Chemical and Microbial Safety Assessment of Bambara, Gurasa, and Wara Sold Around Tertiary Institutions in Minna, Niger State, Nigeria
Keywords:
Food safety; Heavy metals; Microbial contamination; Bambara; Wara; Street vended food; NigeriaAbstract
Indigenous ready-to-eat snacks, including Bambara (a fried Bambara-starch snack served
with spiced pepper sauce), gurasa (a baked wheat-flour flatbread consumed with spiced fried
pepper sauce and ground peanut/groundnut butter), and wara (a fried soybean-curd cheese,
locally known as soy-wara or awara), are widely consumed by students in tertiary institutions
in Minna, Niger State, Nigeria. Despite their popularity, limited empirical information exists
regarding their chemical and microbiological safety within campus food environments. This
study evaluated the levels of heavy metal contamination (lead, chromium, and cadmium) and
microbial quality, including total bacterial, coliform, staphylococcal, and fungal counts, in
these indigenous snacks sold around three tertiary institution communities in Minna. A total
of ninety samples (30 per snack type; 10 samples per site across three locations) were
collected and analysed in triplicate. Heavy metal concentrations were determined using
Atomic Absorption Spectrophotometry (AAS), while microbial loads were quantified using
the standard pour-plate technique. Lead was detected in 83.3% of Bambara samples (mean
concentration: 0.144 ± 0.138 mg/L), compared with 26.7% and 40.0% detection frequencies
in gurasa and wara, respectively. Chromium occurred in up to 93.3% of Bambara samples,
with the highest mean concentration (1.692 ± 1.912 mg/L) recorded in gurasa. Overall, 18.9%
of all samples exceeded the indicative lead benchmark of 0.3 mg/L, while 21.1% exceeded
the indicative chromium benchmark of 2.0 mg/L. Cadmium concentrations remained below
0.2 mg/L in all samples. Microbiological analysis revealed fungal contamination in 48.9% of
samples, total bacterial contamination in 32.2%, and Staphylococcus aureus-type colonies in
25.6%, with wara exhibiting the highest overall contamination rates. The predominant
bacterial isolates were Staphylococcus aureus (44.4%) and Bacillus subtilis (26.7%), whereas
Saccharomyces cerevisiae (60.0%), Penicillium spp. (28.9%), and the aflatoxigenic mould
Aspergillus flavus (8.9%) were the dominant fungal isolates. The findings demonstrate that
a substantial proportion of indigenous snacks sold around tertiary institutions in Minna pose
both chemical and microbiological risks capable of compromising student health. The
observed contamination patterns varied according to snack type and sampling location,
underscoring the need for routine food safety surveillance, vendor education, strengthened
hygiene practices, and effective enforcement of food safety regulations within campus food
environments.
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