Records of Natural Products, 01/2018, Volume 12, Issue 3, p. 216
Two new aspinotriol derivatives (1-2) determined as melleusin A (1), B (2) and other seven known compounds were isolated from a soil-borne fungus Aspergillus...
Journal Article
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, ISSN 0021-8561, 10/2019, Volume 67, Issue 41, pp. 11403 - 11407
Three new phenazine metabolites, strepphenazine A-C (1-3), along with a known compound baraphenazine E 4 were isolated from the culture broth of a Streptomyces...
Streptomyces species | PHYSIOLOGY | structure characterization | NATURAL-PRODUCTS | BIOSYNTHESIS | FOOD SCIENCE & TECHNOLOGY | AGRICULTURE, MULTIDISCIPLINARY | DIVERSITY | phenazine metabolites | CHEMISTRY, APPLIED | antifungal activity
Streptomyces species | PHYSIOLOGY | structure characterization | NATURAL-PRODUCTS | BIOSYNTHESIS | FOOD SCIENCE & TECHNOLOGY | AGRICULTURE, MULTIDISCIPLINARY | DIVERSITY | phenazine metabolites | CHEMISTRY, APPLIED | antifungal activity
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A colorimetric assay system for dopamine using microfluidic paper-based analytical devices
Talanta, ISSN 0039-9140, 03/2019, Volume 194, pp. 171 - 176
We report the colorimetric detection of dopamine (DA) on microfluidic paper-based analytical devices (μPADs) using an oxidation-reduction method. Here,...
Colorimetry | Dopamine | Microfluidic paper-based analytical devices | Oxidation-reduction | GOLD NANOPARTICLES | PLATFORM | CHEMISTRY, ANALYTICAL | COST | CHIP | CARBON | ASCORBIC-ACID | URIC-ACID
Colorimetry | Dopamine | Microfluidic paper-based analytical devices | Oxidation-reduction | GOLD NANOPARTICLES | PLATFORM | CHEMISTRY, ANALYTICAL | COST | CHIP | CARBON | ASCORBIC-ACID | URIC-ACID
Journal Article
Journal of Ginseng Research, ISSN 1226-8453, 07/2017, Volume 41, Issue 3, pp. 353 - 360
Endophytic fungi play an important role in balancing the ecosystem and boosting host growth. In the present study, we investigated the endophytic fungal...
Panax notoginseng | biological control | root-rot disease | fungal diversity | endophytic fungi | Endophytic fungi | Biological control | Fungal diversity | Root-rot disease | METABOLITES | ACTIVATION | CHEMISTRY, MEDICINAL | LEAVES | GINSENG | ISCHEMIA-REPERFUSION INJURY | INTEGRATIVE & COMPLEMENTARY MEDICINE | POLYKETIDES | PENICILLIUM-CHRYSOGENUM | SAPONINS PNS | RG1 | 기타의약학
Panax notoginseng | biological control | root-rot disease | fungal diversity | endophytic fungi | Endophytic fungi | Biological control | Fungal diversity | Root-rot disease | METABOLITES | ACTIVATION | CHEMISTRY, MEDICINAL | LEAVES | GINSENG | ISCHEMIA-REPERFUSION INJURY | INTEGRATIVE & COMPLEMENTARY MEDICINE | POLYKETIDES | PENICILLIUM-CHRYSOGENUM | SAPONINS PNS | RG1 | 기타의약학
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Rhizospheric fungi of Panax notoginseng: diversity and antagonism to host phytopathogens
Journal of Ginseng Research, ISSN 1226-8453, 04/2016, Volume 40, Issue 2, pp. 127 - 134
Rhizospheric fungi play an essential role in the plant–soil ecosystem, affecting plant growth and health. In this study, we evaluated the fungal diversity in...
Panax notoginseng | fungal diversity | rhizosphere soil | Illumina MiSeq | CHEMISTRY, MEDICINAL | ENDOPHYTIC FUNGI | ABUNDANCE | COMMUNITY STRUCTURE | MICROBIAL COMMUNITIES | INTEGRATIVE & COMPLEMENTARY MEDICINE | SOIL | ROOTS | PHYLLOSPHERE | HEALTH | SELECTION | PATHOGENS | 기타의약학
Panax notoginseng | fungal diversity | rhizosphere soil | Illumina MiSeq | CHEMISTRY, MEDICINAL | ENDOPHYTIC FUNGI | ABUNDANCE | COMMUNITY STRUCTURE | MICROBIAL COMMUNITIES | INTEGRATIVE & COMPLEMENTARY MEDICINE | SOIL | ROOTS | PHYLLOSPHERE | HEALTH | SELECTION | PATHOGENS | 기타의약학
Journal Article
Journal of Ginseng Research, ISSN 1226-8453, 10/2016, Volume 40, Issue 4, pp. 315 - 324
Biocontrol agents are regarded as promising and environmental friendly approaches as agrochemicals for phytodiseases that cause serious environmental and...
