1.Prediction of quality markers and medicinal value of sea buckthorn leaves based on network pharmacology, content determination, and activity evaluation.
Qian HE ; Kai-Lin YANG ; Xin-Yan WU ; Bo ZHANG ; Chun-Hong ZHANG ; Chun-Nian HE ; Pei-Gen XIAO
China Journal of Chinese Materia Medica 2023;48(20):5487-5497
The leaves of sea buckthorn(Hippophae rhamnoides), considered as common food raw materials, have records of medicinal use and diverse pharmacological activities, showing a potential medicinal value. However, the active substances in the sea buckthorn leaves and their mechanisms of action remain unclear. In addition, due to the extensive source and large variety variations, the quality evaluation criteria of sea buckthorn leaves remain to be developed. To solve the problems, this study predicted the main active components, core targets, key pathways, and potential pharmacological effects of sea buckthorn leaves by network pharmacology and molecular docking. Furthermore, ultra-performance liquid chromatography with diode-array detection(UPLC-DAD) was employed to determine the content of active components and establish the chemical fingerprint, on the basis of which the quality markers of sea buckthorn leaves were predicted and then verified by the enzyme activity inhibition method. The results indicated that sea buckthorn leaves had potential therapeutic effects on a variety of digestive tract diseases, metabolic diseases, tumors, and autoimmune diseases, which were consistent with the ancient records and the results of modern pharmacological studies. The core targets of sea buckthorn leaves included PTPN11, AKT1, PIK3R1, ESR1, and SRC, which were mainly involved in the PI3K-AKT, MAPK, and HIF-1 signaling pathways. In conclusion, the active components of sea buckthorn leaves are associated with the rich flavonoids and tannins, among which quercitrin, narcissoside, and ellagic acid can be used as the quality markers of sea buckthorn leaves. The findings provide a reference for the quality control and further development and utilization of sea buckthorn leaves as medicinal materials.
Hippophae/chemistry*
;
Network Pharmacology
;
Molecular Docking Simulation
;
Phosphatidylinositol 3-Kinases/metabolism*
;
Flavonoids/analysis*
;
Fruit/chemistry*
2.Determination of 10 mycotoxins in Hippophae Fructus medicinal and edible products by ultra-performance liquid chromatography- tandem mass spectrometry.
Xing-Jing YANG ; Yan-Ru LIU ; Zhi-Shu TANG ; Zhong-Xing SONG ; Bai-Jin CHANG ; Yan-Ting ZHAO ; Chang-le LIU
China Journal of Chinese Materia Medica 2023;48(2):366-373
An analytical method for 10 mycotoxins in Hippophae Fructus medicinal and edible products was established in this study, and the contamination of their mycotoxins was analyzed. First of all, the mixed reference solution of ten mycotoxins such as aflatoxin, ochratoxin, zearalenone, and dexoynivalenol was selected as the control, and the Hippophae Fructus medicinal and edible products were prepared. Secondly, based on the ultra-performance liquid chromatography-tandem mass spectrometry(UPLC-MS/MS) technology, 10 mycotoxins in Hippophae Fructus medicinal and edible products were quantitatively investigated and their content was determined. Finally, the contamination of mycotoxins was analyzed and evaluated. The optimal analysis conditions were determined, and the methodological inspection results showed that the 10 mycotoxins established a good linear relationship(r>0.99). The method had good repeatability, test sample specificity, stability, and instrument precision. The average recovery rates of 10 mycotoxins in Hippophae Fructus medicinal products, edible solids, and edible liquids were 90.31%-109.4%, 87.86%-107.8%, and 85.61%-109.1%, respectively. Relative standard deviation(RSD) values were 0.22%-10%, 0.75%-13%, and 0.84%-8.5%, repsectively. Based on UPLC-MS/MS technology, the simultaneous determination method for the limits of 10 mycotoxins established in this study has fast detection speed, less matrix interference, high sensitivity, and accurate results, which is suitable for the limit examination of 10 mycoto-xins in Hippophae Fructus medicinal and edible products.
