1.Comparison between macroscopic identification and DNA barcoding identification of Amomi Fructus.
En-Ai ZHAI ; Wen-Juan MI ; Yang CUI ; Wei-Feng HONG ; Ya-Shun WANG ; Xing-Yu GUO ; Hui-Qin ZOU ; Yong-Hong YAN
China Journal of Chinese Materia Medica 2022;47(17):4600-4608
This study aims to explore the consistency between macroscopic identification and DNA barcoding identification of Amomi Fructus. With the DNA barcoding identification results, we evaluated the reliability of identifying Amomi Fructus quality by combining macroscopic traits with main volatile chemical components. Thirteen batches of Amomi Fructus samples were collected for identification. Firstly, the morphological and sensory characteristics of each sample were observed and recorded according to the standard in Chinese Pharmacopoeia(2020 edition). The 100-fruit weight, longitudinal diameter, transverse diameter, and longitudinal diameter-to-transverse diameter ratio were measured, which correspond to large, solid, and full kernel representing good quality in the sensory evaluation. The odor value detected by electronic nose and major volatile components(borneol, camphor, limonene, and borneol acetate) correspond to the sensory evaluation of strong odor representing good quality. Secondly, DNA barcoding was employed to identify the 13 batches of samples. Finally, clustering analysis was performed for the main volatile components and macroscopic traits, and the identification results were compared with those of DNA barcoding. Except two batches of samples(No.6 and No.10), the macroscopic identification showed the results consistent with those of DNA barcoding, with an identification rate of 84.62%. The clustering results of the content of four volatile chemical components and macroscopic traits were also consistent with the DNA barcoding identification results. DNA barcoding can verify the results of macroscopic identification and provide a scientific basis for the inheritance and development of macroscopic identification. Moreover, the combination of macroscopic traits and chemical components demonstrates higher accuracy in the quality evaluation of Chinese medicinal materials.
Camphanes
;
Camphor/analysis*
;
DNA Barcoding, Taxonomic
;
Drugs, Chinese Herbal/chemistry*
;
Fruit/genetics*
;
Limonene/analysis*
;
Reproducibility of Results
2.Activation of transient receptor potential vanilloid 3 by the methanolic extract of Schisandra chinensis fruit and its chemical constituent γ-schisandrin.
Yuran NAM ; Hyun Jong KIM ; Young Mi KIM ; Young Won CHIN ; Yung Kyu KIM ; Hyo Sang BAE ; Joo Hyun NAM ; Woo Kyung KIM
The Korean Journal of Physiology and Pharmacology 2017;21(3):309-316
Transient receptor potential vanilloid 3 (TRPV3) is a non-selective cation channel with modest permeability to calcium ions. It is involved in intracellular calcium signaling and is therefore important in processes such as thermal sensation, skin barrier formation, and wound healing. TRPV3 was initially proposed as a warm temperature sensor. It is activated by synthetic small-molecule chemicals and plant-derived natural compounds such as camphor and eugenol. Schisandra chinensis (Turcz.) Baill (SC) has diverse pharmacological properties including antiallergic, anti-inflammatory, and wound healing activities. It is extensively used as an oriental herbal medicine for the treatment of various diseases. In this study, we investigated whether SC fruit extracts and seed oil, as well as four compounds isolated from the fruit can activate the TRPV3 channel. By performing whole-cell patch clamp recording in HEK293T cells overexpressing TRPV3, we found that the methanolic extract of SC fruit has an agonistic effect on the TRPV3 channel. Furthermore, electrophysiological analysis revealed that γ-schisandrin, one of the isolated compounds, activated TRPV3 at a concentration of 30 µM. In addition, γ-schisandrin (~100 µM) increased cytoplasmic Ca²⁺ concentrations by approximately 20% in response to TRPV3 activation. This is the first report to indicate that SC extract and γ-schisandrin can modulate the TRPV3 channel. This report also suggests a mechanism by which γ-schisandrin acts as a therapeutic agent against TRPV3-related diseases.