Panax notoginseng | biocontrol agents | Trichoderma gamsii | mycoparasitism | antagonistic activity | Mycoparasitism | Antagonistic activity | Biocontrol agents | VIRENS | CHEMISTRY, MEDICINAL | BOTRYTIS-CINEREA | FUSARIUM-OXYSPORUM | IDENTIFICATION | HARZIANUM | RHIZOCTONIA-SOLANI | INTEGRATIVE & COMPLEMENTARY MEDICINE | GROWTH | SOIL | ARABIDOPSIS | BIOLOGICAL-CONTROL
Panax notoginseng | biocontrol agents | Trichoderma gamsii | mycoparasitism | antagonistic activity | Mycoparasitism | Antagonistic activity | Biocontrol agents | VIRENS | CHEMISTRY, MEDICINAL | BOTRYTIS-CINEREA | FUSARIUM-OXYSPORUM | IDENTIFICATION | HARZIANUM | RHIZOCTONIA-SOLANI | INTEGRATIVE & COMPLEMENTARY MEDICINE | GROWTH | SOIL | ARABIDOPSIS | BIOLOGICAL-CONTROL
Journal Article
PLoS ONE, ISSN 1932-6203, 04/2013, Volume 8, Issue 4, p. e60254
We here investigated the efficiency of autologous melanocyte transplantation of 23 vitiligo patients by focusing on perilesional skin homing CD8+ T...
IMMUNOMODULATORY PROPERTIES | DESTRUCTION | GENERALIZED VITILIGO | HUMAN BONE-MARROW | MULTIDISCIPLINARY SCIENCES | NITRIC-OXIDE | AUTOIMMUNE VITILIGO | PROLIFERATION | DIFFERENTIATION | CD8(+) T-CELLS | MARROW STROMAL CELLS | Skin - cytology | CD8-Positive T-Lymphocytes - pathology | Cell Proliferation | Skin - metabolism | Humans | Male | Transplantation, Autologous | Vitiligo - metabolism | Mesenchymal Stromal Cells - cytology | Vitiligo - surgery | Adult | Female | Skin - pathology | Skin - immunology | Pigmentation - immunology | Epidermis - metabolism | Chemokines - biosynthesis | Epidermis - pathology | Gene Expression Regulation - immunology | Vitiligo - immunology | Cell Transplantation | Epidermis - immunology | Melanocytes - transplantation | Chemokines - metabolism | CD8-Positive T-Lymphocytes - immunology | Apoptosis | Medicine, Experimental | Medical research | Skin | T cells | Stem cells | Cell proliferation | Cell culture | Transplants & implants | Mesenchyme | CD8 antigen | Cytotoxicity | Melanocytes | Transplantation | Lymphocytes T | Homing | Vitiligo | Cell growth | Efficiency | Lymphocytes | Bone marrow | Autografts | Cytokines | Dermatology | Patients | Pigmentation | Studies | Hospitals | Nitric oxide | Cell migration | Chemokines
IMMUNOMODULATORY PROPERTIES | DESTRUCTION | GENERALIZED VITILIGO | HUMAN BONE-MARROW | MULTIDISCIPLINARY SCIENCES | NITRIC-OXIDE | AUTOIMMUNE VITILIGO | PROLIFERATION | DIFFERENTIATION | CD8(+) T-CELLS | MARROW STROMAL CELLS | Skin - cytology | CD8-Positive T-Lymphocytes - pathology | Cell Proliferation | Skin - metabolism | Humans | Male | Transplantation, Autologous | Vitiligo - metabolism | Mesenchymal Stromal Cells - cytology | Vitiligo - surgery | Adult | Female | Skin - pathology | Skin - immunology | Pigmentation - immunology | Epidermis - metabolism | Chemokines - biosynthesis | Epidermis - pathology | Gene Expression Regulation - immunology | Vitiligo - immunology | Cell Transplantation | Epidermis - immunology | Melanocytes - transplantation | Chemokines - metabolism | CD8-Positive T-Lymphocytes - immunology | Apoptosis | Medicine, Experimental | Medical research | Skin | T cells | Stem cells | Cell proliferation | Cell culture | Transplants & implants | Mesenchyme | CD8 antigen | Cytotoxicity | Melanocytes | Transplantation | Lymphocytes T | Homing | Vitiligo | Cell growth | Efficiency | Lymphocytes | Bone marrow | Autografts | Cytokines | Dermatology | Patients | Pigmentation | Studies | Hospitals | Nitric oxide | Cell migration | Chemokines
Journal Article
Chemistry & Biodiversity, ISSN 1612-1872, 07/2013, Volume 10, Issue 7, pp. 1276 - 1283
Two new steroids, (14β,22E)‐9,14‐dihydroxyergosta‐4,7,22‐triene‐3,6‐dione (1) and (5α,6β,15β,22E)‐6‐ethoxy‐5,15‐dihydroxyergosta‐7,22‐dien‐3‐one (2), together...