Mycotoxins/analysis*
;
Chromatography, Liquid/methods*
;
Tandem Mass Spectrometry/methods*
;
Hippophae
;
Limit of Detection
;
Chromatography, High Pressure Liquid/methods*
3.Seabuckthorn Berries Extract Attenuates Pulmonary Vascular Hyperpermeability in Lipopolysaccharide-Induced Acute Lung Injury in Mice.
Lei-Lei DU ; Ying LIU ; Li WAN ; Chu CHEN ; Gang FAN
Chinese journal of integrative medicine 2022;28(12):1081-1087
OBJECTIVE:
To investigate the effect of seabuckthorn berries extract (SBE) on pulmonary vascular hyperpermeability in the mice model of acute lung injury (ALI) induced by lipopolysaccharide (LPS).
METHODS:
Sixty Kunming mice were allocated into 6 groups by a random number table, including control, LPS, dexamethasone (Dex, 1 mg/kg), and 120, 240 and 480 mg/kg SBE groups, 10 mice in each group. Except the control group, mice were pre-treated with Dex and SBE, respectively, for 7 days before LPS was intraperitoneally injected to induce ALI. Pulmonary vascular hyperpermeability was evaluated by histopathologic observation and transvascular leakage determination. Tumor necrosis factor alpha (TNF-α) and interleukin-6 (IL-6) levels in serum were measured using enzyme-linked immunosorbent assay. The expression of nuclear factor-kappa B (NF-κB) p65 in lung cells was determined by immunofluorescence analysis. The contents of cytoplasmic inhibitor of nuclear factor-κB kinase (IKK) and nuclear p65, as well as downstream proteins of E-selectin (CD62E) and intercellular adhesion molecule-1 (ICAM-1), were determined using Western blot analysis.
RESULTS:
Histopathological observation confirmed SBE treatment alleviated morphological lesion induced by LPS. Compared with the LPS group, 480 mg/kg SBE significantly decreased the water content of lung, Evans blue accumulation in lung tissue, and protein concentration and neutrophils count in bronchoalveolar lavage fluid (P<0.01); moreover, 480 mg/kg SBE significantly suppressed release of TNF-α and IL-6, and down-regulated expressions of IKK, nuclear p65, ICAM-1 and CD62E (P<0.01).
CONCLUSION
SBE maintained alveolar-capillary barrier integrity under endotoxin challenge in mice by suppressing the key factors in the pathogenesis of ALI.
Animals
;
Mice
;
Acute Lung Injury/drug therapy*
;
Fruit/chemistry*
;
Hippophae/chemistry*
;
Intercellular Adhesion Molecule-1/metabolism*
;
Interleukin-6/metabolism*
;
Lipopolysaccharides
;
Lung/pathology*
;
NF-kappa B/metabolism*
;
Tumor Necrosis Factor-alpha/metabolism*
;
Plant Extracts/therapeutic use*
4.Application and modern research progress of sea buckthorn leaves.
Yue LI ; Qing LIU ; Yue WANG ; Yuan-Hu ZU ; Zhi-Hong WANG ; Chun-Nian HE ; Pei-Gen XIAO
China Journal of Chinese Materia Medica 2021;46(6):1326-1332
Sea buckthorn(Hippophae rhamnoides) is widely distributed, with abundant resources, a long history of application, and rich nutrition and high medicinal value. Therefore, it has attracted extensive attention from researchers at home and abroad. The focus of attention is mainly on sea buckthorn fruit, but with weak research and development of sea buckthorn leaves. In order to develop and utilize abundant resources of sea buckthorn leaves, this paper systematically reviewed domestic and foreign literatures and summarized the current application, harvesting and processing, chemical constituents and pharmacological activities of sea buckthorn leaves. Sea buckthorn leaves have a wide development and utilization value in food raw materials(like a substituting-for-tea plant), pharmaceutical raw materials and animal feed. Modern studies have shown that the leaves of sea buckthorn are rich in polysaccharides, flavonoids, polyphenols, triterpenes and steroids, as well as vitamins(especially vitamin C), proteins, amino acids and mineral elements. It has various pharmacological effects, such as anti-obesity, hypoglycemia, anti-oxidation, antibacterial, anti-inflammatory and anti-cardiovascular diseases. Domestic and foreign studies have showed that sea buckthorn leaves have important development and utilization prospects, and are worth further study and development.
