TargetMol
β-Apo-13-carotenone D3 is the deuterium labeled β-Apo-13-carotenone. β-Apo-13-carotenone is an antagonist of RXRα.
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β-Apo-13-carotenone D3 is the deuterium labeled β-Apo-13-carotenone. β-Apo-13-carotenone is an antagonist of RXRα.
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TargetMol
β-Apo-13-carotenone D3 is the deuterium labeled β-Apo-13-carotenone. β-Apo-13-carotenone is an antagonist of RXRα.
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TargetMol
β-Apo-13-carotenone D3 is the deuterium labeled β-Apo-13-carotenone. β-Apo-13-carotenone is an antagonist of RXRα.
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TargetMol
β-Apo-8′-carotenal (Apocarotenal) is a carotenoid found in spinach and citrus fruits. Apocarotenal is used in fat-based food (margarine, sauces, salad dressing), beverages, dairy products, and sweets.
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β-Apo-8′-carotenal (Apocarotenal) is a carotenoid found in spinach and citrus fruits. Apocarotenal is used in fat-based food (margarine, sauces, salad dressing), beverages, dairy products, and sweets.
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β-Apo-8′-carotenal (Apocarotenal) is a carotenoid found in spinach and citrus fruits. Apocarotenal is used in fat-based food (margarine, sauces, salad dressing), beverages, dairy products, and sweets.
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β-Apooxytetracycline is a potential impurity found in commercial preparations of oxytetracycline. β-Apooxytetracycline is a degradation product formed from oxytetracycline via acid hydrolysis. It has a relative potency of 0.1 compared with oxytetracycline for inhibiting the growth of aerobic sludge bacteria, an MIC50 value of 32 mg/L for tetracycline-sensitive strains of Pseudomonas, and MIC50 values of […]
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β-Apooxytetracycline is a potential impurity found in commercial preparations of oxytetracycline. β-Apooxytetracycline is a degradation product formed from oxytetracycline via acid hydrolysis. It has a relative potency of 0.1 compared with oxytetracycline for inhibiting the growth of aerobic sludge bacteria, an MIC50 value of 32 mg/L for tetracycline-sensitive strains of Pseudomonas, and MIC50 values of […]
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β-Apooxytetracycline is a potential impurity found in commercial preparations of oxytetracycline. β-Apooxytetracycline is a degradation product formed from oxytetracycline via acid hydrolysis. It has a relative potency of 0.1 compared with oxytetracycline for inhibiting the growth of aerobic sludge bacteria, an MIC50 value of 32 mg/L for tetracycline-sensitive strains of Pseudomonas, and MIC50 values of […]
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TargetMol
β-Apopicropodophyllin is a nature product that could be isolated from Hyptis wticillata .β-Apopicropodophyllin induces apoptosis by inducing microtubule disruption, DNA damage, cell cycle arrest and ER stress. β-Apopicropodophyllin can be used in research of cancer [1] .
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β-Apopicropodophyllin is a nature product that could be isolated from Hyptis wticillata .β-Apopicropodophyllin induces apoptosis by inducing microtubule disruption, DNA damage, cell cycle arrest and ER stress. β-Apopicropodophyllin can be used in research of cancer [1] .
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β-Bag cell peptide is a neuroactive peptide. β-Bag cell peptide elevates cyclic AMP levels in the bag cell neurons. β-Bag cell peptide decreases the amplitudes of the voltage-dependent potassium currents [1] .
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β-Bag cell peptide is a neuroactive peptide. β-Bag cell peptide elevates cyclic AMP levels in the bag cell neurons. β-Bag cell peptide decreases the amplitudes of the voltage-dependent potassium currents [1] .
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β-Bisabolene
50 mg
| Purity Not Available
TargetMol
β-Bisabolene is a sesquiterpene isolated from opoponax ( Commiphora guidotti ). β-Bisabolene, an anti-cancer agent , can be used for the study of breast cancer.
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β-Bisabolene
100 mg
| Purity Not Available
TargetMol
β-Bisabolene is a sesquiterpene isolated from opoponax ( Commiphora guidotti ). β-Bisabolene, an anti-cancer agent , can be used for the study of breast cancer.
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TargetMol
Beta-boswellic acid and its derivatives (the major constituents of Boswellin) have anti-carcinogenic, anti-tumor, and anti-hyperlipidemic activities.
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TargetMol
Beta-boswellic acid and its derivatives (the major constituents of Boswellin) have anti-carcinogenic, anti-tumor, and anti-hyperlipidemic activities.
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TargetMol
Beta-boswellic acid and its derivatives (the major constituents of Boswellin) have anti-carcinogenic, anti-tumor, and anti-hyperlipidemic activities.
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TargetMol
Beta-boswellic acid and its derivatives (the major constituents of Boswellin) have anti-carcinogenic, anti-tumor, and anti-hyperlipidemic activities.
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TargetMol
Beta-boswellic acid and its derivatives (the major constituents of Boswellin) have anti-carcinogenic, anti-tumor, and anti-hyperlipidemic activities.
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TargetMol
Beta-boswellic acid and its derivatives (the major constituents of Boswellin) have anti-carcinogenic, anti-tumor, and anti-hyperlipidemic activities.
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TargetMol
Beta-boswellic acid and its derivatives (the major constituents of Boswellin) have anti-carcinogenic, anti-tumor, and anti-hyperlipidemic activities.
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TargetMol
β-Carotene (Provitamin A) is a naturally-occurring retinol (vitamin A) precursor obtained from certain fruits and vegetables with potential antineoplastic and chemopreventive activities. As an anti-oxidant, beta carotene inhibits free-radical damage to DNA.
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TargetMol
β-Carotene (Provitamin A) is a naturally-occurring retinol (vitamin A) precursor obtained from certain fruits and vegetables with potential antineoplastic and chemopreventive activities. As an anti-oxidant, beta carotene inhibits free-radical damage to DNA.
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TargetMol
β-Carotene (Provitamin A) is a naturally-occurring retinol (vitamin A) precursor obtained from certain fruits and vegetables with potential antineoplastic and chemopreventive activities. As an anti-oxidant, beta carotene inhibits free-radical damage to DNA.
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TargetMol
β-Carotene (Provitamin A) is a naturally-occurring retinol (vitamin A) precursor obtained from certain fruits and vegetables with potential antineoplastic and chemopreventive activities. As an anti-oxidant, beta carotene inhibits free-radical damage to DNA.
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β-Casomorphin Fragment 1-5 (BCM5), an opioid receptor agonist, is a member of the β-casomorphin peptide family derived from β-casein. β-casomorphins are used to study their differential effects on processes such as hyperglycemia, oxidative stress, opioid signalling and immunosuppression.
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β-Casomorphin Fragment 1-5 (BCM5), an opioid receptor agonist, is a member of the β-casomorphin peptide family derived from β-casein. β-casomorphins are used to study their differential effects on processes such as hyperglycemia, oxidative stress, opioid signalling and immunosuppression.
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β-Casomorphin, bovine TFA (β-Casomorphin-7 (bovine) TFA) is a opioid peptide with an IC50 of 14 μM in an Opioid receptors binding assay.
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β-Casomorphin, bovine TFA (β-Casomorphin-7 (bovine) TFA) is a opioid peptide with an IC50 of 14 μM in an Opioid receptors binding assay.
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