convolvulaceae). International Journal of Pharmaceutical Sciences and Drug Research, 2: 219-223.
  • Todd FG, Stermitz FR, Schultheis P, Knight AP, Traub-Dargatz J, 1995. Tropane alkaloids and toxicity of Convolvulus arvensis. Phytochemistry, 39: 301-303.
  • Vijayakumar M, Govindarajan R, Singh DP, Rawat AKS, 2005. Review of some important plants with antioxidant and other biological activities. Pharmacognosy Magazine, 1: 129-135.
  • Yang EJ, Yim EY, Song G, Kim GO, Hyun CG, 2009. Inhibition of nitric oxide production in lipopolysaccharide-activated RAW 264.7 macrophages by Jeju plant extracts. Interdisciplinary Toxicology, 2(4): 245-249. Yen GC, Duh PD, Huang DW, Hsu CL, Fu TYC, 2008. Protective effect of pine (Pinus morrisonicola Hay.) needle on LDL oxidation and its anti-inflammatory action by modulation of iNOS and COX-2 expression in LPS-stimulated RAW 264.7 macrophages. Food and Chemical Toxicology, 46: 175-185.
  • Zappa C, Mousa SA, 2016. Non-small cell lung cancer: current treatment and future advances. Translational lung cancer research, 5(3): 288-300.

Convolvulus aucheri’nin In vitro Antioksidan Özelliği ve LPS-aktif NSCLC Hücrelerinde NO Engelleyici Potansiyeli

Yıl 2019, Cilt: 9 Sayı: 3, 1282 - 1288, 01.09.2019
https://doi.org/10.21597/jist.537673

Öz

Son zamanlarda, bilim adamları tedavi edici bitkiler hakkında giderek daha fazla ilgili hale geldiler. Birçok Convolvulus taksonu farklı biyolojik aktiviteler göstermektedir. Bu çalışmada, Convolvulus aucheri'nin LPS ile uyarılmış HCC78 ve H1975 gibi küçük hücre dışı akciğer kanseri (KHDAK) hücrelerinde nitrik oksidi (NO) inhibe edici etkisini değerlendirmeyi ve antioksidan kapasitesini belirlemeyi amaçladık. NO üretiminin bir göstergesi olan nitrit düzeyini belirlemek için Griess testi uygulanırken, antioksidan etkinin belirlenmesi için ise β-karoten/linoleik asit testi kullanıldı. C. aucheri ekstraktının sitotoksik aktivitesi, CellTiter-Glo deneyi kullanılarak tespit edildi. Ekstrakt H1975 hücrelerinde HCC78 hücrelerinden daha büyük bir sitotoksik aktiviteye sebep olmuştur ve NO üretimini konsantrasyona bağlı olarak azaltmıştır. NO oluşumuna karşı en yüksek inhibitör potansiyelin, HCC78 hücrelerinde 40 μg/mL konsantrasyonda 113.06 μM nitrit olduğu gözlenmiştir. Antioksidan aktiviteye gelince, C. aucheri en yüksek antioksidan aktivitesini %70.89 ile göstermiştir. Bu veriler, C. aucheri'nin yeni antikanser bileşiklerinin araştırılması için yararlı bir kaynak olabileceğini akla getirmektedir.

