Suppr超能文献

微拉曼光谱分析及单变量分析在疾病监测随访中的应用。

Micro-Raman spectroscopy and univariate analysis for monitoring disease follow-up.

机构信息

CNR (Consiglio Nazionale delle Ricerche), Istituto di Cibernetica E. Caianiello, 80078, Pozzuoli, Italy.

出版信息

Sensors (Basel). 2011;11(9):8309-22. doi: 10.3390/s110908309. Epub 2011 Aug 25.

Abstract

Micro-Raman spectroscopy is a very promising tool for medical applications, thanks to its sensitivity to subtle changes in the chemical and structural characteristics of biological specimens. To fully exploit these promises, building a method of data analysis properly suited for the case under study is crucial. Here, a linear or univariate approach using a R2 determination coefficient is proposed for discriminating Raman spectra even with small differences. The validity of the proposed approach has been tested using Raman spectra of high purity glucose solutions collected in the 600 to 1,600 cm(-1) region and also from solutions with two known solutes at different concentrations. After this validation step, the proposed analysis has been applied to Raman spectra from oral human tissues affected by Pemphigus Vulgaris (PV), a rare life-threatening autoimmune disease, for monitoring disease follow-up. Raman spectra have been obtained in the wavenumber regions from 1,050 to 1,700 cm(-1) and 2,700 to 3,200 cm(-1) from tissues of patients at different stages of pathology (active PV, under therapy and PV in remission stage) as confirmed by histopathological and immunofluorescence analysis. Differences in the spectra depending on tissue illness stage have been detected at 1,150-1,250 cm(-1) (amide III) and 1,420-1,450 cm(-1) (CH3 deformation) regions and around 1,650 cm(-1) (amide I) and 2,930 cm(-1) (CH3 symmetric stretch). The analysis of tissue Raman spectra by the proposed univariate method has allowed us to effectively differentiate tissues at different stages of pathology.

摘要

微拉曼光谱学是一种非常有前途的医学应用工具,因为它对生物样本的化学和结构特征的细微变化敏感。为了充分利用这些承诺,建立一种适当适合所研究情况的数据分析方法是至关重要的。在这里,提出了一种使用 R2 确定系数的线性或单变量方法,即使在存在小差异的情况下,也可以区分拉曼光谱。所提出方法的有效性已经使用在 600 到 1600 cm-1 区域内收集的高纯度葡萄糖溶液的拉曼光谱以及在不同浓度下具有两种已知溶质的溶液的拉曼光谱进行了测试。在验证了这一步骤之后,将提出的分析应用于受寻常性天疱疮(PV)影响的口腔人体组织的拉曼光谱,PV 是一种罕见的危及生命的自身免疫性疾病,用于监测疾病的随访。已经在从 1050 到 1700 cm-1 和 2700 到 3200 cm-1 的波数区域获得了来自处于不同病理阶段(活动期 PV、治疗中和 PV 缓解期)的患者的组织的拉曼光谱,这通过组织病理学和免疫荧光分析得到了证实。在 1150-1250 cm-1(酰胺 III)和 1420-1450 cm-1(CH3 变形)区域以及在 1650 cm-1(酰胺 I)和 2930 cm-1(CH3 对称伸展)附近的光谱中检测到了根据组织疾病阶段的差异。通过所提出的单变量方法对组织拉曼光谱的分析使我们能够有效地区分处于不同病理阶段的组织。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68c6/3231482/a7f2c3ef8190/sensors-11-08309f1.jpg

相似文献

1
Micro-Raman spectroscopy and univariate analysis for monitoring disease follow-up.
Sensors (Basel). 2011;11(9):8309-22. doi: 10.3390/s110908309. Epub 2011 Aug 25.
2
[Micro-Raman spectra for gastritis and gastric ulcer tissues].
Guang Pu Xue Yu Guang Pu Fen Xi. 2007 Oct;27(10):2038-41.
3
Human brain cancer studied by resonance Raman spectroscopy.
J Biomed Opt. 2012 Nov;17(11):116021. doi: 10.1117/1.JBO.17.11.116021.
5
Micro-Raman spectroscopy used to identify and grade human skin pilomatrixoma.
Microsc Res Tech. 2005 Oct;68(2):75-9. doi: 10.1002/jemt.20229.
6
Establishing spectrochemical changes in the natural history of oesophageal adenocarcinoma from tissue Raman mapping analysis.
Anal Bioanal Chem. 2020 Jul;412(17):4077-4087. doi: 10.1007/s00216-020-02637-1. Epub 2020 Apr 25.
9
Resonance Raman and Raman spectroscopy for breast cancer detection.
Technol Cancer Res Treat. 2013 Aug;12(4):371-82. doi: 10.7785/tcrt.2012.500325. Epub 2013 Feb 22.
10
Micro-Raman spectroscopy for optical pathology of oral squamous cell carcinoma.
Appl Spectrosc. 2004 Sep;58(9):1128-35. doi: 10.1366/0003702041959460.

引用本文的文献

本文引用的文献

1
Investigation on Clarified Fruit Juice Composition by Using Visible Light Micro-Raman Spectroscopy.
Sensors (Basel). 2007 Oct 3;7(10):2049-2061. doi: 10.3390/s7102049.
3
Visible micro-Raman spectroscopy for determining glucose content in beverage industry.
Food Chem. 2011 Jul 15;127(2):735-42. doi: 10.1016/j.foodchem.2011.01.007. Epub 2011 Jan 8.
4
Towards oncological application of Raman spectroscopy.
J Biophotonics. 2009 Feb;2(1-2):29-36. doi: 10.1002/jbio.200810055.
5
FT-Raman spectroscopy - analytical tool for routine analysis of diazinon pesticide formulations.
Talanta. 2000 Mar 6;51(3):599-604. doi: 10.1016/s0039-9140(99)00336-7.
6
Development of a univariate calibration model for pharmaceutical analysis based on NIR spectra.
Anal Bioanal Chem. 2008 Dec;392(7-8):1367-72. doi: 10.1007/s00216-008-2426-9. Epub 2008 Oct 15.
8
Multicomponent blood analysis by near-infrared Raman spectroscopy.
Appl Opt. 1999 May 1;38(13):2916-26. doi: 10.1364/ao.38.002916.
10
How does acantholysis occur in pemphigus vulgaris: a critical review.
J Cutan Pathol. 2006 Jun;33(6):401-12. doi: 10.1111/j.0303-6987.2006.00523.x.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验