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水飞蓟素培养物中的苯丙素类化合物用磁性纳米粒子包被的环糊精处理。

Phenylpropanoids in Silybum marianum cultures treated with cyclodextrins coated with magnetic nanoparticles.

机构信息

Departamento de Botánica y Fisiología Vegetal, Facultad de Biología, Universidad de Salamanca, Salamanca, Spain.

Departamento de Fisiología Vegetal, Facultad de Biología, Universidad de Murcia, Murcia, Spain.

出版信息

Appl Microbiol Biotechnol. 2022 Apr;106(7):2393-2401. doi: 10.1007/s00253-022-11886-2. Epub 2022 Mar 28.

Abstract

The glucose oligosaccharide-derived cyclodextrins (CDs) are used for improving bioactive compound production in plant cell cultures because, in addition to their elicitation activity, CDs promote product removal from cells. However, despite these advantages, the industrial application of CDs is hampered by their high market price. A strategy to overcome this constraint was recently tested, in which reusable CD polymers coated with magnetic FeO nanoparticles were harnessed in Vitis vinifera cell cultures to produce t-resveratrol (t-R). In this study, we applied hydroxypropyl-β-CDs (HPCD) and HPCDs coated with magnetic nanoparticles (HPCD-EPI-MN) in methyl jasmonate (MJ)-treated transgenic Silybum marianum cultures ectopically expressing either a stilbene synthase gene (STS) or a chalcone synthase gene (CHS), and compared their effects on the yields of t-R and naringenin (Ng), respectively. HPCD-EPI-MN at 15 g/L stimulated the accumulation of metabolites in the culture medium of the corresponding transgenic cell lines, with up to 4 mg/L of t-R and 3 mg/L of Ng released after 3 days. Similar amounts were produced in cultures treated with HPCD. Concentrations higher than 15 g/L of HPCD-EPI-MN and prolonged incubation periods negatively affected cell growth and viability in both transgenic cell lines. Reutilization of HPCD-EPI-MN was possible in three elicitation cycles (72 h each), after which the polymer retained 25-30% of its initial efficiency, indicating good stability and reusability. Due to their capacity to adsorb metabolites and their recyclability, the application of magnetic CD polymers may reduce the costs of establishing efficient secondary metabolite production systems on a commercial scale. KEY POINTS: • Long-term transgenic S. marianum suspensions stably produce transgene products • t-R and Ng accumulated extracellularly in cultures elicited with HPCD and HPCD-EPI-MN • The recyclability of HPCD-EPI-MN for metabolite production was proven.

摘要

葡萄糖低聚糖衍生的环糊精(CDs)被用于提高植物细胞培养物中生物活性化合物的产量,因为除了它们的激发活性外,CDs还促进了产物从细胞中的去除。然而,尽管有这些优势,CDs 的高市场价格还是阻碍了其工业应用。最近测试了一种克服这一限制的策略,该策略利用磁性 FeO 纳米粒子涂覆的可重复使用的 CD 聚合物,在葡萄细胞培养物中生产白藜芦醇(t-R)。在这项研究中,我们在茉莉酸甲酯(MJ)处理的异位表达芪合酶基因(STS)或查尔酮合酶基因(CHS)的转基因 Silybum marianum 培养物中应用羟丙基-β-CD(HPCD)和磁性纳米粒子涂覆的 HPCD(HPCD-EPI-MN),并比较了它们对 t-R 和柚皮苷(Ng)产量的影响。15 g/L 的 HPCD-EPI-MN 刺激相应转基因细胞系培养物中代谢物的积累,在 3 天后释放出高达 4 mg/L 的 t-R 和 3 mg/L 的 Ng。用 HPCD 处理的培养物中也产生了类似的量。HPCD-EPI-MN 的浓度高于 15 g/L 或延长孵育时间会对两种转基因细胞系的细胞生长和活力产生负面影响。在三个激发周期(每个 72 小时)后,可以重复使用 HPCD-EPI-MN,此时聚合物保留了其初始效率的 25-30%,表明其稳定性和可重复使用性良好。由于其吸附代谢物的能力及其可回收性,磁性 CD 聚合物的应用可能会降低在商业规模上建立高效次生代谢产物生产系统的成本。关键点:

  • 长期的转基因 S. marianum 悬浮液稳定地产生转基因产物

  • HPCD 和 HPCD-EPI-MN 诱导的培养物中外源积累 t-R 和 Ng

  • 证明了 HPCD-EPI-MN 用于代谢产物生产的可回收性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ff4/8989811/95f6e9f2a911/253_2022_11886_Fig1_HTML.jpg

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