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利用化学计量学和计算增强技术开发用于评估狼疮性肾炎活动度的无标记红外光谱分析方法。

Developing a Label-Free Infrared Spectroscopic Analysis with Chemometrics and Computational Enhancement for Assessing Lupus Nephritis Activity.

作者信息

Yu Mei-Ching, Huang Xiang-Di, Kuo Chin-Wei, Zhang Kai-Fu, Liang Ping-Chung, Jeng U-Ser, Huang Pei-Yu, Tam Frederick Wai Keung, Lee Yao-Chang

机构信息

Division of Pediatric Nephrology, Department of Pediatrics, Lin-Kou Chang Gung Memorial Hospital, Taoyuan 33302, Taiwan.

College of Medicine, Chang Gung University, Taoyuan 33302, Taiwan.

出版信息

Biosensors (Basel). 2025 Jan 11;15(1):39. doi: 10.3390/bios15010039.

Abstract

Patterns of disease and therapeutic responses vary widely among patients with autoimmune glomerulonephritis. This study introduces groundbreaking personalized infrared (IR)-based diagnostics for real-time monitoring of disease status and treatment responses in lupus nephritis (LN). We have established a relative absorption difference (RAD) equation to assess characteristic spectral indices based on the temporal peak heights (PHs) of two characteristic serum absorption bands: ν as the target signal and ν as the PH reference for the ν absorption band, measured at each dehydration time (t) during dehydration. The RAD gap (Ψ), defined as the difference in the RAD values between the initial and final stages of serum dehydration, enables the measurement of serum levels of IgG glycosylation (ν (1030 cm), ν (1171 cm)), serum lactate (ν (1021 cm), ν (1171 cm)), serum hydrophobicity (ν (2930 cm), ν (2960 cm)), serum hydrophilicity (ν (1550 cm), ν (1650 cm)), and albumin (ν (1400 cm), ν (1450 cm)). Furthermore, this IR-based assay incorporates an innovative algorithm and our proprietary iPath software (ver. 1.0), which calculates the prognosis prediction function (PPF, Φ) from the RAD gaps of five spectral markers and correlates these with conventional clinical renal biomarkers. We propose that this algorithm-assisted, IR-based approach can augment the patient-centric care of LN patients, particularly by focusing on changes in serum IgG glycosylation.

摘要

自身免疫性肾小球肾炎患者的疾病模式和治疗反应差异很大。本研究引入了具有开创性的基于个性化红外(IR)的诊断方法,用于实时监测狼疮性肾炎(LN)的疾病状态和治疗反应。我们建立了一个相对吸收差异(RAD)方程,以基于两个特征性血清吸收带的时间峰值高度(PHs)来评估特征光谱指数:将ν作为目标信号,将ν作为ν吸收带的PH参考,在脱水过程中的每个脱水时间(t)进行测量。RAD间隙(Ψ)定义为血清脱水初始和最终阶段RAD值的差异,能够测量血清中IgG糖基化水平(ν(1030 cm),ν(1171 cm))、血清乳酸水平(ν(1021 cm),ν(1171 cm))、血清疏水性(ν(2930 cm),ν(2960 cm))、血清亲水性(ν(1550 cm),ν(1650 cm))以及白蛋白水平(ν(1400 cm),ν(1450 cm))。此外,这种基于红外的检测方法结合了一种创新算法和我们专有的iPath软件(版本1.0),该软件根据五个光谱标记的RAD间隙计算预后预测函数(PPF,Φ),并将这些与传统临床肾脏生物标志物相关联。我们提出,这种基于算法辅助的红外方法可以增强以患者为中心的LN患者护理,特别是通过关注血清IgG糖基化的变化。

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