The Influence of Ecological Factors on the Phytochemical Characteristics of Pinus cembra L.
Abstract
:1. Introduction
2. Results and Discussions
2.1. Histo-Anatomical Examination of Pinus cembra L. Stem
2.2. Total Polyphenolic Content of Pinus cembra L. Extracts in Relation to Altitude
2.3. Antioxidant Activity of Pinus cembra L. Extracts
2.4. Enzyme Inhibitory Activity of Pinus cembra L. Extracts
3. Materials and Methods
3.1. Plant Samples
3.2. Extraction
3.3. Total Polyphenol Content
3.4. Antioxidant Activity
3.5. α-Glucosidase and α-Amylase Inhibitory Assay
3.6. Histo-Anatomical Analysis
3.7. Statistical Analysis
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Beloiu, M.; Beierkuhnlein, C. Differences in the Spatial Structure of Two Pinus cembra L. Populations in the Carpathian Mountains. Forests 2019, 10, 326. [Google Scholar] [CrossRef]
- Wieser, G.; Manning, W.J.; Tausz, M.; Bytnerowicz, A. Evidence for Potential Impacts of Ozone on Pinus cembra L. at Mountain Sites in Europe: An Overview. Environ. Pollut. 2006, 139, 53–58. [Google Scholar] [CrossRef] [PubMed]
- Caudullo, G.; de Rigo, D. Pinus Cembra in Europe: Distribution, Habitat, Usage and Threats. In European Atlas of Forest Tree Species; San-Miguel-Ayanz, J., de Rigo, D., Caudullo, G., Houston Durrant, T., Mauri, A., Eds.; Publications Office of the EU: Luxembourg, 2016; pp. 120–121.1. [Google Scholar]
- Shashikumar, A.; Bičárová, S.; Laurence, D.-R. The Effect of Ozone on Pine Forests in South-Eastern France from 2017 to 2019. J. For. Res. 2023, 34, 301–315. [Google Scholar] [CrossRef]
- Pandey, K.B.; Rizvi, S.I. Plant Polyphenols as Dietary Antioxidants in Human Health and Disease. Oxid. Med. Cell. Longev. 2009, 2, 270–278. [Google Scholar] [CrossRef] [PubMed]
- Apetrei, C.L.; Tuchilus, C.; Aprotosoaie, A.C.; Oprea, A.; Malterud, K.E.; Miron, A. Chemical, Antioxidant and Antimicrobial Investigations of Pinus Cembra L. Bark and Needles. Molecules 2011, 16, 7773–7788. [Google Scholar] [CrossRef] [PubMed]
- Sharifan, A.; Etebari, M.; Zolfaghari, B.; Aliomrani, M. Investigating the Effects of Bark Extract and Volatile Oil of Pinus eldarica against Cisplatin-Induced Genotoxicity on HUVECs Cell Line. Toxicol. Res. 2021, 10, 223–231. [Google Scholar] [CrossRef] [PubMed]
- Blomstrand, B.M.; Enemark, H.L.; Øines, Ø.; Steinshamn, H.; Aasen, I.M.; Mahnert, K.-C.; Sørheim, K.M.; Athanasiadou, S.; Thamsborg, S.M.; Woolsey, I.D. Extracts of Pine Bark (Pinus sylvestris) Inhibit Cryptosporidium Parvum Growth in Cell Culture. Parasitol. Res. 2021, 120, 2919–2927. [Google Scholar] [CrossRef] [PubMed]
