| Literature DB >> 34107976 |
Federica Palombarini1, Silvia Masciarelli2,3, Alessio Incocciati1, Francesca Liccardo2, Elisa Di Fabio1, Antonia Iazzetti4, Giancarlo Fabrizi4, Francesco Fazi5, Alberto Macone6, Alessandra Bonamore7, Alberto Boffi1,8.
Abstract
BACKGROUND: In recent years, the use of ferritins as nano-vehicles for drug delivery is taking center stage. Compared to other similar nanocarriers, Archaeoglobus fulgidus ferritin is particularly interesting due to its unique ability to assemble-disassemble under very mild conditions. Recently this ferritin was engineered to get a chimeric protein targeted to human CD71 receptor, typically overexpressed in cancer cells.Entities:
Keywords: Dendrimers; Ferritin; PAMAM; Protein nanoparticles; Self-assembly; Targeted delivery; miRNA
Year: 2021 PMID: 34107976 PMCID: PMC8190868 DOI: 10.1186/s12951-021-00921-5
Source DB: PubMed Journal: J Nanobiotechnology ISSN: 1477-3155 Impact factor: 10.435
Fig. 1PAMAM-induced HumFt assembly. Ferritin assembly (24-mer %) was evaluated in the absence of magnesium ions adding 10, 20 and 30 molar excess of different generations of PAMAM (G3, G4 and G5) (mean ± SD, n = 3)
Fig. 2TEM analysis of HumFt. A HumFt in HEPES buffer without magnesium ions; B 50 mM Mg2+ and/or C and D G4 PAMAM mediate protein nanoparticle assembly. Scale bar: 0.1 μm
Fig. 3HP-SEC analysis of HumFt-PAMAM nanoparticle. G4 PAMAM was labelled with FITC and encapsulated into HumFt protein shell. The hybrid nanoparticle formation was monitored following the fluorescence signal (green line) of G4 PAMAM/FITC (ex 490 nm, em 525 m) at the retention time (4.5 min) of ferritin 24-mer (UV chromatogram, blue line). Empty ferritin does not show intrinsic fluorescence upon excitation at 490 nm (red line)
Fig. 4Confocal microscopy of APL NB4 cells treated with double dye-labelled HumFt-PAMAM nanoparticles. HumFt (red) and G4 PAMAM (green) colocalized in the cell cytosol. Co-localization areas were detected in orange. The nuclei were stained with Hoechst 33,342 (blue). Scale bar: 5 μm
Fig. 5Formation of the ternary complex HumFt-PAMAM-miRNA. A HP-SEC analysis of miRNA with (orange line) and without (blue line) HumFt-PAMAM, followed at 260 nm. B Agarose gel electrophoresis stained with SYBR Safe and C agarose gel electrophoresis stained with Coomassie Blue. Lane 1: miRNA; lane2: PAMAM-miRNA; lane 3: HumFt-miRNA; lane 4: HumFt-PAMAM-miRNA; lane 5: HumFt-PAMAM-miRNA at 99 °C
Fig. 6miRNA-145-5p delivery by the HumFt-PAMAM nanoparticle promotes differentiation of the NB4 cell line. A NB4 cells were incubated with the HumFt-PAMAM-pre-miRNA-145-5p nanoparticle for 48 h. qRT-PCR revealed high levels of miRNA-145-5p (p < 0.01) and increased expression of RARα mRNA. (mean ± SEM, n = 2, p < 0.05, one-way ANOVA statistical analysis relatively to control). B Morphological analysis of NB4 cells treated as in (A) evidenced that miRNA-145-5p promotes differentiation, as indicated by cytosol enlargement, Golgi expansion, and decreased basophilia compared to control cells or to cells treated with the HumFt-PAMAM nanoparticle without pre-miRNA-145-5p (left panel). The right panel reports the ratio between the area of nucleus and cytosol (n ≥ 60 ± SEM cells from at least two different fields; statistical analysis one way ANOVA)