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1.
J Ethnopharmacol ; 325: 117812, 2024 May 10.
Article in English | MEDLINE | ID: mdl-38301984

ABSTRACT

ETHNOPHARMACOLOGICAL RELEVANCE: Diabetic ulcers represent a chronic condition characterized by prolonged hyperglycemia and delayed wound healing, accompanied by endocrine disorders, inflammatory responses, and microvascular damage in the epidermal tissue, demanding effective clinical treatment approaches. For thousands of years, ancient Chinese ethnopharmacological studies have documented the use of Poria cocos (Schw.) Wolf in treating diabetic ulcers. Recent research has substantiated the diverse pharmacological effects of Poria cocos (Schw.) Wolf, including its potential to alleviate hyperglycemia and exhibit anti-inflammatory, antioxidant, and immune regulatory properties, which could effectively mitigate diabetic ulcer symptoms. Furthermore, being a natural medicine, Poria cocos (Schw.) Wolf has demonstrated promising therapeutic effects and safety in the management of diabetic ulcers, holding significant clinical value. Despite its potential clinical efficacy and applications in diabetic ulcer treatment, the primary active components and underlying pharmacological mechanisms of Poria cocos (Schw.) Wolf remains unclear. Further investigations are imperative to establish a solid foundation for drug development in this domain. AIM OF THE STUDY AND MATERIALS AND METHODS: In this study, we aimed to identify the active compounds and potential targets of Poria cocos (Schw.) Wolf using UHPLC-Q-TOF-MS and TCMSP databases. Additionally, we attempt to identify targets related to diabetic ulcers. Following enrichment analysis, a network of protein-protein interactions was constructed to identify hub genes based on the common elements between the two datasets. To gain insights into the binding activities of the hub genes and active ingredients, molecular docking analysis was employed. Furthermore, to further validate the therapeutic effect of Poria cocos (Schw.) Wolf, we exerted in vitro experiments using human umbilical vein vascular endothelial cells and human myeloid leukemia monocytes (THP-1). The active ingredient of Poria cocos (Schw.) Wolf was applied in these experiments. Our investigations included various assays, such as CCK-8, scratch test, immunofluorescence, western blotting, RT-PCR, and flow cytometry, to explore the potential of Poria cocos (Schw.) Wolf triterpenoid extract (PTE) in treating diabetic ulcers. RESULTS: The findings here highlighted PTE as the primary active ingredient in Poria cocos (Schw.) Wolf. Utilizing network pharmacology, we identified 74 potential targets associated with diabetic ulcer treatment for Poria cocos (Schw.) Wolf, with five hub genes (JUN, MAPK1, STAT3, AKT1, and CTNNB1). Enrichment analysis revealed the involvement of multiple pathways in the therapeutic process, with the PI3K-AKT signaling pathway showing significant enrichment. Through molecular docking, we discovered that relevant targets within this pathway exhibited strong binding with the active components of Poria cocos (Schw.) Wolf. In vitro experiments unveiled that PTE (10 mg/L) facilitated the migration of human umbilical vein vascular endothelial cells (P < 0.05). PTE also increased the expression of CD31 and VEGF mRNA (P < 0.05) while activating the expressions of p-PI3K and p-AKT (P < 0.05). Moreover, PTE demonstrated its potential by reducing the expression of IL-1ß, IL-6, TNF-α, and NF-κB mRNA in THP-1 (P < 0.05) and fostering M2 macrophage polarization. These results signify the potential therapeutic effects of PTE in treating diabetic ulcers, with its beneficial actions mediated through the PI3K-AKT signaling pathway. CONCLUSIONS: PTE is the main active ingredient in Poria cocos (Schw.) Wolf that exerts therapeutic effects. Through PI3K-AKT signaling pathway activation and inflammatory response reduction, PTE promotes angiogenesis, thereby healing diabetic ulcers.


Subject(s)
Antineoplastic Agents , Diabetes Mellitus , Drugs, Chinese Herbal , Hyperglycemia , Triterpenes , Wolfiporia , Wolves , Animals , Humans , Proto-Oncogene Proteins c-akt , Wolfiporia/chemistry , Phosphatidylinositol 3-Kinases , Ulcer , Molecular Docking Simulation , Endothelial Cells , Signal Transduction , Antineoplastic Agents/pharmacology , Triterpenes/pharmacology , Triterpenes/therapeutic use , Triterpenes/analysis , RNA, Messenger , Diabetes Mellitus/drug therapy , Drugs, Chinese Herbal/pharmacology , Drugs, Chinese Herbal/therapeutic use
2.
Fitoterapia ; 175: 105856, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38354820

