Search Result
Results for "
japonica
" in MedChemExpress (MCE) Product Catalog:
1
Isotope-Labeled Compounds
| Cat. No. |
Product Name |
Target |
Research Areas |
Chemical Structure |
-
- HY-N9150
-
|
|
Others
|
Others
|
|
Shizukaol A is an sesquiterpene dimer that can be isolated from Chloranthus japonicas .
|
-
-
- HY-N9667
-
|
|
Others
|
Others
|
|
Stilbostemin N can be isolated from ated from the rhizomes of D. japonica .
|
-
-
- HY-N3321
-
|
|
Others
|
Others
|
|
Maoyerabdosin is a compound isolated from the leaves of Isodon japonica .
|
-
-
- HY-N1962
-
|
|
Others
|
Others
|
|
Ophiopojaponin C is a naturally occurring C29 steroidal glycoside isolated from the tubers of O. japonicas .
|
-
-
- HY-N12791
-
|
|
Others
|
Others
|
|
Heteroclitin F is a C19 homolignan and can be isolated from Kadsura japonica .
|
-
-
- HY-N3133
-
|
(R)-Ophiopogonanone C; 8-Formylophiopogonanone A
|
Others
|
Others
|
|
Ophiopogonanone C is a homoisoflavonoidal compound isolated as a constitutent from the tuber of Ophiopogon japonicas .
|
-
-
- HY-N12546
-
|
|
Others
|
Others
|
|
22-Dihydrochondrillasterol is a natural product that can be isolated from the root of Trichosanthes japonica .
|
-
-
- HY-N3043
-
|
|
Others
|
Others
|
|
Platyphyllenone is a narutal product that can be isolated from Alnus japonica .
|
-
-
- HY-N12578
-
|
|
Others
|
Others
|
|
Polygalasaponin XXVIII is a triterpenoid saponin that can be isolated from Polygala japonica Houtt. .
|
-
-
- HY-N7806
-
|
|
Others
|
Others
|
|
7,3'-Di-O-Methylorobol is a flavone that can be isolated from Sophora japonica .
|
-
-
- HY-E70396
-
|
|
Biochemical Assay Reagents
|
Others
|
|
Pectolyase Y-23, A. japonicus is an enzyme derived from Aspergillus japonicas. Pectolyase Y-23, A. japonicus can be used in combination with cellulase to isolate bioactive protoplasts .
|
-
-
- HY-N7163
-
|
(2S)-3',5,5'7-Tetrahydroxyflavanone
|
Others
|
Others
|
|
(2S)-5,7,3',5'-Tetrahydroxyflavanone is a compound that can be isolated from Thymus quinquecostatus var japonica .
|
-
-
- HY-N8934
-
|
|
Others
|
Cancer
|
|
6β-Hydroxytomentosin, a sesquiterpenoid, can be found in flowers of Inula japonica. 6β-Hydroxytomentosin exhibits weak cytotoxicities against A549, SK-OV-3, HepG-2 and HT-29 cell lines .
|
-
-
- HY-N3009
-
|
|
Others
|
Cardiovascular Disease
|
|
Secoxyloganin, isolated from Lonicera japonica Thunb, inhibits the blood flow (BF) decrease. Secoxyloganin has allergy-preventive activity .
|
-
-
- HY-N3009R
-
|
|
Reference Standards
Others
|
Cardiovascular Disease
|
|
Secoxyloganin (Standard) is the analytical standard of Secoxyloganin. This product is intended for research and analytical applications. Secoxyloganin, isolated from Lonicera japonica Thunb, inhibits the blood flow (BF) decrease. Secoxyloganin has allergy-preventive activity .
|
-
-
- HY-N10877
-
|
|
Others
|
Cancer
|
|
Chlorajapolide F is a nature product that could be isolated from the aerial part of Chloranthus japonicas. Chlorajapolide F has low cytotoxic activity against NCI-H460 and SMMC-7721 cell lines .
|
-
-
- HY-124874
-
|
(rel)-Aspergillimide; (rel)-VM55598
|
nAChR
|
Neurological Disease
|
|
(rel)-Asperparaline A ((rel)-Aspergillimide), an anthelmintic metabolite, is isolated from okara that has been fermented with Aspergillus japonicas JV-23. (rel)-Asperparaline A is also a potent and selective antagonist of nAChR. (rel)-Asperparaline A exhibits paralytic activity in silk worms .
|
-
-
- HY-N2369
-
|
|
Apoptosis
Influenza Virus
|
Infection
Cancer
|
|
Chelidonine, an isoquinoline alkaloid, can be isolated from Chelidonium majus L.. Chelidonine causes G2/M arrest and induces caspase-dependent and caspase-independent apoptosis, and prevents cell cycle progression of stem cells in Dugesia japonica. Chelidonine has cytotoxic activity against melanoma cell lines. with anticancer and antiviral activity .
|
-
-
- HY-N9199
-
|
|
Others
|
Others
|
|
6β,19-Dihydroxyurs-12-en-3-oxo-28-oic acid (Compound 14) is an osteoclast inhibitor with anti-osteoclastogenic activity. 6β,19-Dihydroxyurs-12-en-3-oxo-28-oic acid can be obtained from Eriobotrya japonica leaves. 6β,19-Dihydroxyurs-12-en-3-oxo-28-oic acid can be used in osteoporosis research .
|
-
-
- HY-N8126
-
|
Glucoemodin
|
Others
|
Metabolic Disease
Inflammation/Immunology
|
|
Emodin-6-O-β-D-glucoside (Glucoemodin) is an active compound from Reynoutria japonica. Emodin-6-O-β-D-glucoside shows potent anti-inflammatory and barrier protective effects. Emodin-6-O-β-D-glucoside can be used for the research of diabetic complications and atherosclerosis .
