Izaz Aqeiluz Zahara, Siti Mariyah Ulfa, Anna Safitri
{"title":"不同天然聚合物作为冷冻干燥微胶囊包衣剂的比较分析","authors":"Izaz Aqeiluz Zahara, Siti Mariyah Ulfa, Anna Safitri","doi":"10.1155/2024/6833341","DOIUrl":null,"url":null,"abstract":"<p><p>The flavonoid compounds in <i>C. caudatus</i> K., known for their various benefits, are prone to quick degradation, leading to reduced biological activity. This research aimed to evaluate the types of coatings: gum Arabic (GA), maltodextrin (MD), and a combination of both (MDGA) in <i>C. caudatus</i> K. extract microcapsules. The extract of <i>C. caudatus</i> K. was encapsulated by different coating materials, GA, MD, and MDGA, and then dried using a freeze-drying technique. The evaluation was carried out by comparing the encapsulation efficiency values, biological activity, and release tests of each type of microcapsule coating. The research results indicate that coating agents have impacts significantly at <i>p</i> < 0.05 on efficiency encapsulation. Flavonoids were retained up to 79.67% by the MDGA coating, compared with 72.8% and 47.66%<sup>a</sup> retained by single GA and MD coatings, respectively. The results of the encapsulation efficiency are supported by the results of characterization using a scanning electron microscope (SEM), where MDGA has rounder shapes with smoother surfaces compared with a single coating alone, like GA or MD. In addition, by particle size analysis using a particle size analyzer (PSA), the average sizes of MDGA, GA, and MD microcapsules were shown at 154.13 <i>µ</i>m, 152 <i>µ</i>m, and 166.81 <i>µ</i>m, respectively. The three microcapsules showed an order of activities as MDGA > GA > MD coatings in alpha-amylase inhibition assay. Similar results were also shown in the antioxidant assay, which demonstrated that the three microcapsules had moderate antioxidant activities, again in the order of MDGA > GA > MD. The three different coating types showed greater release at pH 7.4 compared to those at pH 2.2 in the controlled release test, which ran from 30 to 120 min. In summary, freeze-drying microencapsulation using biodegradable polymers was identified as a viable method for harnessing the health benefits of <i>C. caudatus</i> K. extracts. This process produced a convenient powder form that could be used in drug delivery systems. The use of MDGA mixed coating resulted in better impact based on %EE value and biological activity, as well as improved characteristics of microcapsules compared with single coating.</p>","PeriodicalId":22985,"journal":{"name":"The Scientific World Journal","volume":"2024 ","pages":"6833341"},"PeriodicalIF":0.0000,"publicationDate":"2024-08-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11364477/pdf/","citationCount":"0","resultStr":"{\"title\":\"Comparative Analysis of Different Natural Polymers as Coating Agents for Freeze-Dried Microencapsulation of <i>Cosmos caudatus</i> Kunth Compounds.\",\"authors\":\"Izaz Aqeiluz Zahara, Siti Mariyah Ulfa, Anna Safitri\",\"doi\":\"10.1155/2024/6833341\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The flavonoid compounds in <i>C. caudatus</i> K., known for their various benefits, are prone to quick degradation, leading to reduced biological activity. This research aimed to evaluate the types of coatings: gum Arabic (GA), maltodextrin (MD), and a combination of both (MDGA) in <i>C. caudatus</i> K. extract microcapsules. The extract of <i>C. caudatus</i> K. was encapsulated by different coating materials, GA, MD, and MDGA, and then dried using a freeze-drying technique. The evaluation was carried out by comparing the encapsulation efficiency values, biological activity, and release tests of each type of microcapsule coating. The research results indicate that coating agents have impacts significantly at <i>p</i> < 0.05 on efficiency encapsulation. Flavonoids were retained up to 79.67% by the MDGA coating, compared with 72.8% and 47.66%<sup>a</sup> retained by single GA and MD coatings, respectively. The results of the encapsulation efficiency are supported by the results of characterization using a scanning electron microscope (SEM), where MDGA has rounder shapes with smoother surfaces compared with a single coating alone, like GA or MD. In addition, by particle size analysis