Animals
;
Flavonoids
;
Fruit
;
Hippophae
;
Plant Leaves
;
Polyphenols
5.Explore antioxidant quality markers of Hippophae tibetana based on "dry-method + wet-method" technology.
Jin-Chai QI ; Jing CHEN ; Wen LI ; Guo-Ping LI ; Hong-Shan CHEN ; Wen-Min PI ; Feng GAO ; Peng-Long WANG ; Ma MI ; Hai-Min LEI
China Journal of Chinese Materia Medica 2021;46(11):2699-2709
The cross combination of dry-method(network pharmacology analysis) and wet-method(high-resolution mass spectro-metry with antioxidation experiment) was used to predict antioxidant quality markers(Q-markers) of Hippophae tibetana. Ultra-high performance liquid chromatography coupled with hybrid quadrupole-orbitrap mass spectrometry(UPLC-Q-Exactive Orbitrap-MS) was developed to rapidly separate and identify the chemical constituents in H. tibetana. Then in DPPH free radicals and superoxide anion scavenging experiment, the antioxidant activity of the four different polar parts with extracts of petroleumether, ethyl acetate, n-butanol and water was evaluated. Network pharmacology method was used for functional enrichment and pathway analysis to screen antioxidant-related components and preliminarily explain the mechanism of action. On this basis, multi-source information was integrated to predict the antioxidant Q-markers. The results showed that 51 components in H. tibetana were identified, including 18 flavonoids, 14 terpenoids, 6 alkaloids, 4 coumarins and phenylpropanoids, 3 volatile components and 2 polyphenols. The antioxidant capacity of different fractions: ethyl acetate > n-butanol > water > petroleum ether. The medicine mainly acted on PI3 K-Akt and FoxO signaling pathways to perform antioxidant effects through flavonoids such as quercetin, luteolin and kaempferol. According to the results of dry-method and wet-method, quercetin, luteolin and kaempferol, the representatives of poly-hydroxy flavone, may be the antioxidant Q-markers of H. tibetana. In this study, with the antioxidant Q-markers of H. tibetana as an example, an investigation model of predicting Q-marker was discussed based on the ternary system of composition, function and informatics, providing a scientific basis for the establishment of quality evaluation standards for H. tibetana.
Antioxidants
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Chromatography, High Pressure Liquid
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Hippophae
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Mass Spectrometry
;
Technology
6.Research progress on chemical constituents and pharmacological activities of seabuckthorn and prediction of its Q-markers.
Ning-Ning WANG ; Wen-Hui ZHENG ; Kai-Xue ZHANG ; Xiu-Feng WEN ; Shun-Guang LU ; Zhi-Gang YANG
China Journal of Chinese Materia Medica 2021;46(21):5522-5532
Seabuckthorn contains flavonoids, tannins, terpenoids, polysaccharides, and vitamins, which have anti-inflammation,anti-oxidation, liver protection, anti-cardiovascular disease, anti-aging, immune enhancing, anti-tumor, and anti-bacterial activities.We reviewed the papers focusing on the chemical constituents, pharmacological activities, and utilization of seabuckthorn. The quality markers(Q-markers) of seabuckthorn were predicted and analyzed based on original plant phylogeny, chemical composition correlation, traditional medicinal properties, pharmacodynamic correlation, traditional and extended efficacy, pharmacokinetics, metabolic processes, and measurable components. With this review, we aim to provide theoretical reference for the quality control and quality standard establishment of seabuckthorn, so as to promote the rational exploitation and utilization of seabuckthorn resources, and improve the healthy and sustainable development of seabuckthorn industry.
Anti-Inflammatory Agents
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Biomarkers
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Drugs, Chinese Herbal
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Flavonoids
;
Hippophae
7.Cis-3-O-p-hydroxycinnamoyl Ursolic Acid Induced ROS-Dependent p53-Mediated Mitochondrial Apoptosis in Oral Cancer Cells.
