1.Comparative analysis of the intestinal microbial flora diversity of adult and young African lions
Xiaoying JIA ; Wei WANG ; Wenlong DONG ; Jiazhen WANG ; Shixin ZHU ; Yujie LOU ; Yunhang GAO
Chinese Journal of Veterinary Science 2017;37(8):1507-1511
In this study,the intestinal microbial flora diversity of adult and young African lions in the same breeding environment was detected by PCR-DGGE technique.Total bacterial DNA was extracted and 16S rDNA V3 region was amplified,then conducting PCR-DGGE.Subsequently,the specific bands of DGGE were cloned and sequenced.The bacterial species were identified by comparing the sequence through BLAST.The results indicated that the intestinal microbial flora of adult African lions includes Clostridium,Lachnospiraceae bacterium,Anaerovorax,Lactococcus,Peptostreptococcus and Blautia.While the intestinal microbial flora of young African lions is lesser,most bacteria are common to adult and young lions,such as Bacteroidetes bacterium and rumen bacterium.The UPGMA clustering analysis of the DGGE fingerprint showed the similarities of the bacteria structures between adult and young African lions were only 34%.These results revealed that the intestinal microbial flora has significant difference in different stages of African lions.This study lays a foundation for the development of microecological agents in different growth stages of wild animals.
2.Study on the effects and mechanism of Guiling Gao on the activity state of rats with damp-heat syndrome
Ling SONG ; Han LI ; Yunhang GAO ; Tengfei CHEN ; Hongping HOU ; Bo PENG ; Guangping ZHANG ; Zuguang YE
International Journal of Traditional Chinese Medicine 2023;45(1):47-53
Objective:To investigate the effects of Guiling Gao on body temperature, gastrointestinal motility, gastrointestinal hormones, Th1/Th2 cytokines and water metabolism in rats with damp-heat syndrome.Methods:Totally 60 SD rats were randomly divided into control group, model group, mosapride group, Guiling Gao low dose group (3.4 g/kg), medium dose group (6.8 g/kg) and high dose group (13.6 g/kg) according to random number table method, with 10 rats in each group. Except for the blank group, the other groups adopted the method of "environmental factors + fat and sweet diet + biological factors" to prepare the rat model of damp heat syndrome of febrile diseases. After modeling, they were administered by gavage for 7 days. During the experiment, the general state, body weight and body temperature were observed, the gastric residue rate of rats was calculated by weighing method, the intestinal propulsion rate of rats was calculated by charcoal propulsion method, and the levels of serum motilin (MTL), gastrin (GAS), somatostatin (SS), substance P (SP),IL-4 and interferon-γ (IFN-γ) were detected by ELISA, and the changes of aquaporin 3 (AQP3) mRNA transcription level were detected by real-time PCR.Results:Compared with the model group, the weight of rats in Guiling Gao high dose group increased after experiment of 22 days ( P<0.05), and body temperature of rats in Guiling Gao medium and high dose group decreased in 19-20 day ( P<0.01); and the gastric emptying rate and the small intestine propulsion rate of small intestine in Guiling Gao medium and high dose group increased significantly ( P<0.01 or P<0.05); the serum MTL, GAS and SP levels increased ( P<0.01 or P<0.05), and SS decreased ( P<0.01 or P<0.05) in the Guiling Gao medium and high dose groups; The levels of IL-4, IFN-γ and IFN-γ/IL-4 ratio decreased ( P<0.01); The expression of AQP3 mRNA (1.16 ± 0.25 vs. 0.23 ± 0.01) in the Guiling Gao high dose group was up-regulated ( P<0.01). Conclusions:Guiling Gao can effectively improve the activity state of damp-heat syndrome model rats caused by complex factors. This mechanism may be related to enhancing gastrointestinal movement, increasing gastrointestinal hormone secretion, restoring the dynamic balance of immune system Th1/Th2 and promoting the transport of water from intestinal cavity.
