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首页> 外文期刊>Experimental parasitology >Evaluation of the antileishmanial activity of biodegradable microparticles containing a hexanic eluate subfraction of Maytenus guianensis bark
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Evaluation of the antileishmanial activity of biodegradable microparticles containing a hexanic eluate subfraction of Maytenus guianensis bark

机译:评估含有MaytenusGuianensis Bark的乙二蝶蛋白酶的可生物降解微粒的抗恋微粒活性

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Leishmaniases, caused by Leishmanta spp., are among the most prevalent infectious diseases in the world and their treatment may present high toxicity and side/adverse effects. This study evaluated the antileishmanial activity of the Hexanic Eluate subfraction from Maytenus guianensis bark (HEMg) incorporated in microparticles of PLGA. One batch of microparticles produced contained HEMg (HEMgP) and another contained the PLGA polymer alone (PCTE). The microparticles were characterized in regards to diameter, Zeta potential, encapsulation rate and morphology and their cytotoxicity was evaluated against J774 macrophages. The infection assay employing peritoneal macrophages witth L. amazonensis and cytokine dosages were performed on the cell supernatants. The groups of infected BALB/C mice were treated, euthanized and the parasite load and cytokine production were evaluated. The diameters and zeta potential were: 4 mu m and -11.6 my (PCTE) and 7.8 mu m and - 26.7 mV (HEMgP). The encapsulation rate was a congruent to 15% and the morphology of the particles was spherical and homogeneous. In the infection assay, HEMgP inhibited the amastigotes by 70% (24 h) and 59% (48 h) and induced IL-12 and TNF-alpha production. HEMg in solution reduced the number of parasites in the lymph nodes by 50% and HEMgP administration increased the levels of IL-12 and TNF-alpha cytokines in lymph nodes and in the lesion site. When encapsulated, HEMg maintained its antileishmanial activity, but in a more attenuated and sustained form over time, showing promise as complementary/alternative therapy against cutaneous leishmaniasis.
机译:由Leishmanta SPP引起的Leishmaniases,是世界上最普遍的传染病之一,它们的治疗可能存在高毒性和副/不良影响。该研究评估了掺入PLGA微粒中的MaytenusGuianensis Bark(HEMG)的己酸蛋白酶蛋白酶的抗恋的癌症活动。一批产生含有HEMG(HEMGP)的微粒,另一批单独含有PLGA聚合物(PCTE)。对直径,Zeta电位,封装率和形态以及它们的细胞毒性评估了微粒,并针对J774巨噬细胞评估了它们的细胞毒性。采用腹膜巨噬细胞的感染测定在细胞上清液上进行亚马逊和细胞因子剂量。处理,对感染的BALB / C小鼠进行治疗,对寄生虫载荷和细胞因子产生进行治疗。直径和ζ电位为:4 mu m和-11.6 my(pcte)和7.8 mu m和-26.7 mv(hemgp)。封装率是一致的15%,颗粒的形态是球形和均匀的。在感染测定中,HemGP抑制了70%(24小时)和59%(48小时)和诱导IL-12和TNF-α产生的amstigotes。溶液中的HEMG减少了淋巴结中寄生虫的数量50%,HEMG给药增加了淋巴结和病变位点中的IL-12和TNF-α细胞因子的水平。当封装时,HEMG保持其抗恋的营运活动,但随着时间的推移,以更加衰减和持续的形式,表现为互补/替代治疗免受皮肤利什曼病的疗法。

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