|
-
-
- HY-N2369A
-
|
|
Apoptosis
Influenza Virus
|
Infection
Cancer
|
|
Chelidonine (hydrochloride) is the hydrochloride form of Chelidonine (HY-N2369).Chelidonine, an isoquinoline alkaloid, can be isolated from Chelidonium majus L. Chelidonine causes G2/M arrest and induces caspase-dependent and caspase-independent apoptosis, and prevents cell cycle progression of stem cells in Dugesia japonica. Chelidonine has cytotoxic activity against melanoma cell lines. with anticancer and antiviral activity .
|
-
-
- HY-N2369R
-
|
|
Reference Standards
Apoptosis
Influenza Virus
|
Infection
Cancer
|
|
Chelidonine (Standard) is the analytical standard of Chelidonine. This product is intended for research and analytical applications. Chelidonine, an isoquinoline alkaloid, can be isolated from Chelidonium majus L.. Chelidonine causes G2/M arrest and induces caspase-dependent and caspase-independent apoptosis, and prevents cell cycle progression of stem cells in Dugesia japonica. Chelidonine has cytotoxic activity against melanoma cell lines. with anticancer and antiviral activity .
|
-
-
- HY-N2169
-
|
|
Bacterial
|
Inflammation/Immunology
|
|
Polygalasaponin V is a triterpenoid saponin isolated from the aerial parts of Polygala japonica. Polygala japonica has been a folk medicine herb used as expectorant, anti-inflammatory, antibacterial and antidepressant agents in the south of China .
|
-
-
- HY-N4101
-
|
|
Others
|
Cancer
|
|
Styraxlignolide F is a natural compoundisolated from Styrax japonica.
|
-
-
- HY-N5096
-
|
|
Others
|
Others
|
|
Sophorabioside is a flavonoid-glycoside isolated from Sophora japonica .
|
-
-
- HY-133164
-
|
|
Others
|
Others
|
|
Asebotin is a Chalcones product that can be isolated from the leaves of Pieris japonica. .
|
-
-
- HY-N9223
-
|
|
Others
|
Others
|
|
Ketohakonanol is a Triterpenoids product that can be isolated from the herbs of Woodwardia japonica .
|
-
-
- HY-N8294
-
|
|
HBV
|
Others
|
|
Kadsulignan L is a Lignans product that can be isolated from the stems of Kadsura japonica .
|
-
-
- HY-N3836
-
|
|
Others
|
Others
|
|
Epistephamiersine is a Alkaloids product that can be isolated from the roots of Stephania japonica .
|
-
-
- HY-N9299
-
|
|
Others
|
Others
|
|
Alnusone is a Phenols product that can be isolated from the barks of Alnus japonica .
|
-
-
- HY-N1298
-
|
|
Others
|
Others
|
|
Sessilifoline A is a Alkaloids product that can be isolated from the roots of Stemona japonica .
|
-
-
- HY-N13513
-
|
|
Others
|
Others
|
|
Illiciumlignan D is a phenol product that can be isolated from Liparis japonica .
|
-
-
- HY-N2418
-
|
|
Others
|
Others
|
|
Homoarbutin is a phenolic glycoside isolated from the whole plants of Pyrola japonica .
|
-
-
- HY-N1544
-
|
|
Others
|
Others
|
|
Prometaphanine is a Alkaloids product that can be isolated from the roots of Stephania japonica. .
|
-
-
- HY-N2823
-
|
|
Others
|
Others
|
|
Agatharesinol is a Lignans product that can be isolated from the barks of Cryptomeria japonica .
|
-
-
- HY-N3751
-
|
|
Others
|
Others
|
|
Dihydrooxoepistephamiersine is a Alkaloids product that can be isolated from the roots of Stephania japonica. .
|
-
-
- HY-N0965
-
|
|
Others
|
Others
|
|
(E)-Aldosecologanin is a Iridoids product that can be isolated from the herbs of Lonicera japonica .
|
-
-
- HY-N1545
-
|
|
Others
|
Others
|
|
Prostephanaberrine is an alkaloid. Prostephanaberrine can be isolated from the fresh fruit of Stephania japonica .
|
-
-
- HY-122447
-
|
|
Antibiotic
|
Infection
|
|
Saroaspidin C (Compound 3) is an antibiotic that can be isolated from Sarothra japonica .
|
-
-
- HY-N1574
-
|
|
Others
|
Others
|
|
Puerol A is a Phenols product that can be isolated from the stem barks of Sophora japonica. .
|
-
-
- HY-N1288
-
|
|
Others
|
Others
|
|
Sequirin C is a Lignans product that can be isolated from the herbs of Cryptomeria japonica .
|
-
-
- HY-N12961
-
|
|
Others
|
Others
|
|
Vulgaxanthin I is a yellow phytochrome isolated from the beautiful Japanese Raphanus japonica flower .
|
-
-
- HY-N8799
-
|
|
Others
|
Others
|
|
(Z)-Aldosecologanin (Centauroside) is a Iridoids product that can be isolated from the herbs of Lonicera japonica .
|
-
-
- HY-N2220
-
|
|
Others
|
Inflammation/Immunology
|
|
6-Formyl-isoophiopogonanone A is a homoisoflavonoidal extracted from Ophiopogon japonicas, with antioxidant activity .
|
-
-
- HY-N1281
-
|
|
Others
|
Others
|
|
Sendanolactone is a new tetracyclic triterpenoid from the bark of M. azedarach L. var. japonica Makino .
