The potential impact of lipid research has been increasingly realised both in disease treatment and prevention. Recent advances in soft ionisation mass spectrometry (MS) such as electrospray ionisation (ESI) have permitted parallel monitoring of several hundreds of lipids in a single experiment and thus facilitated lipidomics level studies. These advances, however, pose a greater challenge for bioinformaticians to handle massive amounts of information-rich MS data from modern analytical instruments in order to understand complex functions of lipids.
The main aims of this thesis (Laxmana Rao Yetukuri, Bioinformatics approaches for the analysis of lipidomics data, ISBN 978-951-38-7402-5) were to 1) develop bioinformatics approaches for lipid identification based on ultra performance liquid chromatography coupled to mass spectrometry (UPLC/MS) data, 2) predict the functional annotations for unidentified lipids, 3) understand the omics data in the context of pathways and 4) apply existing chemometric methods for exploratory data analysis as well as biomarker discovery.
A bioinformatics strategy for the construction of lipid database for major classes of lipids is presented using simplified molecular input line entry system (SMILES) approach. The database was annotated with relevant information such as lipid names including short names, SMILES information, scores, molecular weight, monoisotopic mass and isotope distribution. The database was tailored for UPLC/MS experiments by incorporating the information such as retention time range, adduct information and main fragments to screen for the potential lipids. This database information facilitated building experimental tandem mass spectrometry libraries for different biological tissues.
Non-targeted metabolomics screening is often plagued by the presence of unknown peaks and thus presents an additional challenge for data interpretation. Multiple supervised classification methods were employed and compared for the functional prediction of class labels for unidentified lipids to facilitate exploratory analysis further as well as ease the identification process. As lipidomics goes beyond complete characterization of lipids, new strategies were developed to understand lipids in the context of pathways and thereby providing insights for the phenotype characterization. Chemometric methods such as principal component analysis (PCA) and partial least squares and discriminant analysis (PLS/DA) were utilised for exploratory analysis as well as biomarker discovery in the context of different disease phenotypes.
- Most Read
- Highly Rated
- Examining diffuse reflection and transmission spectra more thoroughly: Part 1. Instrument noise
- Combining liquid chromatography time-of-flight mass spectrometry for water screening with software tools to identify pesticides and their metabolites
- New broadband high-resolution ozone absorption cross-sections
- The African crested rat’s poisonous hairs studied by attenuated total reflection infrared spectroscopy
- Product Focus on Elemental Spectroscopy
- New bulk analysis spectroscopy technique (5 from 6 votes)
- Raman for diabetes monitoring (5 from 5 votes)
- Fluorescence eye test reveals neurological diseases in livestock (5 from 4 votes)
- MALDI imaging for fingermark analysis (5 from 3 votes)
- Nano-FT-IR spectroscopy with a thermal source (5 from 3 votes)
Latest Comments
-
Rakesh Kanda said More...Dr Alfonso,
Matrix suppression is ... 3 months ago -
Dr Robson JCF Afonso said More...Dear Authors,
As you sad atmospheric... 3 months ago -
Dr Robson JCF Afonso said More...I am glad to hearing someone question... 11 months ago
-
Peter Jenks said More...That is a reason I\'d overlooked - po... 11 months ago
-
Stephen Boonstoppel said More...I think one of the biggest obstacles ... 11 months ago
Contents Alerts
Popular Techniques
- Atomic absorption
- Atomic emission
- Chemometrics
- ICP-MS
- Imaging
- Infrared
- Ion mobility
- Laser spectroscopy
- Luminescencefluorescence
- Mass spectrometry
- Microscopy
- Mobile
- MRI
- Near infrared
- NMR ESR EPR
- Process
- Raman
- Related equipment
- RMs and standards
- Sample prep
- Separation science
- Software
- Surface analysis
- Terahertz
- UVvis
- X-ray spectrometry