Calcium
;
Calcium Channels
;
Calcium Signaling
;
Camphor
;
Cytoplasm
;
Eugenol
;
Fruit*
;
Herbal Medicine
;
Ions
;
Methanol*
;
Permeability
;
Schisandra*
;
Sensation
;
Skin
;
Wound Healing
3.Effect of Borneol on the Permeability of Blood Tumor Barrier Model and its Mechanism Study.
Yan-mei XING ; Xiao-ning YAN ; Jun-qia GUO ; Rong ZHANG
Chinese Journal of Integrated Traditional and Western Medicine 2016;36(6):696-702
OBJECTIVETo observe the effect of natural borneol on the permeability of blood tumor barrier (BTB) model and the expression and activation of mitogen-activated protein kinase (MAPKs) signal transduction pathway related protein kinase in vitro.
METHODSC6 rat glioma cells and human umbilical vein endothelial cells (HUVECs) were co-cultured to establish BTB model. Then 4 groups were set up, the blank control group, low, middle, and high dose borneol groups (25, 50, 100 µg/mL), 3 samples collected at 7 time points (0, 10, 30, 60, 120, 180, 240 min, respectively). Blank culture medium was exchanged in the blank control group while medication. Different doses of natural borneol were administered to the 3 borneol groups. Cells were collected at different time points. BTB permeability was determined using horseradish peroxidase (HRP). Expression levels of extracellular signal regulated protein kinase (ERK), phosphorylation extracellular signal regulated protein kinase (P-ERK), P38MAPK, phosphor-P38MAPK, c-Jun N-terminal kinase (JNK), and phosphorylation c-Jun N-terminal kinase (P-JNK) were detected using Western blot.
RESULTSCompared with the same group at min 0, the permeation rate obviously increased (P < 0.01) in the 3 borneol groups at the rest time points. P-ERK expression was elevated first, reached the peak at 30 min, and gradually recovered to the initial level (P > 0.05). Compared with the blank control group, HRP permeation rate increased from 10 min to 240 min (P < 0.01), and expression of P-ERK protein increased at 30 min and 60 min (P < 0.05) in the low dose borneol group; expression of P-JNK protein decreased in the 3 borneol groups at 180 min and 240 min (P < 0.05). Compared with the low dose borneol group, expression of P-ERK protein increased from 10 min to 180 min (P < 0.05), HRP permeation rate increased from 30 min to 180 min (P < 0.05), expression of P-JNK protein decreased at 180 and 240 min (P < 0.05) in the middle dose borneol group. Compared with the middle dose borneol group, HRP permeation rate increased from 10 min to 180 min (P < 0.05), expression of P-ERK protein increased from 10 min to 180 min (P < 0.05), expression of P-JNK protein increased at 180 min and decreased at 240 min (both P < 0.05) in the high dose borneol group.
CONCLUSIONNatural borneol arrived at the effect of regulating reversible BTB patency possibly through activating phosphorylation of ERK in MAPKs signal transduction pathway, and further reversibly down-regulating expression of associated proteins.
Animals ; Bornanes ; pharmacology ; Cell Line, Tumor ; drug effects ; Coculture Techniques ; Extracellular Signal-Regulated MAP Kinases ; metabolism ; Glioma ; pathology ; Human Umbilical Vein Endothelial Cells ; Humans ; JNK Mitogen-Activated Protein Kinases ; metabolism ; Neoplasms ; pathology ; Permeability ; Phosphorylation ; Rats ; Signal Transduction ; drug effects ; p38 Mitogen-Activated Protein Kinases ; metabolism
4.Borneol is an inducer of rat hepatic CYP2D activity in vivo.
