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阿卡波糖 標(biāo)準(zhǔn)品,HPLC≥98%
點(diǎn)擊次數(shù):45 更新時(shí)間:2025-09-15

阿卡波糖

分析標(biāo)準(zhǔn)品,HPLC≥98%

Acarbose

CAS號(hào):56180-94-0

分子式:C25H43NO18

分子量:645.6

MDLMFCD00869592

貨號(hào)

規(guī)格/參數(shù)/品牌

價(jià)格

貨期

YJ-B20003-20mg

分析標(biāo)準(zhǔn)品,HPLC≥98%

350.00

現(xiàn)貨

YJ-B20003-100mg

分析標(biāo)準(zhǔn)品,HPLC≥98%

900.00

現(xiàn)貨

JS11190-500mg

BR,95%

460.00

現(xiàn)貨

JS11190-1g

BR,95%

560.00

現(xiàn)貨

JS11190-5g

BR,95%

1200.00

現(xiàn)貨

JS11190-25g

BR,95%

3280.00

現(xiàn)貨

 

產(chǎn)品介紹

 Acarbose (BAY g 5421),降糖藥,是一種具有口服活性 α-葡萄糖苷酶 (alpha-glucosidase) 抑制劑 (IC50=11 nM)。Acarbose 能增強(qiáng)磺脲類藥物或胰島素的降血糖作用。

熔點(diǎn):165-170℃

沸點(diǎn):971.6℃ at 760 mmHg

比旋光度:+147.2(H2O)

外觀:白色或類白色粉末

溶解性:Souble  in  H2O

儲(chǔ)存條件:2-8℃

注意:部分產(chǎn)品我司僅能提供部分信息,我司不保證所提供信息的權(quán)威性,僅供客戶參考交流研究之用。

參考文獻(xiàn)(195)

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99. [IF=5.6] Ye Liu et al."Aporphine alkaloids identified from Xylopia aethiopica and their potential hypoglycemic and hypolipidemic activities."Journal of Functional Foods.2023 Jul;106:105601

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96. [IF=5.318] Haiping Xiang et al."Screening, characterization of trace α-glucosidase inhibitors from the root of Pueraria lobata and evaluation of their hypoglycemic activity."Food Bioscience.2023 Jun;53:102641

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94. [IF=6.208] Rui Wang et al."A Comparative Study of Binding Interactions between Proteins and Flavonoids in Angelica Keiskei: Stability, α-Glucosidase Inhibition and Interaction Mechanisms."INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES.2023 Jan;24(7):6582

93. [IF=9.231] Xiu-Juan Zhang et al."Deep eutectic solvent combined with ultrasound technology: A promising integrated extraction strategy for anthocyanins and polyphenols from blueberry pomace."FOOD CHEMISTRY.2023 Oct;422:136224

92. [IF=9.231] Lin Han et al."Inhibition mechanism of α-glucosidase inhibitors screened from Tartary buckwheat and synergistic effect with acarbose."FOOD CHEMISTRY.2023 Sep;420:136102

91. [IF=6.575] Yi-Meng Li et al."The hypoglycemic activities and underlying mechanisms of two saponins-rich components from fried Ziziphus jujuba Mill. kernel."MOLECULAR NUTRITION & FOOD RESEARCH.2023 Mar;:2200364

90. [IF=7.675] Mei Han et al."Antioxidant, Anti-Inflammatory and Anti-Diabetic Activities of Tectona grandis Methanolic Extracts, Fractions, and Isolated Compounds."Antioxidants.2023 Mar;12(3):664

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85. [IF=6.208] Xue-Lin Chen et al."Triterpenoids from Kochiae Fructus: Glucose Uptake in 3T3-L1 Adipocytes and α-Glucosidase Inhibition, in Silico Molecular Docking."INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES.2023 Jan;24(3):2454

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44. [IF=2.863] Ke Cheng et al."Evaluation of the impact of different drying methods on the phenolic compounds, antioxidant activity, and in vitro digestion of green coffee beans."Food Sci Nutr. 2019 Mar;7(3):1084-1095

43. [IF=3.225] Wenhao  Xu et al."Mechanochemical preparation of kaempferol intermolecular complexes for enhancing the solubility and bioavailability."Drug Dev Ind Pharm. 2018;44(12):1924-1932

42. [IF=5.118] Shan-Shan Zhang et al."Two Novel Multi-Functional Peptides from Meat and Visceral Mass of Marine Snail Neptunea arthritica cumingii and Their Activities In Vitro and In Vivo."Mar Drugs. 2018 Dec;16(12):473

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40. [IF=5.396] Jie Zhou et al."Roasting improves the hypoglycemic effects of a large-leaf yellow tea infusion by enhancing the levels of epimerized catechins that inhibit α-glucosidase."Food Funct. 2018 Oct;9(10):5162-5168

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38.  Hou, Xiaorong, et al. "Development of an immobilized liposome chromatography method for screening and characterizing α-glucosidase-binding compounds." Journal of Chromatography B 1148 (2020): 122097.https:##doi.org/10.1016/j.jchromb.2020.122097

37.  Yang, Yi, et al. "GC-MS profiling, bioactivities and in silico theoretical explanation of cone oil from Pinus thunbergii Parl." Industrial Crops and Products 141 (2019): 111765.https:##doi.org/10.1016/j.indcrop.2019.111765

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1.  張燕  余根益  高敏 等. 4種茶的多酚含量、抗氧化性及抑制α-淀粉酶活性的比較[J]. 河南工業(yè)大學(xué)學(xué)報(bào)(自然科學(xué)版)  2019  40(01):85-89.

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