Ching Ying WANG ; Chen Sheng LIN ; Chun Hung HUA ; Yu Jen JOU ; Chi Ren LIAO ; Yuan Shiun CHANG ; Lei WAN ; Su Hua HUANG ; Mann Jen HOUR ; Cheng Wen LIN
Biomolecules & Therapeutics 2019;27(1):54-62
Cis-3-O-p-hydroxycinnamoyl ursolic acid (HCUA), a triterpenoid compound, was purified from Elaeagnus oldhamii Maxim. This traditional medicinal plant has been used for treating rheumatoid arthritis and lung disorders as well as for its anti-inflammation and anticancer activities. This study aimed to investigate the anti-proliferative and apoptotic-inducing activities of HCUA in oral cancer cells. HCUA exhibited anti-proliferative activity in oral cancer cell lines (Ca9-22 and SAS cells), but not in normal oral fibroblasts. The inhibitory concentration of HCUA that resulted in 50% viability was 24.0 µM and 17.8 µM for Ca9-22 and SAS cells, respectively. Moreover, HCUA increased the number of cells in the sub-G1 arrest phase and apoptosis in a concentration-dependent manner in both oral cancer cell lines, but not in normal oral fibroblasts. Importantly, HCUA induced p53-mediated transcriptional regulation of pro-apoptotic proteins (Bax, Bak, Bim, Noxa, and PUMA), which are associated with mitochondrial apoptosis in oral cancer cells via the loss of mitochondrial membrane potential. HCUA triggered the production of intracellular reactive oxygen species (ROS) that was ascertained to be involved in HCUA-induced apoptosis by the ROS inhibitors YCG063 and N-acetyl-L-cysteine. As a result, HCUA had potential antitumor activity to oral cancer cells through eliciting ROS-dependent and p53-mediated mitochondrial apoptosis. Overall, HCUA could be applicable for the development of anticancer agents against human oral cancer.
Acetylcysteine
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Antineoplastic Agents
;
Apoptosis Regulatory Proteins
;
Apoptosis*
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Arthritis, Rheumatoid
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Cell Line
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Elaeagnaceae
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Fibroblasts
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Humans
;
Lung
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Membrane Potential, Mitochondrial
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Mouth Neoplasms*
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Plants, Medicinal
;
Reactive Oxygen Species
8.Research progress on chemical constituents and their differences between sea buckthorn berries and leaves.
China Journal of Chinese Materia Medica 2019;44(9):1767-1773
Sea buckthorn berries and leaves are two medicinal parts derived from the same primitive plant,mostly used as ethnic medicine,which have a long history in Mongolian and Tibetan. This paper reviews the studies on the chemical composition and differences between sea buckthorn berries and leaves. They have the same or similar composition and content of flavonoids,triterpenes,steroids,organic acids and volatile oils,also have some differences. The main differences are as follows: the flavonoids content in the sea buckthorn leaves is greater than that of the sea buckthorn berries,but the species of flavonoids in the berries are higher than leaves. The species and content of steroids and organic acids in the berries are higher than that of the leaves. The berries contain abundant volatile oil,and the leaves contain many phenolic compounds. Finally,the main problems and the prospect of the next research are put forward.
Flavonoids
;
analysis
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Fruit
;
chemistry
;
Hippophae
;
chemistry
;
Oils, Volatile
;
analysis
;
Phenols
;
analysis
;
Plant Leaves
;
chemistry
;
Plants, Medicinal
;
chemistry
9.Effect of Hippophae rhamnoides Extract on Oxidative Oropharyngeal Mucosal Damage Induced in Rats Using Methotrexate.
