弹性学习环境下公立小学校长的教学监督参与

Heronima D. Sanchez
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摘要

对其传统用途、植物化学特性和药物毒理学特性进行了研究。本研究采用描述性定性方法描述药用植物的传统用途,并采用实验定量方法确定植物的成分和功能。采用薄层色谱法(TLC)、绒毛膜尿囊膜法(CAM)、卤虾法和斑马鱼胚胎毒性法等方法对细菌进行了分析。根据研究结果,传统上,植物部分被用来治疗腹泻、牙痛、咳嗽、感冒、消化不良、流感症状、痛经、尿路感染、牙龈出血和肿胀、皮疹、低血糖、头皮屑、自然计划生育、动物农场驱虫和皮肤病。其植物化学成分包括蒽醌、蒽酮、生物碱、类黄酮、脂肪酸、三萜、类固醇、酚类和精油。此外,菌株浓度对CAM血管性的抑制作用随浓度的增加而增加,说明对血管性的抑制作用随浓度的增加而增加。同样,盐水对虾细胞毒性试验表明,随着植物提取物浓度的增加,虾的死亡数量增加。此外,植物提取物的LC50计算值为434ppm。另一方面,对暴露于植物样品乙醇提取物的斑马鱼胚胎的显微镜分析显示,在100ppm的提取物浓度下,幼虫出现畸形,表现为脊柱侧凸。此外,在植物提取物浓度范围为250ppm至1000ppm时,观察到发育迟缓和凝固的胚胎。鉴于本研究的结果,强烈建议未来的研究包括在菲律宾的杆菌杆菌生态学和生物学,以建立该国特有的杆菌杆菌的进一步分类。关键词:药物毒理学性质,植物化学分析,CAM试验,胚胎毒性,菲律宾
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Instructional Supervisory Engagement of Public Elementary School Heads in the Flexible Learning Environment
Cipadessa baccifera (Roth) Miq was studied for its traditional use, phytochemical properties, and pharmaco-toxicological properties. The descriptive qualitative method was used in this study to describe the traditional use of the medicinal plant, and the experimental quantitative method was used to determine the plant’s components and capabilities. Assays such as Thin Layer Chromatography (TLC), Chorioallantoic Membrane Assay (CAM), Brine Shrimp Assay, and Zebrafish Embryotoxicity Assay were done to profile the C. baccifera. Based on the results, traditionally, the plant parts were used as a treatment for diarrhea, toothache, cough, colds, indigestion, flu symptoms, dysmenorrhea, urinary tract infection, bleeding and swelling of gums, skin rashes, lowering blood sugar, dandruff, natural family planning, animal farm deworming and skin diseases. Its phytochemical contents include anthraquinones, anthrones, alkaloids, flavonoids, fatty acids, triterpenes, steroids, phenols, and essential oils. Furthermore, the CAM vascularity inhibition of Cipadessa baccifera concentrations increased with concentration, indicating that the inhibition of vascularity increased with concentration. Similarly, the brine shrimp cytotoxicity test revealed that the number of shrimp deaths increased as the concentration of plant extract increased. Furthermore, the plant extract’s calculated LC50 was 434ppm. Microscopic analysis of the zebrafish embryo exposed to the ethanolic extract of the plant sample, on the other hand, revealed malformation in the larvae exhibiting scoliosis at 100ppm extract concentration. Additionally, at plant extract concentrations ranging from 250ppm to 1000ppm, retarded and coagulated embryos were observed. Given the findings of the research study, it is highly recommended that future studies include the ecology and biology of C. baccifera in the Philippines to establish a further taxonomic classification of C. baccifera endemic to the country. Keywords: Pharmaco-toxicological properties, phytochemical analysis, CAM Assay, Embryotoxicity, Philippines
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