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Nar suyu içerisindeki fenolik asitlerin HPLC-DAD ile belirlenmesi

Yıl 2017, Cilt: 6 Sayı: 10, 32 - 37, 14.07.2017

Öz

Bu çalışmada taze sıkılmış nar suyu, ticari nar suyu ve nar suyu konsantresi içeceklerinde beş fenolik asit, gallik, klorojenik, kafeik, p-kumarik ve ferulik asit tespit edilmiştir. Bu amaçla, nar suyu seralarda fenolik asidin karakterizasyonu ve kantifikasyonu için, yüksek performanslı sıvı kromatografisi (HPLC) kullanan, fotodiyot dizi tespiti (DAD) kombinasyonlu analitik bir yöntem geliştirildi. Sonra nar suyu analizleri yapıldı. Tek tek bileşiklerin saptama limiti, gallik asit 0.1 mg / L, klorojenik asit 0.01 mg / L, kafeik asit 0.03 mg / L, p-kumarik asit 0.02 mg / L ve ferulik asit 0.04'tür (LOD, S / N = mg / L'dir. Bireysel bileşiklerin nicelik sınırı 0.4 mg / L gallik asit, klorojenik asit 0.05 mg / L, kafeik asit 0.1 mg / L, p-kumar asit 0.1 mg / L ve ferulik asit 0.1'dir (LOQ, S / N = 10) mg / L'dir. Ticari nar suyu içindeki bağıl standart sapma (% RSD), galli k asit% 0.08, klorojenik asit% 0.32, kafeik asit% 0.21, p-kumar asit% 0.08 ve ferulik asit% 0.38 olarak bulundu. Taze sıkılmış nar suyundaki göreli standart sapma (% RSD), gallik asit% 0.01, klorojenik asit% 0.46, kafeik asit% 0.17, p-kumarik asit% 0.04 ve ferulik asit% 0.8 olarak bulundu. Nar konsantresi suyundaki göreli standart sapma (% RSD), gallik asit% 0.78, klorojenik asit% 0.25, kafeik asit% 0.49, p-kumar asit% 0.36 ve ferulik asit% 0.17 olarak bulundu.

Kaynakça

  • Amaruka, Y.,Okada, M., Tsuji, S., Tonogai, Y. (2000). Determination of phenolic acids in fruit juices by isocratic column liquid chromatography. Journal of Chromatography A, 891, 183-188.
  • Naveena, BM., Sen, A.R., Vaıthıyanathan, S., Patıl, G., Kondaıah, N. (2010). Antıoxıdant Potential of Pomegranate Juice Incooked Chicken Patties. Journal Of Musclefoods, 21:557-569.
  • Naiki-Ito, A., Chewonarin, T., Tang, M., Pitchakarn, P., Kuno, T., Ogawa, K., Asamoto, M., Shiraiand, T., Takahashi, S. (2015). Ellagic Acid, A Component of Pomegranate Fruit Juice, Suppresses Androgen-Dependent Prostate Carcinogenesis. Induction of Apoptosis The Prostate, 75:151-160.
  • Sumner, M.D., Elliott-Eller, M., Weidner, G., Daubenmier, J.J., Chew, H.M., Marlin, R., Raisin, C.J., Ornish, D. (2005). Effects of Pomegranate Juice Consumption on Myocardial Perfusion in Patients With Coronary Heart Disease. The American Journal of Cardiology, 96:810-814.
  • Anoosha, E., Mojtabaa, E., Fatemeha, S. (2010). Study The Effect of Juice of Two Variety of Pomegranate Ondecreasing Plasma LDL Cholesterol. Procedia Social and Behavioral Sciences, 2:620-623.
  • Gil, M.I., Tomas-Barberan, F.A., Hess-Pierce, B., Holcroft, D.M., Kader, A.A., (2000). Antioxidant Activity of Pomegranate Juice and Its Relationship with Phenoliccomposition and Processing. J. Agric. Food Chem., 48:4581-4589.
  • Rosenblat, M., Aviram, M., Seeram, N.P., Heber , D. (Eds.) (2006). In Vitro Studies in Pomegranates: Ancient Roots to Modern Medicine. Taylor and Francis Group, New York, 31–43.
  • Aviram, M., Dornfeld, L., Rosenblat, M., Volkova, N., Kaplan, M., Coleman, R., Hayek, T., Presser, D., Fuhrman, B. (2000). Pomegranate Juice Consumption Reduces Oxidative Stress, Atherogenic Modification To Ldl And Platelet Aggregation: Studies In Human And In Atherosclerotic Apolipoprotein Deficient Mice. Am. J. Clin.Nutr.,71:1062–1076.
  • Chen, H., Zuo, Y., Deng, Y. (2001). Separation and determination of flavanoids and other phenolic compounds in cranberry juice by high-performance liquid chromatography. Journal of Chromatography A, 913:387-395.
  • Kelebek, H., Selli, S., Canbas, A., Cabaroğlu, T. (2009). HPLC determination of organic acids, sugars, phenolic compositions and antioxidant capacity of orange juice and orange wine made from a Turkish cv. Kozan. Microchemical Journal, 91:187–192.
  • Kermasha, S., Goetghebeur, M., Dumont, J., Couture, R. (1995). Analyses of phenolic and furfural compounds in concentrated and non-concentrated apple juices. Food Research International, 28: 245-252.
  • Shahrzad, S., Irmgard, B. (1996) Determination of some pharmacologically active phenolic acids in juices by high-performance liquid chromatography. Journal of Chromatography A, 741:223 231.
  • Hakkinen, S,. Heinonen, M., Karenlampi, S., Mykkanen, H., Ruuskanen, J., Torronen, R. (1999). Screening of selected ¯avonoids and phenolic acids in 19 berries. Food Research International, 32:345-353.
  • Fukumoto, L.R., Mazza, G. (2000). Assessing antioxidant and prooxidant activities of phenolic compounds. J. Agric. Food Chem., 48:3597–3604.
  • Alasalvar , C., Grigor, J.M., Zhang, D., Quantick, P.C., Shahidi, F. (2002). Comparison of volatiles, phenolics, sugars, antioxidant vitamins, and sensory quality of different colored carrot varieties. J. Agric. Food Chem., 50:2039–2041.
  • Escarpe, A., Gonzalez, M.C.(2000). Evalution of High-Performans Liquid Chromatography for Determination of Phenolic Compounds in Pear Horticultural Curtivars. Chromatographia, 51:37-43.
  • Simirgiotis, Mario, J., Schmeda-Hirschmann, G . (2010). Determination of phenolic composition and antioxidant activity in fruits, rhizomes and leaves of the white strawberry (Fragaria chiloensis spp. Chiloensis form chiloensis) using HPLC-DAD–ESI-MS and free radical quenching techniques. Journal of Food Composition and Analysis, 23:545–553.
  • Dennis, F., Giovanni, C., Gianni, S., Filippo, M., Sauro, V., Enrico, M., Roberto, B. (2014). Quantitative Profiling of Volatile and Phenolic Substances in the Wine Vernaccia di Serrapetrona by Development of an HS-SPME-GC-FID/MS Method and HPLC-MS. Food Anal. Methods, 7:1651–1660.