Fungi | Antifungal activity | Inhibitors | Phomopsis | Steroids | BIOCHEMISTRY & MOLECULAR BIOLOGY | AZADIRACHTA-INDICA | CHEMISTRY, MULTIDISCIPLINARY | Antifungal Agents - pharmacology | Ergosterol - isolation & purification | Ergosterol - chemistry | Fungi - drug effects | Magnetic Resonance Spectroscopy | Molecular Conformation | Antifungal Agents - chemistry | Ergosterol - analogs & derivatives | Antifungal Agents - isolation & purification | Saccharomycetales - chemistry | Ergosterol - pharmacology | Steroids - isolation & purification | Steroids - pharmacology | Saccharomycetales - metabolism | Steroids - chemistry | Analysis | Beta
Fungi | Antifungal activity | Inhibitors | Phomopsis | Steroids | BIOCHEMISTRY & MOLECULAR BIOLOGY | AZADIRACHTA-INDICA | CHEMISTRY, MULTIDISCIPLINARY | Antifungal Agents - pharmacology | Ergosterol - isolation & purification | Ergosterol - chemistry | Fungi - drug effects | Magnetic Resonance Spectroscopy | Molecular Conformation | Antifungal Agents - chemistry | Ergosterol - analogs & derivatives | Antifungal Agents - isolation & purification | Saccharomycetales - chemistry | Ergosterol - pharmacology | Steroids - isolation & purification | Steroids - pharmacology | Saccharomycetales - metabolism | Steroids - chemistry | Analysis | Beta
Journal Article
BioMedical Engineering Online, ISSN 1475-925X, 03/2018, Volume 17, Issue 1, pp. 34 - 8
Objective: This study aimed to investigate the influence of injection rates of calibrating standard solution on monitoring pulse indicator continuous cardiac...
Injection rate | Pulse indicator continuous cardiac output | Calibrating standard solution | PULMONARY-ARTERY CATHETER | SYSTEM | THERMODILUTION | ENGINEERING, BIOMEDICAL | PRELOAD | PICCO(R) MEASUREMENTS | ARREST PATIENTS | ACCURACY | Intensive Care Units | Humans | Middle Aged | Cardiac Output | Male | Calibration | Stroke - physiopathology | Young Adult | Injections | Solutions | Adolescent | Monitoring, Physiologic - methods | Adult | Female | Aged | Measurement | Medical examination | Heart beat | Patient monitoring equipment | Cardiac patients | Physiological aspects | Research
Injection rate | Pulse indicator continuous cardiac output | Calibrating standard solution | PULMONARY-ARTERY CATHETER | SYSTEM | THERMODILUTION | ENGINEERING, BIOMEDICAL | PRELOAD | PICCO(R) MEASUREMENTS | ARREST PATIENTS | ACCURACY | Intensive Care Units | Humans | Middle Aged | Cardiac Output | Male | Calibration | Stroke - physiopathology | Young Adult | Injections | Solutions | Adolescent | Monitoring, Physiologic - methods | Adult | Female | Aged | Measurement | Medical examination | Heart beat | Patient monitoring equipment | Cardiac patients | Physiological aspects | Research
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Guaiane sesquiterpenes and isopimarane diterpenes from an endophytic fungus Xylaria sp
Phytochemistry, ISSN 0031-9422, 09/2014, Volume 105, pp. 197 - 204
Nine guaiane sesquiterpenes and three isopimarane diterpenes were isolated from the endophytic fungi sp. YM 311647. The absolute configurations of and were...
