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Environ Pollut ; 192: 222-31, 2014 Sep.
Article in English | MEDLINE | ID: mdl-24602761

ABSTRACT

The Niger Delta (Nigeria) is an exemplar of a legacy of environmental pollution. Limited knowledge on spatial and temporal pollutant distributions in the region highlights the need for biomonitoring approaches to study impacts on sentinel organisms. This study evaluated whether infrared (IR) spectroscopy and multivariate analysis could detect alterations in biomolecules in samples in differing exposure scenarios, i.e., spatial and temporal using African catfish (Heterobranchus bidorsalis) or water spinach (Ipomea aquatica). Significant spectral differences between tissues isolated from African catfish based on site or season were observed; in a region where fish appeared not to be present, water spinach was used as a surrogate sentinel organism. Using one-way ANOVA, the spectral categories were significant (P < 0.0001). The applicability of IR spectroscopy to detect subtle changes in target biological molecules within sentinel organisms along with its low-cost yet high-throughput potential suggests that biospectroscopy permits real-time evaluation of environmental exposure effects.


Subject(s)
Environmental Exposure/analysis , Environmental Health/instrumentation , Environmental Monitoring/instrumentation , Environmental Pollution/statistics & numerical data , Animals , Cities , Environmental Exposure/statistics & numerical data , Environmental Health/methods , Environmental Monitoring/methods , Environmental Pollution/analysis , Nigeria , Seasons
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