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Comprehensive Analysis of Trace Elements, Amino Acids, and Antioxidant Potential of Verbascum orientale

Yıl 2025, Cilt: 18 Sayı: 2, 391 - 413, 31.08.2025
https://doi.org/10.18185/erzifbed.1666259

Öz

This study aims to investigate the trace element composition, amino acid profile, and antioxidant activity of Verbascum orientale, a medicinal plant in Erzincan, Türkiye. The root and stem extracts were analyzed using ICP-MS to determine trace element levels, while LC-MS/MS was employed for amino acid profiling. Additionally, the antioxidant activities of methanol: water (70:30, v:v) extracts were evaluated using DPPH, FRAP, total phenolic content (TPC), and total flavonoid content (TFC) assays. The findings indicate that Verbascum orientale contains significant levels of sodium (Na) and silicon (Si), suggesting an adaptive response to arid and stressful environmental conditions. In addition, the plant exhibited high levels of amino acids such as L-proline, L-glutamine, and L-asparagine, which are essential for osmotic regulation and stress adaptation. A high iron (Fe) content suggests potential nutritional benefits, while the presence of aluminum (Al) raises concerns about possible toxicity. Despite its diverse phytochemical profile, Verbascum orientale exhibited moderate antioxidant activity compared to other Verbascum species, with the root extract demonstrating a stronger radical scavenging effect than the stem. These results underscore the importance of further research to evaluate the medicinal and nutritional applications of Verbascum orientale, particularly in terms of bioavailability and safety.

Etik Beyan

There are no ethical issues regarding the publication of this study.

Teşekkür

The authors extend their special thanks to Prof. Dr. Ali KANDEMİR for his invaluable assistance in the taxonomic identification and collection of plant specimens.

Kaynakça

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Verbascum orientale'nin Eser Elementleri, Amino Asitleri ve Antioksidan Potansiyelinin Kapsamlı Analizi

Yıl 2025, Cilt: 18 Sayı: 2, 391 - 413, 31.08.2025
https://doi.org/10.18185/erzifbed.1666259

Öz

Bu çalışmanın amacı, Türkiye, Erzincan’da tıbbi bir bitki olan Verbascum orientale'nin eser element bileşimini, amino asit profilini ve antioksidan aktivitesini araştırmaktır. Kök ve gövde ekstraktları, eser element seviyelerini belirlemek için ICP-MS kullanılarak analiz edilmiştir; amino asit profili ise LC-MS/MS ile incelenmiştir. Ayrıca, metanol: su (70:30, v:v) ekstraktlarının antioksidan aktiviteleri DPPH, FRAP, toplam fenolik içerik (TPC) ve toplam flavonoid içerik (TFC) testleri kullanılarak değerlendirilmiştir. Bulgular, Verbascum orientale'nin önemli düzeyde sodyum (Na) ve silisyum (Si) içerdiğini göstermekte, bu da kurak ve stresli çevre koşullarına adaptif bir yanıt olduğunu düşündürmektedir. Ayrıca, bitki ozmotik düzenleme ve stres adaptasyonu için gerekli olan L-prolin, L-glutamin ve L-asparajin gibi amino asitleri yüksek seviyelerde sergilemiştir.. Yüksek demir (Fe) içeriği potansiyel besinsel faydaları akla getirirken, alüminyum (Al) varlığı olası toksisite ile ilgili endişeleri artırmaktadır. Farklı fitokimyasal profiline rağmen, Verbascum orientale diğer Verbascum türlerine kıyasla orta düzeyde antioksidan aktivite sergilemiş, kök ekstresi gövdeye göre daha güçlü bir radikal süpürücü etki göstermiştir. Bu sonuçlar, Verbascum orientale'nin tıbbi ve besinsel uygulamalarını, özellikle biyoyararlanım ve güvenlik açısından değerlendirmek için daha fazla araştırma yapılmasının önemini vurgulamaktadır.