Ertugrul ERHAN ; Suat TERZI ; Metin CELIKER ; Oguzhan YARALI ; Murat CANKAYA ; Ferda Keskin CIMEN ; Ismail MALKOC ; Bahadir SULEYMAN
Clinical and Experimental Otorhinolaryngology 2017;10(2):181-187
OBJECTIVES: The objective of this study is to investigate and evaluate the effect of Hippophae rhamnoides extract (HRE) on oropharyngeal mucositis induced in rats with methotrexate (MTX) through biochemical, gene expression, and histopathological examinations. METHODS: Experimental animals were divided into a healthy group (HG), a HRE+MTX (HREM) group, HRE group (HREG), and a control group that received MTX (MTXG). The HREM and HREG groups of rats was administered 50 mg/kg HRE, while the MTXG and HG groups were given an equal volume distilled water with gavage. Then, the HREM and MTXG rat groups were given oral MTX at a dose of 5 mg/kg 1 hour after HRE and distilled water was administered. This procedure was repeated for 1 month. At the end of this period, all of the animals were sacrificed with a high dose of anesthesia. Then, the amounts of malondialdehyde (MDA) and total glutathione (tGSH) were determined in the removed oropharyngeal tissues. Interleukin-1β (IL-1β) and tumor necrosis factor-α (TNF-α) gene expressions were measured, and all the tissues were studied histopathologically. RESULTS: The amount of MDA was significantly increased in the MTXG group compared to the HREM, HREG, and HG groups (P<0.001). MTX significantly decreased the amount of tGSH in the MTXG group compared to the HREM, HREG, and HG groups (P<0.001). In this study, there were no visible ulcers in the animal group in which the levels of MDA, IL-1β, and TNF-α were high and the level of tGSH was low. However, histopathologic examination revealed mucin pools in wide areas due to ruptured oropharynx glands, and proliferated, dilated, and congested blood vessels and dilated ductal structures in some areas. CONCLUSION: HRE protected oropharyngeal oxidative damage induced by MTX. As an inexpensive and natural product, HRE has important advantages in the prevention of oropharyngeal damage induced by MTX.
Anesthesia
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Animals
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Blood Vessels
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Estrogens, Conjugated (USP)
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Gene Expression
;
Glutathione
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Hippophae*
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Malondialdehyde
;
Methotrexate*
;
Mucins
;
Mucositis
;
Necrosis
;
Oropharynx
;
Rats*
;
Stomatitis
;
Ulcer
;
Water
10.Analgesic Effect of Hippophae rhamnoides Extract in Orofacial Pain in Rats.
Yun Kyung KIM ; Ja Hyeong CHOI ; Hee Jin KIM ; Hyun Seo YOON ; Kyung Yae HYUN ; Min Kyung LEE
Journal of Dental Hygiene Science 2017;17(6):495-500
Hippophae rhamnoides L. (sea buckthorn) is a shrub wood that belongs to the bamboo tree family, and is rich in vitamin C, D, and E; it is referred to as a vitamin tree. It is mainly grown in the high mountains of Europe and Central Asia, and has been widely used in China and Russia as natural medicine. Recent studies have shown that it is effective in the treatment of cancer, liver diseases, cardiovascular diseases, and gastrointestinal diseases. However, results of studies on its effect on the regulation of pain are insufficient. In this study, we investigated the effect of sea buckthorn on the development and control of pain in two facial areas. The experimental animals included 7- to 8-week-old Sprague-Dawley rats (240~260 g). Formalin (5%), which is known as an inflammation inducer, was injected into the vibrissa pad or temporomandibular joints to induce orofacial acute pain. Rubbing or scraping of the region injected with formalin was regarded as a pain index, and the behavioral response was observed for 45 minutes after the injection. Sea buckthorn extract diluted to 150, 300 mg/kg (in 1 ml of distilled water) was orally administered 30 minutes prior to the acute pain. The facial pain behavior was effectively reduced in the 300 mg/kg group when compared to the control group (vehicle). Likewise, in an experiment in which formalin was injected into the temporomandibular joints, effective pain alleviation was confirmed at the same drug concentration. These results suggest that sea buckthorn extract may be useful in the development of therapeutic agents for acute inflammatory pain in the orofacial area and for controlling temporomandibular joint pain.
Acute Pain
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Animals
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Ascorbic Acid
;
Asia
;
Cardiovascular Diseases
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China
;
Europe
;
Facial Pain*
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Formaldehyde
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Gastrointestinal Diseases
;
Hippophae*
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Humans
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Inflammation
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Liver Neoplasms
;
Rats*
;
Rats, Sprague-Dawley
;
Russia
;
Temporomandibular Joint
;
Trees
;
Vitamins
;
Wood

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