|
-
-
- HY-N3746
-
|
|
Others
|
Others
|
|
Dihydroepistephamiersine 6-acetate is a Alkaloids product that can be isolated from the roots of Stephania japonica .
|
-
-
- HY-N5146
-
|
|
Others
|
Cancer
|
|
Ophiopogonside A, a natural conpound that could be isolated from ophiopogon japonicas, possesses anti-cancer activity .
|
-
-
- HY-N3150
-
|
|
Others
|
Others
|
|
Ohchinin acetate is a limonoid, that can be isolated from the fruit of M. azedarach Linn. var. japonica Makino .
|
-
-
- HY-N2849
-
|
(+)-Onocerin; α-Onocerin
|
Others
|
Others
|
|
alpha-Onocerol ((+)-Onocerin) is a Alkaloids product that can be isolated from the roots of Stephania japonica. .
|
-
-
- HY-N2441
-
|
|
Others
|
Inflammation/Immunology
|
|
Methylophiopogonone A, a homoisoflavonoid isolated from the tuberous roots of Ophiopogon japonicas, shows anti-inflammatory activity .
|
-
- HY-N8112
-
|
|
Others
|
Others
|
|
Polygalasaponin LII is a triterpenoid saponin that ca n be isolated from the roots of Polygala japonica Houtt .
|
-
- HY-N2437
-
|
|
Others
|
Inflammation/Immunology
|
|
Methylophiopogonanone A, a major homoisoflavonoid in Ophiopogon japonicas, has both anti-oxidative and anti-inflammatory properties .
|
-
- HY-N1617
-
|
|
Others
|
Others
|
|
1beta-Hydroxytorilin is a Sesquiterpenoids product that can be isolated from the fruits of Torilis japonica. .
|
-
- HY-N3507
-
|
|
Others
|
Others
|
|
Euojaponine D is a sesquiterpene alkaloids from Euonymus japonica (Celastraceae). Celastraceae has potent insecticidal activity .
|
-
- HY-N8899
-
|
|
Others
|
Others
|
|
Daidzein-4'-glucoside is a Flavonoids product that can be isolated from the fruits of Sophora japonica L. .
|
-
- HY-N3839
-
|
7-epi-Vogeloside; Nervoside; Epivogeloside
|
Others
|
Others
|
|
epi-Vogeloside is a secoiridoid glycoside and a iridoid glucoside, which can be isolated from Lonicera japonica Thunb .
|
-
- HY-N0423
-
|
|
Others
|
Inflammation/Immunology
Cancer
|
|
Sophoricoside is an isoflavone glycoside isolated from Sophora japonica and has anti-inflammatory, anti-cancer and immunosuppressive effects.
|
-
- HY-N4300
-
|
|
Others
|
Inflammation/Immunology
|
|
4'-O-Methylochnaflavone is a biflavonoid isolated from Lonicera japonica, suppresses mouse lymphocyte proliferation .
|
-
- HY-N9114
-
|
1,5,6-Trihydroxyxanthone
|
Others
|
Others
|
|
Mesuaxanthone B (1,5,6-Trihydroxyxanthone) is a Sesquiterpenoids product that can be isolated from the fruits of Torilis japonica. .
|
-
- HY-N3545
-
|
|
Others
|
Cancer
|
|
Casegravo can be isolated from Boenninghausenia japonica. Casegravo has anti-cell proliferation activity and can be used in cancer research .
|
-
- HY-N10182
-
|
|
Histamine Receptor
|
Inflammation/Immunology
|
|
Spinacetin is a natural product that can be isolated from Inula japonica. Spinacetin inhibits the release of histamine. Spinacetin has anti-inflammatory activity .
|
-
- HY-N2601
-
|
|
Others
|
Inflammation/Immunology
|
|
Bayogenin 3-O-β-D-glucopyranoside, a triterpenoid saponin isolated from Polygala japonica, possesses anti-inflammatory activities .
|
-
- HY-N13153
-
|
|
Others
|
Inflammation/Immunology
|
|
Antioxidant agent-19 (compound 12) is an arylbutyl glycoside with antioxidant activity that can be isolated from the bark of B. platyphylla vat. Japonica .
|
-
- HY-N5135
-
|
Nolinospiroside F
|
Others
|
Others
|
|
Liriopesides B (Nolinospiroside F) is a steroidal saponin isolated from Ophiopogon japonicas. Liriopesides B has anti-oxidative and anti-aging effects .
|
-
- HY-N3042
-
|
Platyphyllone
|
Others
|
Cancer
|
|
Platyphyllonol (Platyphyllone) can be isolated from A. japonica. Platyphyllonol shows cytotoxic effects on MCF-7 cells with IC50 values of 46.9 μg/mL .
|
-
- HY-N7292
-
|
|
Others
|
Inflammation/Immunology
|
|
Bakkenolide B is isolated from petasites japonicas leaves and has anti-allergic and anti-inflammatory effects. Bakkenolide B can be used for the study of asthma .
|
-
- HY-N0050
-
|
(+)-Allomatrine
|
Others
|
Neurological Disease
|
|
Allomatrine ((+)-Allomatrine) is an alkaloid from the bark of Sophora japonica. Allomatrine has antinociceptive properties mediated mainly through the activation ofκ-opioid receptors .
|
-
- HY-N14180
-
|
|
Antibiotic
|
Infection
Cancer
|
|
6-Deoxyilludin M is an antitumor antibiotic possessing antileukemic activity. 6-Deoxyilludin M can be isolated from the culture broth of the Basidiomycota Pleurotus japonicas .