Kaynakça

  • [1] Gupta, A., Pandey, A. K., (2020) Aceclofenac-induced hepatotoxicity: an ameliorative effect of Terminalia bellirica fruit and ellagic acid, World Journal of Hepatology, 12(11), 949.
  • [2] Kumar, R., Singh, A. K., Gupta, A., Bishayee, A., Pandey, A. K., (2019) Therapeutic potential of Aloe vera—A miracle gift of nature, Phytomedicine, 60, 152996.
  • [3] Gupta, A., Kumar, R., Ganguly, R., Singh, A. K., Rana, H. K., Pandey, A. K., (2021) Antioxidant, anti-inflammatory and hepatoprotective activities of Terminalia bellirica and its bioactive component ellagic acid against diclofenac induced oxidative stress and hepatotoxicity, Toxicology reports, 8, 44-52.
  • [4] Amini, S., Hassani, A., Alirezalu, A., Maleki, R., (2022) Phenolic and flavonoid compounds and antioxidant activity in flowers of nine endemic Verbascum species from Iran, Journal of the Science of Food Agriculture, 102(8), 3250-3258.
  • [5] Abdul Sattar, S., Seetharami Reddy, B., Koteswara Rao, V., Pradeep, A., Naga Raju, G., Ramanarayana, K., Madhusudana Rao, P., Bhuloka Reddy, S., (2012) Estimation of trace elements in some anti-epileptic medicinal plants by PIXE, Journal of Radioanalytical Nuclear Chemistry, 294(3), 337-341.
  • [6] Silva, P. S., Francisconi, L. S., Gonçalves, R. D., (2016) Evaluation of major and trace elements in medicinal plants, Journal of the Brazilian Chemical Society, 27(12), 2273-2289.
  • [7] Ranđelović, S. S., Kostić, D. A., Zarubica, A. R., Mitić, S. S., Mitić, M. N., (2013) The correlation of metal content in medicinal plants and their water extracts, Hemijska industrija, 67(4), 585-591.
  • [8] Ebrahim, A. M., Eltayeb, M. H., Khalid, H., Mohamed, H., Abdalla, W., Grill, P., Michalke, B., (2012) Study on selected trace elements and heavy metals in some popular medicinal plants from Sudan, Journal of natural medicines, 66, 671-679.
  • [9] Rengel, Z., Cakmak, I., White, P. J., (2022) Marschner's mineral nutrition of plants: Academic press.
  • [10] Baqir, H., Zeboon, N., Al-Behadili, A., (2019) The role and importance of amino acids within plants: A review, Plant Archives, 19(2), 1402-1410.
  • [11] Dai, L., Yang, L., Wang, Y., Li, Y., Zhao, J., Pan, S., Li, Y., Yang, D., He, D., (2024) An optimized microwave-assisted digestion method to analyze the amino acids profile of Quisqualis fructus from different planted origins, Foods, 13(11), 1645.
  • [12] Ravipati, A. S., Zhang, L., Koyyalamudi, S. R., Jeong, S. C., Reddy, N., Bartlett, J., Smith, P. T., Shanmugam, K., Münch, G., Wu, M. J., (2012) Antioxidant and anti-inflammatory activities of selected Chinese medicinal plants and their relation with antioxidant content, BMC complementary alternative medicine, 12(173), 1-14.
  • [13] Kruglov, D., (2012) Trace element structure of the most widespread plants of genus PulmonariaFNx01, Chronicles of Young Scientists, 3(3), 223-223.
  • [14] Şimşek, S., Akşit, H., Aydın, A., Köksal, E., (2023) Ferruginoside D: A Novel Phenylethanoid from Verbascum leiocarpum, Chemistry Biodiversity, 20(12), e202301200.
  • [15] Isik, G., Karaveliogullari, F. A., Yucel, E., Celik, S., (2017) Seed Germination responses of some Verbascum L. species to different cold-wet pre-treatments and photoperiod processes, Bangladesh Journal of Botany, 46(3), 939-946.
  • [16] Sezik, E., Yeşilada, E., Honda, G., Takaishi, Y., Takeda, Y., Tanaka, T., (2001) Traditional medicine in Turkey X. Folk medicine in central Anatolia, Journal of ethnopharmacology, 75(2-3), 95-115.
  • [17] Süntar, I., Tatlı, I. I., Akkol, E. K., Keleş, H., Kahraman, Ç., Akdemir, Z., (2010) An ethnopharmacological study on Verbascum species: from conventional wound healing use to scientific verification, Journal of ethnopharmacology, 132(2), 408-413.
  • [18] Atila, A., Alay, H., Yaman, M. E., Akman, T. C., Cadirci, E., Bayrak, B., Celik, S., Atila, N. E., Yaganoglu, A. M., Kadioglu, Y., (2021) The serum amino acid profile in COVID-19, Amino acids, 53, 1569-1588.
