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用于干酪乳杆菌鼠李糖亚种L-(+)-乳酸生物膜发酵的塑料复合载体的成分选择

Ingredient selection for plastic composite supports for L-(+)-lactic acid biofilm fermentation by Lactobacillus casei subsp. rhamnosus.

作者信息

Ho K L, Pometto A L, Hinz P N, Dickson J S, Demirci A

机构信息

Department of Food Science and Human Nutrition, Iowa State University, Ames 50011, USA.

出版信息

Appl Environ Microbiol. 1997 Jul;63(7):2516-23. doi: 10.1128/aem.63.7.2516-2523.1997.

Abstract

Plastic composite supports containing 50% agricultural products (oat hulls, soybean hulls, yeast extract, soybean flour, dried bovine erythrocytes, bovine albumin, and/or mineral salts) and 50% (wt/wt) polypropylene were produced by high-temperature twin-screw extrusion. The research employed two half sets of a five-factorial fractional design (2(5 - 1)) to evaluate the effects of different agricultural components on the properties of the plastic composite supports and to select the best plastic composite support formulation for lactic acid fermentation. The biofilm population was affected by the contact angle and relative hydrophobicity of the supports (r = 0.79 to 0.82). Lactic acid was produced by the suspended cells (r = 0.96) and the biofilm on the plastic composite support discs (r = 0.85). Incorporation of yeast extract into plastic composite supports enhanced growth of free and attached cells in minimal medium (P < 0.0001). The presence of soybean hulls, yeast extract, or mineral salts in plastic composite supports produced less hydrophobic supports (P < 0.0001) and enhanced cell attachment (P < 0.03). Under all conditions, suspended-cell and polypropylene disc controls gave negligible lactic acid production and cell density. Plastic composite supports containing soybean hulls, yeast extract, soybean flour, bovine albumin, and mineral salts gave the highest biofilm population (2.3 x 10(9) CFU/g of support), cell density (absorbance of 1.8 at 620 nm), and lactic acid concentration (7.6 g/liter) in minimal medium.

摘要

通过高温双螺杆挤出制备了含有50%农产品(燕麦壳、大豆壳、酵母提取物、大豆粉、干燥牛红细胞、牛白蛋白和/或矿物盐)和50%(重量/重量)聚丙烯的塑料复合载体。该研究采用了两组五因素分数设计(2(5 - 1))的一半来评估不同农业成分对塑料复合载体性能的影响,并选择用于乳酸发酵的最佳塑料复合载体配方。生物膜数量受载体的接触角和相对疏水性影响(r = 0.79至0.82)。悬浮细胞(r = 0.96)和塑料复合载体圆盘上的生物膜(r = 0.85)产生乳酸。将酵母提取物掺入塑料复合载体中可增强在基本培养基中游离细胞和附着细胞的生长(P < 0.0001)。塑料复合载体中大豆壳、酵母提取物或矿物盐的存在产生疏水性较低的载体(P < 0.0001)并增强细胞附着(P < 0.03)。在所有条件下,悬浮细胞和聚丙烯圆盘对照产生的乳酸产量和细胞密度可忽略不计。含有大豆壳、酵母提取物、大豆粉、牛白蛋白和矿物盐的塑料复合载体在基本培养基中产生的生物膜数量最高(2.3×10(9) CFU/克载体)、细胞密度(620 nm处吸光度为1.8)和乳酸浓度(7.6克/升)。

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