Kaynakça

  • Al-Dabbas MM, 2017. Antioxdant activity of different extracts from the aerial part of Moringa peregrina (Forssk.) Fiori, from Jordan. Pakistan Journal of Pharmaceutical Sciences, 30(6): 2151-2157.
  • Al Dhaheri Y, Attoub S, Arafat K, AbuQamar S, Viallet J, et al., 2013. Anti-Metastatic and Anti-Tumor Growth Effects of Origanum majorana on Highly Metastatic Human Breast Cancer Cells: Inhibition of NFκB Signaling and Reduction of Nitric Oxide Production. PLoS ONE, 8(7): e68808.
  • Atta AH, El-Sooud KA, 2004. Antinociceptive effect of some Egyptian medicinal plant extracts. Journal of Ethnopharmacology, 95: 235-238.
  • Atta AH, Mohamed NH, Nasr SM, Mouneir SM, 2007. Phytochemical and pharmacological studies on Convolvulus fatmensis Ktze. Journal of Natural Remedies, 7: 109-119.
  • Cengiz S, Mammadov R, Aykurt C, Tasdelen G, 2015. Variations in antioxidant enzyme levels of rats exposed to ethanol extracts of Convolvulus species. Industrial Crops and Products, 74: 304-308.
  • Choudhari SK, Chaudhary M, Bagde S, Gadbail AR, Joshi V, 2013. Nitric oxide and cancer: a review. World Journal of Surgical Oncology, 11: 118.
  • Derici MK, Demirel-Yılmaz E, 2017. Nitrik oksitin kanser gelişimi ve metastaz üzerine etkileri. Türk Hijyen ve Deneysel Biyoloji Dergisi, 74(2): 161-174.
  • Du GR, Li MJ, Ma FW, Liang D, 2009. Antioxidant capacity and the relationship with polyphenol and Vitamin C in Actinidia fruits. Food Chemistry, 113: 557-562.
  • El-Askary HI, Abou-Hussein DR, Shehab NG, Sleem AA, 2006. Bioactive caffeoylquinic acid derivatives from Convolvulus hystrix Vahl. Bulletin of Faculty of Pharmacy, Cairo University, 44: 127-134.
  • Elzaawely AA, Tawata S, 2012. Antioxidant activity of phenolic Rich Fraction Obtained from Convolvulus arvensis L. leaves grown in Egypt. Asian Journal of Crop Science, 4(1): 1-9.
  • Güner A, Aslan S, Ekim T, Vural M, Babaç MT, 2012. Türkiye Bitkileri Listesi (Damarlı Bitkiler). İstanbul, Turkey: Flora Araştırmaları Derneği ve Nezahat Gökyiğit Botanik Bahçesi Yayını (in Turkish).
  • Jacobs J, NRCS, 2007. Invasive Species Specialist, Ecology and management of field bindweed [Convolvulus arvensis L.] Natural resources conservation service Invasive species. Technical Note No., MT-9, 1-9.
  • Krzaczek T, Bogucka-Kocka A, Ryn D, 2004. Chromatographical analysis of phenolic compounds in herb Convolvulus arvensis L. Herba Polonica, 50: 17-22.
  • Mammadov R, 2014. Secondary Metabolites in Spermatophyta. 428 pp., Nobel Press, Ankara, Turkey (in Turkish).
  • Menemen Y, Williams CA, Jury SL, 2002. Flavonoid patterns in Convolvulus L. (Convolvulaceae) species from Morocco. Pakistan Journal of Botany, 34: 291-295.
  • Meng XL, Riordan NH, Casciari JJ, Zhu Y, Gonzalez JM, Miranda-Massari JR, Riordan HD, 2002. Effect of High Molecular Mass Convolvulus arvensis Extract on Tumor Growth and Angiogenesis. Pharmacognosis, 21: 323-328.
  • Mohsen SM, Ammar ASM, 2009. Total phenolic contents and antioxidant activity of corn tassel extracts. Food Chemistry, 112: 595-598.
  • Nacef S, Jannet HB, Abreu P, Mighri Z, 2010. Phenolic constituents of Convolvulus dorycnium flowers. Phytochemistry Letters, 3: 66-69.
  • Nakagawa T, Yokozawa T, 2002. Direct scavenging of nitric oxide by green tea. Food and Chemical Toxicology, 40: 1745-1750.
  • Noda N, Kogetsu H, Kawasaki T, Miyahara K, 1990. Scammonins I and II, the resin glycosides of radix Scammoniae from Convolvulus scammonia. Phytochemistry, 29: 3565- 3569.
  • Ozay C, Mammadov R, Tasdelen G, Karagur ER, Akca H, 2015. Potential antioxidant, antiproliferative and hepatoprotective effects of Crataegus meyeri. Journal of Food Biochemistry, 39: 548-553.
  • Rachitha P, Krupashree K, Jayashree GV, Kandikattu HK, Amruta N, Gopalan N, Rao MK, Khanum F, 2018. Chemical composition, antioxidant potential, macromolecule damage and neuroprotective activity of Convolvulus pluricaulis. Journal of Traditional and Complementary Medicine, 8: 483-496.
  • Sadeghi-Aliabadi H, Ghasemi N, Kohi M, 2008. Cytotoxic effect of Convolvulus arvensis extracts on human cancerous cell line. Research in Pharmaceutical Sciences, 3(1): 31-34.
  • Schmidt B, Ribnicky DM, Poulev A, Logendra S, Cefalu WT, Raskin I, 2008. A natural history of botanical therapeutics. Metabolism, 57 (Suppl 1): S3-9.
  • Sokmen A, Gulluce M, Akpulat HA, Daferera D, Tepe B, Polissiou M, Sokmen M, Sahin F, 2004. The in vitro antimicrobial and antioxidant activities of the essential oils and methanol extracts of endemic Thymus spathulifolius. Food Control, 15(8): 627-634.
  • Tepe B, Daferera D, Tepe AS, Polissiou M, Sokmen A, 2007. Antioxidant activity of the essential oil and various extracts of Nepeta flavida Hub.-Mor. from Turkey. Food Chemistry, 103: 1358-1364.
  • Tawaha K, Alali FQ, Gharaibeh M, Mohammad M, El-Elimat T, 2007. Antioxidant activity and total phenolic content of selected Jordanian plant species. Food Chemistry, 104: 1372-1378.
  • Thakral J, Borar S, Kalia AN, 2010. Antioxidant Potential Fractionation from Methanol Extract of Aerial Parts of Convolvulus arvensis Linn (Convolvulaceae). International Journal of Pharmaceutical Sciences and Drug Research, 2: 219-223.
  • Todd FG, Stermitz FR, Schultheis P, Knight AP, Traub-Dargatz J, 1995. Tropane alkaloids and toxicity of Convolvulus arvensis. Phytochemistry, 39: 301-303.
  • Vijayakumar M, Govindarajan R, Singh DP, Rawat AKS, 2005. Review of some important plants with antioxidant and other biological activities. Pharmacognosy Magazine, 1: 129-135.
  • Yang EJ, Yim EY, Song G, Kim GO, Hyun CG, 2009. Inhibition of nitric oxide production in lipopolysaccharide-activated RAW 264.7 macrophages by Jeju plant extracts. Interdisciplinary Toxicology, 2(4): 245-249. Yen GC, Duh PD, Huang DW, Hsu CL, Fu TYC, 2008. Protective effect of pine (Pinus morrisonicola Hay.) needle on LDL oxidation and its anti-inflammatory action by modulation of iNOS and COX-2 expression in LPS-stimulated RAW 264.7 macrophages. Food and Chemical Toxicology, 46: 175-185.
  • Zappa C, Mousa SA, 2016. Non-small cell lung cancer: current treatment and future advances. Translational lung cancer research, 5(3): 288-300.
Toplam 32 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Yapısal Biyoloji
Bölüm Biyoloji / Biology
Yazarlar