Jing-ya CHEN ; Jun-jun WANG ; Mo-ran MENG ; Yong CHEN
Acta Pharmaceutica Sinica 2015;50(4):459-463
Borneol is a traditional Chinese medicine. In the past few years, many studies showed that borneol can improve the bioavailability of other drugs, promoting drugs to cross the blood-brain barrier, so the potential drug interactions between borneol and other medicines have attracted great attention, but the influence of borneol to CYP450 and its isoforms are rarely reported. In this research, male Wistar rats were orally administered by borneol for 7 days, then the mRNA and protein expression and the activities of CYP2D were detected, we also compared the pharmacokinetic parameters of CYP2D's specific substrate between control group and borneol group. The results show that borneol (33, 100 and 300 mg x kg(-1) x d(-1)) have no significant effect on CYP2D, while the activites of CYP2D increased 1.71, 1.97 and 2.89 times comparing to the control group. At the same time, borneol (300 mg x kg(-1) x d(-1)) caused the C(max) decreased 10.6% (P > 0.05), AUC(0-∞) decreased 27.5% (P < 0.01), CL/F increased 41.1% (P < 0.01), V(z)/F increased 23.1% (P > 0.05) of dextromethorphan. Our data provided that borneol speed up dextromethorphan's elimination in vivo. Since the activity of CYP2D can be induced by borneol, the metabolic interactions might happen when borneol and the substrate drug CYP2D are used together.
Animals
;
Aryl Hydrocarbon Hydroxylases
;
metabolism
;
Blood-Brain Barrier
;
Bornanes
;
pharmacology
;
Cytochrome P-450 Enzyme Inducers
;
pharmacology
;
Dextromethorphan
;
Drug Interactions
;
Liver
;
drug effects
;
enzymology
;
Male
;
Medicine, Chinese Traditional
;
RNA, Messenger
;
Rats
;
Rats, Wistar
5.Determination of borneol in Fufang Danshen intestinal adhesion pellets and study its in vitro dissolution in different dosage form.
Zhen WANG ; Shou-ying DU ; Yang LU ; Zhuang ZHAO ; Jie BAI ; Peng-yue LI ; Bo-yu DONG ; Qin DU ; Lin ZHANG
China Journal of Chinese Materia Medica 2015;40(16):3194-3199
The borneol was included with β-CD and prepared Fufang Danshen intestinal adhesion pellets. GC method for determination of borneol in Fufang Danshen intestinal adhesion pellets was established to study its in vitro dissolution and make a comparison with the Fufang Danshen tablet, in this way, the rationality of dosage form was evaluated. The first method of dissolution determination was used for determining the in vitro dissolution of borneol in Fufang Danshen intestinal adhesion pellets in artificial intestinal juice, and Fufang Danshen tablet in artificial gastric juice and intestinal juice, respectively. Result shows: the concentration of borneol in Fufang Danshen intestinal adhesion pellets and Fufang Danshen tablet was 0.79% and 0.80%, respectively. Its in vitro dissolution was nearly 70% within 12 h in Fufang Danshen intestinal adhesion pellets, and in Fufang Danshen tablet, the dissolution was about 60% within 20 min and more than 90% within 40 min, and in artificial gastric juice, was less than 20% within 40 min but more than 80% till 150 min. Research suggests that in comparison with Fufang Danshen tablet, in vitro dissolution of borneol in the Fufang Danshen intestinal adhesion pellets showed an obvious sustained release behavior. The borneol in Fufang Danshen intestinal adhesion pellets was included with β-CD and prepared enteric preparations. To some extent, the stimulation on stomach and intestinal mucosa can be reduced and safety can be improved.
Bornanes
;
adverse effects
;
chemistry
;
pharmacology
;
Chemistry, Pharmaceutical
;
methods
;
Dosage Forms
;
Drugs, Chinese Herbal
;
adverse effects
;
chemistry
;
pharmacology
;
Humans
;
Intestinal Mucosa
;
drug effects
;
metabolism
;
Models, Biological
;
Solubility
6.STUDIES ON THE CONSTITUENTS OF ARTEMISIA ANNUA L.
Tu YOUYOU ; Ni MUYUN ; Zhong YURONG ; Li LANNA ; Gui SHULIAN ; Zhang MUQUN ; Wang XIUZHEN ; Liang XIAOTIAN
Acta Pharmaceutica Sinica 2015;50(10):366-370
Six crystalline components were isolated from the lipophilic fraction of Artemisia annua L. They have been identified as four sesquiterpenes, one flavonol and one coumarin. Qinghaosu I and III are new sesquiterpenes. Five main constituents, camphene, iso-artemisia ketone, 1-camphor, β-carophyllene, and β-pinene were identified from the volatile oil of this herb.