Determination of phenolic acids in pomegranate juices by HPLC-DAD

Yıl 2017, Cilt: 6 Sayı: 10, 32 - 37, 14.07.2017

Öz











In this study, five
phenolic acids, gallic, chlorogenic, caffeic, p-coumaric and ferulic acid were
determined in freshly squeezed pomegranate juice, commercial pomegranate juice
and pomegranate juice concentrate beverages.
 
For this purpose, an analytical method using high-performance liquid
chromatography (HPLC), with a combination of photodiode array detection (DAD),
was developed for the characterization and quantification of phenolic acid in
pomegranate juices. Then the analyses of pomegranate juices was performed. The
limit of detection (LOD,
S/N=3) of individual compounds was
gallic acid 0.1 mg/L, chlorogenic acid 0.01 mg/L, caffeic acid 0.03mg/L,
p-coumaric acid 0.02 mg/L and ferulic acid 0.04 mg/L. The limit of quantitation
(LOQ,
S/N=10) of individual compounds was gallic acid 0.4 mg/L,
chlorogenic acid 0.05 mg/L, caffeic acid 0.1 mg/L, p-coumaric acid 0.1 mg/L and
ferulic acid 0.1 mg/L. The relative standard deviation (% RSD) in commericial
pomegranate juice was found to be galli cacid % 0.08, chlorogenic acid % 0.32,
caffeic acid % 0.21, p-coumaric acid % 0.08 and ferulic acid % 0.38. The
relative standard deviation (% RSD) in freshly squeezed pomegranate juice was
found to be gallic acid % 0.01, chlorogenic acid % 0.46, caffeic acid % 0.17,
p-coumaric acid % 0.04 and ferulic acid % 0.8. The relative standard deviation
(% RSD) in pomegranate concentrate juice was found to be gallic acid % 0.78,
chlorogenic acid % 0.25, caffeic acid % 0.49, p-coumaric acid % 0.36 and
ferulic acid % 0.17.