ABSTRACT

Poria cocos (Schw.) Wolf (P. cocos) has been widely used as medical plant in East Asia with remarkable anti-Alzheimer's disease (anti-AD) activity. However, the underlying mechanisms are still confused. In this study, based on the ß-Amyloid deposition hypothesis of AD, an integrated analysis was conducted to screen and separation 5-lipoxygenase (5-LOX) inhibitors from triterpenoids of P. cocos and investigate the anti-AD mechanisms, containing bioaffinity ultrafiltration UPLC-Q-Exactive, molecular docking, and multiple complex networks. Five triterpenoids were identified as potential 5-LOX inhibitors, including Tumulosic acid, Polyporenic acid C, 3-Epi-dehydrotumulosic acid, Pachymic acid and Dehydrotrametenolic acid. Five potential 5-LOX inhibitors were screened by ultrafiltration affinity assay in P. cocos. The molecular docking simulation results are consistent with the ultrafiltration experimental results, which further verifies the accuracy of the experiment. The commercial 5-LOX inhibitor that Zileuton was used as a positive control to evaluate the inhibitory effect of active ingredients on 5-LOX. Subsequently, the established separation method allowed the five active ingredients (Pachymic acid, 3-Epi-dehydrotumulosic acid, Dehydrotrametenolic acid, Tumulosic acid and Polyporenic acid C) with high purity to be isolated. Targeting network pharmacology analysis showed that five active ingredients correspond to a total of 286 targets. Kyoto encyclopedia of genes and genomes (KEGG) enrichment analysis found that target cells were mainly enriched in Pathways in cancer, Lipid and atherosclerosis. Our results indicate that P. cocos extract has the potential to be used in the prevention and treatment of neurodegenerative diseases. This will help elucidate the mechanisms of action of various medicinal plants at the molecular level and provide more opportunities for the discovery and development of new potential treatments from health food resources.


Subject(s)
Lipoxygenase Inhibitors , Molecular Docking Simulation , Triterpenes , Wolfiporia , Triterpenes/pharmacology , Triterpenes/isolation & purification , Triterpenes/chemistry , Lipoxygenase Inhibitors/pharmacology , Lipoxygenase Inhibitors/isolation & purification , Wolfiporia/chemistry , Molecular Structure , Ultrafiltration , Arachidonate 5-Lipoxygenase/metabolism , Chromatography, High Pressure Liquid , Phytochemicals/pharmacology , Phytochemicals/isolation & purification , Plants, Medicinal/chemistry , Network Pharmacology
3.
Int J Med Mushrooms ; 25(12): 65-80, 2023.
Article in English | MEDLINE | ID: mdl-37947065

ABSTRACT

The optimal cultivation conditions and chemical components of Poria cocos fruiting bodies were examined by employing the single factor and response surface methods to screen for optimal conditions for artificial cultivation. The differences in chemical composition among the fruiting bodies, fermented mycelium, and sclerotia of P. cocos were compared using UV spectrophotometry and high-performance liquid chromatography (HPLC). The optimal growth conditions for P. cocos fruiting bodies were 28.5°C temperature, 60% light intensity, and 2.5 g pine sawdust, which resulted in the production of numerous basidiocarps and basidiospores under microscopic examination. Polysaccharides, triterpenoids, and other main active components of P. cocos were found in the fruiting bodies, sclerotia, and fermented mycelium. The triterpenoid components of the fruiting bodies were consistent with those of the sclerotia. The content of pachymic acid in the fruiting bodies was significantly higher than that in the sclerotia, with a value of 33.37 ± 0.1902 mg/g. These findings provide novel insights into the sexual breeding and comprehensive development and utilization of P. cocos.


Subject(s)
Wolfiporia , Wolfiporia/chemistry , Chromatography, Gas , Mycelium/chemistry , Chromatography, High Pressure Liquid , Fruiting Bodies, Fungal
4.
Molecules ; 28(22)2023 Nov 08.
Article in English | MEDLINE | ID: mdl-38005201

ABSTRACT

Neurogenesis in the adult brain comprises the entire set of events of neuronal development. It begins with the division of precursor cells to form a mature, integrated, and functioning neuronal network. Adult neurogenesis is believed to play an important role in animals' cognitive abilities, including learning and memory. In the present study, significant neuronal differentiation-promoting activity of 80% (v/v) ethanol extract of P. cocos (EEPC) was found in Neuro-2a cells and mouse cortical neural stem/progenitor cells (NSPCs). Subsequently, a total of 97 compounds in EEPC were identified by UHPLC-Q-Exactive-MS/MS. Among them, four major compounds-Adenosine; Choline; Ethyl palmitoleate; and L-(-)-arabinitol-were further studied for their neuronal differentiation-promoting activity. Of which, choline has the most significant neuronal differentiation-promoting activity, indicating that choline, as the main bioactive compound in P. cocos, may have a positive effect on learning and memory functions. Compared with similar research literature, this is the first time that the neuronal differentiation-promoting effects of P. cocos extract have been studied.


Subject(s)
Biological Products , Neurons , Wolfiporia , Animals , Mice , Cell Differentiation , Choline , Ethanol , Neurons/drug effects , Stem Cells , Tandem Mass Spectrometry , Wolfiporia/chemistry , Biological Products/pharmacology
5.
Carbohydr Res ; 534: 108960, 2023 Dec.
Article in English | MEDLINE | ID: mdl-37769376

ABSTRACT

Most reported polysaccharides from Poria cocos (PCPs) in traditional Chinese medicine decoctions were water-soluble heteropolysaccharides while the water-insoluble PCPs were scarcely researched due to the poor water-solubility. In this study, a water-insoluble polysaccharide with high yield of 59%, and high purity with a glucan content of 98.8%, was isolated by diluted sodium hydroxide at low temperature and coded as PCPA. The chemical structure of PCPA was identified as a liner ß-glucan with 1, 3-linked glycosidic bond by the fourier infrared spectrum (FT-IR), ion chromatography (ICP), gas chromatography and mass spectrometry (GC-MS), and nuclear magnetic resonance (NMR) measurements. Importantly, PCPA was successfully used to construct hydrogels (PCPA-Gs) with good thermal stability, water retention ability and swelling property through simple physical cross-linking, due to the abundance of hydroxyl groups on glucan chains. Moreover, the rheology analysis of PCPA-Gs showed a rapid transition between gel and sol as well as the shear-thinning property. The hydrogel developed in this study holds promise for applications in the food, pharmaceutical, and cosmetic fields.


