首页> 外文期刊>Plant Biotechnology Journal >Low-cost production of proinsulin in tobacco and lettuce chloroplasts for injectable or oral delivery of functional insulin and C-peptide
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Low-cost production of proinsulin in tobacco and lettuce chloroplasts for injectable or oral delivery of functional insulin and C-peptide

机译:在烟草中的低成本生产和莴苣叶绿体,用于功能性胰岛素和C-肽的可注射或口服递送

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P>Current treatment for type I diabetes includes delivery of insulin via injection or pump, which is highly invasive and expensive. The production of chloroplast-derived proinsulin should reduce cost and facilitate oral delivery. Therefore, tobacco and lettuce chloroplasts were transformed with the cholera toxin B subunit fused with human proinsulin (A, B, C peptides) containing three furin cleavage sites (CTB-PFx3). Transplastomic lines were confirmed for site-specific integration of transgene and homoplasmy. Old tobacco leaves accumulated proinsulin up to 47% of total leaf protein (TLP). Old lettuce leaves accumulated proinsulin up to 53% TLP. Accumulation was so stable that up to similar to 40% proinsulin in TLP was observed even in senescent and dried lettuce leaves, facilitating their processing and storage in the field. Based on the yield of only monomers and dimers of proinsulin (3 mg/g leaf, a significant underestimation), with a 50% loss of protein during the purification process, one acre of tobacco could yield up to 20 million daily doses of insulin per year. Proinsulin from tobacco leaves was purified up to 98% using metal affinity chromatography without any His-tag. Furin protease cleaved insulin peptides in vitro. Oral delivery of unprocessed proinsulin bioencapsulated in plant cells or injectable delivery into mice showed reduction in blood glucose levels similar to processed commercial insulin. C-peptide should aid in long-term treatment of diabetic complications including stimulation of nerve and renal functions. Hyper-expression of functional proinsulin and exceptional stability in dehydrated leaves offer a low-cost platform for oral and injectable delivery of cleavable proinsulin.
机译:p> I型糖尿病的电流处理包括通过注射或泵送胰岛素,这是高度侵入性和昂贵的。叶绿体衍生的胰岛素的产生应降低成本并促进口服递送。因此,用霍乱毒素B亚基转化烟草和莴苣叶片,与含有三种Furin切割位点(CTB-PFX3)的人胰岛素(A,B,C肽)融合的霍乱毒素B亚基转化。确认转膜体系以用于转基因和同源性的特异性集成。旧烟草叶累积的胰岛素高达47%的总叶蛋白(TLP)。老莴苣留下累积的胰岛素高达53%的TLP。累积是如此稳定,即使在衰老和干燥的莴苣叶中,甚至观察到TLP中的40%胰岛素,促进其在现场的加工和储存。基于纯化过程中蛋白质的仅仅单体和二聚体(3mg / g叶,显着低估)的产率,在净化过程中损失50%,每亩烟草可产生高达2000万次胰岛素的胰岛素年。使用金属亲和色谱法纯化来自烟草叶片的胰岛素,无需任何His-Tab,纯化至98%。 Furin蛋白酶在体外切割胰岛素肽。在植物细胞中的未加工的胰岛素中未加工的植物细胞或注射液中的口服递送,其血糖水平与加工的商业胰岛素相似的血糖水平降低。 C-肽应该有助于长期治疗糖尿病并发症,包括刺激神经和肾功能。脱水叶片功能性胰岛素的超表达和特殊稳定性为可切割的植物蛋白的口服和可注射递送提供低成本平台。

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