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首页> 外文期刊>Journal of the Air & Waste Management Association >Preparation and optimization of chitosan nanoparticles from discarded squilla (Carinosquilla multicahnata) shells for the delivery of anti-inflammatory drug: Diclofenac
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Preparation and optimization of chitosan nanoparticles from discarded squilla (Carinosquilla multicahnata) shells for the delivery of anti-inflammatory drug: Diclofenac

机译:废弃鳞状壳聚糖(Carinosquilla Multicahnata)壳壳聚糖纳米粒子的制备及优化,用于递送抗炎药:Diclofenac

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摘要

Biological waste from marine sources is discarded into various water bodies which leads to dramatic increase in the water pollution near coastal areas. This animal waste consists of bioactive compounds such as fatty acids, amino acids, and chitin which can be used in agricultural and pharmaceutical sectors. The aim of the current study was to extract chitosan (CS) from the discarded shells of Carinosquilla multicarinata and prepare anti-inflammatory drug diclofenac potassium (DP) encapsulated chitosan nanoparticles (DP-CSNPs). The CS was extracted, purified and physicochemical and morphological properties were characterized such as viscosity (1.44cPs), molecular weight(~57 kDa), degree of deacetylation (83%). The DP-CSNPs were prepared by ionic gelation of extracted chitosan with tripolyphosphate (TPP) anions by varying chitosan, TPP, and drug concentrations. SEM imaging showed that DP-CSNPs were nano-sized (248 nm) along with small, spherical, and uniformity in shape. The endothermic peak appeared at 180°C while performing the thermal analysis of DP-CSNPs by differential scanning calorimetry (DSC). The Loading capacity (LC) and encapsulation efficiency (EE) were determined for all combinations while maximum EE (79.42%), LC (42.08%), and +0.00459 mV for Zeta potential were found for nanoparticles synthesized from CS with 2.5mg/mL concentration and 1mg/mL of TPP and drug concentrations. Moreover, in vitro drug release study was performed at simulated biological fluid (pH 7.4) and at 10th hr maximum (80%) of the drug was released from DP-CSNPs. Therefore, this waste source would be a better model system for the drug release. Implications: Dumping of marine waste into deep ocean has led to dramatic increase in water pollution leading to the endangerment of various oceanic animals. This discarded waste can be used sustainably for the isolation of various biopolymers into the ultimate use for human community. The work provides a detailed guide into the method of extraction of low molecular weight chitosan and preparation of nanoparticles for the delivery of anti-inflammatory drug diclofenac.
机译:海洋来源的生物废物被丢弃到各种水体中,导致沿海地区附近的水污染剧烈增加。这种动物废物由生物活性化合物,如脂肪酸,氨基酸和甲壳素,其可用于农业和药物部门。目前研究的目的是从Carinosquilla多功能池的废弃壳中提取壳聚糖(CS),并制备抗炎药双氯芬钾(DP)包封的壳聚糖纳米粒子(DP-CSNP)。提取Cs,纯化和物质化学和形态学性质如粘度(1.44cps),分子量(〜57kda),脱乙酰化程度(83%)。通过改变壳聚糖,TPP和药物浓度,通过用三聚磷酸壳(TPP)阴离子的提取的壳聚糖的离子凝胶化制备DP-CSNP。 SEM成像表明,DP-CSNPS是纳米大小(248nm)以及较小的球形和均匀性。通过差示扫描量热法(DSC)进行DP-CSNP的热分析,吸热峰值出现在180°C时。针对所有组合测定负载能力(LC)和封装效率(EE),同时发现从CS合成的Zeta电位的最大EE(79.42%),LC(42.08%)和+ 0.00459mV为2.5mg / ml合成的纳米颗粒浓度和1mg / ml TPP和药物浓度。此外,在模拟的生物液(pH7.4)中进行体外药物释放研究,并在第10小时的时间内从DP-CSNPS释放出最大(80%)的药物。因此,这种废物源将是药物释放的更好模型系统。含义:将海洋废物倾销到深海导致水污染导致各种海洋动物危害的巨大增加。这种丢弃的废物可以可持续地用于将各种生物聚合物分离为人群的最终用途。该作品提供了一种详细指导,进入低分子量壳聚糖的萃取方法,并制备纳米颗粒用于递送抗炎药Diclofenac。

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  • 来源
    《Journal of the Air & Waste Management Association》 |2020年第12期|1227-1235|共9页
  • 作者单位

    Department of Biotechnology School of Bioengineering SRM Institute of Science and Technology Kattankulathur India;

    Department of Biotechnology School of Bioengineering SRM Institute of Science and Technology Kattankulathur India;

    Department of Biotechnology School of Bioengineering SRM Institute of Science and Technology Kattankulathur India;

    Department of Biotechnology School of Bioengineering SRM Institute of Science and Technology Kattankulathur India;

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