| Literature DB >> 18026568 |
Klaus Braun1, Leonie von Brasch, Ruediger Pipkorn, Volker Ehemann, Juergen Jenne, Herbert Spring, Juergen Debus, Bernd Didinger, Werner Rittgen, Waldemar Waldeck.
Abstract
An efficient gene transfer into target tissues and cells is needed for safe and effective treatment of genetic diseases like cancer. In this paper, we describe the development of a transport system and show its ability for transporting plasmids. This non-viral peptide-based BioShuttle-mediated transfer system consists of a nuclear localization address sequence realizing the delivery of the plasmid phNIS-IRES-EGFP coding for two independent reporter genes into nuclei of HeLa cells. The quantification of the transfer efficiency was achieved by measurements of the sodium iodide symporter activity. EGFP gene expression was measured with Confocal Laser Scanning Microscopy and quantified with biostatistical methods by analysis of the frequency of the amplitude distribution in the CLSM images. The results demonstrate that the "BioShuttle"-Technology is an appropriate tool for an effective transfer of genetic material carried by a plasmid.Entities:
Keywords: Quantification of gene transfer; gene targeting; non-viral vectors; nucleus-addressed delivery
Mesh:
Substances:
Year: 2007 PMID: 18026568 PMCID: PMC2062513 DOI: 10.7150/ijms.4.267
Source DB: PubMed Journal: Int J Med Sci ISSN: 1449-1907 Impact factor: 3.738
Figure 1Chemical structure of Clamp-PNA-BioShuttle phNIS-IRES-EGFP. The transport molecule consists of: A. Amphiphilic transmembrane transport module responsible for the transport across outer cellular membranes into the cytoplasm. B. Address sequence peptide which potentiates the active transport of cargos into cell nuclei using RAN-mediated mechanisms. C. Hybridization-site harbouring two identical PNA-sequences against ORI-sequences of the connected with lysine via a duplex glycine spacer.
Figure 2Physical map of phNIS-IRES-EGFP. The inner circle of the map shows functional units. The outer circle represents the map units of the restriction sites. The bp positions represent the restrictions sites of the enzymes and respectively.
Schematic display of the Aas I and Dra I digestion of phNIS-IRES-EGFP. The table summarizes the size of the plasmid DNA fragments of the phNIS-IRES-EGFP and its transport form Clamp-PNA-BioShuttle-phNIS-IRES-EGFP after cleavage with restriction enzymes Aas I and Dra I.
| phNIS -IRES-EGFP | BioShuttle-phNIS-IRES-EGFP | ||||
|---|---|---|---|---|---|
| expected fragments | calculated fragments | fragments after digestion with | expected fragments | calculated fragments | fragments after digestion with |
| 1957 | 1957 = 1588 + 369 | 1957 | 1957 = 1588 + 369 | ||
| 1789 | 1789 = 1117 + 653 + 19 | 1789 | 1789 = 1117 + 653 + 19 | ||
| 1707 | 1707 | 1707 | 1707 | 1707 | 1707 |
| - | 1588 | 1588 | 1588 | 1588 | 1588 |
| 1117 | 1117 | 1117 1136 = 1117 + 19 | 1117/1136 | 1117 | 1117 1136 = 1117 + 19 |
| 1062 | 1062 | 1062 | 1062 | 1062 | 1062 |
| 956 | 956 | 956 | 956 | 956 | 956 |
| 653 | 653 | 653 672 = 653 + 19 | - | 653 + BioShuttle | 653 672 = 653 + 19 + BioShuttle |
| 369 | 369 | 369 | 369 | ||
| 19 | 19 | 19 | 19 | ||
Figure 3Comparison of cells transfected with LipofectAmin or treated with BioShuttle and control cells. The upper row shows the CLSM Images of the untreated HeLa control cells. A distinct fluorescence signal is not detectable. The middle row exhibits the partial high fluorescence intensity of the LipofectAmin® transfected cells whereas the predominant part of the cells a low fluorescence signal located near the cellular membrane (right). The DIC-exposure (left) shows apoptotic features like Membrane blebbing. The lower row exemplifies the fluorescence signals in HeLa cells after BioShuttle phNIS-IRES-EGFP-transport. In all HeLa cells a nearly homogeneous fluorescence signal could be observed as revealed by merged in the DIC- and fluorescence exposures.
Figure 4Time course of iodide uptake mediated by transfection and transport. In cells treated with two different Clamp-PNA-BioShuttle transporters harbouring ORI 1 and ORI 2 phNIS-IRES-EGFP the iodide uptake was measured for a time period of 72 hours. The BioShuttle transport was compared with the LipofectAmin® and with the untreated control cells. Control LipofectAmin ORI 1 ORI 2
Figure 5Measurement of the cellular mortality after plasmid transfer with transport or transfection. The different mortality dependent on the transfer method is demonstrated over a three days time period; the mortality of the transported, transfected and control was compared. A propidium iodide staining was used as indication for dead cells after transfer of the plasmid. The ordinate reveals dead cells [%], the abscissa shows the days after transfer. Control Sham Control LipofectAmin ORI 1 ORI 2
Figure 6a) Quantification of the DNA transfer and expression with the EGFP reporter gene via CLSM. The histogram (left part) represents the distribution of the brightness of the fluorescence in untreated HeLa control cells. The corresponding standard-area (0.0531 mm × mm) (right part of the figure) demonstrates a diffuse weak fluorescence, - the correlation of frequency and intensity is shown in the histogram which exhibits the relevant fluorescence intensities between 2000 and 4080. The low intensity signals are not used for calculation (0-1999). The integral of the green area correlates to the fluorescence intensity of the standard-area as described above. b) The histogram (left part) represents the distribution of the brightness of the fluorescence in HeLa cells treated with Clamp-PNA-BioShuttle phNIS-IRES-EGFP. The corresponding standard-area (0.0531 mm × mm) (right part of the figure) exhibits clear fluorescence signals in all cells, - the correlation of frequency and intensity is shown in the histogram which exhibits the relevant fluorescence intensities between 2000 and 4080. The low signals (0-1999) are not used for calculation.
Figure 7Distribution of light intensities. The graph exhibits both the light intensities of untreated control cells (1) as well as the light intensities of Clamp-PNA-BioShuttle phNIS-IRES-EGFP (2) and LipofectAmin (3) treated HeLa cells in comparison. The ordinate represents the frequency (log. scale). The abscissa shows the relevant light intensities between 2000 and 4080.