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5-Heneicosylresorcinol Sale

(Synonyms: 5-二十一烷基间苯二酚,5-Heneicosylresorcinol) 目录号 : GC46033

An alkylresorcinol

5-Heneicosylresorcinol Chemical Structure

Cas No.:70110-59-7

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1mg
¥1,456.00
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5mg
¥6,561.00
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10mg
¥9,850.00
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产品描述

5-Heneicosylresorcinol is an alkylresorcinol that has been found in wheat, rye, triticale, and barley.1 It reduces hydrogen peroxide-induced DNA damage in HT-29 cells when used at a concentration of 100 μmol/L.2 5-Heneicosylresorcinol (160 μg/ml), when used in combination with 5-nonadecanoylresorcinol, inhibits migration and invasion, reduces the number of LC3 puncta, a marker of autophagy, and decreases survival in HepG2 cells.3

|1. Ross, A.B., Shepherd, M.J., SchÜpphaus, M., et al. Alkylresorcinols in cereals and cereal products. J. Agric. Food Chem. 51(14), 4111-4118 (2003).|2. Parikka, K., Rowland, I.R., Welch, R.W., et al. In vitro antioxidant activity and antigenotoxicity of 5-n-alkylresorcinols. J. Agric. Food Chem. 54(5), 1646-1650 (2006).|3. Guo, Y.-Z., Yang, X.-M., and Li, Y.-Y. Effect of alkylresorcinols on autophagy, migration, and invasion of HepG2 cells. J. Food Sci. 84(10), 3063-3068 (2019).

Chemical Properties

Cas No. 70110-59-7 SDF
别名 5-二十一烷基间苯二酚,5-Heneicosylresorcinol
Canonical SMILES OC1=CC(O)=CC(CCCCCCCCCCCCCCCCCCCCC)=C1
分子式 C27H48O2 分子量 404.7
溶解度 Acetone: soluble,Chloroform: soluble,DMSO: soluble,Ethyl Acetate: soluble 储存条件 Store at -20°C
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1 mg 5 mg 10 mg
1 mM 2.471 mL 12.3548 mL 24.7097 mL
5 mM 0.4942 mL 2.471 mL 4.9419 mL
10 mM 0.2471 mL 1.2355 mL 2.471 mL
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Research Update

A highly efficient molecularly imprinted fluorescence sensor for assessing whole wheat grains by the rapid and sensitive detection of alkylresorcinols

Biosens Bioelectron 2023 Mar 1;223:115032.PMID:36566597DOI:10.1016/j.bios.2022.115032.

To differentiate whole wheat foods from refined wheat foods is still challenging grain industry and confusing consumers. Alkylresorcinols (ARs), as biomarkers of whole wheat grains, can serve for assessing the authenticity of whole wheat foods. Herein, a highly efficient fluorescence sensing platform (CDs@MIP) for rapid and sensitive analysis of ARs was explored, using carbon dots (CDs) as fluorophores and 5-Heneicosylresorcinol (C21:0 AR) as template molecules embedded in a molecularly imprinted polymer (MIP) coating. Benefiting from the specific cavities in the probe and a photo-induced electron transfer effect, the fluorescence intensity of CDs@MIP was significantly quenched in the presence of C21:0 AR, exhibiting a superior binding efficiency and selectivity. As a result, the fabricated optical sensor delivered a wide linear range of C21:0 AR from 0.015 to 60 μg mL-1 with an ultralow detection limit of 4 ng mL-1. It was noteworthy that the sensor was successfully applied for the rapid detection of C21:0 AR in commercial whole-wheat foods as well as visualization analysis on the test paper, comprehensively validating the practicality and efficacy of CDs@MIP based fluorescence assay. The study provides a rapid and sensitive detection method of C21:0 AR, paving a new way for guiding grain industry to effectively qualify the authenticity and to quantify the content of whole wheat in wheat-based foods.