Antifungal activity | Xylaria sp | Isopimarane | Sesquiterpene | Diterpene | Guaiane | Azadirachta indica | HYPOXYLON-MAMMATUM | BIOCHEMISTRY & MOLECULAR BIOLOGY | AZADIRACHTA-INDICA | EREMOPHILANE | PLANT SCIENCES | Antifungal Agents - pharmacology | Diterpenes - pharmacology | Sesquiterpenes, Guaiane - pharmacology | Sesquiterpenes, Guaiane - chemistry | Diterpenes - isolation & purification | Molecular Conformation | Crystallography, X-Ray | Antifungal Agents - chemistry | Azadirachta - microbiology | Antifungal Agents - isolation & purification | Candida albicans - drug effects | China | Nuclear Magnetic Resonance, Biomolecular | Sesquiterpenes, Guaiane - isolation & purification | Molecular Structure | Xylariales - chemistry | Diterpenes - chemistry | Fungi | Sesquiterpenes
Antifungal activity | Xylaria sp | Isopimarane | Sesquiterpene | Diterpene | Guaiane | Azadirachta indica | HYPOXYLON-MAMMATUM | BIOCHEMISTRY & MOLECULAR BIOLOGY | AZADIRACHTA-INDICA | EREMOPHILANE | PLANT SCIENCES | Antifungal Agents - pharmacology | Diterpenes - pharmacology | Sesquiterpenes, Guaiane - pharmacology | Sesquiterpenes, Guaiane - chemistry | Diterpenes - isolation & purification | Molecular Conformation | Crystallography, X-Ray | Antifungal Agents - chemistry | Azadirachta - microbiology | Antifungal Agents - isolation & purification | Candida albicans - drug effects | China | Nuclear Magnetic Resonance, Biomolecular | Sesquiterpenes, Guaiane - isolation & purification | Molecular Structure | Xylariales - chemistry | Diterpenes - chemistry | Fungi | Sesquiterpenes
Journal Article
Organic Letters, ISSN 1523-7060, 03/2015, Volume 17, Issue 5, pp. 1146 - 1149
Duclauxamide A1 (1), a new polyketide-derived heptacyclic oligophenalenone dimer with a N-2-hydroxyethyl moiety, was isolated from Penicillium manginii YIM...
DELACROIX | MICROORGANISMS | METABOLITES | FUNGUS | GENOTOXICITY | NATURAL-PRODUCTS | BIOSYNTHESIS | PANAX-NOTOGINSENG | CHEMISTRY, ORGANIC | MONOBROMODUCLAUXIN | XENOCLAUXIN | Humans | Molecular Conformation | Polyketides - chemistry | Crystallography, X-Ray | Antineoplastic Agents - chemistry | Chromones - chemistry | Antineoplastic Agents - isolation & purification | Penicillium - chemistry | Polyketides - isolation & purification | HL-60 Cells | Nuclear Magnetic Resonance, Biomolecular | Antineoplastic Agents - pharmacology | Molecular Structure | Drug Screening Assays, Antitumor | Polyketides - pharmacology
DELACROIX | MICROORGANISMS | METABOLITES | FUNGUS | GENOTOXICITY | NATURAL-PRODUCTS | BIOSYNTHESIS | PANAX-NOTOGINSENG | CHEMISTRY, ORGANIC | MONOBROMODUCLAUXIN | XENOCLAUXIN | Humans | Molecular Conformation | Polyketides - chemistry | Crystallography, X-Ray | Antineoplastic Agents - chemistry | Chromones - chemistry | Antineoplastic Agents - isolation & purification | Penicillium - chemistry | Polyketides - isolation & purification | HL-60 Cells | Nuclear Magnetic Resonance, Biomolecular | Antineoplastic Agents - pharmacology | Molecular Structure | Drug Screening Assays, Antitumor | Polyketides - pharmacology
Journal Article
International Journal of Systematic and Evolutionary Microbiology, ISSN 1466-5026, 02/2019, Volume 69, Issue 2, pp. 567 - 571
A novel Gram-positive bacterium, designated strain YIM PH21725(T), was isolated from a sample of rhizospheric soil of Panaxnotoginseng cultivated in Anning,...