3.Detoxification Mechanism of Combined Chebulae Fructus, Glycyrrhizae Radix et Rhizoma and Prepared Aconiti Kusnezoffii Radix Cocta in Regulating Cardiac Metabolic Enzyme CYP2J3
Han LI ; Ling SONG ; Yunhang GAO ; Tengfei CHEN ; Hongping HOU ; Bo PENG ; Zuguang YE ; Guangping ZHANG
Chinese Journal of Experimental Traditional Medical Formulae 2023;29(17):88-95
ObjectiveTo investigate the detoxification mechanism of Chebulae Fructus, Glycyrrhizae Radix et Rhizoma and Prepared Aconiti Kusnezoffii Radix Cocta, and their effective components ellagic acid, liquiritin and aconitine based on cardiac cytochrome P450 (CYP450) system. MethodIn in vivo experiments, rats were randomly divided into control group, prepared Aconiti Kusnezoffii Radix Cocta group (0.25 g·kg-1), Chebulae Fructus group (0.252 g·kg-1), Glycyrrhizae Radix et Rhizoma group (0.25 g·kg-1) and combination group (0.25 g·kg-1 Chebulae Fructus+0.25 g·kg-1 Glycyrrhizae Radix et Rhizoma+0.25 g·kg-1 prepared Aconiti Kusnezoffii Radix Cocta, with prepared Aconiti Kusnezoffii Radix Cocta as standard). After 8 days of administration, creatine kinase (CK) and lactate dehydrogenase (LDH) in rats were detected to observe the pathological changes of heart tissue. Real-time PCR and Western blot were performed to detect the mRNA and protein expressions of CYP2J3, respectively. In in vitro experiments, control group, aconitine group, ellagic acid group, liquiritin group and combination group (aconitine+ellagic acid+liquiritin) were set, and their effects on cell number, DNA content, reactive oxygen species (ROS) and mitochondrial membrane potential (MMP) were detected by high content analysis. The changes in the mRNA and protein expressions of CYP2J3 were also observed. ResultIn vivo experiments, compared with the control group, the prepared Aconiti Kusnezoffii Radix Cocta group had increased CK and LDH in serum (P<0.05, P<0.01), while the combination group had decreased activities of CK and LDH. Additionally, pathological staining results showed that Chebulae Fructus and Glycyrrhizae Radix et Rhizoma reduced the cardiac toxicity caused by prepared Aconiti Kusnezoffii Radix Cocta. Real-time PCR found that compared with the control group, prepared Aconiti Kusnezoffii Radix Cocta down-regulated the mRNA level of CYP2J3 (P<0.05), while up-regulated that expression when used in combination with Chebulae Fructus and Glycyrrhizae Radix et Rhizoma (P<0.01). The protein and mRNA translation levels were basically consistent. In vitro experiments, high content analysis revealed that there was a decrease in the cell number, DNA content and MMP fluorescence value of the aconitine group (P<0.01) and the combination group (P<0.05, P<0.01), and the fluorescence value of the combination group was higher than that of the aconitine group. Moreover, aconitine down-regulated the mRNA level of CYP2J3 (P<0.05), but the down-regulating ability of aconitine was reversed in the combination group (P<0.05). ConclusionThe detoxification mechanism of combined Chebulae Fructus, Glycyrrhizae Radix et Rhizoma and prepared Aconiti Kusnezoffii Radix Cocta is mainly that the combination of ellagic acid, liquiritin and aconitine can up-regulate the expression of CYP2J3, and promote the metabolism of arachidonic acid (AA) to produce epoxyeicosatrienoic acids (EETs), thus reducing the cardiac toxicity, and this effect may start from the transcriptional link.