|
-
- HY-N7644
-
|
|
Others
|
Others
|
|
Comanthoside A is a plant derived natural flavonoid glycoside isolated from the leaves of Comanthosphace japonica. Comanthoside A also serves as a key intermediate for the synthesis of Comanthoside B and Linaroside .
|
-
- HY-N4168A
-
|
5-O-Caffeoylquinic acid methyl ester
|
HBV
|
Infection
Cancer
|
|
Neochlorogenic acid methyl ester (5-O-Caffeoylquinic acid methyl ester) is an HBV inhibitor. Neochlorogenic acid methyl ester can be isolated from L. japonica flower buds with potent HBV inhibitory activity .
|
-
- HY-N1283
-
|
|
Others
|
Metabolic Disease
|
|
Seneciphyllinine, a pyrrolizidine alkaloid, is isolated from the roots of Gynura japonica. Pyrrolizidine alkaloids are highly hepatotoxic natural chemicals that produce irreversible chronic and acute hepatotoxic effects on human beings .
|
-
- HY-N2437R
-
|
|
Reference Standards
Others
|
Inflammation/Immunology
|
|
Methylophiopogonanone A (Standard) is the analytical standard of Methylophiopogonanone A. This product is intended for research and analytical applications. Methylophiopogonanone A, a major homoisoflavonoid in Ophiopogon japonicas, has both anti-oxidative and anti-inflammatory properties .
|
-
- HY-N2441R
-
|
|
Reference Standards
Others
|
Inflammation/Immunology
|
|
Methylophiopogonone A (Standard) is the analytical standard of Methylophiopogonone A. This product is intended for research and analytical applications. Methylophiopogonone A, a homoisoflavonoid isolated from the tuberous roots of Ophiopogon japonicas, shows anti-inflammatory activity .
|
-
- HY-N10834
-
|
|
Bacterial
|
Infection
|
|
(6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol is an antibacterial compound. (6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol can be isolated from the roots of Atractylodes japonica. (6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol has anti-methicillin-resistant Staphylococcus aureus (MRSA) activity with MIC values of 4-32 μg/mL. (6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol can be used for the research of bacterial infection . (6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
|
-
- HY-N0423R
-
|
|
Reference Standards
Others
|
Inflammation/Immunology
Cancer
|
|
Sophoricoside (Standard) is the analytical standard of Sophoricoside. This product is intended for research and analytical applications. Sophoricoside is an isoflavone glycoside isolated from Sophora japonica and has anti-inflammatory, anti-cancer and immunosuppressive effects.
|
-
- HY-N4289
-
|
|
Cathepsin
|
Cancer
|
|
3-Epiursolic Acid is a triterpenoid that can be isolated from Eriobotrya japonica, acts as a competitive inhibitor of cathepsin L (IC50, 6.5 μM; Ki, 19.5 μM), with no obvious effect on cathepsin B .
|
-
- HY-N16119
-
|
|
Others
|
Metabolic Disease
|
|
Phytyl palmitate is a phytyl ester. Phytyl palmitate can be isolated from the leaves Fatsia japonica. Phytyl palmitate can be used for inherited disorder of the lipid metabolism like Refsum’s disease research .
|
-
- HY-N12344
-
|
|
JNK
|
Inflammation/Immunology
|
|
n-Butyl α-D-fructofuranoside, isolated from the root barks of Ulmus davidiana var. japonica, enhances Nrf2 activity through activation of JNK and has antiinflammation activity .
|
-
- HY-N6601
-
|
Randialic acid A
|
Apoptosis
|
Cancer
|
|
Randialic acid A (Pomolic acid) is a pentacyclic triterpene isolated from?Euscaphis japonica?(Tunb.). Randialic acid A (Pomolic acid) inhibits tumor cells growth and induces cell apoptosis. Randialic acid A (Pomolic acid) has a potential for the treatment of prostate cancer (PC) .
|
-
- HY-N13488
-
|
|
Others
|
Others
|
|
5,7-Dihydroxy-4H-chromen-4-one 3-O-β-D-xylopyranoside is a natural product that can be isolated from Eurya japonica .
|
-
- HY-N1111
-
|
6β,19α-Dihydroxyursolic acid
|
HIV
|
Infection
|
|
Uncaric acid (6β,19α-Dihydroxyursolic acid) (compound 6) is a triterpene that can be found in Eriobotrya japonica. Uncaric acid shows anti HIV-1, HRV 1B, SNV activity .
|
-
- HY-N2113
-
|
|
Autophagy
|
Cancer
|
|
Glaucocalyxin B is an ent kaurane diterpenoid isolated from the Chinese traditional medicine Rabdosia japonica with anticancer and antitumor activity; decreases the growth of HL-60 cells with an IC50 of approximately 5.86 μM at 24 h.
|
-
- HY-N7205
-
|
|
Others
|
Cancer
|
|
Glaucocalyxin D is a ent-kauranoid-type diterpenoid that can be isolated from Rabdosia japonica. Glaucocalyxin D shows cytotoxicity against various human tumor cell lines. Glaucocalyxin D can be used for cancer research .
|
-
- HY-N5129
-
|
|
Others
|
Others
|
|
Genistein 7-O-β-D-glucopyranoside-4'-O-[α-L-rhamnopyranosyl-(1→2)-β-D-glucopyranoside] is an isoflavone triglycoside that could be isolated from Sophora japonica .
