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首页> 外文期刊>New biotechnology >Antifungal activity of nano and micro charcoal particle polymers against Paecilomyces variotii, Trichoderma virens and Chaetomium globosum
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Antifungal activity of nano and micro charcoal particle polymers against Paecilomyces variotii, Trichoderma virens and Chaetomium globosum

机译:纳米和微米级木炭颗粒聚合物对水粉拟青霉,维氏木霉和球毛壳膜的抗真菌活性

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This study investigates the antifungal activity of a polymer integrated with nano-porous charcoal particles against Paecilomyces variotii, Chaetomium globosum, Trichoderma virens, which are all filamentous fungi. The charcoal polymers were prepared by combining charcoal powders with plastic resin under a vacuum to form charcoal particle protrusions on the polymer surface. The mycelial growth of P. variotii and T. virens exhibited a reduction of 10 and 30%, respectively, after the conidia were pre-treated with charcoal polymers, and in particular, no mycelial growth was found in C. globosum during 5 days of culture. The adsorption of Ca2+ into charcoal was suggested to inhibit growth due to the reduction in the flux of calcium ions (Ca2+) into the hyphae. In 5 h, about 15 mM of Ca2+ were removed from CaCl2 solution with 0.2 g/mL of polymers, and the nano-sized pores of the charcoals on the polymer were responsible for the Ca2+ adsorption.
机译:这项研究调查了与纳米多孔木炭颗粒集成的聚合物的抗真菌活性对所有都是丝状真菌的变异性拟青霉,球壳拟南芥,木霉。通过在真空下将木炭粉与塑料树脂混合以在聚合物表面上形成木炭颗粒突起来制备木炭聚合物。用木炭聚合物预处理分生孢子后,水痘假单胞菌和维尔纽斯菌的菌丝体生长分别降低了10%和30%,特别是在5天的球孢梭菌中未发现菌丝体生长。文化。由于钙离子(Ca2 +)进入菌丝的流量减少,建议将Ca2 +吸附到木炭中可抑制生长。在5小时内,用0.2 g / mL的聚合物从CaCl2溶液中除去了大约15 mM的Ca2 +,并且聚合物上木炭的纳米级孔负责Ca2 +的吸附。

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