麻疯树乳胶在鸡绒毛膜尿囊膜模型中的抗血管生成潜能

IF 0.3 Q3 MEDICINE, GENERAL & INTERNAL Scientia Medica Pub Date : 2019-01-17 DOI:10.15448/1980-6108.2019.1.32157
L. M. Almeida, E. F. C. Bailão, I. R. Pereira, F. Ferreira, P. D’Abadia, L. Borges, F. S. Matos, R. Lino-Júnior, Paulo Roberto de Melo-Reis, P. J. Gonçalves
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Five groups of 20 fertilized chicken eggs each had the chorioallantoic membrane exposed to the following solutions: (1) water, negative control; (2) dexamethasone, angiogenesis inhibitor; (3) Regederm®, positive control; (4) 25% J. curcas latex diluted in water; (5) 50% J. curcas latex diluted in water; and (6) J. curcas crude latex. Analysis of the newly-formed vascular net was made through captured images and quantification of the number of pixels. Histological analyses were performed to evaluate the inflammation, neovascularization, and hyperemia parameters. The results were statically analyzed with a significance level set at p ˂0.05.RESULTS: Physicochemical characterization showed that J. curcas latex presented a low amount of cis-1.4-polyisoprene, which reduced its elasticity and thermal stability. Phytochemical analyses of J. curcas latex identified a substantial amount of phenols, tannins, and flavonoids (51.9%, 11.8%, and 0.07% respectively). 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引用次数: 2

摘要

目的:对麻疯树胶乳进行理化和植物化学表征,并研究其抗血管生成的潜力。方法:采用热重分析和傅立叶变换红外光谱法对油麻胶乳进行了初步的物理化学表征。之后,对酚类、单宁和黄酮类化合物进行了定量。最后,利用鸡胚绒毛尿囊膜模型评估了curcas胶乳抑制血管生成的潜力。5组,每组20个受精鸡蛋,将绒毛尿囊膜暴露于以下溶液中:(1)水,阴性对照;(2) 地塞米松,血管生成抑制剂;(3) Regederm®,阳性对照;(4) 25%在水中稀释的curcas胶乳;(5) 50%在水中稀释的curcas胶乳;和(6)J.curcas粗胶乳。通过捕获的图像和像素数量的量化对新形成的血管网进行分析。进行组织学分析以评估炎症、新生血管形成和充血参数。结果进行了静态分析,显著性水平设定为p 0.05。结果:物理化学表征表明,curcas胶乳中顺式-1.4-聚异戊二烯含量较低,降低了其弹性和热稳定性。curcas乳胶的植物化学分析鉴定出大量的酚类、单宁和类黄酮(分别为51.9%、11.8%和0.07%)。使用鸡绒毛尿囊膜试验,我们证明了金合欢胶乳的抗血管生成潜力。与中性和阳性对照(水和Regederm®)相比,乳胶诱导膜的血管形成减少。然而,当与阴性对照(地塞米松)相比时,较高的curcas胶乳浓度没有显示出显著差异。结论:curcas乳胶具有较低的热稳定性,由酚类、单宁和类黄酮组成,但很少或没有橡胶。此外,这种乳胶在鸡胚绒毛尿囊膜模型上显示出显著的抗血管生成活性。curcas乳胶具有抗突变、细胞毒性、抗氧化和抗血管生成的特性,是开发新药的潜在靶点。
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Antiangiogenic potential of Jatropha curcas latex in the chick chorioallantoic membrane model
AIMS: To perform a physicochemical and phytochemical characterization of Jatropha curcas latex and to investigate its antiangiogenic potential. METHODS: We performed an initial physicochemical characterization of J. curcas latex using thermal gravimetric analyses and Fourier Transform Infrared spectroscopy. After that, phenols, tannins and flavonoids were quantified. Finally, the potential of J. curcas latex to inhibit angiogenesis was evaluated using the chick chorioallantoic membrane model. Five groups of 20 fertilized chicken eggs each had the chorioallantoic membrane exposed to the following solutions: (1) water, negative control; (2) dexamethasone, angiogenesis inhibitor; (3) Regederm®, positive control; (4) 25% J. curcas latex diluted in water; (5) 50% J. curcas latex diluted in water; and (6) J. curcas crude latex. Analysis of the newly-formed vascular net was made through captured images and quantification of the number of pixels. Histological analyses were performed to evaluate the inflammation, neovascularization, and hyperemia parameters. The results were statically analyzed with a significance level set at p ˂0.05.RESULTS: Physicochemical characterization showed that J. curcas latex presented a low amount of cis-1.4-polyisoprene, which reduced its elasticity and thermal stability. Phytochemical analyses of J. curcas latex identified a substantial amount of phenols, tannins, and flavonoids (51.9%, 11.8%, and 0.07% respectively). Using a chick chorioallantoic membrane assay, we demonstrated the antiangiogenic potential of J. curcas latex. The latex induced a decrease in the vascularization of the membranes when compared with neutral and positive controls (water and Regederm®). However, when compared with the negative control (dexamethasone), higher J. curcas latex concentrations showed no significant differences.CONCLUSIONS: J. curcas latex showed low thermal stability, and consisted of phenols, tannins, and flavonoids, but little or no rubber. Moreover, this latex demonstrated a significant antiangiogenic activity on a chick chorioallantoic membrane model. The combination of antimutagenic, cytotoxic, antioxidant and antiangiogenic properties makes J. curcas latex a potential target for the development of new drugs.
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来源期刊
Scientia Medica
Scientia Medica MEDICINE, GENERAL & INTERNAL-
CiteScore
0.70
自引率
20.00%
发文量
14
审稿时长
10 weeks
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