|
-
- HY-N12161
-
|
|
Others
|
Metabolic Disease
|
|
3-Acetyl-11-keto-ursolic acid (Compound 18) is a triterpenoid compound derived from Eriobotrya japonicaleaves. 3-Acetyl-11-keto-ursolic acid has 11B-hydroxysteroid dehydrogenase 1 (11b-HSD1) inhibitory activity. 3-Acetyl-11-keto-ursolic acid can be used for anti-diabetes research .
|
-
- HY-N0055
-
|
3-O-Caffeoylquinic acid; Heriguard; NSC-407296
|
HIF/HIF Prolyl-Hydroxylase
Reactive Oxygen Species (ROS)
Bacterial
Influenza Virus
Endogenous Metabolite
|
Infection
Cardiovascular Disease
Inflammation/Immunology
Cancer
|
|
Chlorogenic acid is a major phenolic compound in Lonicera japonica Thunb. It is an orally active antioxidant activity, antibacterial, hepatoprotective, cardioprotective, anti-inflammatory, antipyretic, neuroprotective, anti-obesity, antiviral, anti-microbial, anti-hypertension compound .
|
-
- HY-N0120A
-
|
Piceid
|
Autophagy
Apoptosis
Mitophagy
|
Inflammation/Immunology
Cancer
|
|
Polydatin (Piceid), extracted from the roots of Reynoutria japonica, a widely used traditional Chinese remedies, possesses anti-inflammatory activity in several experimental models. Polydatin (Piceid) inhibits G6PD and induces oxidative and ER stresses.
|
-
- HY-N5135R
-
|
Nolinospiroside F (Standard)
|
Reference Standards
Others
|
Others
|
|
Liriopesides B (Standard) is the analytical standard of Liriopesides B. This product is intended for research and analytical applications. Liriopesides B (Nolinospiroside F) is a steroidal saponin isolated from Ophiopogon japonicas. Liriopesides B has anti-oxidative and anti-aging effects .
|
-
- HY-N7377
-
|
|
Glycosidase
|
Metabolic Disease
|
|
Butyl isobutyl phthalate is isolated from the rhizoid of Laminaria japonica. Butyl isobutyl phthalate is a non-competitive α-glucosidase inhibitor with an IC50 value of 38 μM. Butyl isobutyl phthalate shows a hypoglycemic effect and has the potential for diabetes treatment .
|
-
- HY-N10166
-
|
|
Others
|
Others
|
|
Antioxidant agent-12 is an antioxidant active ingredient that can be isolated from Chuan-maidong .
|
-
- HY-N1282R
-
|
|
Reference Standards
Glutathione S-transferase
Cytochrome P450
|
Cancer
|
|
Seneciphylline (Standard) is the analytical standard of Seneciphylline. This product is intended for research and analytical applications. Seneciphylline is a toxic pyrrolizidine alkaloid in Gynura japonica . Seneciphylline significantly increases the activities of epoxide hydrase and glutathione-S-transferase but causes reduction of cytochrome P-450 and related monooxygenase activities .
|
-
- HY-110398
-
|
Baicalein trimethyl ether
|
NF-κB
AP-1
STAT
HSV
CMV
Enterovirus
|
Infection
Inflammation/Immunology
|
|
5,6,7-Trimethoxyflavone is a flavonoid compound that can be isolated from plants Callicarpa japonica. 5,6,7-Trimethoxyflavone exhibits antiviral and anti-inflammatory activities through inhibition of NF-κB/AP-1/STAT signaling pathway .
|
-
- HY-N4130
-
|
|
Others
|
Inflammation/Immunology
|
|
25S-Inokosterone is a phytoecdysone in the roots of two same species of A. bidentata Blume and A. japonica Nakai, and two different species of C. capitata Moq and C. officinalis Kuan. 25S-Inokosterone has the potential for the LPS-induced acute kidney injury research .
|
-
- HY-N15750
-
|
|
Biochemical Assay Reagents
|
Infection
|
|
Catechin-7-O-β-apiofuranoside (Compound 2) is a compound that can be isolated from the bark of Ulmus davidiana var. japonica. Catechin-7-O-β-apiofuranoside exhibits significant protective effect against sepsis in mouse model by increases survival rates .
|
-
- HY-N2438
-
|
|
Ras
|
Others
|
|
Methylophiopogonanone B, homoisoflavonoid, is extracted from the root of Ophiopogon japonicas, shows high antioxidant ability . Methylophiopogonanone B increases GTP-Rho and acts via the Rho signaling pathway, inducing cell morphological change via actin cytoskeletal reorganization, including dendrite retraction and stress fiber formation .
|
-
- HY-D0988
-
|
|
Fluorescent Dye
Apoptosis
|
Others
|
|
R-Phycoerythrin is found in Heterosiphonia japonica. R-Phycoerythrin is an orange-red fluorescent probe with α, β, and γ subunits. R-Phycoerythrin can be used in photodynamic therapy (PDT) to induce apoptosis in tumor cells. R-Phycoerythrin can be used in fluorescence microscopy, flow cytometry, and immunofluorescence analysis (Ex: 495 nm).
|
-
- HY-N2112
-
|
|
PI3K
Akt
Apoptosis
|
Cancer
|
|
Glaucocalyxin A, an ent-kauranoid diterpene from Rabdosia japonica var., induces apoptosis in osteosarcoma by inhibiting nuclear translocation of Five-zinc finger Glis 1 (GLI1) via regulating PI3K/Akt signaling pathway. Glaucocalyxin A has antitumor effect .