Subject(s)
Wolfiporia , beta-Glucans , Wolfiporia/chemistry , Water , Hydrogels , Spectroscopy, Fourier Transform Infrared , Polysaccharides/chemistry
6.
Int J Biol Macromol ; 235: 123925, 2023 Apr 30.
Article in English | MEDLINE | ID: mdl-36871682

ABSTRACT

Poria cocos (PC) refers to a fungal species which is also known as "Fuling" in China. For >2000 years, PC has demonstrated its therapeutic values as a kind of traditional medicine. It is believed that the various biological benefits created by PCs highly rely on the Poria cocos polysaccharide (PCP). This review recapitulates the recent progress made in PCP in four aspects: i) the methods of extraction, separation, and purification, ii) structural characterization and identification, iii) the related bioactivities and mechanism of action, and iv) structure-activity relationships. Through discussion about the objective as mentioned above, it can be found out that PCP is categorized into water-soluble polysaccharide (WPCP) and alkaline-soluble polysaccharide (APCP), which are totally different in structure and bioactivity. The structures of WPCP are multiplicity whose backbone can be (1,6)-α-galactan and (1,3)-ß-mannoglucan etc. to perform various bioactivities including anti-tumor effect, anti-depressant effect, anti-Alzheimer effect, anti-atherosclerosis effect, hepatoprotection etc. The structures of APCP are much more single with backbone of (1,3)-ß-D-glucan and the studies of activity concentrate on anti-tumor effect, anti-inflammatory effect and immunomodulation. Besides, the future opportunities of WPCP are primary structure identification. For APCP, scholars can focus on the conformation of polysaccharide and its relationship with activity.


Subject(s)
Neoplasms , Poria , Wolfiporia , Antioxidants/chemistry , Neoplasms/drug therapy , Polysaccharides/chemistry , Poria/chemistry , Water , Wolfiporia/chemistry , Glucans/chemistry
7.
Molecules ; 27(19)2022 Sep 27.
Article in English | MEDLINE | ID: mdl-36234924

ABSTRACT

(1)Objective: In this study, a quantitative analysis of chemical groups (the triterpenoids, water-soluble polysaccharides, and acidic polysaccharides) and quantitative high liquid performance chromatography (HPLC) fingerprint of Poria cocos (Schw.) Wolf (PC) for quality control was developed. (2) Methodology: First, three main chemical groups, including triterpenoids, water-soluble polysaccharides, and acidic polysaccharides, in 16 batches of PC were evaluated by ultraviolet spectrophotometry. Afterward, the quantitative fingerprint of PC was established, and the alcohol extract of PC was further evaluated. The method involves establishing 16 batches of PC fingerprints by HPLC, evaluating the similarity of different batches of PC, and identifying eight bioactive components, including poricoic acid B (PAB), dehydrotumulosic acid (DTA), poricoic acid A (PAA), polyporenic acid C (PAC), 3-epidehydrotumulosic acid (EA), dehydropachymic acid (DPA), dehydrotrametenolic acid (DTA-1), and dehydroeburicoic acid (DEA), in PC by comparison with the reference substance. Combined with the quantitative analysis of multi-components by a single marker (QAMS), six bioactive ingredients, including PAB, DTA, PAC, EA, DPA, and DEA, in PC from different places were established. In addition, the multivariate statistical analyses, such as principal component analysis and heatmap hierarchical clustering analysis are more intuitive, and the visual analysis strategy was used to evaluate the content of bioactive components in 16 batches of PC. Finally, the analysis strategy of three main chemical groups in PC was combined with the quantitative fingerprint strategy, which reduced the error caused by the single method. (3) Results: The establishment of a method for the quantification of chemical groups and quantitative HPLC fingerprint of PC was achieved as demonstrated through the quantification of six triterpenes in PC by a single marker. (4) Conclusions: Through qualitative and quantitative chemical characterization, a multi-directional, simple and efficient routine evaluation method of PC quality was established. The results reveal that this strategy can provide an analytical method for the quality evaluation of PC and other Chinese medicinal materials.


Subject(s)
Drugs, Chinese Herbal , Poria , Triterpenes , Wolfiporia , Chromatography, High Pressure Liquid/methods , Plant Extracts , Poria/chemistry , Triterpenes/chemistry , Water , Wolfiporia/chemistry
8.
Glycoconj J ; 39(4): 475-486, 2022 08.
Article in English | MEDLINE | ID: mdl-35840804

ABSTRACT

Poria cocos, a famous traditional Chinese medicine and a well-known food or food supplement, has shown therapeutic potential against cancer and the uneasiness of the mind. In addition, polysaccharides (PCPs) in this fungus were found to be various bioactive. In this work, one such PCP, PCP-1, extracted by deep eutectic solvent (DES) and separated using Sephadex G-15 columns, was characterized using GC-MS, HPGPC, FT-IR, and NMR, while also tested for physicochemical properties. Results indicated that PCP-1 contained 96.89 ± 3.21% total sugars and was a glucan with molecular weight of 3.2 kD. The main glycosidic linkage was 1,3-linked Glcp with 96.82 mol% content and a triple helix structure, and ß-D-Glcp-(1 → linkage connected to the main chain through an O-6 atom was the backbone structure. In terms of the physicochemical property, PCP-1 was soluble in water, but not in organic solvent, and processed a relative high water-holding capacity (8.64 ± 0.14 g/g) and low oil-holding capacity (2.52 ± 0.21 g/g). In addition, in vitro, PCP-1 was found to have the ability of scavenging DPPH, hydroxyl free radical, superoxide anion radical and reducing ferric at different levels. This research would be useful for the further application of PCP-1.


