Application of Chitosan Microparticles for Reduction of Vibrio Species in Seawater and Live Oysters (Crassostrea virginica)

创伤弧菌 牡蛎 副溶血性弧菌 牡蛎 微生物学 贝类 弧菌科 生物 霍乱弧菌 弧菌 弧菌感染 壳聚糖 食品科学 渔业 水生动物 细菌 生物化学 遗传学
作者
Lei Fang,Bernhard Wolmarans,Minyoung Kang,Kwang Cheol Jeong,Anita C. Wright
出处
期刊:Applied and Environmental Microbiology [American Society for Microbiology]
卷期号:81 (2): 640-647 被引量:39
标识
DOI:10.1128/aem.02856-14
摘要

ABSTRACT Human Vibrio infections associated with consumption of raw shellfish greatly impact the seafood industry. Vibrio cholerae -related disease is occasionally attributed to seafood, but V. vulnificus and V. parahaemolyticu s are the primary targets of postharvest processing (PHP) efforts in the United States, as they pose the greatest threat to the industry. Most successful PHP treatments for Vibrio reduction also kill the molluscs and are not suitable for the lucrative half-shell market, while nonlethal practices are generally less effective. Therefore, novel intervention strategies for Vibrio reduction are needed for live oyster products. Chitosan is a bioactive derivative of chitin that is generally recognized as safe as a food additive by the FDA, and chitosan microparticles (CMs) were investigated in the present study as a potential PHP treatment for live oyster applications. Treatment of broth cultures with 0.5% (wt/vol) CMs resulted in growth cessation of V. cholerae , V. vulnificus , and V. parahaemolyticus , reducing culturable levels to nondetectable amounts after 3 h in three independent experiments. Furthermore, a similar treatment in artificial seawater at 4, 25, and 37°C reduced V. vulnificus levels by ca. 7 log CFU/ml after 24 h of exposure, but 48 h of exposure and elevated temperature were required to achieve similar results for V. parahaemolyticus and V. cholerae . Live oysters that either were artificially inoculated or contained natural populations of V. vulnificus and V. parahaemolyticus showed significant and consistent reductions following CM treatment (5%) compared to the amounts in the untreated controls. Thus, the results strongly support the promising potential for the application of CMs as a PHP treatment to reduce Vibrio spp. in intact live oysters.
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