4.Mechanism of Nephrotoxicity Induced by Ecliptasaponin A Based on Computational Toxicology
Han LI ; Ling SONG ; Yunhang GAO ; Tengfei CHEN ; Suzhen MU ; Weiya CHEN ; Guangping ZHANG ; Wang HUO
Chinese Journal of Experimental Traditional Medical Formulae 2024;30(23):72-80
ObjectiveTo predict the potential nephrotoxic components in traditional Chinese medicine health food products based on the Traditional Chinese Medicine Toxicity Alert System and Basic Toxicology Database (TCMTAS-BTD), screen and validate the predicted components by cell and animal experiments, and decipher the mechanism of nephrotoxicity by network pharmacology. MethodTCMTAS-BTD was utilized to predict the toxicity of 3 540 compounds found in the catalogue of traditional Chinese health food ingredients. In the cell experiment, the top 5 compounds with high toxicity probability were screened by measurement of cell proliferation and viability (CCK-8) and high-content screening. ICR mice were randomized into a control group, a low-dose (2.91 mg·kg-1·d-1) ecliptasaponin A, and a high-dose (29.1 mg·kg-1·d-1) ecliptasaponin A group, with 10 mice in each group, and treated continuously for 28 days. During the experiment, the general conditions of the rats were observed, and the kidney index was calculated. The levels of serum creatinine (SCr) and blood urea nitrogen (BUN) in the serum as well as the content of malondialdehyde (MDA) and superoxide dismutase (SOD) in the renal tissue were measured. The pathological changes of the kidney were observed. Network pharmacology was employed to predict the potential pathways of nephrotoxicity. Finally, the pathway-associated proteins were validated by Western blot. ResultThe top 5 compounds with high probability of nephrotoxicity were ecliptasaponin A, chrysophanol, rutaecarpine, tanshinoneⅠ, and geniposidic acid. In the cell experiment, CCK-8 results showed that 10 μmol·L-1 ecliptasaponin A, 60 μmol·L-1 chrysophanol, 40 μmol·L-1 rutaecarpine, and 20 μmol·L-1 tanshinone I altered the viability of HK-2 cells. High-content analysis showed that 10 μmol·L-1 ecliptasaponin A, chrysophanol, rutaecarpine, and tanshinone Ⅰ reduced the cell number (P<0.05, P<0.01). The animal experiment showed that the mice in the high-dose ecliptasaponin A group presented slow movement, slow weight gain (P<0.01), increased kidney index (P<0.01), elevated SCr, BUN, and MDA levels (P<0.01), and lowered SOD level (P<0.01). Mild histopathological changes were observed in the high-dose ecliptasaponin A group. The network pharmacology results showed that the key targets of nephrotoxicity induced by ecliptasaponin A were mainly enriched in the phosphatidylinositol 3-kinase (PI3K)/protein kinase B (Akt) signaling pathway, prostatic cancer and lipid and atherosclerosis pathways. Western blot results verified that high dose of ecliptasaponin A raised the phosphorylation levels of PI3K and Akt (P<0.01). ConclusionOn day 28 of administration, 29.1 mg·kg-1 ecliptasaponin A was found to induce renal injury in rats. The mechanism may be related with the PI3K/Akt signaling pathway, which implied that excessive and prolonged usage of Ecliptae Herba may increase the incidence of adverse drug reactions.