  • [19] Akman, T. Ç., Şimşek, S., Akşit, Z., Aydın, A., Yılmaz, M. A., (2024) Exploring the potential of Psephellus huber-Marathi (Wagenitz) Wagenitz: A comprehensive UHPLC-MS/MS Analysis of phytochemical composition and evaluation of antioxidant, antimicrobial, and antiproliferative activities, Kahramanmaraş Sütçü İmam Üniversitesi Tarım ve Doğa Dergisi, 27(4), 782-792.
  • [20] Albayrak, E. N., Şimşek, S., Musatat, A. B., Akşit, Z., Akşit, H., Atahan, A., (2024) Antioxidant activity and theoretical profile of novel 2, 4, 6-triarylpyridine derivatives based on syringaldehyde, Düzce Üniversitesi Bilim ve Teknoloji Dergisi, 12(2), 981-999.
  • [21] Gözcü, S., Akşit, Z., Şimşek, S., Kandemir, A., Aydın, A., Yılmaz, M. A., Akşit, H., (2024) LC-MS/MS characterization and biological activities of Morina persica L.(Caprifoliaceae), Journal of Research in Pharmacy, 28(4), 961-973.
  • [22] Gözcü, S., Akşit, Z., Aydın, A., Yılmaz, M. A., Şimşek, S., (2024) Comprehensive phenolic profiling and biological evaluation of Centaurea glastifolia L.(Asteraceae), Natural Product Research, 39(4), 1-12.
  • [23] Akman, T. Ç., (2025) Antioxidant activity, amino acid composition and trace element levels of Verbascum lasianthum Boiss. ex Bentham from Erzincan, Türkiye, Türk Doğa Ve Fen Dergisi, 14(1), 146-155.
  • [24] Güleryüz, G., Arslan, H., İzgi, B., Güçer, Ş., (2006) Element content (Cu, Fe, Mn, Ni, Pb, and Zn) of the ruderal plant Verbascum olympicum Boiss. from east mediterranean, Zeitschrift für Naturforschung C, 61(5-6), 357-362.
  • [25] Arslan, H., Güleryüz, G., Leblebici, Z., Kırmızı, S., Aksoy, A., (2010) Verbascum bombyciferum Boiss.(Scrophulariaceae) as possible bio-indicator for the assessment of heavy metals in the environment of Bursa, Turkey, Environmental monitoring assessment, 163, 105-113.
  • [26] Auti, S. T., Kulkarni, Y. A., (2019) Neuroprotective effect of cardamom oil against aluminum induced neurotoxicity in rats, Frontiers in neurology, 10, 399.
  • [27] Zhang, Z., Li, X., Ma, L., Wang, S., Zhang, J., Zhou, Y., Guo, X., Niu, Q., (2023) LNC000152 participates in aluminum-induced reactive astrocyte proliferation by promoting GFAP expression, Researchsquare.
  • [28] Türkoğlu, T., Türkoğlu, S., (2023) Evaluation of heavy metals concentrations of Verbascum diversifolium and Alcea calvertii plants, Eskişehir Teknik Üniversitesi Bilim ve Teknoloji Dergisi-C Yaşam Bilimleri Ve Biyoteknoloji, 12(2), 64-72.
  • [29] Soyer, P., Küçük, S., Tunalı, Y., (2024) Antimicrobial and antibiofilm studies on three endemic species of Verbascum L.(Scrophulariaceae) in Türkiye, International Journal of Secondary Metabolite, 11(3), 543-550.
  • [30] Wołonciej, M., Milewska, E., Roszkowska-Jakimiec, W., (2016) Trace elements as an activator of antioxidant enzymes, Postepy higieny i medycyny doswiadczalnej, 70, 1483-1498.
  • [31] Klotz, L. O., Kröncke, K. D., Buchczyk, D. P., Sies, H., (2003) Role of copper, zinc, selenium and tellurium in the cellular defense against oxidative and nitrosative stress, The Journal of nutritional biochemistry, 133(5), 1448S-1451S.
  • [32] Jomova, K., Valko, M., (2011) Importance of iron chelation in free radical-induced oxidative stress and human disease, Current pharmaceutical design, 17(31), 3460-3473.
  • [33] Gammella, E., Recalcati, S., Cairo, G., (2016) Dual role of ROS as signal and stress agents: iron tips the balance in favor of toxic effects, Oxidative medicine cellular longevity, 2016(1), 8629024.
  • [34] Kloubert, V., Rink, L., (2015) Zinc as a micronutrient and its preventive role of oxidative damage in cells, Food functional Ecology, 6(10), 3195-3204.
  • [35] Zhang, Y., Roh, Y. J., Han, S. J., Park, I., Lee, H. M., Ok, Y. S., Lee, B. C., Lee, S. R., (2020) Role of selenoproteins in redox regulation of signaling and the antioxidant system: A review, Antioxidants, 9(5), 383.
  • [36] Tinggi, U., (2008) Selenium: its role as antioxidant in human health, Environmental health preventive medicine, 13(2), 102-108.