Subject(s)
Wolfiporia , Antioxidants/chemistry , Antioxidants/pharmacology , Deep Eutectic Solvents , Hydroxyl Radical , Polysaccharides/chemistry , Solvents , Spectroscopy, Fourier Transform Infrared , Water , Wolfiporia/chemistry
9.
Food Funct ; 13(12): 6648-6664, 2022 Jun 20.
Article in English | MEDLINE | ID: mdl-35642970

ABSTRACT

Poria cocos (P. cocos) has been traditionally used as folk medicine and functional food in China for more than 2000 years. The water-soluble polysaccharide is the main component of P. cocos decoction. The effects and mechanisms of the water-soluble polysaccharide from P. cocos (PCWP) were investigated in chronic sleep deprivation (CSD)-induced anxiety in rats. CSD induced anxiety, gut dysbiosis, and inflammatory responses, and reduced neurotransmitter levels, whereas PCWP intervention ameliorated anxiety-like behaviors, increased the levels of 5-hydroxytryptamine, dopamine, norepinephrine, and γ-aminobutyric acid in the hypothalamus, regulated gastrointestinal peptide levels, reduced inflammatory factors, and inhibited the tumor necrosis factor (TNF)-α/nuclear factor (NF)-κB signaling pathway in rats with CSD. The changes in the intestinal flora composition were determined using 16S rDNA sequencing, and indicated that PCWP significantly improved species richness and diversity in the intestinal flora of rats with anxiety, and adjusted the abundance of the following dysregulated bacteria closer to that of the normal group: Rikenellaceae_RC9_gut_group, Ruminococcus, Prevotellaceae_UCG-001, Prevotellaceae_NK3B31_group, Fusicatenibacter. Metabolomics was used to analyze fecal samples to identify significantly altered metabolites in the PCWP-treated groups. Thirty-eight PCWP-related metabolites and four metabolic pathways such as sphingolipid metabolism, taurine and hypotaurine metabolism, vitamin B6 metabolism, and glycerophospholipid metabolism were explored. The results of serum metabolomics showed that 26 biomarkers were significantly changed after PCWP intervention compared with the model group. The regulatory effects of metabolic pathway enrichment on sphingolipid, phenylalanine, and taurine and hypotaurine metabolism, and validation results showed that PCWP intervention regulated the activity of enzymes involved in the above metabolic pathways. A strong correlation between intestinal bacteria and potential biomarkers was found. Our findings present new evidence supporting the potential effect of PCWP in preventing the progression of anxiety by inhibiting the TNF-α/NF-κB signaling pathway, alleviating metabolic disorders, and ameliorating the gut microflora imbalance.


Subject(s)
Metabolic Diseases , Wolfiporia , Animals , Anxiety/drug therapy , Biomarkers/metabolism , Dysbiosis/microbiology , Intestinal Diseases/metabolism , NF-kappa B/genetics , NF-kappa B/metabolism , Polysaccharides/pharmacology , Rats , Signal Transduction , Sleep Deprivation , Sphingolipids , Taurine/pharmacology , Tumor Necrosis Factor-alpha/genetics , Tumor Necrosis Factor-alpha/pharmacology , Water/pharmacology , Wolfiporia/chemistry
10.
Molecules ; 27(11)2022 Jun 06.
Article in English | MEDLINE | ID: mdl-35684565

ABSTRACT

BACKGROUND: Poria cocos (P. cocos) is an important medicinal fungus in traditional Chinese medicine. Poria acid (PA), a triterpenoid compound, is an effective component of traditional Chinese medicine P. cocos. This experiment investigated the anti-gastric cancer biological activity of PA in vitro. METHODS: The effect of PA on the viability of gastric cancer cells was detected by the thiazolyl blue (MTT) assay. Cell adhesion assays were used to detect changes in the adhesion of cells treated after PA (0, 20, 40, and 80 µmol/L). The ability of cell invasion and migration were detected by Transwell assays and wound healing assays. A high-content imaging system was used to dynamically record the motility of the gastric cancer cells after PA (0, 20, 40, and 80 µmol/L) treatment. Western blotting was used to detect the expression of epithelial-mesenchymal transformation (EMT), invasion and migration related proteins. RESULTS: The MTT assay showed that the proliferation of gastric cancer cells was significantly inhibited after PA treatment. Cell adhesion experiments showed that the adhesion of gastric cancer cells was significantly decreased after PA treatment. Compared with the control group, the wound healing area of the gastric cancer cells treated with different concentrations of PA decreased. The Transwell assay showed that the number of gastric cancer cells passing through the cell membrane were significantly reduced after PA treatment. In addition, after PA treatment, the cells' movement distance and average movement speed were significantly lower than those of the control group. Finally, PA can significantly alter the expression of EMT-related proteins E-cadherin, N-cadherin, and Vimentin and decreased the expressions of metastasis-related proteins matrix metalloproteinase (MMP) 2, MMP-9 and tissue inhibition of matrix metalloproteinase (TIMP)1 in the gastric cancer cells. CONCLUSIONS: Triterpenoids from P. cocos have significant biological activity against gastric cancer, and the mechanism may be involved in the process of epithelial-mesenchymal transformation.


