4.7 Article

Protein Expression Knockdown in Cancer Cells Induced by a Gemini Cationic Lipid Nanovector with Histidine-Based Polar Heads

期刊

PHARMACEUTICS
卷 12, 期 9, 页码 -

出版社

MDPI
DOI: 10.3390/pharmaceutics12090791

关键词

Non-viral gene delivery; gene knockdown efficiency; small interfering RNA; amino acid-based gemini cationic lipids; protein expression; protein corona

资金

  1. Spanish Ministry of Science, Innovation and Universities (MICIU) [RTI2018-095844-B-I00, CTQ2017-88948-P]
  2. University Complutense of Madrid (Spain) [UCMA05-33-010]
  3. Regional Government of Madrid [P2018/NMT-4389]
  4. Agencia Estatal de Investigacion (AEI) [MAT2016-80266-R]
  5. Xunta de Galicia (Grupo de Referencia Competitiva) [ED431C 2018/26]
  6. ERDF funds
  7. PE I+D+i 2013-2016 - ISCIII [PT17/0019]
  8. ERDF
  9. Xunta de Galicia (Agrupacion Estrategica en Materiales-AEMAT) [ED431E 2018/08]

向作者/读者索取更多资源

A histidine-based gemini cationic lipid, which had already demonstrated its efficiency as a plasmid DNA (pDNA) nanocarrier, has been used in this work to transfect a small interfering RNA (siRNA) into cancer cells. In combination with the helper lipid monoolein glycerol (MOG), the cationic lipid was used as an antiGFP-siRNA nanovector in a multidisciplinary study. Initially, a biophysical characterization by zeta potential (zeta) and agarose gel electrophoresis experiments was performed to determine the lipid effective charge and confirm siRNA compaction. The lipoplexes formed were arranged in L-alpha lamellar lyotropic liquid crystal phases with a cluster-type morphology, as cryo-transmission electron microscopy (cryo-TEM) and small-angle X-ray scattering (SAXS) studies revealed. Additionally, in vitro experiments confirmed the high gene knockdown efficiency of the lipid-based nanovehicle as detected by flow cytometry (FC) and epifluorescence microscopy, even better than that of Lipofectamine2000*, the transfecting reagent commonly used as a positive control. Cytotoxicity assays indicated that the nanovector is non-toxic to cells. Finally, using nano-liquid chromatography tandem mass spectrometry (nanoLC-MS/MS), apolipoprotein A-I and A-II followed by serum albumin were identified as the proteins with higher affinity for the surface of the lipoplexes. This fact could be beyond the remarkable silencing activity of the histidine-based lipid nanocarrier herein presented.

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