基于光谱和色谱联合技术开发的小儿消渴丸质量一致性评价和谱效关系快速评价方法。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Fangfang Cheng, Yiting Gao, Beibei Ren, Zhongyang Zhang, Minghui Dong, Guoxiang Sun, Chaohui Song, Siqi Wang, Haixia Gao, Chunhua Zhou, Lingjiao Wang
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引用次数: 0

摘要

为确保传统中药的疗效,推动中医药高质量发展,建立科学合理的质量评价体系尤为重要。本研究旨在通过采用多种指纹图谱技术,开发一种简单实用的小儿消渴丸(XHLP)质量控制综合评价方法。首先,对 21 个样品建立了傅立叶变换红外光谱指纹图谱(FT-IRFP)、紫外光谱指纹图谱(UVFP)和基于五波长匹配平均融合指纹图谱(FWFFP)。其次,采用综合定量比值指纹图谱法(CQRFM)对 21 批样品的指纹图谱进行了综合评价,结果表明所有样品均符合质量要求。随后,为了进一步评估样品,采用了外标法(ESM)来测量 XHLP 中三种指标成分的含量,目的是加强样品的质量控制体系。此外,还测量了抗氧化活性,并利用正交投影到潜在结构(OPLS)建立了分析抗氧化剂数据与三种光谱指纹信息之间关系的模型,从而得出了精确的光谱功效关系图。总之,本研究利用光谱和色谱技术全面评估了 XHLP 的质量,包括定性和定量两个方面。此外,通过评估样品的抗氧化能力,还建立了光谱图谱与功效之间的相关性。这种方法不仅对控制夏枯草的质量,而且对控制其他中药的质量都具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A rapid evaluation method for the quality consistency assessment and spectrum-effect relationship study of Xiaohuoluo Pills developed based on combined spectral and chromatography technology.

To ensure the effectiveness of traditional Chinese medicine (TCM) and drive the advancement of high-quality Chinese medicine, the establishment of a scientifically sound quality evaluation system is particularly important. The objective of this study was to develop a straightforward and practical comprehensive evaluation method for quality control of Xiaohuoluo Pills (XHLP) by employing diverse fingerprint technologies. Firstly, Fourier transform infrared spectroscopy fingerprint (FT-IRFP), ultraviolet spectral fingerprint (UVFP) and fusion fingerprints based on five-wavelength matched average fusion fingerprint (FWFFP) were established for 21 samples. Secondly, the Comprehensive Quantified Ratio Fingerprinting Method (CQRFM) was used to conduct a comprehensive evaluation of the fingerprint profiles of 21 batches of samples and the results showed that all samples met the quality requirements. Then to further evaluate the samples, the External Standard Method (ESM) was employed to measure the content of three indicator components in XHLP, and this was done with the intention of enhancing the quality control system of the samples. Furthermore, antioxidant activity was also measured, and a model for analyzing the relationship between antioxidant data and fingerprint information from the three spectra was established using Orthogonal Projection to Latent Structures (OPLS), resulting in an accurate spectral efficacy relationship diagram. In conclusion, this study utilized spectral and chromatography techniques to comprehensively assess the quality of XHLP, incorporating qualitative and quantitative aspects. Additionally, a correlation between spectral profiles and efficacy was established by evaluating the antioxidant capacity of the samples. This method offers valuable insights for quality control not only of XHLP but also for other TCM.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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