Subject(s)
Stomach Neoplasms , Triterpenes , Wolfiporia , Cadherins/metabolism , Cell Line, Tumor , Cell Movement , Epithelial-Mesenchymal Transition , Humans , Stomach Neoplasms/drug therapy , Stomach Neoplasms/metabolism , Triterpenes/pharmacology , Wolfiporia/chemistry
11.
J Nat Med ; 76(3): 675-679, 2022 Jun.
Article in English | MEDLINE | ID: mdl-35334033

ABSTRACT

Poria, the dried sclerotium of Wolfiporia cocos, is a medicinal mushroom that is widely used in traditional Japanese medicine. The fruit body of W. cocos is rarely found in the natural environment in Japan, therefore an optimized technique for fruit body formation is essential for producing new strains through crossbreeding and for biological research. Here, we developed a cultivation technique for fruit body formation of W. cocos using three strains collected from different areas of Japan. When mycelia were cultured on sawdust-based medium after liquid medium culture, all strains successfully formed fruit bodies as a brown honeycomb-like structure. Furthermore, we analyzed single nucleotide polymorphisms of the three strains using the STE3-like pheromone receptor protein gene, STE3.2, and found a genetic marker for discriminating one strain from the others. The results are expected to promote extensive studies on crossbreeding and domestic production of W. cocos.


Subject(s)
Wolfiporia , DNA/metabolism , Fruit/genetics , Japan , Mycelium/chemistry , Mycelium/metabolism , Wolfiporia/chemistry
12.
Am J Chin Med ; 50(2): 389-440, 2022.
Article in English | MEDLINE | ID: mdl-35300566

ABSTRACT

As an endemic species,Wolfiporia cocos (F.A. Wolf) Ryvarden & Gilb. is widely distributed, such as in China, Korea, Japan, and North America, which have had a dual-purpose resource for medicines and food for over 2000 years. The applications of W. cocos were used to treat diseases including edema, insomnia, spleen deficiency, and vomiting. What's more, there have been wide uses of such edible fungi as a function food or dietary supplement recently. Up until now, 166 kinds of chemical components have been isolated and identified from W. cocos including triterpenes, polysaccharides, sterols, diterpenes, and others. Modern pharmacological studies showed that the components hold a wide range of pharmacological activities both in vitro and in vivo, such as antitumor, anti-inflammatory, antibacterial, anti-oxidant, and antidepressant activities. In addition, present results showed that the mechanisms of pharmacological activities were closely related to chemical structures, molecular signaling paths and the expression of relate proteins for polysaccharides and triterpenes. For further in-depth studies on this fungus based on the recent research status, this review provided some perspectives and systematic summaries of W. cocos in traditional uses, chemical components, pharmacological activities, separation and analysis technologies, and structure-activity relationships.


Subject(s)
Triterpenes , Wolfiporia , Antioxidants/metabolism , Antioxidants/pharmacology , China , Polysaccharides/chemistry , Polysaccharides/pharmacology , Triterpenes/chemistry , Wolfiporia/chemistry
13.
Oxid Med Cell Longev ; 2021: 8031319, 2021.
Article in English | MEDLINE | ID: mdl-34917234

ABSTRACT

Hyperuricemia (HUA) is a metabolic disease, closely related to oxidative stress and inflammatory responses, caused by reduced excretion or increased production of uric acid. However, the existing therapeutic drugs have many side effects. It is imperative to find a drug or an alternative medicine to effectively control HUA. It was reported that Gardenia jasminoides and Poria cocos could reduce the level of uric acid in hyperuricemic rats through the inhibition of xanthine oxidase (XOD) activity. But there were few studies on its mechanism. Therefore, the effective ingredients in G. jasminoides and P. cocoa extracts (GPE), the active target sites, and the further potential mechanisms were studied by LC-/MS/MS, molecular docking, and network pharmacology, combined with the validation of animal experiments. These results proved that GPE could significantly improve HUA induced by potassium oxazine with the characteristics of multicomponent, multitarget, and multichannel overall regulation. In general, GPE could reduce the level of uric acid and alleviate liver and kidney injury caused by inflammatory response and oxidative stress. The mechanism might be related to the TNF-α and IL-7 signaling pathway.


Subject(s)
Gardenia/chemistry , Hyperuricemia/drug therapy , Inflammation/drug therapy , Network Pharmacology/methods , Oxidative Stress , Plant Extracts/pharmacology , Wolfiporia/chemistry , Animals , Hyperuricemia/immunology , Hyperuricemia/pathology , Inflammation/immunology , Inflammation/pathology , Kidney/drug effects , Kidney/injuries , Liver/drug effects , Liver/injuries , Male , Molecular Docking Simulation , Rats , Rats, Sprague-Dawley , Uric Acid/metabolism
14.
Int J Biol Macromol ; 189: 346-355, 2021 Oct 31.
Article in English | MEDLINE | ID: mdl-34428489