Panax notoginseng | Actinomycetes | Amycolatopsis panacis sp. nov | Rhizospheric soil | rhizospheric soil | STREPTOMYCES | SEQUENCES | MENAQUINONES | CLASSIFICATION | MICROBIOLOGY | Panax notoginseng - microbiology | Nucleic Acid Hybridization | Fatty Acids - chemistry | Soil Microbiology | Peptidoglycan - chemistry | Phospholipids - chemistry | Actinobacteria - classification | Cell Wall - chemistry | Phylogeny | Sequence Analysis, DNA | Diaminopimelic Acid - chemistry | Rhizosphere | Vitamin K 2 - analogs & derivatives | Vitamin K 2 - chemistry | DNA, Bacterial - genetics | Base Composition | Bacterial Typing Techniques | China | RNA, Ribosomal, 16S - genetics | Actinobacteria - isolation & purification
Panax notoginseng | Actinomycetes | Amycolatopsis panacis sp. nov | Rhizospheric soil | rhizospheric soil | STREPTOMYCES | SEQUENCES | MENAQUINONES | CLASSIFICATION | MICROBIOLOGY | Panax notoginseng - microbiology | Nucleic Acid Hybridization | Fatty Acids - chemistry | Soil Microbiology | Peptidoglycan - chemistry | Phospholipids - chemistry | Actinobacteria - classification | Cell Wall - chemistry | Phylogeny | Sequence Analysis, DNA | Diaminopimelic Acid - chemistry | Rhizosphere | Vitamin K 2 - analogs & derivatives | Vitamin K 2 - chemistry | DNA, Bacterial - genetics | Base Composition | Bacterial Typing Techniques | China | RNA, Ribosomal, 16S - genetics | Actinobacteria - isolation & purification
Journal Article
Chemistry & Biodiversity, ISSN 1612-1872, 09/2011, Volume 8, Issue 9, pp. 1717 - 1723
A new bisabolane‐type sesquiterpene, trichoderic acid (1), and a new acorane‐type sesquiterpene, 2β‐hydroxytrichoacorenol (2), along with three known...
Fungi | Antimicrobial activity | Trichoacorenol, 2β‐hydroxy | Sesquiterpenes | Paeonia delavayi | Trichoderma species | Trichoderic acid | Trichoacorenol, 2β-hydroxy | METABOLITES | CYCLONERODIOL | BIOCHEMISTRY & MOLECULAR BIOLOGY | BASIDIOMYCETE CHEIMONOPHYLLUM-CANDIDISSIMUM | AZADIRACHTA-INDICA | CHEMISTRY, MULTIDISCIPLINARY | KONINGII | Antifungal Agents - pharmacology | Sesquiterpenes - isolation & purification | Sesquiterpenes - chemistry | Fungi - drug effects | Magnetic Resonance Spectroscopy | Molecular Conformation | Bacteria - drug effects | Antifungal Agents - chemistry | Anti-Bacterial Agents - isolation & purification | Antifungal Agents - isolation & purification | Microbial Sensitivity Tests | Spectrophotometry, Infrared | Paeonia - microbiology | Anti-Bacterial Agents - chemistry | Mass Spectrometry | Anti-Bacterial Agents - pharmacology | Sesquiterpenes - pharmacology | Trichoderma - isolation & purification | Trichoderma - chemistry
Fungi | Antimicrobial activity | Trichoacorenol, 2β‐hydroxy | Sesquiterpenes | Paeonia delavayi | Trichoderma species | Trichoderic acid | Trichoacorenol, 2β-hydroxy | METABOLITES | CYCLONERODIOL | BIOCHEMISTRY & MOLECULAR BIOLOGY | BASIDIOMYCETE CHEIMONOPHYLLUM-CANDIDISSIMUM | AZADIRACHTA-INDICA | CHEMISTRY, MULTIDISCIPLINARY | KONINGII | Antifungal Agents - pharmacology | Sesquiterpenes - isolation & purification | Sesquiterpenes - chemistry | Fungi - drug effects | Magnetic Resonance Spectroscopy | Molecular Conformation | Bacteria - drug effects | Antifungal Agents - chemistry | Anti-Bacterial Agents - isolation & purification | Antifungal Agents - isolation & purification | Microbial Sensitivity Tests | Spectrophotometry, Infrared | Paeonia - microbiology | Anti-Bacterial Agents - chemistry | Mass Spectrometry | Anti-Bacterial Agents - pharmacology | Sesquiterpenes - pharmacology | Trichoderma - isolation & purification | Trichoderma - chemistry
Journal Article
Antonie van Leeuwenhoek, ISSN 0003-6072, 09/2019, pp. 1 - 10
Strain YIM PH21724T was isolated from the rhizosphere of Panax notoginseng. Phylogenetic analyses based on 16S rRNA gene sequences showed that the strain...
