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Biomedical subjects

Laurence Canaple

Publications and source records attributed to Laurence Canaple.

2 recordsLinked to original sources

Improving cell encapsulation through size control.

Capsules based on the polyelectrolyte complexation between the polyanions sodium alginate and sodium cellulose sulphate with the polycation poly(methylene-co-guanidine) hydrochloride in the presence of calcium chloride have previously shown important advantages for cell encapsulation. However, in vivo long-term applications require capsule features that are well suited for the functionality of encapsulated cells. These should be targeted to the site of implantation with an appropriate size, a relative stability, and suitable diffusion properties. This study shows the effect of capsule size reduction, from 1 mm to 400 microm, on capsule quality control, mechanical stability, diffusion properties, and in vitro activities of the encapsulated cells. Following a controlled preparation, it was determined that the capsule mechanical stability was largely dependent on the volume ratio of the capsule over the membrane. The molecule diffusion time was related to the surface/volume ratio of the capsule even for the capsules exhibiting an identical cut-off towards the proteins and the dextran molecules. Finally, the in vitro cellular activities, for both primary cultures of rat islets and murine hepatocytes, were improved for cells encapsulated into the 400 microm capsules compared with those in the 1 mm capsules. All of these findings suggest that the smaller capsules present better properties for future clinical applications, at the same time widening the choice of implantation site, and strengthen the notion that slight changes in the capsular morphological parameters can largely influence the graft function in vivo.

Animals↗

Artificial ribonucleases: efficient and specific in vitro cleavage of human c-raf-1 RNA.

We report here the first successful sequence-specific cleavage of large RNA using artificial ribonucleases. A series of uniformly 2'-methoxyethoxy-modified oligonucleotides bearing a europium complex were investigated as artificial ribonucleases specific for the human c-raf-1 mRNA. The efficiency and specificity of these oligonucleotide-metal conjugates to bind and to cleave 571 and 2,977 nucleotides long c-raf-1 RNA transcripts in vitro in a sequence-specific manner is demonstrated. Quantitative analysis reveals a cleavage efficiency of 60-70% within 4 h at 37 degrees C. Precise mapping of cleavage sites using primer extension analysis shows that cleavage generally occurs at two or three major sites adjacent to the 3'-end of the RNA target region. Cleavage is preferentially observed after purine nucleotides. This study demonstrates the potency of artificial ribonucleases targeting large, biologically relevant RNAs.

Europium↗