ABSTRACT

Finasteride is an antiandrogenic drug used for the clinical treatment of chronic nonbacterial prostatitis (CNP). Recently, we reported the anti-CNP activity of Poria cocos polysaccharides (PPs) in a rat model. In this study, we compared the differences between PPs and finasteride in treating CNP, especially their effects on the gut microbiota. Results showed that both PPs and finasteride significantly reduced the prostate weight and prostate index of CNP rats, and improved the histological damages in the inflamed prostate. Moreover, PPs and finasteride inhibited the production of pro-inflammatory cytokines (TNF-α, IL-2 and IL-8) and androgens (dihydrotestosterone and testosterone). By 16S rDNA sequencing, PPs and finasteride were found to reprogram the gut microbiota into distinct profiles. Further analysis presented that PPs but not finasteride recovered CNP-induced changes in the gut microbiota, including Ruminococcaceae NK4A214 group, uncultured bacterium f Ruminococcaceae, Ruminiclostridium 9, Phascolarctobacterium, Coriobacteriaceae UCG-002 and Oribacterium. LDA effect size (LEfSe) analysis revealed that PPs recovered the gut microbiota by targeting Ruminococcaceae NK4A214 group. Our results suggested that PPs alleviated CNP via different mechanisms from finasteride, especially by regulating the gut microbiota, which offers therapeutic target for the treatment of CNP.


Subject(s)
Finasteride/therapeutic use , Gastrointestinal Microbiome , Polysaccharides/therapeutic use , Prostatitis/drug therapy , Prostatitis/microbiology , Wolfiporia/chemistry , Androgens/metabolism , Animals , Biomarkers/metabolism , Chronic Disease , Cytokines/metabolism , Finasteride/pharmacology , Gastrointestinal Microbiome/drug effects , Inflammation Mediators/metabolism , Male , Organ Size/drug effects , Phylogeny , Prostate/drug effects , Prostate/pathology , Rats, Sprague-Dawley
15.
Food Chem ; 361: 130065, 2021 Nov 01.
Article in English | MEDLINE | ID: mdl-34023683

ABSTRACT

In response to the increasing interest of western consumers in high antioxidant activity of green tea but their low acceptance of its green odor, we employed a new starter culture, Wolfiporia cocos to tune flavor of green tea infusion. After submerged fermentation for 17 h, W. cocos changed the characteristic green odor to an attractive floral, jasmine-like, and slightly citrus-like flavor while preserving most of in vitro antioxidant activity. By application of mSBSE-GC-MS-O combined with sensorial tests, the formed pleasant aroma was mainly attributed to methyl anthranilate (OAV 802), linalool (OAV 190), 2-phenylethanol (OAV165), and geraniol (OAV 118). Concurrently, the catechin profile determined by UHPLC-MS showed diverse reduction rates (10-50%) for the individual catechins after fermentation. Nevertheless, up to 80% of in vitro antioxidant activity in DPPH assay was preserved. Overall, our findings provide an innovative approach to naturally flavor green tea while retaining the antioxidant activity.


Subject(s)
Antioxidants/metabolism , Catechin/chemistry , Tea/chemistry , Wolfiporia/chemistry , Acyclic Monoterpenes/chemistry , Fermentation , Gas Chromatography-Mass Spectrometry , Odorants/analysis , Phenylethyl Alcohol/chemistry , Taste , ortho-Aminobenzoates/chemistry
16.
Medicine (Baltimore) ; 100(10): e25098, 2021 Mar 12.
Article in English | MEDLINE | ID: mdl-33725903

ABSTRACT

BACKGROUND: Irritable bowel syndrome (IBS) is one the common medical condition of functional GI disorder (FGD) characterized by bowel-related symptoms without other organic gastrointestinal (GI) disease. Compound Glutamine Entersoluble Capsules(CGEC),a compound preparation in which each capsule contains 120 mg L-glutamine, 50 mg ginseng, 50 mg licorice, 50 mg Atractylodes macrocephala and 50 mg Poria cocos, have been reported the efficacy of CGEC for patients with IBS in improving the clinical symptoms and quality of patients' life. However, there is no a systematic review related to CGEC for IBS to this day. In this study, we will systematically evaluate the effectiveness and safety of CGEC in the treatment of IBS-D with a meta-analysis method, so as to provide a solid evidence for clinical practice. METHODS: In this study, a literature search was performed by using the Chinese and English databases, which include PubMed, Embase, MEDLINE, Cochrane Library Central Register of Controlled Trials, China National Knowledge Infrastructure (CNKI) database, Wanfang Data Knowledge Service Platform, the VIP information resource integration service platform (cqvip), China Biology Medicine Disc (Sino Med),and the Chinese Clinical Trial Registry (ChiCTR), to find the related literature of CGEC in the treatment of IBS published from the inception date of each predefined database upto January 2021. The evaluation of the risk of bias for eligible studies will be performed by two investigators. Data synthesis will be performed by RevMan 5.4 software. Heterogeneity between studies can be assessed by a heterogeneity X2 test. The degree of heterogeneity among multiple included studies can be measured by I2. The stability of systematic review or meta-analysis outcomes will be evaluated by Sensitivity analysis. Reporting bias will be evaluated by funnel plot. Finally, The Grading of Recommendations Assessment, Development and Evaluation (GRADE) will be used to assess the quality of evidence obtained. RESULTS: The results of this study will be published in a peer-reviewed journal. CONCLUSION: Whether it is the effectiveness and safety of CGEC in the treatment of IBS will be judged in the result of this systematic review.


