Characterization and potential application of microspheres from sodium alginate cross-linked with pectin from Citrus depressa Hayata’s peels

IF 2.6 Q2 MULTIDISCIPLINARY SCIENCES Beni-Suef University Journal of Basic and Applied Sciences Pub Date : 2024-09-29 DOI:10.1186/s43088-024-00555-0
Chien Wei-Jyun, Agrawal Dinesh Chandra, Hamdiani Saprini, Adhikari Saroj, Dinar Suksmayu Saputri
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Abstract

Background

Pectin from Taiwan Citrus depressa Hayata’s peels (CDH pectin) and sodium alginate (Na alginate) were mixed in neutral acidity to produce microhydrogel beads or microspheres. The potential use of the microspheres such as encapsulation materials for quercetin and nobiletin, DPPH (2,2-diphenyl-1-picrylhydrazyl) scavenging activity, toxic elements absorption ability, and thermal characteristics were explored.

Results

Different ratios of CDH pectin and Na alginate produced microspheres of varying sizes and shapes. The highest yield (47.59%) with the broadest diameter was obtained at a Na alginate—CDH pectin ratio of 2:1, while the smallest yield was obtained from Na alginate—CDH pectin ratio of 1:3 (24.13%). Increasing the amount of Na alginate resulted in more spherical microspheres, higher heavy metals (cobalt and nickel) removal rates, yet a lower swelling ratio. A high pectin concentration also increased the encapsulation efficiency of quercetin and nobiletin, reaching 91.5% and 86.74%, respectively. Quercetin and nobiletin release analysis (in vitro) showed a slow release of drugs from the microspheres. Less than 20% quercetin and nobiletin were released from the microspheres in SGF (simulated gastric fluid) pH 1.2 solution after 2 h and more than 40% of the encapsulated drug was released in SIF (simulated intestinal fluid) pH 6.8 after 4 h. The strong DPPH scavenging activity of quercetin (99%) was not hindered by encapsulation materials. ICP-OES (inductively coupled plasma–optical emission spectrometry) analysis demonstrated that the biopolymer can absorb cobalt and nickel from water. Thermogravimetric analysis (TGA) result showed that the combination of CDH pectin and Na alginate produced a biopolymer that exhibited a weight loss of only 1.86–4.33% at 100 °C.

Conclusions

These findings suggest that microspheres produced from CDH pectin cross-linked with sodium alginate had potential in nobiletin and quercetin encapsulation. Moreover, the polymer could absorb heavy metals and exhibit an important characteristic for hot food and beverage packaging applications.

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海藻酸钠与早田柑橘果皮果胶交联微球的特性和潜在应用
背景将台湾早田柑橘果皮中的果胶(CDH果胶)和海藻酸钠(Na海藻酸钠)在中性酸度下混合,制成微水凝胶珠或微球。研究了微球的潜在用途,如槲皮素和金霉素的封装材料、DPPH(2,2-二苯基-1-苦基肼)清除活性、有毒元素吸收能力和热特性。海藻酸钠-CDH 果胶比例为 2:1 时,产量最高(47.59%),直径最宽;海藻酸钠-CDH 果胶比例为 1:3 时,产量最小(24.13%)。增加海藻酸钠的用量可获得更多球形微球、更高的重金属(钴和镍)去除率,但膨胀率较低。高浓度果胶也提高了槲皮素和金没药的封装效率,分别达到 91.5% 和 86.74%。槲皮素和金莲花素的体外释放分析表明,药物从微球中的释放速度较慢。在 pH 值为 1.2 的 SGF(模拟胃液)溶液中,2 小时后从微球中释放的槲皮素和金没药不到 20%;在 pH 值为 6.8 的 SIF(模拟肠液)溶液中,4 小时后从微球中释放的封装药物超过 40%。ICP-OES(电感耦合等离子体-光发射光谱)分析表明,生物聚合物可以吸收水中的钴和镍。热重分析(TGA)结果表明,CDH 果胶与海藻酸钠结合生成的生物聚合物在 100 °C 时的失重率仅为 1.86-4.33%。此外,这种聚合物还能吸收重金属,在热食品和饮料包装应用中具有重要特性。
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期刊介绍: Beni-Suef University Journal of Basic and Applied Sciences (BJBAS) is a peer-reviewed, open-access journal. This journal welcomes submissions of original research, literature reviews, and editorials in its respected fields of fundamental science, applied science (with a particular focus on the fields of applied nanotechnology and biotechnology), medical sciences, pharmaceutical sciences, and engineering. The multidisciplinary aspects of the journal encourage global collaboration between researchers in multiple fields and provide cross-disciplinary dissemination of findings.
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