|
-
- HY-N0055R
-
|
3-O-Caffeoylquinic acid (Standard); Heriguard (Standard); NSC-407296 (Standard)
|
Reference Standards
HIF/HIF Prolyl-Hydroxylase
Reactive Oxygen Species (ROS)
Bacterial
Influenza Virus
Endogenous Metabolite
|
Infection
Inflammation/Immunology
Cancer
|
|
Chlorogenic acid (Standard) is the analytical standard of Chlorogenic acid. This product is intended for research and analytical applications. Chlorogenic acid is a major phenolic compound in Lonicera japonica Thunb. It is an orally active antioxidant activity, antibacterial, hepatoprotective, cardioprotective, anti-inflammatory, antipyretic, neuroprotective, anti-obesity, antiviral, anti-microbial, anti-hypertension compound .
|
-
- HY-N0120AR
-
|
Piceid (Standard)
|
Reference Standards
Autophagy
Apoptosis
Mitophagy
|
Inflammation/Immunology
Cancer
|
|
Polydatin (Standard) is the analytical standard of Polydatin. This product is intended for research and analytical applications. Polydatin (Piceid), extracted from the roots of Reynoutria japonica, a widely used traditional Chinese remedies, possesses anti-inflammatory activity in several experimental models. Polydatin (Piceid) inhibits G6PD and induces oxidative and ER stresses.
|
-
- HY-N0664
-
|
|
Bacterial
|
Infection
Neurological Disease
Inflammation/Immunology
Cancer
|
|
Aucubin, an iridoid glucoside, is isolated from Plantago asiatica, Eucommia ulmoides, the leaves of Aucuba japonica and more recently from butterfly larva. Aucubin has many biological activities, such as antioxidant, anti-aging, anti-inflammatory, antimicrobial, anti-fibrotic, anti-cancer, hepatoprotective, neuroprotective and osteoprotective effects .
|
-
- HY-N0392
-
|
|
Toll-like Receptor (TLR)
PI3K
Akt
NF-κB
|
Inflammation/Immunology
Cancer
|
|
Polygalasaponin F, an oleanane-type triterpenoid saponin extracted from Polygala japonica, decreases the release of the inflammatory cytokine tumor necrosis factor a (TNFa). Polygalasaponin F reduces neuroinflammatory cytokine secretion through the regulation of the TLR4-PI3K/AKT-NF-kB signaling pathway .
|
-
- HY-N16123
-
|
|
Parasite
|
Infection
|
|
Chloranthalactone C (Compound 43), a lindenane-type sesquiterpenoid, is an antimalarial agent. Chloranthalactone C can be isolated from plant Chloranthus japonicas Sieb. Chloranthalactone C inhibits Chloroquine (HY-17589A)-resistant Plasmodium falciparum strain Dd2 growth. Chloranthalactone C can be used for parasitic infections research .
|
-
- HY-N6052
-
|
|
Estrogen Receptor/ERR
|
Cancer
|
|
(+)-Medicarpin, a pterocarpan, is a type of isoflavonoid isolated from several medicinal plant species with various biological effects, including Sophora japonica, Zollernia paraensis and Platymiscium yucatamun, Machaerium aristulatum, Platymiscium floribundum, and so on. (+)-Medicarpin potently inhibits osteoclastogenesis and promotes bone healing and increases bone mass by osteoblast differentiation with estrogen receptor (ER) β-mediated osteogenic action .
|
-
- HY-N2133
-
|
|
Others
|
Others
|
|
Fallaxsaponin A (compound 5) is a natural product isolated from Polygala root .
|
-
- HY-N0664R
-
|
|
Reference Standards
Bacterial
|
Infection
Neurological Disease
Inflammation/Immunology
Cancer
|
|
Aucubin (Standard) is the analytical standard of Aucubin. This product is intended for research and analytical applications. Aucubin, an iridoid glucoside, is isolated from Plantago asiatica, Eucommia ulmoides, the leaves of Aucuba japonica and more recently from butterfly larva. Aucubin has many biological activities, such as antioxidant, anti-aging, anti-inflammatory, antimicrobial, anti-fibrotic, anti-cancer, hepatoprotective, neuroprotective and osteoprotective effects .
|
-
- HY-N3286
-
|
|
Influenza Virus
|
Others
|
|
Methyl 4-O-feruloylquinate (4-O-Feruloylquinic acid methyl ester) is a natural product. Methyl 4-O-feruloylquinate can be purified from Stemona Japonica by preparative high-performance liquid chromatography. Methyl 4-O-feruloylquinate has anti-H5N1 activity with a 3% protective rate at 5 μM in MDCK cells .
|
-
- HY-N1614
-
|
|
Others
|
Others
|
|
1 α-hydroxytorilin (compound 3) is a sesquiterpenoid. 1 α-hydroxytorilin can be isolated from Torilis japonica. 1α-hydroxytorilin has cytotoxicity against human A549, SK-OV-3, SK-MEL-2, and HCT15 tumor cells with ED50 values of 20.52, 18.24, 17.48, 42.54 μg/mL, respectively .
|
-
- HY-N16457
-
|
|
Endogenous Metabolite
Influenza Virus
|
Infection
|
|
5,6-Dihydro-6-hydroxypenicillic acid (Compound 6) is a microbial secondary metabolite. 5,6-Dihydro-6-hydroxypenicillic acid can be isolated from the endophytic fungus Talaromyces sp. CPCC 400783 of Reynoutria japonica Houtt. 5,6-Dihydro-6-hydroxypenicillic acid has antiviral activity against influenza A virus with an IC50 of 65.45 μM .
