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Optimised production of an anti-fungal antibody in Solanaceae hairy roots to develop new formulations against Candida albicans

机译:优化的茄科毛茸茸毛茸茸抗真菌抗体的生产,以开发针对念珠菌白醛汉语的新配方

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Infections caused by fungi are often refractory to conventional therapies and urgently require the development of novel options, such as immunotherapy. To produce therapeutic antibodies, a plant-based expression platform is an attractive biotechnological strategy compared to mammalian cell cultures. In addition to whole plants, hairy roots (HR) cultures can be used, representing an expression system easy to build up, with indefinite growth while handled under containment conditions. In this study the production in HR of a recombinant antibody, proved to be a good candidate for human immunotherapy against fungal infections, is reported. Expression and secretion of this antibody, in an engineered single chain (scFvFc) format, by HR from Nicotiana benthamiana and Solanum lycopersicum have been evaluated with the aim of directly using the deriving extract or culture medium against pathogenic fungi. Although both Solanaceae HR showed good expression levels (up to 68?mg/kg), an optimization of rhizosecretion was only obtained for N. benthamiana HR. A preliminary assessment to explain this result highlighted the fact that not only the presence of proteases, but also the chemical characteristics of the growth medium, can influence antibody yield, with implications on recombinant protein production in HR. Finally, the antifungal activity of scFvFc 2G8 antibody produced in N. benthamiana HR was evaluated in Candida albicans growth inhibition assays, evidencing encouraging results. Production of this anti-fungal antibody in HR of N. benthamiana and S. lycopersicum elucidated factors affecting pharming in this system and allowed to obtain promising ready-to-use immunotherapeutics against C. albicans.
机译:真菌引起的感染通常对常规疗法难以令人难以忍受,并且迫切需要开发新型选择,例如免疫疗法。为了产生治疗抗体,与哺乳动物细胞培养物相比,植物的表达平台是一种吸引人的生物技术策略。除了全植物外,毛状根(HR)培养物可以使用,代表易于积聚的表达系统,在遏制条件下处理时无限期增长。据报道,在这项研究中,据报道,在重组抗体的HR中的生产是针对人类免疫疗法的良好候选者。通过来自尼古利亚纳·南南菊属植物和胶原菌菌菌的工程化单链(SCFVFC)形式,该抗体的表达和分泌已经通过直接使用来自致病性真菌的衍生提取物或培养基的目的进行评估。虽然Solanaceae HR均显示出良好的表达水平(高达68μmg/ kg),但仅针对N. Benthamiana HR获得了Rhizosecretion的优化。解释这一结果的初步评估强调了,不仅存在蛋白酶的存在,而且还可以影响生长培养基的化学特征,可以影响抗体产量,并对HR中的重组蛋白质产生影响。最后,在NENTHAMIANA HR中产生的SCFVFC 2G8抗体的抗真菌活性在Candida albicans生长抑制测定中评估,证明令人鼓舞的结果。在N.Nenthamiana和S.的抗真菌抗体的生产中的抗真菌抗体和S. Lycopersicum在该系统中阐明的因素,并使其对C. albicans进行了有希望的即用途免疫治疗方法。

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