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Layered Double Hydroxide Nanotransporter for Molecule Delivery to Intact Plant Cells

机译:层状双氢氧化物纳米转运蛋白,可将分子输送至完整的植物细胞

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Here we report a powerful method that facilitates the transport of biologically active materials across the cell wall barrier in plant cells. Positively charged delaminated layered double hydroxide lactate nanosheets (LDH-lactate-NS) with a 0.5?2?nm thickness and 30?60?nm diameter exhibit a high adsorptive capacity for negatively charged biomolecules, including fluorescent dyes such as tetramethyl rhodamine isothiocyanate (TRITC), fluorescein isothiocyanate isomer I(FITC) and DNA molecules, forming neutral LDH-nanosheet conjugates. These neutral conjugates can shuttle the bound fluorescent dye into the cytosol of intact plant cell very efficiently. Furthermore, typical inhibitors of endocytosis and low temperature incubation did not prevent LDH-lactate-NS internalization, suggesting that LDH-lactate-NS penetrated the plasma membrane via non-endocytic pathways, which will widen the applicability to a variety of plant cells. Moreover, the absence of unwanted side effects in our cytological studies, and the nuclear localization of ssDNA-FITC suggest that nano-LDHs have potential application as a novel gene carrier to plants.
机译:在这里,我们报告了一种强大的方法,该方法可促进生物活性物质跨过植物细胞中细胞壁屏障的运输。具有0.5?2?nm的厚度和30?60?nm的直径的带正电的层状分层双氢氧化物乳酸纳米片(LDH-乳酸-NS)对带负电的生物分子具有高吸附能力,包括荧光染料,如四甲基罗丹明异硫氰酸酯(TRITC ),异硫氰酸荧光素I(FITC)和DNA分子,形成中性LDH-纳米片共轭物。这些中性结合物可以非常有效地将结合的荧光染料穿梭到完整植物细胞的胞质溶胶中。此外,内吞作用和低温孵育的典型抑制剂不能阻止LDH-乳酸-NS的内在化,这表明LDH-乳酸-NS通过非内吞途径渗透到质膜,这将扩大对多种植物细胞的适用性。此外,在我们的细胞学研究中没有不希望的副作用,并且ssDNA-FITC的核定位表明纳米LDH作为植物的新型基因载体具有潜在的应用前景。

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