|
-
- HY-N0392R
-
|
|
Reference Standards
Toll-like Receptor (TLR)
PI3K
Akt
NF-κB
|
Inflammation/Immunology
|
|
Polygalasaponin F (Standard) is the analytical standard of Polygalasaponin F. This product is intended for research and analytical applications. Polygalasaponin F, an oleanane-type triterpenoid saponin extracted from Polygala japonica, decreases the release of the inflammatory cytokine tumor necrosis factor a (TNFa). Polygalasaponin F reduces neuroinflammatory cytokine secretion through the regulation of the TLR4-PI3K/AKT-NF-kB signaling pathway .
|
-
- HY-N0055S
-
|
3-O-Caffeoylquinic acid-13C3; Heriguard-13C3; NSC-407296-13C3
|
Isotope-Labeled Compounds
|
Cancer
|
|
Chlorogenic acid- 13C3 (Heriguard- 13C3; NSC-407296- 13C3) is 13C- and 15N-labeled Chlorogenic acid (HY-N0055). Chlorogenic acid is a major phenolic compound in Lonicera japonica Thunb.. It plays several important and therapeutic roles such as antioxidant activity, antibacterial, hepatoprotective, cardioprotective, anti-inflammatory, antipyretic, neuroprotective, anti-obesity, antiviral, anti-microbial, anti-hypertension .
|
-
- HY-N6924
-
|
|
HIV
|
Infection
Metabolic Disease
Cancer
|
|
Zingibroside R1 is dammaranae-type triterpenoid saponin, isolated from rhizomes, taproots, and lateral roots of Panax japonicas C. A. Meyer, shows excellent anti-tumor effects as well as anti-angiogenic activity .
Zingibroside R1 possesses some anti-HIV-1 activity.
Zingibroside R1 has inhibitory effects on the 2-deoxy-D-glucose (2-DG) uptake by EAT cells (IC50=91.3 μM) .
|
-
- HY-N15536
-
|
|
Reactive Oxygen Species (ROS)
|
Cardiovascular Disease
Neurological Disease
|
|
N-trans-Feruloyltyramine 4′-O-β-D-glucopyranoside is a phenolic amide glycoside compound found in Suaeda japonica. N-trans-Feruloyltyramine 4′-O-β-D-glucopyranoside exhibits antioxidant activity, capable of effectively scavenging DPPH free radicals and reducing the production of ROS induced by H2O2 in cells, thus protecting cells from oxidative stress damage. N-trans-Feruloyltyramine 4′-O-β-D-glucopyranoside is promising for research of cardiovascular diseases and neurodegenerative diseases .
|
-
- HY-W714137
-
|
Lesquerellin; 6-Methylthiohexyl isothiocyanate
|
Bacterial
|
Infection
|
|
(6-Isothiocyanatohexyl)(methyl)sulfane (Lesquerellin; 6-Methylthiohexyl isothiocyanate) is an isothiocyanate found in wasabi (W. japonica) and has various biological activities. (6-Isothiocyanatohexyl)(methyl)sulfane is active against the bacterium Bacillus subtilis and the fungus T. mentagrophytes (MIC=25 μg/mL). (6-Isothiocyanatohexyl)(methyl)sulfane also has anthelmintic activity against blue mussel (M. edulis). (6-Isothiocyanatohexyl)(methyl)sulfane has antifouling activity when applied to polyvinyl chloride (PVC) panels at a concentration of 50 μmol/cm2 in a conventional immersion test.
|
-
| Cat. No. |
Product Name |
Type |
-
- HY-D0988
-
|
|
Dyes
|
|
R-Phycoerythrin is found in Heterosiphonia japonica. R-Phycoerythrin is an orange-red fluorescent probe with α, β, and γ subunits. R-Phycoerythrin can be used in photodynamic therapy (PDT) to induce apoptosis in tumor cells. R-Phycoerythrin can be used in fluorescence microscopy, flow cytometry, and immunofluorescence analysis (Ex: 495 nm).
|
| Cat. No. |
Product Name |
Category |
Target |
Chemical Structure |
- HY-N2437
-
-
- HY-N1617
-
-
- HY-N3507
-
-
- HY-N8899
-
-
- HY-N3839
-
-
- HY-N0423
-
-
- HY-N4300
-
-
- HY-N9114
-
-
- HY-N3545
-
-
- HY-N10182
-
-
- HY-N2601
-
-
- HY-N13153
-
-
- HY-N5135
-
-
- HY-N3042
-
-
- HY-N7292
-
-
- HY-N0050
-
-
- HY-N14180
-
-
- HY-N7644
-
-
- HY-N4168A
-
-
- HY-N1283
-
-
- HY-N2437R
-
-
- HY-N2441R
-
-
- HY-N10834
-
|
|
Natural Products
Source classification
Plants
Compositae
Erythrina sigmoidea Hua
|
Bacterial
|
|
(6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol is an antibacterial compound. (6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol can be isolated from the roots of Atractylodes japonica. (6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol has anti-methicillin-resistant Staphylococcus aureus (MRSA) activity with MIC values of 4-32 μg/mL. (6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol can be used for the research of bacterial infection . (6E,12E)-Tetradecadiene-8,10-diyne-1,3-diol is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
|
-
- HY-N0423R
-
-
- HY-N4289
-
-
- HY-N16119
-
-
- HY-N12344
-
-
- HY-N6601
-
-
- HY-N13488
-
-
- HY-N1111
-
-
- HY-N2113
-
-
- HY-N7205
-
-
- HY-N5129
-
-
- HY-N12161
-
-
- HY-N0055
-
|
3-O-Caffeoylquinic acid; Heriguard; NSC-407296
|
Caprifoliaceae
Classification of Application Fields
Lonicera japonica Thunb.