Kaynakça

  • Amaruka, Y.,Okada, M., Tsuji, S., Tonogai, Y. (2000). Determination of phenolic acids in fruit juices by isocratic column liquid chromatography. Journal of Chromatography A, 891, 183-188.
  • Naveena, BM., Sen, A.R., Vaıthıyanathan, S., Patıl, G., Kondaıah, N. (2010). Antıoxıdant Potential of Pomegranate Juice Incooked Chicken Patties. Journal Of Musclefoods, 21:557-569.
  • Naiki-Ito, A., Chewonarin, T., Tang, M., Pitchakarn, P., Kuno, T., Ogawa, K., Asamoto, M., Shiraiand, T., Takahashi, S. (2015). Ellagic Acid, A Component of Pomegranate Fruit Juice, Suppresses Androgen-Dependent Prostate Carcinogenesis. Induction of Apoptosis The Prostate, 75:151-160.
  • Sumner, M.D., Elliott-Eller, M., Weidner, G., Daubenmier, J.J., Chew, H.M., Marlin, R., Raisin, C.J., Ornish, D. (2005). Effects of Pomegranate Juice Consumption on Myocardial Perfusion in Patients With Coronary Heart Disease. The American Journal of Cardiology, 96:810-814.
  • Anoosha, E., Mojtabaa, E., Fatemeha, S. (2010). Study The Effect of Juice of Two Variety of Pomegranate Ondecreasing Plasma LDL Cholesterol. Procedia Social and Behavioral Sciences, 2:620-623.
  • Gil, M.I., Tomas-Barberan, F.A., Hess-Pierce, B., Holcroft, D.M., Kader, A.A., (2000). Antioxidant Activity of Pomegranate Juice and Its Relationship with Phenoliccomposition and Processing. J. Agric. Food Chem., 48:4581-4589.
  • Rosenblat, M., Aviram, M., Seeram, N.P., Heber , D. (Eds.) (2006). In Vitro Studies in Pomegranates: Ancient Roots to Modern Medicine. Taylor and Francis Group, New York, 31–43.
  • Aviram, M., Dornfeld, L., Rosenblat, M., Volkova, N., Kaplan, M., Coleman, R., Hayek, T., Presser, D., Fuhrman, B. (2000). Pomegranate Juice Consumption Reduces Oxidative Stress, Atherogenic Modification To Ldl And Platelet Aggregation: Studies In Human And In Atherosclerotic Apolipoprotein Deficient Mice. Am. J. Clin.Nutr.,71:1062–1076.
  • Chen, H., Zuo, Y., Deng, Y. (2001). Separation and determination of flavanoids and other phenolic compounds in cranberry juice by high-performance liquid chromatography. Journal of Chromatography A, 913:387-395.
  • Kelebek, H., Selli, S., Canbas, A., Cabaroğlu, T. (2009). HPLC determination of organic acids, sugars, phenolic compositions and antioxidant capacity of orange juice and orange wine made from a Turkish cv. Kozan. Microchemical Journal, 91:187–192.
  • Kermasha, S., Goetghebeur, M., Dumont, J., Couture, R. (1995). Analyses of phenolic and furfural compounds in concentrated and non-concentrated apple juices. Food Research International, 28: 245-252.
  • Shahrzad, S., Irmgard, B. (1996) Determination of some pharmacologically active phenolic acids in juices by high-performance liquid chromatography. Journal of Chromatography A, 741:223 231.
  • Hakkinen, S,. Heinonen, M., Karenlampi, S., Mykkanen, H., Ruuskanen, J., Torronen, R. (1999). Screening of selected ¯avonoids and phenolic acids in 19 berries. Food Research International, 32:345-353.
  • Fukumoto, L.R., Mazza, G. (2000). Assessing antioxidant and prooxidant activities of phenolic compounds. J. Agric. Food Chem., 48:3597–3604.
  • Alasalvar , C., Grigor, J.M., Zhang, D., Quantick, P.C., Shahidi, F. (2002). Comparison of volatiles, phenolics, sugars, antioxidant vitamins, and sensory quality of different colored carrot varieties. J. Agric. Food Chem., 50:2039–2041.
  • Escarpe, A., Gonzalez, M.C.(2000). Evalution of High-Performans Liquid Chromatography for Determination of Phenolic Compounds in Pear Horticultural Curtivars. Chromatographia, 51:37-43.
  • Simirgiotis, Mario, J., Schmeda-Hirschmann, G . (2010). Determination of phenolic composition and antioxidant activity in fruits, rhizomes and leaves of the white strawberry (Fragaria chiloensis spp. Chiloensis form chiloensis) using HPLC-DAD–ESI-MS and free radical quenching techniques. Journal of Food Composition and Analysis, 23:545–553.
  • Dennis, F., Giovanni, C., Gianni, S., Filippo, M., Sauro, V., Enrico, M., Roberto, B. (2014). Quantitative Profiling of Volatile and Phenolic Substances in the Wine Vernaccia di Serrapetrona by Development of an HS-SPME-GC-FID/MS Method and HPLC-MS. Food Anal. Methods, 7:1651–1660.
Toplam 18 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Makaleler
Yazarlar

Mürüvvet Karakaplan

Mustafa Özcan Bu kişi benim

Yayımlanma Tarihi 14 Temmuz 2017
Yayımlandığı Sayı Yıl 2017 Cilt: 6 Sayı: 10

Kaynak Göster

APA Karakaplan, M., & Özcan, M. (2017). Determination of phenolic acids in pomegranate juices by HPLC-DAD. Avrupa Bilim Ve Teknoloji Dergisi, 6(10), 32-37.