Diphosphatidylglycerol | Phosphatidylethanolamine | rRNA 16S | Lipids | Phylogeny | Fatty acids | Gene sequencing | Panax notoginseng | Phosphatidylinositol | Rhizosphere | Menaquinones | Species classification | Phylogenetics | New species | Deoxyribonucleic acid--DNA
Diphosphatidylglycerol | Phosphatidylethanolamine | rRNA 16S | Lipids | Phylogeny | Fatty acids | Gene sequencing | Panax notoginseng | Phosphatidylinositol | Rhizosphere | Menaquinones | Species classification | Phylogenetics | New species | Deoxyribonucleic acid--DNA
Journal Article
Natural Product Research, ISSN 1478-6419, 04/2017, Volume 31, Issue 7, pp. 835 - 839
Two new metabolites named koninginins R-S (1-2) were isolated from the culture of Trichoderma koningiopsis YIM PH30002. Their chemical structures were...
koninginin | antifungal activity | Trichoderma koningiopsis | CHEMISTRY, MEDICINAL | CHEMISTRY, APPLIED | Antifungal Agents - pharmacology | Benzofurans - chemistry | Benzopyrans - chemistry | Microbial Sensitivity Tests | Magnetic Resonance Spectroscopy | Benzofurans - pharmacology | Fusarium - drug effects | Antifungal Agents - chemistry | Benzopyrans - pharmacology | Fermentation | Spectrophotometry, Ultraviolet | Trichoderma - chemistry | Fungi | Trichoderma | Fusarium oxysporum | Fungicides | Metabolites | Endophytes | Fusarium | Spectroscopic analysis
koninginin | antifungal activity | Trichoderma koningiopsis | CHEMISTRY, MEDICINAL | CHEMISTRY, APPLIED | Antifungal Agents - pharmacology | Benzofurans - chemistry | Benzopyrans - chemistry | Microbial Sensitivity Tests | Magnetic Resonance Spectroscopy | Benzofurans - pharmacology | Fusarium - drug effects | Antifungal Agents - chemistry | Benzopyrans - pharmacology | Fermentation | Spectrophotometry, Ultraviolet | Trichoderma - chemistry | Fungi | Trichoderma | Fusarium oxysporum | Fungicides | Metabolites | Endophytes | Fusarium | Spectroscopic analysis
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Diversity, distribution, and antagonistic activities of rhizobacteria of Panax notoginseng
Journal of Ginseng Research, ISSN 1226-8453, 04/2016, Volume 40, Issue 2, pp. 97 - 104
Rhizobacteria play an important role in plant defense and could be promising sources of biocontrol agents. This study aimed to screen antagonistic bacteria and...
Panax notoginseng | antagonistic activities | diversity | rhizobacteria | Rhizobacteria | Antagonistic activities | Diversity | PLANT | BACTERIA | COMPLEX | CHEMISTRY, MEDICINAL | CHINA | GINSENG | INTEGRATIVE & COMPLEMENTARY MEDICINE | DISEASE | SOIL | RHIZOSPHERE | BIOLOGICAL-CONTROL | PATHOGENS | 기타의약학
Panax notoginseng | antagonistic activities | diversity | rhizobacteria | Rhizobacteria | Antagonistic activities | Diversity | PLANT | BACTERIA | COMPLEX | CHEMISTRY, MEDICINAL | CHINA | GINSENG | INTEGRATIVE & COMPLEMENTARY MEDICINE | DISEASE | SOIL | RHIZOSPHERE | BIOLOGICAL-CONTROL | PATHOGENS | 기타의약학
Journal Article
RSC Advances, ISSN 2046-2069, 2018, Volume 8, Issue 61, pp. 35042 - 35049
Eleven new compounds with streptazolin- and obscurolide-type skeletons were isolated from soil-derived Streptomyces alboniger obtained from Tibet, China. Two...
Journal Article
Histochemistry and Cell Biology, ISSN 0948-6143, 12/2019, Volume 152, Issue 6, pp. 467 - 473
IL-37, the anti-inflammatory cytokine of the IL-1 family, plays several key roles in the regulation of autoimmune diseases. Yet, its role in Hashimoto’s...
Biomedicine, general | Biochemistry, general | SIGIRR | Chronic lymphocytic thyroiditis | Biomedicine | Hashimoto’s thyroiditis | IL-37 | Developmental Biology | Cell Biology
Biomedicine, general | Biochemistry, general | SIGIRR | Chronic lymphocytic thyroiditis | Biomedicine | Hashimoto’s thyroiditis | IL-37 | Developmental Biology | Cell Biology
Journal Article