4.7 Article

AS1411 derivatives as carriers of G-quadruplex ligands for cervical cancer cells

期刊

出版社

ELSEVIER
DOI: 10.1016/j.ijpharm.2019.118511

关键词

G-quadruplex aptamers; Drug delivery; AS1411 derivatives; Acridine orange ligands; Cervical cancer

资金

  1. FCT-Foundation for Science and Technology [SFRH/BD/122953/2016, PINFRA/22161/2016 PTNMR, UTAP-EXPL/NTec/0015/2017]
  2. project Acoes Integradas LusoFrancesas [TC-15/17]
  3. FCT project [UID/Multi/04349/2019]
  4. Fundo Social Europeu and Programa Operacional Potencial Humano, Project Pessoa [5079/2019]
  5. project Fundacao Luso-Americana (FLAD) Healthcare 2020 [45/2018]
  6. MIT Portugal project BIODEVICE [UTAP-EXPL/NTec/0015/2017, MIT-EXPL/BIO/0008/2017]
  7. POCI -COMPETE 2020 -Operational Programme Competitiveness and Internationalisation in Axis I Strengthening research, technological development and innovation [POCI-01-0145-FEDER-007491]
  8. SYMBIT project [02.1.01/0.0/0.0/15_ 003/0000477]
  9. ERDF
  10. FCT [UID/Multi/04349/2013]

向作者/读者索取更多资源

Nucleic acid aptamers can specifically bind to target molecules on the cell membrane that mediate their entrance into the cells. Their small size, high binding affinity, specificity, good biocompatibility, stability and low immunogenicity make them ideal drug delivery systems for cancer therapy. These biopharmaceuticals have potential for the delivery of anticancer compounds to diseased tissues, increasing their effectiveness while mitigating the off-target toxicity towards healthy cells. Herein, we have studied two quadruplex-forming DNA sequences derived from the nucleolin-targeted aptamer AS1411 as supramolecular carriers for the cancer-selective delivery of acridine orange derivatives (C-3, C-5 and C-8) in cervical cancer cells. The devised delivery strategy relied on the non-covalent association of the acridine derivatives and the G-quadruplex (G4) structures. This association is done with a high binding strength, as suggested by the obtained K-D values in the 10(-6)-10(-7) M range, leading to the thermal stabilization of the G4 structures, particularly for C-8. The stability of the resulting supramolecular conjugates was evaluated in fetal bovine serum, which proved their resistance against serum nucleases up to 48 h. Previous studies showed that the tested acridine orange derivatives were cytotoxic towards cervical cancer cells (HeLa) and non-malignant cells. However, when conjugated to AS1411 derivatives, the cytotoxicity of the free ligands towards non-malignant cells was restrained. Furthermore, conjugated C-3 showed an enhanced cytotoxicity against HeLa cancer cells. Confocal microscopy indicated that both G4 sequences appear to colocalize with nucleolin, suggesting their ability to recognize and bind nucleolin on the cell surface. Additionally, the results confirmed the internalization of these delivery systems into HeLa cancer cells and their sustained cell trafficking, although being able to dissociate in-tracellularly to deliver C-8 to the nucleoli. Overall, we showed that AS1411-derived G4s can be used as a potential cancer drug delivery system for cervical cancer.

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