Ensure the authenticity of antibiotic vials: An independent testing protocol using attenuated total reflection infrared spectroscopy and Raman spectroscopy

IF 2.7 3区 化学 Q2 CHEMISTRY, ANALYTICAL
Ahmed M. Ibrahim, Lamiaa A. Hassan
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Abstract

The burgeoning global pharmaceutical market has witnessed a concurrent surge in counterfeit drug proliferation, particularly in developing countries. Counterfeit antibiotics pose a significant threat to public health, potentially leading to treatment failures, antibiotic resistance, and even fatalities. This study presents an innovative independent testing protocol employing Raman spectroscopy and attenuated total reflection infrared spectroscopy (ATR-IR) for the rapid and accurate detection of counterfeit antibiotic vials. These rapid, eco-friendly, and non-destructive techniques enable the acquisition of critical information about the analyzed samples. However, while ATR-IR preserves the chemical composition and structural integrity of the sample, physical contact with the ATR crystal may prevent complete sample recovery. The combination of ATR-IR and Raman spectroscopy leverages their distinct analytical principles ATR-IR detecting polar asymmetric vibrations (dipole moment variations) and Raman identifying symmetric vibrations (polarizability changes) to provide a robust and reliable solution for detecting counterfeit antibiotics. Both Raman spectroscopy and ATR-IR demonstrated exceptional precision and specificity of 100 %, underscoring the model remarkable reliability in counterfeit classification (all counterfeit samples were successfully rejected). Fluorescence backgrounds in Raman spectroscopy were mitigated by employing a 1064 nm laser wavelength, enhancing its applicability for complex matrices. Our Independent Testing Protocol presents a promising solution to the complex issue of counterfeit antibiotic vial detection. By synergizing the strengths of Raman spectroscopy and ATR-IR, we achieve a comprehensive and reliable assessment of antibiotic vials, thereby contributing to patient safety and public health protection.
确保抗生素小瓶的真实性:使用衰减全反射红外光谱和拉曼光谱的独立检测方案
蓬勃发展的全球医药市场同时见证了假药扩散的激增,特别是在发展中国家。假冒抗生素对公众健康构成重大威胁,可能导致治疗失败、抗生素耐药性,甚至死亡。本研究提出了一种创新的独立检测方案,采用拉曼光谱和衰减全反射红外光谱(ATR-IR)快速准确地检测假冒抗生素小瓶。这些快速、环保和非破坏性的技术可以获得有关分析样品的关键信息。然而,虽然ATR- ir保留了样品的化学成分和结构完整性,但与ATR晶体的物理接触可能会阻止样品的完全回收。ATR-IR和拉曼光谱的结合利用其独特的分析原理,ATR-IR检测极性不对称振动(偶极矩变化)和拉曼识别对称振动(极化性变化),为检测假冒抗生素提供强大可靠的解决方案。拉曼光谱和ATR-IR都显示出100 %的卓越精度和特异性,强调了该模型在假冒产品分类方面的卓越可靠性(所有假冒样品都被成功拒绝)。采用1064 nm波长的激光减轻了拉曼光谱中的荧光背景,增强了其对复杂矩阵的适用性。我们的独立检测协议提出了一个有希望的解决方案,以假冒抗生素瓶检测的复杂问题。通过将拉曼光谱和ATR-IR的优势协同起来,我们实现了抗生素小瓶的全面可靠评估,从而为患者安全和公众健康保护做出了贡献。
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来源期刊
Vibrational Spectroscopy
Vibrational Spectroscopy 化学-分析化学
CiteScore
4.70
自引率
4.00%
发文量
103
审稿时长
52 days
期刊介绍: Vibrational Spectroscopy provides a vehicle for the publication of original research that focuses on vibrational spectroscopy. This covers infrared, near-infrared and Raman spectroscopies and publishes papers dealing with developments in applications, theory, techniques and instrumentation. The topics covered by the journal include: Sampling techniques, Vibrational spectroscopy coupled with separation techniques, Instrumentation (Fourier transform, conventional and laser based), Data manipulation, Spectra-structure correlation and group frequencies. The application areas covered include: Analytical chemistry, Bio-organic and bio-inorganic chemistry, Organic chemistry, Inorganic chemistry, Catalysis, Environmental science, Industrial chemistry, Materials science, Physical chemistry, Polymer science, Process control, Specialized problem solving.
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