5.16S rDNA Sequencing Reveals Effect of Tanreqing Injection on Pulmonary Flora in Rat Model of COPD
Qian LUO ; Rui FU ; Bo PENG ; Weiya CHEN ; Xiaolu WEI ; Tengfei CHEN ; Ling SONG ; Yunhang GAO ; Guangping ZHANG ; Hongping HOU
Chinese Journal of Experimental Traditional Medical Formulae 2024;30(23):98-103
ObjectiveTo study the effect of Tanreqing injection (TRQ) on the pulmonary flora in the rat model of chronic obstructive pulmonary disease (COPD). MethodWistar rats were randomized into control, model, and TRQ groups. The rats in other groups except the control group were treated by smoking combined with intratracheal instillation of lipopolysaccharide for the modeling of COPD. The TRQ group was intraperitoneally injected with TRQ (2 g·kg-1). At the end of the experiment, after blood collection from the abdominal aorta of the rats, the lung tissue was collected for hematoxylin-eosin and picric sirius red staining to reveal the pathological changes. The lung lavage fluid was collected, and the diversity and relative abundance of lung flora in different groups were analyzed by 16S rDNA amplicon sequencing. ResultThe lungs of the control group were normal, and those of the model group showed neutrophil infiltration, telangiectasia, lung hemorrhage and emphysema in individual cases, and thickening of collagen fibers in the trachea. Compared with the model group, the TRQ group showed significantly improved lungs and recovered collagen fibers. The MLI analysis showed that compared with the control group, the model group showcased increased alveolar space (P<0.01), which was reduced in the TRQ group (P<0.05). Compared with the control group, the model group showed increased wall thickness (P<0.01), and the increase was attenuated in the TRQ group (P<0.01). TRQ increased the Simpson index and altered the α diversity of pulmonary flora. The results of principal co-ordinate analysis showed that TRQ changed the β diversity and reduced the β diversity index of pulmonary flora. At the genus level, the model group showed increased relative abundance of g_Bacillus and g_Brevundimonas and decreased relative abundance of g_Pseudomonas, compared with the control group. After treatment with TRQ, the relative abundance of g_Stenotrophomonas increased, and that of g_Bacillus decreased. The LEfSe of differential taxa between groups showed that the modeling increased the relative abundance of g_Lachnospiraceae_NK4A136_group, and TRQ treatment increased the relative abundance of g_Rhodococcus and g_Stenotrophomonas. ConclusionTRQ can regulate the diversity of pulmonary flora and restore the balance of bacterial genera in the rat model of COPD, which may be one of the mechanisms of the prevention and treatment of COPD with TRQ.
6.Construction and Experimental Validation of Chemically-induced Cough Model Based on Cough Waveforms
Yunhang GAO ; Ling JIA ; Han LI ; Ling SONG ; Cong GUO ; Tengfei CHEN ; Hongping HOU ; Weiya CHEN ; Guangping ZHANG
Chinese Journal of Experimental Traditional Medical Formulae 2024;30(23):230-236
ObjectiveTo construct a cough model induced by chemical stimuli by whole-body plethysmography (WBP) for counting coughs based on cough waveforms, and use this model to explore the antitussive effect of GK-A. MethodDifferent chemical stimuli were used to induce coughs in mice or guinea pigs. Respiratory waveforms were monitored by WBP, and the recognizable and typical cough waveforms were selected for cough counting. Guinea pigs were induced to cough with different concentrations of citric acid or capsaicin, and cough waveforms were used to optimize the stimulation conditions. The optimized guinea pig model of cough was validated with dextromethorphan, and the optimized guinea pig model of capsaicin-induced cough was used to evaluate the antitussive effect of GK-A. ResultWBP could count the coughs induced by capsaicin and citric acid in guinea pigs by recognizable and typical respiratory waveforms. The optimized stimulation conditions were capsaicin concentration of 100 µmol·L-1 and nebulization for 2 min. The validation results showed that compared with the model group, the dextromethorphan group of guinea pigs had reduced coughs (P<0.05) and prolonged cough latency (P<0.01). GK-A prolonged the cough latency (P<0.05) and reduced coughs (P<0.05) in the mouse model of ammonia-induced cough. In the guinea pig model of capsaicin-induced cough, GK-A prolonged cough latency (P<0.05), reduced coughs (P<0.05), and decreased substance P (SP) content in the guinea pig serum (P<0.05, P<0.01). ConclusionA guinea pig model of capsaicin-induced cough was successfully established based on cough waveform counting, which provided an objective and accurate cough counting method. GK-A has antitussive effects, possibly by inhibiting the neuropeptide SP.