- Hypaphorine
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- $64.00
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2026-07-15
- CAS:487-58-1
- Purity: 99.94%
- Supply Ability: 10g
- Hypaphorine
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2023-02-24
- CAS:487-58-1
- Min. Order: 5mg
- Purity: ≥98%(HPLC)
- Supply Ability: 10 g
- lenticin
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- $9.80
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2020-01-10
- CAS:487-58-1
- Min. Order: 1g
- Purity: ≥99%
- Supply Ability: 100kg
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| | lenticin Basic information |
| Product Name: | lenticin | | Synonyms: | lenticin;N,N,N-Trimethyl-1-carboxylato-2-(1H-indole-3-yl)ethanaminium;α-Carboxylato-N,N,N-trimethyl-1H-indole-3-ethan-1-aminium;(1-Carboxy-2-indol-3-ylethyl)trimethylammonium hydroxide inner salt;Glyyunnanenine;Lenticine;Hypaforin;(2S)-3-(1H-indol-3-yl)-2-(trimethylammonio)propanoate | | CAS: | 487-58-1 | | MF: | C14H18N2O2 | | MW: | 246.31 | | EINECS: | | | Product Categories: | | | Mol File: | 487-58-1.mol |  |
| | lenticin Chemical Properties |
| Melting point | 255℃ (decomposition) | | alpha | D27 +113° (c = 0.52) | | storage temp. | -20°C | | solubility | DMF: Slightly soluble; DMSO: Slightly soluble; Ethanol: Slightly soluble; PBS (pH 7.2): 5 mg/ml | | form | A solid | | pka | 1.800±0.32(predicted) | | color | White to off-white | | Stability: | Hygroscopic |
| Hazard Codes | Xn,N | | Risk Statements | 22-50 | | Safety Statements | 61 |
| | lenticin Usage And Synthesis |
| Chemical Properties | White crystalline powder, soluble in methanol, ethanol, DMSO and other organic solvents. | | Uses | Hypaphorine is an indole alkaloid isolated from Caragana korshinskii. Hypaphorine has neurological and glucose-lowering effects. Hypaphorine prevents Lipopolysaccharides (LPS) (HY-D1056)-mediated acute lung injury (ALI) and proinflammatory response via inactivating the p38/JNK signaling pathway by upregulating DUSP1[1][2][3][4]. | | Definition | ChEBI: An amino acid betaine obtaine by exhaustive methylation of the alpha-amino group of L-tryptophan with concomitant deprotonation of the carboxy group. | | Synthesis | A method for the preparation of a high-purity lenticin, characterized by the following steps: I small-leafed mallow raw materials crushed, plus acidic water immersion extraction 2 to 3 times, the extract ultrafiltration membrane ultrafiltration and then concentrated with a nanofiltration membrane, the concentrated solution plus ethanol solution precipitation, to get the precipitate; II the above precipitate is used by using high-speed counter-current chromatography separation, UV detector online monitoring, collection of the target flow fraction, decompression drying to get the Hepa acanthocyanine. The above precipitates were separated by high-speed counterclockwise chromatography. The ultrafiltration membrane described in step I is optional hollow cellulose membrane with a molecular weight cutoff of 10000 to 2000, and the nanofiltration membrane is a hollow cellulose membrane with a molecular weight cutoff of 200 to 100. The solvent system for the high-speed countercurrent chromatographic separation described in Step II may be selected as a combination of chloroform, methanol, and water in the ratio of 3 to 10:3 to 5:4 to 9, with the upper phase as the lower phase and the upper phase as the mobile phase. | | in vivo | Hypaphorine (10 mg/kg; i.p.; 2 hours after the LPS injection) relieves LPS induced acute lung injury (ALI) in rats with anti-inflammatory effects[2].
Hypaphorine (50 mg/kg; i.p.; once) has antihyperglycemic activity[4].
| Animal Model: | Male albino rats of Wistar/Sprague-Dawley strain (8-10 weeks, 160 g) made diabetic by intraperitoneal injection of Streptozotocin (HY-13753)[4] | | Dosage: | 50 mg/kg | | Administration: | Intraperitoneal injection (i.p.); once | | Result: | Showed significant anti-hyperglycemic activity (27.8% at 5 h and 20.4% at 24 h). |
| Animal Model: | Male Sprague-Dawley rats (200-220 g) treated with LPS[2] | | Dosage: | 10 mg/kg | | Administration: | Intraperitoneal injection (i.p.); 2 hours after the LPS injection | | Result: | Alleviated the histological changes in lung tissues induced by LPS, including severe inflammatory cell infiltration, thickened alveolar walls, obvious diffuse edema, narrowed alveolar space, strengthened interstitial congestion, serious pathological damage and higher scores.
Reduced BALF cells and neutrophils increased by LPS.
Attenuated the wet/dry weight ratio, capillary permeability and d myeloperoxidase (MPO) activity facilitated by LPS.
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| | References | [1] Keller BO, et al. Hypaphorine is present in human milk in association with consumption of legumes. J Agric Food Chem. 2013 Aug 7;61(31):7654-60. DOI:10.1021/jf401758f [2] Ding YH, et al. Hypaphorine exerts anti-inflammatory effects in sepsis induced acute lung injury via modulating DUSP1/p38/JNK pathway. Kaohsiung J Med Sci. 2021 Oct;37(10):883-893. DOI:10.1002/kjm2.12418 [3] Ditengou FA, et al. Hypaphorine from the ectomycorrhizal fungus Pisolithus tinctorius counteracts activities of indole-3-acetic acid and ethylene but not synthetic auxins in eucalypt seedlings. Mol Plant Microbe Interact. 2000 Feb;13(2):151-8. DOI:10.1094/MPMI.2000.13.2.151 [4] Chand K, et al. Major alkaloidal constituent from Impatiens niamniamensis seeds as antihyperglycemic agent. Med Chem Res 20, 1505–1508 (2011). |
| | lenticin Preparation Products And Raw materials |
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