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尤卡坦植物区系植物的抗晚期糖基化终产物及自由基清除活性

Anti-Advanced Glycation End-product and Free Radical Scavenging Activity of Plants from the Yucatecan Flora.

作者信息

Dzib-Guerra Wendy Del C, Escalante-Erosa Fabiola, García-Sosa Karlina, Derbré Séverine, Blanchard Patricia, Richomme Pascal, Peña-Rodríguez Luis M

机构信息

Unidad de Biotecnología, Centro de Investigación Científica de Yucatán, A.C. Mérida, Yucatán, Mexico.

EA921 SONAS/SFR QUASAV-Université d'Angers, Angers, France.

出版信息

Pharmacognosy Res. 2016 Oct-Dec;8(4):276-280. doi: 10.4103/0974-8490.188883.

Abstract

BACKGROUND

Formation and accumulation of advanced glycation end-products (AGE) is recognized as a major pathogenic process in diabetic complications, atherosclerosis and cardiovascular diseases. In addition, reactive oxygen species and free radicals have also been reported to participate in AGE formation and in cell damage. Natural products with antioxidant and antiAGE activity have great therapeutic potential in the treatment of diabetes, hypertension and related complications. Objective: to test ethanolic extracts and aqueous-traditional preparations of plants used to treat diabetes, hypertension and obesity in Yucatecan traditional medicine for their anti-AGE and free radical scavenging activities.

MATERIALS AND METHODS

ethanolic extracts of leaves, stems and roots of nine medicinal plants, together with their traditional preparations, were prepared and tested for their anti-AGE and antioxidant activities using the inhibition of advanced glycation end products and DPPH radical scavenging assays, respectively.

RESULTS

the root extract of (IC= 0.1 mg/mL) and the leaf extract of (IC= 0.35 mg/mL) presented significant activity against vesperlysine and pentosidine-like AGE. Although none of the aqueous traditional preparations showed significant activity in the anti-AGE assay, both the traditional preparations and the ethanolic extracts of and showed significant activity in the DPPH reduction assay.

CONCLUSIONS

the results suggest that the metabolites responsible for the detected radical-scavenging activity are different to those involved in inhibiting AGE formation; however, the extracts with antioxidant activity may contain other metabolites which are able to prevent AGE formation through a different mechanism.

SUMMARY

Ethanolic extracts from nine plants used to treat diabetes, hypertension and obesity in Yucatecan traditional medicine were tested for their anti-AGE and free radical scavenging activities.Significant activity against vesperlysine and pentosidine-like AGE was detected in the root extract of and the leaf extract of .Traditional preparations and the ethanolic extracts of and showed significant activity in the DPPH reduction assay.Results suggest that the metabolites responsible for the detected radical-scavenging activity are different to those involved in inhibiting AGE formation. : AGE: Advanced glycation end-product; DPPH: 2,2-Diphenyl-1-picrylhydrazyl; DM: Diabetes mellitus; ROS: Reactive oxygen species; BSA: Bovine serum albumin; EtOH: Ethanol; EtOAc: Ethyl acetate; ANOVA: Analysis of variance; BA: ; BS: ; CF: ; CN: ; ET: ; MZ: ; OC: ; PA: ; RM: ; L: Leaves; S: Stems; R: Roots; T: traditional preparation; I: Inflorescences; W: Water.

摘要

背景

晚期糖基化终产物(AGE)的形成和积累被认为是糖尿病并发症、动脉粥样硬化和心血管疾病中的主要致病过程。此外,据报道活性氧和自由基也参与AGE的形成及细胞损伤。具有抗氧化和抗AGE活性的天然产物在糖尿病、高血压及相关并发症的治疗中具有巨大的治疗潜力。目的:检测尤卡坦传统医学中用于治疗糖尿病、高血压和肥胖症的植物的乙醇提取物和水基传统制剂的抗AGE和自由基清除活性。

材料与方法

制备了9种药用植物叶、茎和根的乙醇提取物及其传统制剂,并分别使用晚期糖基化终产物抑制试验和DPPH自由基清除试验检测其抗AGE和抗氧化活性。

结果

[植物名称1]的根提取物(IC = 0.1 mg/mL)和[植物名称2]的叶提取物(IC = 0.35 mg/mL)对vesperlysine和戊糖苷样AGE具有显著活性。虽然水基传统制剂在抗AGE试验中均未显示出显著活性,但[植物名称3]和[植物名称4]的传统制剂和乙醇提取物在DPPH还原试验中均显示出显著活性。

结论

结果表明,负责检测到的自由基清除活性的代谢物与参与抑制AGE形成的代谢物不同;然而,具有抗氧化活性的提取物可能含有其他能够通过不同机制预防AGE形成的代谢物。

总结

检测了尤卡坦传统医学中用于治疗糖尿病、高血压和肥胖症的9种植物的乙醇提取物的抗AGE和自由基清除活性。在[植物名称1]的根提取物和[植物名称2]的叶提取物中检测到对vesperlysine和戊糖苷样AGE的显著活性。[植物名称3]和[植物名称4]的传统制剂和乙醇提取物在DPPH还原试验中显示出显著活性。结果表明,负责检测到的自由基清除活性的代谢物与参与抑制AGE形成的代谢物不同。:AGE:晚期糖基化终产物;DPPH:2,2-二苯基-1-苦基肼;DM:糖尿病;ROS:活性氧;BSA:牛血清白蛋白;EtOH:乙醇;EtOAc:乙酸乙酯;ANOVA:方差分析;BA:[植物名称5];BS:[植物名称6];CF:[植物名称7];CN:[植物名称8];ET:[植物名称9];MZ:[植物名称10];OC:[植物名称11];PA:[植物名称12];RM:[植物名称13];L:叶;S:茎;R:根;T:传统制剂;I:花序;W:水。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7650/5004519/24ece289fe99/PR-8-276-g003.jpg

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