Synthesis, characterization, and cytocompatibility of potential cockle shell aragonite nanocrystals for osteoporosis therapy and hormonal delivery

IF 4.9 Q2 NANOSCIENCE & NANOTECHNOLOGY Nanotechnology, Science and Applications Pub Date : 2017-01-18 DOI:10.2147/NSA.S113030
A. Z. Jaji, Md. Zuki Abu Bakar, R. Mahmud, M. Loqman, M. Hezmee, T. Isa, Wenliang Fu, Nahidah Ibrahim Hammadi
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引用次数: 21

Abstract

Calcium carbonate is a porous inorganic nanomaterial with huge potential in biomedical applications and controlled drug delivery. This study aimed at evaluating the physicochemical properties and in vitro efficacy and safety of cockle shell aragonite calcium carbonate nanocrystals (ANC) as a potential therapeutic and hormonal delivery vehicle for osteoporosis management. Free and human recombinant parathyroid hormone 1-34 (PTH 1-34)-loaded cockle shell aragonite calcium carbonate nanocrystals (PTH-ANC) were synthesized and evaluated using standard procedures. Transmission electron microscopy and field emission scanning electron microscopy results demonstrated highly homogenized spherical-shaped aragonite nanocrystals of 30±5 nm diameter. PTH-ANC had a zeta potential of −27.6±8.9 mV. The encapsulation efficiency of the formulation was found to be directly proportional to the concentrations of the drug fed. The X-ray diffraction patterns revealed strong crystallizations with no positional change of peaks before and after PTH-ANC synthesis. Fourier transform infrared spectroscopy demonstrated no detectable interactions between micron-sized aragonite and surfactant at molecular level. PTH-ANC formulation was stabilized at pH 7.5, enabling sustained slow release of PTH 1-34 for 168 h (1 week). A 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide cytocompatibility assay in Human Foetal Osteoblast Cell Line hFOB 1.19 showed that ANC can safely support osteoblast proliferation up to 48 h whereas PTH-ANC can safely support the proliferation at 72 h and beyond due to the sustained slow release of PTH 1-34. It was concluded that due to its biogenic nature, ANC is a cytocompatible antiosteoporotic agent. It doubles as a nanocarrier for the enhancement of efficacy and safety of the bone anabolic PTH 1-34. ANC is expected to reduce the cost, dosage, and dose frequency associated with the use of PTH 1-34 management of primary and secondary forms of osteoporosis.
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用于骨质疏松症治疗和激素输送的潜在贝壳文石纳米晶体的合成、表征和细胞相容性
碳酸钙是一种多孔无机纳米材料,在生物医学应用和药物控释方面具有巨大潜力。本研究旨在评估鸡壳文石碳酸钙纳米晶体(ANC)的理化性质、体外疗效和安全性,作为骨质疏松症治疗的潜在治疗和激素递送载体。合成了游离和人重组甲状旁腺激素1-34(PTH 1-34)负载的鸡壳文石碳酸钙纳米晶体(PTH-ANC),并使用标准程序进行了评估。透射电子显微镜和场发射扫描电子显微镜结果表明,直径为30±5nm的球形霰石纳米晶体高度均匀。PTH-ANC的ζ电位为−27.6±8.9mV。发现该制剂的包封效率与给药浓度成正比。X射线衍射图显示,在PTH-ANC合成前后,结晶强烈,峰的位置没有变化。傅立叶变换红外光谱表明,在分子水平上,微米级霰石和表面活性剂之间没有可检测的相互作用。PTH-ANC制剂在pH 7.5下稳定,使得PTH 1-34能够持续缓慢释放168小时(1周)。在人胎儿成骨细胞系hFOB 1.19中进行的3-(4,5-二甲基噻唑-2-基)-2,5-二苯基四唑溴化物细胞相容性测定表明,ANC可以安全地支持成骨细胞增殖长达48小时,而PTH-ANC由于PTH 1-34的持续缓慢释放而可以安全地在72小时及以后支持增殖。结果表明,由于ANC的生物特性,它是一种具有细胞相容性的抗骨质疏松剂。它兼作纳米载体,用于增强骨合成代谢PTH 1-34的功效和安全性。ANC有望降低与PTH 1-34治疗原发性和继发性骨质疏松症相关的成本、剂量和剂量频率。
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来源期刊
Nanotechnology, Science and Applications
Nanotechnology, Science and Applications NANOSCIENCE & NANOTECHNOLOGY-
CiteScore
11.70
自引率
0.00%
发文量
3
审稿时长
16 weeks
期刊介绍: Nanotechnology, Science and Applications is an international, peer-reviewed, Open Access journal that focuses on the science of nanotechnology in a wide range of industrial and academic applications. The journal is characterized by the rapid reporting of reviews, original research, and application studies across all sectors, including engineering, optics, bio-medicine, cosmetics, textiles, resource sustainability and science. Applied research into nano-materials, particles, nano-structures and fabrication, diagnostics and analytics, drug delivery and toxicology constitute the primary direction of the journal.
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