| Literature DB >> 25229941 |
Yen-Ling Lin1, Guohua Jiang1, Zhaocheng Zhang2, Jacques E Nör3, Mohamed E H ElSayed1.
Abstract
Short interfering REntities:
Year: 2014 PMID: 25229941 PMCID: PMC4192611 DOI: 10.3390/jfb5030167
Source DB: PubMed Journal: J Funct Biomater ISSN: 2079-4983
Scheme IA schematic drawing showing (A) the chemical structure of a degradable, pH-sensitive, membrane-destabilizing, comb-like polymer. The first block in the diblock polymer backbone incorporates pH-sensitive EAA and hydrophobic BMA monomers. The second block incorporates N-acryloxy succinimide (NASI) monomers, which are functionalized to allow controlled grafting of hydrophobic HMA and cationic TMAEMA monomers via acid-labile hydrazone linkages. Comb-like polymer (A) condenses siRNA molecules forming “smart” particles (B); after internalization into target cells through adsorptive endocytosis (C); the acid-labile hydrazone linkages get hydrolysed releasing the membrane-active fragments that rupture the endosomal membrane (D) and release the encapsulated cargo into the cytoplasm. Image in panel B (right) shows a 1% w/V agarose gel stained with ethidium bromide to visualize the electrophoretic mobility of free siRNA and the particles prepared by complexing P(EAA-co-BMA)-b-PNASI-g-P(HMA-co-TMAEMA) comb-like polymer with 0.7 µg of anti-Bcl-2 siRNA at different N/P (+/−) ratios.
Figure 1The size and zeta potential of siPORT amine-based complexes and “smart” particles prepared by complexation of P(EAA-co-BMA)-b-PNASI-g-P(HMA-co-TMAEMA) comb-like polymer with 1.14 µg of anti-GAPDH siRNA at N/P (+/−) ratios of 2.5/1, 4/1, and 5/1. The plotted results are the average ± the standard error of the mean of two independent experiments each carried out in triplicates.
Figure 2Percentage of HeLa and UM-SCC-17B cancer cells that internalize siPORT amine-based complexes and “smart” nanoparticles prepared by complexation of P(EAA-co-BMA)-b-PNASI-g-P(HMA-co-TMAEMA) comb-like polymer with 1.14 µg of fluorescently-labeled anti-GAPDH siRNA at different N/P (+/−) ratios upon incubation for 6 h in a serum-free culture medium. Results are the average + the standard error of the mean of three replicates.
Figure 3Effect of siPORT amine-based complexes and “smart” nanoparticles prepared by complexation of P(EAA-co-BMA)-b-PNASI-g-P(HMA-co-TMAEMA) comb-like polymer with 1.14 µg of the anti-GAPDH siRNA (+) or scrambled siRNA (−) at N/P (+/−) ratios of 2.5/1, 4/1, and 6/1 (A,B) or 5/1 (C,D) on GAPDH protein (A,C) and mRNA levels (B,D) in HeLa cervical cancer cells (A,B) and in UM-SCC-17B head and neck cancer cells (C,D). Levels of GAPDH mRNA are normalized to the levels of β-actin. Results are the average + the standard error of the mean of five replicates. Statistical difference between particles encapsulating anti-GAPDH siRNA (+) and scrambled siRNA (−) was evaluated using paired t test where * denotes p ≤ 0.05, ** denotes p ≤ 0.01, and *** denotes p ≤ 0.005.
Figure 4Effect of siPORT amine-based complexes and “smart” nanoparticles prepared by complexation of P(EAA-co-BMA)-b-PNASI-g-P(HMA-co-TMAEMA) comb-like polymer with 1.14 µg of the anti-Bcl-2 siRNA (+) or scrambled siRNA (−) at N/P (+/−) ratios of 2.5/1 and 4/1 on Bcl-2 mRNA (A) and protein (B) levels after treatment for 48 h in HeLa cervical cancer cells. Levels for Bcl-2 mRNA are normalized to the levels of 18S rRNA. Results are the average + the standard error of the mean of five replicates. Statistical difference between particles encapsulating anti-Bcl-2 siRNA (+) and scrambled siRNA (−) was evaluated using paired t test where ** denotes p ≤ 0.01 and *** denotes p ≤ 0.005. Levels for Bcl-2 protein are quantified by Image J software (NIH, Bethesda, MD, USA) and normalized to the levels of β-actin.
Figure 5Effect of “smart” nanoparticles prepared by complexation of P(EAA-co-BMA)-b-PNASI-g-P(HMA-co-TMAEMA) comb-like polymer with 1.14 µg of the anti-Bcl-2 siRNA (+) or scrambled siRNA (−) at an N/P (+/−) ratio of 2.5/1 on Bcl-2 mRNA (A) and protein (B) levels at 48, 72, and 96 h in UM-SCC-17B head and neck cancer cells. Levels for Bcl-2 mRNA are normalized to the levels of 18S rRNA. Results are the average + the standard error of the mean of five replicates. Statistical difference between particles encapsulating anti-Bcl-2 siRNA (+) and scrambled siRNA (−) was evaluated using paired t test where * denotes p ≤ 0.05. Levels for Bcl-2 protein are quantified by Image J software (NIH, Bethesda, MD, USA) and normalized to the levels of β-actin.
Scheme IIScheme for synthesis of P(EAA-co-BMA)-b-PNASI-g-P(HMA-co-TMAEMA) comb-like polymer.