野生万花莲不同部位甲醇提取物的体内外抗炎及自由基清除活性

Choundong Yemele Christine, N. E. Laure, Bogning Zangueu Calvin, Magne Fongang Annie Laure, Mbock Armel Junior, Azebaze Anatole Guy Blaise, Dongmo Alain Bertrand
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引用次数: 0

摘要

目的:vanderguchtii (N. vanderguchtii)属红宝石科,在喀麦隆传统医学中被广泛用于治疗关节炎、风湿病和胃病等炎症性疾病。本研究旨在通过体外实验和体内模型,通过多参数分析来评价甲醇提取物对植物叶、茎、根和皮的抗炎作用。方法:风干万古苔叶、茎、皮和根,提取甲醇提取物。红细胞膜稳定性和蛋白变性是体外抗炎活性的筛选试验,其次是二苯基吡啶酰肼(DPPH)、2,2 ' -氮基-双-(3 -乙基苯并噻唑啉-6-磺基(ABTS)和铁还原抗氧化能力(FRAP)的抗氧化活性。此外,通过角叉菜胶诱导的体内水肿实验,评估了叶和茎甲醇提取物的抗炎能力。结果:万古核各部位均能有效稳定红血膜。甲醇叶提取物的效果较好(53.12%),其次是茎(50.55%)、皮(50.98%)和根(49.6%),而标准对照药布洛芬的效果为51.16%。这些提取物还能抑制鸡蛋白蛋白的变性(P小于0.05;P小于0.01)。甲醇茎叶提取物对ABTS -自由基(95.92±0.37%)、DPPH -自由基(91.12±0.13%)有较好的清除作用。甲醇提取物的FRAP呈浓度依赖性。万古石核桃叶甲醇提取物对足跖水肿的抑制作用显著(P< 0.01),最大抑制率为58.97% (200 mg / kg)。结论:万古苔提取物具有明显的抗炎和抗自由基活性。这些活动在叶子中比植物的其他部分更明显,证明了传统使用的合理性。
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In vivo and In vitro Anti-inflammatory and Free Radical Scavenging Activities of Methonolic Extract of Different Parts from Nauclea vanderguchtii De Wild (Rubiaceae)
Aims: Nauclea vanderguchtii (N. vanderguchtii) species belongs to the family Rubiaceae and it is widely used in traditional Cameroonian medicine against inflammatory diseases such as arthritis, rheumatism and gastric disorders. The present study was aimed to evaluate anti-inflammatory effect of a methanol extracts of leaves, stems, roots and barks with multiparametric analyses through in vitro assays and an in vivo model. Methodology: Leaves, stems, barks and roots of N. vanderguchtii were air-dried and a methanolic extract was further obtained. Red blood cell membrane stabilization and protein denaturation were carried out as screening assays for anti-inflammatory activity in vitro, following by Diphenyl picryl-hydrazyl (DPPH), 2,2’- azino-bis – (3 - ethylbenzothiazoline -6- sulfonique (ABTS) and Ferric Reducing Antioxidant Power ( FRAP) antioxidant activity. Furthermore, the anti-inflammatory capacity of leaves and stems methanolic extract was evaluated in vivo by carrageenan-induced oedema. Results: Each part of Nauclea vanderguchtii, effectively and significantly stabilized red blood cell membrane. The methanol leaves extract exhibited better effect (53.12%), followed by stems (50.55%), barks (50.98%) and roots (49.6%) compare to an ibuprofen (51.16%), a standard reference drug. Those extracts also inhibited the denaturation of the egg albumin (P ˂ .05; P ˂ .01). Methanol stem and leaves extracts from plant were the effective scavengers of ABTS - radical (95.92 ± 0.37%), DPPH - radical (91.12 ± 0.13%). FRAP of methanolic extract was concentration-dependent. Moreover, methanol leaves extract of Nauclea vanderguchtii, significantly (P<.01) prevented paw edema with the maxima 58.97% (200 mg / kg). Conclusion: This study shows that N. vanderguchtii extracts possess significant anti-inflammatory and antiradical activities. These activities are more pronounced in leaves than other parts of plant and justify the traditional use.
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