We attempted to find some compounds for the effective delivery of gene constructs into cells and obtained two trispherical dendrimers on the basis of lysine, (Lys)8-(alpha, epsilon-Lys)4-(alpha, epsilon-Lys)2-(alpha, epsilon-Lys)-Ala-NH2 (D1) and (Lys)8-(alpha, epsilon-Lys)4-(alpha, epsilon-Lys)2-(alpha, epsilon-Lys)-Ala-[Lys(Plm)]2-Ala-NH2 (D2), as well as the starburst polymeric derivatives of D1, (pVIm)8-D1 and (pLys)n-D1, containing poly(N-vinylimidazole) and polylysine chains bound at a single point to the dendrimer amino groups. The conditions of dendrimer-plasmid DNA complex formation were studied. The intracellular localization of these complexes and the expression of gene constructs delivered with their help were analyzed in transfection experiments on the HeLa cell cultures of human epithelial carcinoma and on C2C12 mouse myoblasts. It was found that the chemical structure of dendrimer D1 and its derivatives significantly affected the structure and properties of complex. The English version of the paper: Russian Journal of Bioorganic Chemistry, 2004, vol. 30, no. 1; see also http://www.maik.ru.
SummaryThe preparation method of peptide ligands employing polymer-supported solid-phase synthesis and leading to biospecific sorbents has been designed and optimized. This approach directly affords porous polymer sorbents for biospecific chromatography and avoids the cleavage of the synthesized peptide moieties from the cm'rier and their isolation. The specifics of both peptide synthesis and biospecific chromatography using hydrophilic macroporous polymer supports based on porous poly(glycidyl methacrylate-co-ethylene dimethacrylate) beads and discs were also investigated. The protecting groups can be removed from the target peptide (bradykinin) attached to the polymer support by trifluoromethylsulfonic acid without any significant loss of the attached peptide from the polymer carrier. Introduction of styrene as a comonomer into the copolymer structure improves the reactivity of the support. However, no nonspecific adsorption of proteins in the course of the biospecific isolation of antibradykinin antibodies was observed with these media. In contrast, the nonspecific sorption of proteins increases as a result of increasing peptide loading.
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