using a particle size analyzer (PSA), the average sizes of MDGA, GA, and MD microcapsules were shown at 154.13 <i>µ</i>m, 152 <i>µ</i>m, and 166.81 <i>µ</i>m, respectively. The three microcapsules showed an order of activities as MDGA > GA > MD coatings in alpha-amylase inhibition assay. Similar results were also shown in the antioxidant assay, which demonstrated that the three microcapsules had moderate antioxidant activities, again in the order of MDGA > GA > MD. The three different coating types showed greater release at pH 7.4 compared to those at pH 2.2 in the controlled release test, which ran from 30 to 120 min. In summary, freeze-drying microencapsulation using biodegradable polymers was identified as a viable method for harnessing the health benefits of <i>C. caudatus</i> K. extracts. This process produced a convenient powder form that could be used in drug delivery systems. 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引用次数: 0
摘要
草履虫中的黄酮类化合物以其各种功效而闻名,但容易快速降解,导致生物活性降低。本研究旨在评估 C. caudatus K. 提取物微胶囊中的包衣类型:阿拉伯树胶(GA)、麦芽糊精(MD)以及两者的组合(MDGA)。用不同的包衣材料(阿拉伯树胶、麦芽糊精和麦芽糖糊精)对尾根草提取物进行包囊,然后使用冷冻干燥技术进行干燥。通过比较每种微胶囊包衣的包囊效率值、生物活性和释放试验进行了评价。研究结果表明,包衣剂对包囊效率的影响显著(p < 0.05)。MDGA包衣对黄酮类化合物的保留率高达79.67%,而单一GA和MD包衣对黄酮类化合物的保留率分别为72.8%和47.66%a。使用扫描电子显微镜(SEM)进行表征的结果也证实了封装效率的结果,与 GA 或 MD 等单一涂层相比,MDGA 的形状更圆,表面更光滑。此外,通过使用粒度分析仪(PSA)进行粒度分析,MDGA、GA 和 MD 微胶囊的平均粒度分别为 154.13 微米、152 微米和 166.81 微米。在α-淀粉酶抑制实验中,三种微胶囊的活性顺序为 MDGA > GA > MD 涂层。抗氧化试验也显示了类似的结果,三种微胶囊都具有中等程度的抗氧化活性,其顺序同样是 MDGA > GA > MD。在 30 到 120 分钟的控释试验中,三种不同类型的包衣在 pH 值为 7.4 时比 pH 值为 2.2 时的释放量更大。总之,使用生物可降解聚合物进行冷冻干燥微胶囊化被认为是利用尾叶芹提取物健康益处的可行方法。这种工艺生产出的粉末形式非常方便,可用于给药系统。与单一包衣相比,使用 MDGA 混合包衣在 %EE 值和生物活性方面产生了更好的影响,并改善了微胶囊的特性。
Comparative Analysis of Different Natural Polymers as Coating Agents for Freeze-Dried Microencapsulation of Cosmos caudatus Kunth Compounds.
The flavonoid compounds in C. caudatus K., known for their various benefits, are prone to quick degradation, leading to reduced biological activity. This research aimed to evaluate the types of coatings: gum Arabic (GA), maltodextrin (MD), and a combination of both (MDGA) in C. caudatus K. extract microcapsules. The extract of C. caudatus K. was encapsulated by different coating materials, GA, MD, and MDGA, and then dried using a freeze-drying technique. The evaluation was carried out by comparing the encapsulation efficiency values, biological activity, and release tests of each type of microcapsule coating. The research results indicate that coating agents have impacts significantly at p < 0.05 on efficiency encapsulation. Flavonoids were retained up to 79.67% by the MDGA coating, compared with 72.8% and 47.66%a retained by single GA and MD coatings, respectively. The results of the encapsulation efficiency are supported by the results of characterization using a scanning electron microscope (SEM), where MDGA has rounder shapes with smoother surfaces compared with a single coating alone, like GA or MD. In addition, by particle size analysis using a particle size analyzer (PSA), the average sizes of MDGA, GA, and MD microcapsules were shown at 154.13 µm, 152 µm, and 166.81 µm, respectively. The three microcapsules showed an order of activities as MDGA > GA > MD coatings in alpha-amylase inhibition assay. Similar results were also shown in the antioxidant assay, which demonstrated that the three microcapsules had moderate antioxidant activities, again in the order of MDGA > GA > MD. The three different coating types showed greater release at pH 7.4 compared to those at pH 2.2 in the controlled release test, which ran from 30 to 120 min. In summary, freeze-drying microencapsulation using biodegradable polymers was identified as a viable method for harnessing the health benefits of C. caudatus K. extracts. This process produced a convenient powder form that could be used in drug delivery systems. The use of MDGA mixed coating resulted in better impact based on %EE value and biological activity, as well as improved characteristics of microcapsules compared with single coating.
期刊介绍:
The Scientific World Journal is a peer-reviewed, Open Access journal that publishes original research, reviews, and clinical studies covering a wide range of subjects in science, technology, and medicine. The journal is divided into 81 subject areas.