Subject(s)
Drugs, Chinese Herbal/administration & dosage , Glutamine/administration & dosage , Irritable Bowel Syndrome/drug therapy , Atractylodes/chemistry , Capsules , Drugs, Chinese Herbal/adverse effects , Drugs, Chinese Herbal/chemistry , Glutamine/adverse effects , Glycyrrhiza/chemistry , Humans , Irritable Bowel Syndrome/diagnosis , Meta-Analysis as Topic , Panax/chemistry , Quality of Life , Randomized Controlled Trials as Topic , Systematic Reviews as Topic , Treatment Outcome , Wolfiporia/chemistry
17.
Pharm Biol ; 59(1): 275-286, 2021 Dec.
Article in English | MEDLINE | ID: mdl-33651969

ABSTRACT

CONTEXT: Poria coco F.A.Wolf (Polyporaceae) dispels dampness and promotes diuresis implying hypouricaemic action. OBJECTIVE: To examine hypouricaemic action of Poria coco. MATERIALS AND METHODS: Ethanol extract (PCE) was prepared by extracting the sclerotium of P. cocos with ethanol, and the water extract (PCW) was produced by bathing the remains with water. PCE and PCW (50, 100 and 200 mg/kg, respectively) were orally administered to hyperuricemic Kunming mice (n = 8) to examine its hypouricaemic effect. Also, molecular docking was performed. RESULTS: P. cocos showed excellent hypouricaemic action, decreasing the serum uric acid of hyperuricaemia (HUA) control (526 ± 112 µmol/L) to 178 ± 53, 153 ± 57 and 151 ± 62 µmol/L (p < 0.01) by PCE and 69 ± 23, 63 ± 15 and 62 ± 20 µmol/L (p < 0.01) by PCW, respectively. According to SCrs, BUNs and H&E staining, PCE and PCW partially attenuated renal dysfunction caused by HUA. They presented no negative effects on ALT, AST and ALP activities. They elevated ABCG2 (ATP-binding cassette super-family G member 2) mRNA and protein expression in comparison to HUA control. In molecular docking, compound 267, 277, 13824, 15730 and 5759 were predicted as the top bioactives of P. cocos against HUA, which even presented better scores than the positive compound, oestrone 3-sulfate. DISCUSSION AND CONCLUSIONS: This paper demonstrated the hypouricaemic and nephroprotective effects of P. cocos in hyperuricemic mice by up-regulating ABCG2. These results may be useful for the development of a hypouricaemic agent.


Subject(s)
ATP Binding Cassette Transporter, Subfamily G, Member 2/genetics , Hyperuricemia/drug therapy , Plant Extracts/pharmacology , Wolfiporia/chemistry , Animals , Disease Models, Animal , Dose-Response Relationship, Drug , Ethanol/chemistry , Hyperuricemia/complications , Kidney Diseases/etiology , Kidney Diseases/prevention & control , Male , Mice , Molecular Docking Simulation , Plant Extracts/administration & dosage , Up-Regulation/drug effects , Uric Acid/blood , Water/chemistry
18.
J Ethnopharmacol ; 266: 113456, 2021 Feb 10.
Article in English | MEDLINE | ID: mdl-33039631

ABSTRACT

ETHNOPHARMACOLOGICAL RELEVANCE: Poria cocos Wolf has been used in traditional East-Asian medicine for centuries to effectively treat various gastrointestinal disorders such as diarrhea for its tonic, anti-fungal and anti-bacterial activities. Previous studies have revealed that the tumor development would induce intestinal microbiota dysbiosis and intestinal barrier dysfunction to the patients with breast cancer. AIM OF STUDY: To investigate the effect and the mechanism of ethanol extract of Poria cocos (PC) on intestinal barrier function and intestinal microbiota in the mice with breast cancer. MATERIALS AND METHODS: Thirty-six female BALB/c mice were randomly divided into four groups (the normal control, model, PC and positive control group). Intestinal histopathological was evaluated by H&E staining. The difference of the intestinal microbiota in each group was studied by 16S rDNA high-throughput sequencing. The level of plasma endotoxin, D -lactic acid (D-LA) and diamine oxidase (DAO) were measured by ELISA. The putrescine content in serum and urine were detected by HPLC. Expression of the tight junction (TJ) proteins, phosphorylated p38 MAPK and ERK1/2 were determined by western blotting. RESULTS: Our results showed that tumor development prominently induced the intestinal damage and microbiome dysbiosis in mice. PC prominently remit such histologic damage through enhancing the expression of TJ proteins and decreasing the levels of DAO, D-LA and endotoxin via upregulating the expression of phosphorylated ERK1/2 and p38 MAPK. Furthermore, PC increased the diversity of the intestinal microbiota and strikingly changed the structure and composition of the gut microbiota in the mice by increasing the beneficial bacteria Lactobacillus, Bifidobacterium, and decreasing the sulfate-reducing bacteria Desulfovibrio and inflammatory associated bacteria Mucispirillum, S24-7 and Staphylococcus. Moreover, PICRUSt analysis and the putrescine detection might indicate that PC might be involved in the putrescine metabolism in the mice. Correlation analysis indicated that Prevotella, Rikenellaceae and Bacteroidetes were significantly correlated with Claudin-8 and p38-MAPK expression (p < 0.05). CONCLUSION: PC could improve the dysbacteriosis and repair the intestinal barrier function in the mice with breast cancer. This study provide more data to support the application of PC in breast cancer treatment.