Anti-aging
Source classification
Plants
Endogenous metabolite
Infection
Human Gut Microbiota Metabolites
Microorganisms
Simple Phenylpropanols
Phenols
Polyphenols
Phenylpropanoids
Inflammation/Immunology
Disease Research Fields
Cancer
|
HIF/HIF Prolyl-Hydroxylase
Reactive Oxygen Species (ROS)
Bacterial
Influenza Virus
Endogenous Metabolite
|
|
Chlorogenic acid is a major phenolic compound in Lonicera japonica Thunb. It is an orally active antioxidant activity, antibacterial, hepatoprotective, cardioprotective, anti-inflammatory, antipyretic, neuroprotective, anti-obesity, antiviral, anti-microbial, anti-hypertension compound .
|
-
- HY-N0120A
-
-
- HY-N5135R
-
-
- HY-N7377
-
-
- HY-N10166
-
-
- HY-N1282R
-
-
- HY-110398
-
-
- HY-N4130
-
-
- HY-N15750
-
-
- HY-N2438
-
-
- HY-N2112
-
-
- HY-N0055R
-
|
3-O-Caffeoylquinic acid (Standard); Heriguard (Standard); NSC-407296 (Standard)
|
Human Gut Microbiota Metabolites
Microorganisms
Caprifoliaceae
Simple Phenylpropanols
Lonicera japonica Thunb.
Source classification
Phenols
Polyphenols
Phenylpropanoids
Plants
Endogenous metabolite
|
Reference Standards
HIF/HIF Prolyl-Hydroxylase
Reactive Oxygen Species (ROS)
Bacterial
Influenza Virus
Endogenous Metabolite
|
|
Chlorogenic acid (Standard) is the analytical standard of Chlorogenic acid. This product is intended for research and analytical applications. Chlorogenic acid is a major phenolic compound in Lonicera japonica Thunb. It is an orally active antioxidant activity, antibacterial, hepatoprotective, cardioprotective, anti-inflammatory, antipyretic, neuroprotective, anti-obesity, antiviral, anti-microbial, anti-hypertension compound .
|
-
- HY-N0120AR
-
-
- HY-N0664
-
|
|
Infection
Eucommia ulmoides Oliver
Iridoids
Neurological Disease
Classification of Application Fields
Terpenoids
Source classification
Eucommiaceae
Plants
Inflammation/Immunology
Disease Research Fields
|
Bacterial
|
|
Aucubin, an iridoid glucoside, is isolated from Plantago asiatica, Eucommia ulmoides, the leaves of Aucuba japonica and more recently from butterfly larva. Aucubin has many biological activities, such as antioxidant, anti-aging, anti-inflammatory, antimicrobial, anti-fibrotic, anti-cancer, hepatoprotective, neuroprotective and osteoprotective effects .
|
-
- HY-N0392
-
-
- HY-N16123
-
-
- HY-N6052
-
-
- HY-N2133
-
-
- HY-N0664R
-
|
|
Eucommia ulmoides Oliver
Iridoids
Terpenoids
Source classification
Eucommiaceae
Plants
|
Reference Standards
Bacterial
|
|
Aucubin (Standard) is the analytical standard of Aucubin. This product is intended for research and analytical applications. Aucubin, an iridoid glucoside, is isolated from Plantago asiatica, Eucommia ulmoides, the leaves of Aucuba japonica and more recently from butterfly larva. Aucubin has many biological activities, such as antioxidant, anti-aging, anti-inflammatory, antimicrobial, anti-fibrotic, anti-cancer, hepatoprotective, neuroprotective and osteoprotective effects .
|
-
- HY-N3286
-
-
- HY-N1614
-
-
- HY-N16457
-
-
- HY-N0392R
-
-
- HY-N6924
-
-
- HY-N15536
-
|
|
Source classification
Piperaceae
Piper crocatum Ruiz & Pav.
Plants
Saccharides
Monosaccharides
|
Reactive Oxygen Species (ROS)
|
|
N-trans-Feruloyltyramine 4′-O-β-D-glucopyranoside is a phenolic amide glycoside compound found in Suaeda japonica. N-trans-Feruloyltyramine 4′-O-β-D-glucopyranoside exhibits antioxidant activity, capable of effectively scavenging DPPH free radicals and reducing the production of ROS induced by H2O2 in cells, thus protecting cells from oxidative stress damage. N-trans-Feruloyltyramine 4′-O-β-D-glucopyranoside is promising for research of cardiovascular diseases and neurodegenerative diseases .
|
-
| Cat. No. |
Product Name |
Chemical Structure |
-
- HY-N0055S
-
|
|
|
Chlorogenic acid- 13C3 (Heriguard- 13C3; NSC-407296- 13C3) is 13C- and 15N-labeled Chlorogenic acid (HY-N0055). Chlorogenic acid is a major phenolic compound in Lonicera japonica Thunb.. It plays several important and therapeutic roles such as antioxidant activity, antibacterial, hepatoprotective, cardioprotective, anti-inflammatory, antipyretic, neuroprotective, anti-obesity, antiviral, anti-microbial, anti-hypertension .
|
-
| Cat. No. |
Product Name |
|
Classification |
-
- HY-Y1310
-
|
|
|
Thickeners
Disintegrants
Suspending Agents
|
|
Sodium alginate is the sodium salt of alginic acid. Sodium alginate can be extracted and purified from brown seaweed Laminaria japonica. Sodium alginate can be used in food additives and pharmaceuticals, adsorb heavy metal ions, and has mucosal-protective and hemostatic effects .
|
Your information is safe with us. * Required Fields.
Inquiry Information
- Product Name:
- Cat. No.:
- Quantity:
- MCE Japan Authorized Agent: