| Literature DB >> 31711496 |
Beatrice Formicola1, Roberta Dal Magro2, Carlos V Montefusco-Pereira3, Claus-Michael Lehr3, Marcus Koch4, Laura Russo5, Gianvito Grasso6, Marco A Deriu7, Andrea Danani6, Sandrine Bourdoulous8, Francesca Re2.
Abstract
We designed liposomes dually functionalized with ApoE-derived peptide (mApoE) and chlorotoxin (ClTx) to improve their blood-brain barrier (BBB) crossing. Our results demonstrated the synergistic activity of ClTx-mApoE in boosting doxorubicin-loaded liposomes across the BBB, keeping the anti-tumour activity of the drug loaded: mApoE acts promoting cellular uptake, while ClTx promotes exocytosis of liposomes.Entities:
Keywords: Blood–brain barrier; Brain; Chlorotoxin; Doxorubicin; Drug delivery; Glioblastoma; Liposomes; Nanoparticles
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Year: 2019 PMID: 31711496 PMCID: PMC6844026 DOI: 10.1186/s12951-019-0546-3
Source DB: PubMed Journal: J Nanobiotechnology ISSN: 1477-3155 Impact factor: 10.435
Fig. 1a Conjugation reaction of ClTx to DSPE-PEG-NHS. b Graphical representation of CADOX-LIP-LIP. c Cryo-TEM images of non-functionalized LIP and CADOX-LIP-LIP. Image inset is a magnification of a single liposome carrying DOX. d Characterization of LIP by Dynamic Light scattering and ζ-potential analyser. Data are expressed as a mean ± SD of at least three independent LIP preparation, each of them in triplicates
Fig. 2a Graphical representation of the transwell system used to mimic the BBB. b TEER values. c Fluorescence intensity of LY in the ‘brain’ side of the transwell system before and after 1 h of incubation with DOX-LIP or CADOX-LIP. d hCMEC/D3 cell viability assessed by MTT assay after 24 h of incubation with DOX-LIP or CADOX-LIP. Data are expressed as a mean ± SD of at least three independent LIP preparation, each of them in triplicates
Fig. 3Permeability of LIP across human in vitro BBB cellular model. a Endothelial permeability to DOX in different LIP formulations. b Analysis of CADOX-LIP-LIP size and quantity in the basolateral compartment of the transwell system, after BBB crossing, measured by nanosight. Data are expressed as a mean ± SD of at least five independent LIP preparation, each of them in triplicates
Fig. 4a Trp fluorescence of 30 μM mApoE after incubation with different doses of ClTx ranging from 0 to 30 μM. b Scatchard plot to determine the binding constant between mApoE e ClTx in solution, where [CA] is the concentration of ClTx-mApoE complex and [C] is concentration of ClTx. c Visual Inspection of mApoE-CITX interaction by MDS. Residues mainly responsible for the protein–protein interaction are also highlighted. d Contact probability plot reporting the probability of each protein residue to be part of the protein–protein contact surface. e Cellular uptake of DOX in different LIP formulations. Data are expressed as a mean ± SD of triplicates
Fig. 5a Graphical representation of co-culture transwell model utilized to test the efficacy of LIP after BBB crossing on human glioblastoma U87 cells. b Cell viability assessed by MTT assay on U87 cells seeded in the basolateral compartment of the transwell system. Data are expressed as a mean ± SD of triplicates and analysed with unpaired one-tailed Student’s t test. ***p < 0.001