Subject(s)
Antineoplastic Agents/pharmacology , Breast Neoplasms/drug therapy , Gastrointestinal Microbiome/drug effects , Wolfiporia/chemistry , Animals , Antineoplastic Agents/isolation & purification , Dysbiosis/drug therapy , Ethanol/chemistry , Female , Humans , Intestinal Mucosa/drug effects , Intestinal Mucosa/metabolism , Mice , Mice, Inbred BALB C , Mice, Nude , Tight Junction Proteins/metabolism , Xenograft Model Antitumor Assays
19.
J Ethnopharmacol ; 269: 113722, 2021 Apr 06.
Article in English | MEDLINE | ID: mdl-33352240

ABSTRACT

ETHNOPHARMACOLOGICAL RELEVANCE: Poria cocos (Schw.) Wolf (Poria) is a well-known traditional medicinal fungus. It has been considered to possess spleen-invigorating (Jianpi) effects in traditional Chinese medicine, and is used clinically to treat spleen deficiency (Pixu) with symptoms of intestinal disorders such as diarrhea, indigestion, mucositis and weight loss. THE AIM OF THIS STUDY: To investigate the protective effects of Poria and its three component fractions (Water-soluble polysaccharides, WP; alkali-soluble polysaccharides, AP; triterpene acids, TA) on cisplatin-induced intestinal injury and explore the underlying mechanisms. MATERIALS AND METHODS: C57BL/6 mice were treated with Poria powder (PP), WP, AP and TA by oral gavage respectively for 13 days, and intraperitoneally injected with 10 mg/kg of cisplatin on day 10 to conduct a cisplatin-induced intestinal injury model. Pathological changes of ileum and colon were examined using H&E staining. The composition of gut microbiota and the alteration of host metabolites were characterized by 16S rDNA amplicon sequencing and UPLC-QTOF-MS/MS based untargeted metabolomics analysis. RESULTS: PP and WP attenuated the cisplatin-induced ileum and colon injury, and WP alleviated the weight loss and reversed the elevation of IL-2, IL-6 in serum. Both PP and WP could mitigate cisplatin-induced dysbiosis of gut microbiota, in particular PP and WP decreased the abundance of pathogenic bacteria including Proteobacteria, Cyanobacteria, Ruminococcaceae and Helicobacteraceae, while WP promoted the abundance of probiotics, such as Erysipelotrichaceae and Prevotellaceae. Moreover, WP attenuated the cisplatin-induced alteration of metabolic profiles. The levels of potential biomarkers, including xanthine, L-tyrosine, uridine, hypoxanthine, butyrylcarnitine, lysoPC (18:0), linoleic acid, (R)-3-hydroxybutyric acid, D-ribose, thiamine monophosphate, indolelactic acid and plamitic acid, showed significant correlations with intestinal flora. CONCLUSIONS: PP and WP possess protective effects against cisplatin-induced intestinal injury via potentially regulating the gut microbiota and metabolic profiles.


Subject(s)
Intestinal Diseases/prevention & control , Plant Extracts/pharmacology , Protective Agents/pharmacology , Wolfiporia/chemistry , Alkalies/chemistry , Animals , Biomarkers, Pharmacological/analysis , Body Weight/drug effects , Cisplatin/toxicity , Cytokines/blood , Disease Models, Animal , Dysbiosis/chemically induced , Dysbiosis/drug therapy , Gastrointestinal Microbiome/drug effects , Intestinal Diseases/chemically induced , Intestinal Diseases/pathology , Male , Medicine, Chinese Traditional , Metabolome/drug effects , Mice, Inbred C57BL , Plant Extracts/administration & dosage , Plant Extracts/chemistry , Powders/administration & dosage , Protective Agents/administration & dosage , Protective Agents/chemistry , Triterpenes/chemistry , Water/chemistry
20.
Phytother Res ; 35(4): 2220-2229, 2021 Apr.
Article in English | MEDLINE | ID: mdl-33350533

ABSTRACT

Atherosclerosis (AS) is a common chronic inflammatory disease of the arteries, which is closely related to dyslipidemia, inflammatory factors, and oxidative stress. Poria cocos polysaccharides (PCP) are one of the main active ingredients of Poria, which has significant pharmacological effects. In this study, the potential protective mechanism of PCP on AS was discussed in the ApoE-/- mice model induced by high-fat diet. These pathological changes were evaluated by H&E and oil red O staining. The levels of pro-inflammatory cytokines in aortic tissue were measured by enzyme-linked immunosorbent assay kit. These protein expressions were detected by Western blot and immunohistochemistry. The results showed that PCP inhibited the serum inflammatory mediators (tumor necrosis factor-α, interleukin-6, and nitric oxide) and lipids (low-density lipoprotein-cholesterol, triglyceride, and total cholesterol) increase. Moreover, PCP also reduced the concentration of malondialdehyde, increased the activity of superoxide dismutase, and improved the pathological changes of the aorta. Finally, PCP inhibited the activation of the TLR4/NF-κB pathway in the aorta and blocked the expression of matrix metalloproteinase 2 and intercellular adhesion molecule 1 proteins. In short, PCP intervenes in AS by reducing inflammatory factors and blood lipid levels.


Subject(s)
Apolipoproteins E/metabolism , Atherosclerosis/drug therapy , Diet, High-Fat/adverse effects , Inflammation/drug therapy , Wolfiporia/chemistry , Animals , Disease Models, Animal , Male , Mice , Signal Transduction
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