释放插层钙铝层状双氢氧化物棕榈酸的微生物潜力

Q3 Materials Science
SHEIKH AHMAD IZADDIN SHEIKH MOHD GHAZALI, Nur Adlina Johari1, Nurul Huda Ismail, Suhaidi Ariffin, Sandeep Poddar, Hari Shankar Biswas
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引用次数: 0

摘要

导言:有效和连贯的给药系统是必要的,以避免高剂量药物的重复给药,以达到有效的治疗效果。因此,本研究旨在利用层状双氢氧化物作为药物载体合成纳米复合材料(CAPA),既能保护药物,提高其生物利用度,又能最大限度地减少对生物过程的不利影响。方法:采用共沉淀法合成钙铝层状双氢氧化物(CAL),然后采用类似的方法将棕榈酸(PA)药物整合到宿主体内。利用x射线衍射(PXRD)分析和傅里叶变换红外光谱(FTIR)对插层成功进行了评估。通过热重-导数热重分析(TGA-DTG)和加速表面积和孔隙率分析仪(ASAP)对材料的表征进行了评估。结果:本研究合成的CAPA (15.21Å)基间距增大,表明PA保留在CAL层间空间。CAPA的FTIR光谱显示,1359.87 cm-1处硝酸盐离子峰消失,1643.17 cm-1处羧酸离子出现,提示寄主层中存在PA。CAPA的比表面积为19.8 m2g-1,大于寄主的比表面积,而其孔径在微孔范围内。结论:TGA分析表明,在插层过程中,由于PA芯在260℃时发生分解,使得PA的热稳定性得到了改善。抗菌活性表明合成的CAPA可以保留药物对金黄色葡萄球菌的活性,强调了CAL作为PA潜在的药物传递载体的能力。其他:该结果可作为PA的潜在药物递送
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unlocking the Microbial Potential of Intercalated Calcium-aluminum Layered Double Hydroxide-palmitic Acid
Introduction:: An efficient and coherent drug delivery system is imperative in detouring a repetitive administration of high doses of the drug to achieve an effective therapeutic effect. This study, therefore, aims to synthesize the nanocomposite (CAPA) utilizing the layered double hydroxide as a drug carrier that can safeguard the medicine and improve its bioavailability while minimizing the adverse impact on the biological process. Method:: The Calcium-aluminum Layered Double Hydroxide (CAL) was synthesized via the coprecipitation method followed by integrating palmitic acid (PA) drug into that host employing a similar approach. The successful intercalation was assessed utilizing X-ray diffraction (PXRD) analysis and Fourier transform infrared spectroscopy (FTIR). The characterization of the material was evaluated by using a thermogravimetric-derivative thermogravimetric analysis (TGA-DTG) and accelerated surface area and porosity (ASAP) analyzer. Result:: The increment of basal spacing of CAPA (15.21Å) synthesized in this study implies the retainment of PA in the interlayer space of CAL. The FTIR spectra of CAPA, with the elimination of the nitrate ion peak at 1359.87 cm-1 and the appearance of carboxylate ion at 1643.17 cm-1, hint at the existence of PA in the host layer. The surface area of CAPA exhibited a value of 19.8 m2g-1, bigger than that of hosts, while its pore size is within the micropores range. Conclusion:: The TGA analysis revealed that the thermal stability of PA was improved following the intercalation process due to the decomposition of the PA core that occurs at 260°C. The antimicrobial activity proposes that the synthesized CAPA can retain the drug's activity against S. aureus, emphasizing the ability of CAL as a potential drug delivery vehicle for PA. other: this result can be used as a potential drug delivery for PA
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来源期刊
Current Nanomaterials
Current Nanomaterials Materials Science-Materials Science (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
53
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