- Go, M.J.; Kim, J.M.; Kang, J.Y.; Park, S.K.; Lee, C.J.; Kim, M.J.; Lee, H.R.; Kim, T.Y.; Joo, S.G.; Kim, D.-O.; et al. Korean Red Pine (Pinus densiflora) Bark Extract Attenuates Aβ-Induced Cognitive Impairment by Regulating Cholinergic Dysfunction and Neuroinflammation. J. Microbiol. Biotechnol. 2022, 32, 1154–1167. [Google Scholar] [CrossRef] [PubMed]
- Lungu, C.; Mihai, C.T.; Vochita, G.; Gherghel, D.; Miron, S.D. Cytotoxic Activity of Pinus Cembra L. Needle Extract: A Preliminary Study on HeLa Cell Line. Ro. J. Pharm. Pract. 2021, 57, 93–98. [Google Scholar] [CrossRef]
- Nie, T.; Cooper, G.J.S. Mechanisms Underlying the Antidiabetic Activities of Polyphenolic Compounds: A Review. Front. Pharmacol. 2021, 12, 798329. [Google Scholar] [CrossRef] [PubMed]
- Dudoit, A.; Benbouguerra, N.; Richard, T.; Hornedo-Ortega, R.; Valls-Fonayet, J.; Coussot, G.; Saucier, C. α-Glucosidase Inhibitory Activity of Tannat Grape Phenolic Extracts in Relation to Their Ripening Stages. Biomolecules 2020, 10, 1088. [Google Scholar] [CrossRef] [PubMed]
- Ćorković, I.; Gašo-Sokač, D.; Pichler, A.; Šimunović, J.; Kopjar, M. Dietary Polyphenols as Natural Inhibitors of α-Amylase and α-Glucosidase. Life 2022, 12, 1692. [Google Scholar] [CrossRef] [PubMed]
- Dönmez, I.E.; Hafızoğlu, H.; Kılıç, A.; Hemming, J.; Eckerman, C. Effect of Altitude on the Composition of Suberin Monomers in the Outer Bark of Scots Pine (Pinus sylvestris L.). Ind. Crops Prod. 2012, 37, 441–444. [Google Scholar] [CrossRef]
- Delgado-Alvarado, E.A. Phenolics Content, Antioxidant Potential, α-Glucosidase and α-Amylase Inhibitory Activities of FOUR Foliar Extracts from Pinus Species. Farmacia 2022, 70, 214–221. [Google Scholar] [CrossRef]
- Willför, S.M.; Ahotupa, M.O.; Hemming, J.E.; Reunanen, M.H.T.; Eklund, P.C.; Sjöholm, R.E.; Eckerman, C.S.E.; Pohjamo, S.P.; Holmbom, B.R. Antioxidant Activity of Knotwood Extractives and Phenolic Compounds of Selected Tree Species. J. Agric. Food Chem. 2003, 51, 7600–7606. [Google Scholar] [CrossRef] [PubMed]
- Dziedziński, M.; Kobus-Cisowska, J.; Stachowiak, B. Pinus Species as Prospective Reserves of Bioactive Compounds with Potential Use in Functional Food—Current State of Knowledge. Plants 2021, 10, 1306. [Google Scholar] [CrossRef] [PubMed]
- Tanase, C.; Nicolescu, A.; Nisca, A.; Ștefănescu, R.; Babotă, M.; Mare, A.D.; Ciurea, C.N.; Man, A. Biological Activity of Bark Extracts from Northern Red Oak (Quercus rubra L.): An Antioxidant, Antimicrobial and Enzymatic Inhibitory Evaluation. Plants 2022, 11, 2357. [Google Scholar] [CrossRef] [PubMed]
- Babotă, M.; Frumuzachi, O.; Mocan, A.; Tămaș, M.; Dias, M.I.; Pinela, J.; Stojković, D.; Soković, M.; Bădărău, A.S.; Crișan, G.; et al. Unravelling Phytochemical and Bioactive Potential of Three Hypericum Species from Romanian Spontaneous Flora: H. alpigenum, H. perforatum and H. rochelii. Plants 2022, 11, 2773. [Google Scholar] [CrossRef] [PubMed]