  • [37] Kisnerienė, V., Lapeikaitė, I., (2015) When chemistry meets biology: the case of aluminium–a review, Chemija, 26(3), 148-158.
  • [38] Jaishankar, M., Tseten, T., Anbalagan, N., Mathew, B. B., Beeregowda, K. N. (2014) Toxicity, mechanism and health effects of some heavy metals, Interdisciplinary toxicology, 7(2), 60.
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  • [40] Wang, K., Liu, Y., Dong, K., Dong, J., Kang, J., Yang, Q., Zhou, H., Sun, Y., (2011) The effect of NaCl on proline metabolism in Saussurea amara seedlings, African Journal of Biotechnology, 10(15), 2886-2893.
  • [41] Zhang, C., Wang, N., Zhang, Y., Feng, Q., Yang, C., Liu, B., (2013) DNA methylation involved in proline accumulation in response to osmotic stress in rice (Oryza sativa), Genetics and Molecular Research, 12(2), 1269-1277.
  • [42] Venediktova, T., Zaimenko, N., Skrypchenko, N., (2022) Diagnostic significance of the synthesis of phenolic compounds and proline in the leaves of Schisandra chinensis and Actinidia arguta for the indication of the stress levels of plants under conditions of mixed plantings, Plant introduction(93/94), 18-26.
  • [43] Jnandabhiram, C., Sailen Prasad, B., (2012) Water stress effects on leaf growth and chlorophyll content but not the grain yield in traditional rice (Oryza sativa Linn.) genotypes of Assam, India II. Protein and proline status in seedlings under PEG induced water stress, American Journal of Plant Sciences, 3(7).
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  • [45] McCoy, R. M., Meyer, G. W., Rhodes, D., Murray, G. C., Sors, T. G., Widhalm, J. R., (2020) Exploratory study on the foliar incorporation and stability of isotopically labeled amino acids applied to turfgrass, Agronomy, 10(3), 358.
  • [46] Cheng, Y. K., Zhang, Y., Zhang, Z. Y., Cong, P. K., Feng, J. Y., Zhang, R., Long, S. R., Zhang, X., Wang, Z. Q., Cui, J., (2024) Biological characteristics and functions of a novel glutamate dehydrogenase from Trichinella spiralis, Parasite, 31, 65.
  • [47] İğci, B. K., Aytaç, Z., (2023) Phytochemical composition of Verbascum stachydifolium Boiss & Heldr. var. stachydifolium growing in Türkiye and in vitro analysis of wound healing activity, Archives of Biological Sciences, 75(1), 5-17.
  • [48] Kumschick, S., Hufbauer, R. A., Alba, C., Blumenthal, D. M., (2013) Evolution of fast‐growing and more resistant phenotypes in introduced common mullein (Verbascum thapsus), Journal of Ecology, 101(2), 378-387.
  • [49] Grigore, A., Colceru-Mihul, S., Litescu, S., Panteli, M., Rasit, I., (2013) Correlation between polyphenol content and anti-inflammatory activity of Verbascum phlomoides (mullein), Pharmaceutical biology, 51(7), 925-929.
  • [50] Süntar, I., Tatlı, İ. İ., Akkol, E. K., Keleş, H., Kahraman, Ç., Akdemir, Z., (2010) An ethnopharmacological study on Verbascum species: from conventional wound healing use to scientific verification, Journal of ethnopharmacology, 132(2), 408-413.
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  • [52] Kanbolat, Ş., Korkmaz, N., Şener, S., Badem, M., Colak, N., Abudayyak, M., Aliyazcıoğlu, R., Özgen, U., Kandemir, A., Alpay Karaoğlu, Ş., (2018) Antioxidant, antimicrobial, cytotoxic, anticholinesterase, antityrosinase activities and characterisation of volatile compounds of Verbascum oocarpum by SPME and GC-FID/MS, Journal of Pharmaceutical Research International, 24(4), 1-12
Toplam 52 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Bitki Biyokimyası, Analitik Spektrometri, Analitik Kimya (Diğer)
Bölüm Makaleler
Yazarlar

Samed Şimşek 0000-0001-8451-3425

Erken Görünüm Tarihi 14 Ağustos 2025
Yayımlanma Tarihi 31 Ağustos 2025
Gönderilme Tarihi 27 Mart 2025
Kabul Tarihi 7 Ağustos 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 18 Sayı: 2

Kaynak Göster

APA Şimşek, S. (2025). Comprehensive Analysis of Trace Elements, Amino Acids, and Antioxidant Potential of Verbascum orientale. Erzincan University Journal of Science and Technology, 18(2), 391-413. https://doi.org/10.18185/erzifbed.1666259