Cennet Özay 0000-0002-1120-6122

Yayımlanma Tarihi 1 Eylül 2019
Gönderilme Tarihi 9 Mart 2019
Kabul Tarihi 15 Mayıs 2019
Yayımlandığı Sayı Yıl 2019 Cilt: 9 Sayı: 3

Kaynak Göster

APA Özay, C. (2019). In Vitro Antioxidant Property of Convolvulus aucheri and Its NO Inhibitory Potential in LPS-activated NSCLC Cells. Journal of the Institute of Science and Technology, 9(3), 1282-1288. https://doi.org/10.21597/jist.537673
AMA Özay C. In Vitro Antioxidant Property of Convolvulus aucheri and Its NO Inhibitory Potential in LPS-activated NSCLC Cells. Iğdır Üniv. Fen Bil Enst. Der. Eylül 2019;9(3):1282-1288. doi:10.21597/jist.537673
Chicago Özay, Cennet. “In Vitro Antioxidant Property of Convolvulus Aucheri and Its NO Inhibitory Potential in LPS-Activated NSCLC Cells”. Journal of the Institute of Science and Technology 9, sy. 3 (Eylül 2019): 1282-88. https://doi.org/10.21597/jist.537673.
EndNote Özay C (01 Eylül 2019) In Vitro Antioxidant Property of Convolvulus aucheri and Its NO Inhibitory Potential in LPS-activated NSCLC Cells. Journal of the Institute of Science and Technology 9 3 1282–1288.
IEEE C. Özay, “In Vitro Antioxidant Property of Convolvulus aucheri and Its NO Inhibitory Potential in LPS-activated NSCLC Cells”, Iğdır Üniv. Fen Bil Enst. Der., c. 9, sy. 3, ss. 1282–1288, 2019, doi: 10.21597/jist.537673.
ISNAD Özay, Cennet. “In Vitro Antioxidant Property of Convolvulus Aucheri and Its NO Inhibitory Potential in LPS-Activated NSCLC Cells”. Journal of the Institute of Science and Technology 9/3 (Eylül 2019), 1282-1288. https://doi.org/10.21597/jist.537673.
JAMA Özay C. In Vitro Antioxidant Property of Convolvulus aucheri and Its NO Inhibitory Potential in LPS-activated NSCLC Cells. Iğdır Üniv. Fen Bil Enst. Der. 2019;9:1282–1288.
MLA Özay, Cennet. “In Vitro Antioxidant Property of Convolvulus Aucheri and Its NO Inhibitory Potential in LPS-Activated NSCLC Cells”. Journal of the Institute of Science and Technology, c. 9, sy. 3, 2019, ss. 1282-8, doi:10.21597/jist.537673.
Vancouver Özay C. In Vitro Antioxidant Property of Convolvulus aucheri and Its NO Inhibitory Potential in LPS-activated NSCLC Cells. Iğdır Üniv. Fen Bil Enst. Der. 2019;9(3):1282-8.