Artemisia annua
;
chemistry
;
Artemisinins
;
chemistry
;
isolation & purification
;
Bridged Bicyclo Compounds
;
chemistry
;
isolation & purification
;
Camphor
;
chemistry
;
isolation & purification
;
Monoterpenes
;
chemistry
;
isolation & purification
;
Oils, Volatile
;
chemistry
;
Sesquiterpenes
;
chemistry
;
isolation & purification
;
Terpenes
;
chemistry
;
isolation & purification
7.Preparation and in vitro evaluation of borneol and folic acid co-modified doxorubicin loaded PAMAM drug delivery system.
Jing-jing LI ; Man-man GUO ; Shun-ping HAN ; Yue SUN ; Wei-dong FEI ; Xiu-iing XU ; Fan-zhu LI
Acta Pharmaceutica Sinica 2015;50(7):899-905
A novel targeting drug carrier (FA-BO-PAMAM) based on the PAMAM G5 dendrimer modified with borneol (BO) and folic acid (FA) molecules on the periphery and doxorubicin (DOX) loaded in the interior was designed and prepared to achieve the purposes of enhancing the blood-brain barrier (BBB) transportation and improving the drug accumulation in the glioma cells. 1H NMR was used to confirm the synthesis of FA-BO-PAMAM; its morphology and mean size were analyzed by dynamic light scattering (DLS) and transmission electron microscope (TEM). Based on the HBMEC and C6 cells, cytotoxicity assay, transport across the BBB, cellular uptake and anti-tumor activity in vitro were investigated to evaluate the properties of nanocarriers in vitro. The results showed that the nanocarrier of FA-BO-PAMAM was successfully synthesized, which was spherical in morphology with the average size of (22.28 ± 0.42) nm, and zeta potential of (7.6 ± 0.89) mV. Cytotoxicity and transport across the BBB assay showed that BO-modified conjugates decreased the cytotoxicity of PAMAM against both HBMEC and C6 cells and exhibited higher BBB transportation ability than BO-unmodified conjugates; moreover, modification with FA increased the total uptake of DOX by C6 cells and enhanced the cytotoxicity of DOX-polymer against C6 cells. Therefore, FA-BO-PAMAM is a promising nanodrug delivery system in employing PAMAM as a drug carrier and treatment for brain glioma.
Biological Transport
;
Blood-Brain Barrier
;
Bornanes
;
chemistry
;
Cell Line, Tumor
;
Dendrimers
;
Doxorubicin
;
pharmacology
;
Drug Carriers
;
chemistry
;
Drug Delivery Systems
;
Folic Acid
;
chemistry
;
Glioma
;
Humans
8.Biotransformation of (-)-alpha-Pinene by Whole Cells of White Rot Fungi, Ceriporia sp. ZLY-2010 and Stereum hirsutum.
Su Yeon LEE ; Seon Hong KIM ; Chang Young HONG ; Ho Young KIM ; Sun Hwa RYU ; In Gyu CHOI
Mycobiology 2015;43(3):297-302
Two white rot fungi, Ceriporia sp. ZLY-2010 (CER) and Stereum hirsutum (STH) were used as biocatalysts for the biotransformation of (-)-alpha-pinene. After 96 hr, CER converted the bicyclic monoterpene hydrocarbon (-)-alpha-pinene into alpha-terpineol (yield, 0.05 g/L), a monocyclic monoterpene alcohol, in addition to, other minor products. Using STH, verbenone was identified as the major biotransformed product, and minor products were myrtenol, camphor, and isopinocarveol. We did not observe any inhibitory effects of substrate or transformed products on mycelial growth of the fungi. The activities of fungal manganese-dependent peroxidase and laccase were monitored for 15 days to determine the enzymatic pathways related to the biotransformation of (-)-alpha-pinene. We concluded that a complex of enzymes, including intra- and extracellular enzymes, were involved in terpenoid biotransformation by white rot fungi.