Sample Code | TPC (mg GAE/g Extract) | DPPH (IC50—μg/mL) | ABTS (IC50—μg/mL) |
---|---|---|---|
IR1919 | 235.01 ± 5.57 a,d,e | 6.58 ± 1.62 d,e | 0.49 ± 0.03 b,c |
IIIR1620 | 205.97 ± 3.13 a,b,d,e | 2.26 ± 0.02 b,c | 0.35 ± 0.01 b |
IVR1790 | 140.33 ± 40.64 a | 3.72 ± 0.92 b,c | 0.71 ± 0.01 c |
VR2429 | 306.17 ± 0.95 a,d,e | 2.20 ± 0.70 b,c | 0.40 ± 0.00 b |
IP1919 | 137.07 ± 39.79 a | 3.83 ± 0.48 b,c,d | 1.39 ± 0.15 d,f |
IIIP1620 | 86.39 ± 23.23 a,b,c,d | 6.55 ± 0.22 c,d,e | 1.04 ± 0.12 d,e |
IVP1790 | 91.74 ± 1.64 a,b,c,d | 8.24 ± 0.82 d | 1.19 ± 0.02 d,e,f |
VP2429 | 79.73 ± 1.04 a,b,c | 15.36 ± 0.14 f | 1.22 ± 0.11 d,e,f |
Sample Code | IC50 (μg/mL) α-Glucosidase | IC50 (μg/mL) α-Amylase |
---|---|---|
IR1919 | 29.60 ± 0.66 c,e | 459.66 ± 30.51 c |
IIIR1620 | 29.15 ± 0.92 c | 662.22 ± 21.64 d,e |
IVR1790 | 34.85 ± 0.54 e | 1686.84 ± 120.46 g |
VR2429 | 25.77 ± 0.97 c,d | 625.24 ± 28.05 c,d,e |
IP1919 | 16.62 ± 0.74 b | 108.07 ± 1.80 b |
IIIP1620 | 32.54 ± 0.89 e,f | 713.33 ± 28.17 d,e |
IVP1790 | 26.26 ± 1.30 c,d | 1399.81 ± 97.41 f |
VP2429 | 31.12 ± 1.13 c,e | 813.28 ± 16.79 d,e |
Parameter (Measurement Unit) | Value |
---|---|
Sample:solvent ratio (m:v; g/mL) | 1:20 |
Alcoholic solvent concentration (%EtOH) | 44 |
Extraction time (min) | 15 |
Ultrasound amplitude (%) | 40 |
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Coman, N.-A.; Babotă, M.; Nădășan, I.; Nicolescu, A.; Pitaru, A.R.; Ștefănescu, R.; Mocan, A.; Frumuzachi, O.; Tanase, C. The Influence of Ecological Factors on the Phytochemical Characteristics of Pinus cembra L. Appl. Sci. 2023, 13, 10184. https://doi.org/10.3390/app131810184
Coman N-A, Babotă M, Nădășan I, Nicolescu A, Pitaru AR, Ștefănescu R, Mocan A, Frumuzachi O, Tanase C. The Influence of Ecological Factors on the Phytochemical Characteristics of Pinus cembra L. Applied Sciences. 2023; 13(18):10184. https://doi.org/10.3390/app131810184
Chicago/Turabian StyleComan, Năstaca-Alina, Mihai Babotă, Ingrid Nădășan, Alexandru Nicolescu, Alexandru Robert Pitaru, Ruxandra Ștefănescu, Andrei Mocan, Oleg Frumuzachi, and Corneliu Tanase. 2023. "The Influence of Ecological Factors on the Phytochemical Characteristics of Pinus cembra L." Applied Sciences 13, no. 18: 10184. https://doi.org/10.3390/app131810184
APA StyleComan, N.-A., Babotă, M., Nădășan, I., Nicolescu, A., Pitaru, A. R., Ștefănescu, R., Mocan, A., Frumuzachi, O., & Tanase, C. (2023). The Influence of Ecological Factors on the Phytochemical Characteristics of Pinus cembra L. Applied Sciences, 13(18), 10184. https://doi.org/10.3390/app131810184