Biotransformation*
;
Camphor
;
Enzymes
;
Fungi*
;
Laccase
;
Peroxidase
9.Impact of drug molecules on HP-β-CD compound inclusion.
Dan-Dan TANG ; Na LI ; Li-Wen WANG ; Ji-Fen ZHANG ; Xiao-Yu XU
China Journal of Chinese Materia Medica 2014;39(15):2893-2899
To study the interaction of drugs of different properties, namely puerarin, borneol and catalpol in the process of in- clusion, in order to explore the inclusion regularity of multi-component and multi-property traditional Chinese medicine compound in- clusions. With HP-β-CD as the inclusion material, the freeze-drying method was used to prepare the inclusion. The inclusion between puerarin, borneol and catalpol was tested by measuring the inclusion concentration, DSC and X-ray diffraction. According to the find- ings, when insoluble drugs puerarin and borneol were included simultaneously, and puerarin was overdosed, puerarin included was almost equal to puerarin included, and borneol was not included. When puerarin was under-dosed, and HP-β-CD was overdosed, borne- ol was included, and the simultaneous inclusion was lower than the separate inclusion of borneol. When water-soluble drug catalpol was jointly included with puerarin or borneol, the simultaneous inclusion was almost the same with their separate inclusion, without charac- teristic peak of catalpol in DSC and X-ray diffraction patterns. There is a competition in the simultaneous inclusion between water-solu- ble drugs puerarin and borneol and a stronger competition in puerarin. The water-soluble drug catalpol could be included with HP-β-CD with no impact on the inclusion of puerarin or borneol.
2-Hydroxypropyl-beta-cyclodextrin
;
Bornanes
;
chemistry
;
therapeutic use
;
Brain Ischemia
;
drug therapy
;
Drug Compounding
;
methods
;
Freeze Drying
;
Iridoid Glucosides
;
chemistry
;
therapeutic use
;
Isoflavones
;
chemistry
;
therapeutic use
;
Solubility
;
beta-Cyclodextrins
;
chemistry
10.Acute toxicity assessment of camphor in biopesticides by using Daphnia magna and Danio rerio.
Eun Chae YIM ; Hyeon Joe KIM ; Seong Jun KIM
Environmental Health and Toxicology 2014;29(1):e2014008-
OBJECTIVES: An ecofriendly alternative to chemical pesticides is bio-pesticides, which are derived from natural sources. The interest in bio-pesticides is based on the disadvantages associated with chemical pesticides. METHODS: We conducted acute toxicity assessments of camphor, a major component of bio-pesticides, by using Daphnia magna (D. magna) as well as assessed the morphological abnormalities that occurred in Danio rerio (D. rerio) embryos. RESULTS: The median effective concentration of camphor on D. magna after 48 hours was 395.0 muM, and the median lethal concentration on D. rerio embryos after 96 hours was 838.6 muM. The no observed effect concentration and predicted no effect concentration of camphor on D. magna, which was more sensitive than D. rerio, were calculated as 55.2 muM and 3.95 muM, respectively. Morphological abnormalities in D. rerio embryos exposed to camphor increased over time. Coagulation, delayed hatching, yolk sac edema, pericardial edema, and pigmentation of embryos mainly appeared between 24 and 48 hours. Further, symptoms of scoliosis and head edema occurred after 72 hours. In addition, bent tails, ocular defects and collapsed symptoms of fertilized embryonic tissue were observed after 96 hours. CONCLUSIONS: The camphor toxicity results suggest that continuous observations on the ecosystem are necessary to monitor toxicity in areas where biological pesticides containing camphor are sprayed.
Camphor*
;
Daphnia*
;
Ecosystem
;
Edema
;
Embryonic Structures
;
Head
;
Pesticides
;
Pigmentation
;
Scoliosis
;
Yolk Sac
;
Zebrafish*

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