Dual Functionalized Liposomes for Selective Delivery of Poorly Soluble Drugs to Inflamed Brain Regions.
Sabrina GiofrèAntonio RendaSilvia SesanaBeatrice FormicolaBarbara VerganiBiagio Eugenio LeoneVanna DentiGiuseppe PagliaSerena GroppusoValentina RomeoLuca MuzioAndrea BalboniAndrea MenegonAntonia I AntoniouArianna AmentaDaniele PassarellaPierfausto SeneciSara PellegrinoFrancesca RePublished in: Pharmaceutics (2022)
Dual functionalized liposomes were developed to cross the blood-brain barrier (BBB) and to release their cargo in a pathological matrix metalloproteinase (MMP)-rich microenvironment. Liposomes were surface-functionalized with a modified peptide deriving from the receptor-binding domain of apolipoprotein E (mApoE), known to promote cargo delivery to the brain across the BBB in vitro and in vivo; and with an MMP-sensitive moiety for an MMP-triggered drug release. Different MMP-sensitive peptides were functionalized at both ends with hydrophobic stearate tails to yield MMP-sensitive lipopeptides (MSLPs), which were assembled into mApoE liposomes. The resulting bi-functional liposomes (i) displayed a < 180 nm diameter with a negative ζ-potential; (ii) were able to cross an in vitro BBB model with an endothelial permeability of 3 ± 1 × 10 -5 cm/min; (iii) when exposed to functional MMP2 or 9, efficiently released an encapsulated fluorescein dye; (iv) showed high biocompatibility when tested in neuronal cultures; and (v) when loaded with glibenclamide, a drug candidate with poor aqueous solubility, reduced the release of proinflammatory cytokines from activated microglial cells.
Keyphrases
- drug release
- drug delivery
- cell migration
- blood brain barrier
- quantum dots
- cancer therapy
- cerebral ischemia
- induced apoptosis
- resting state
- white matter
- oxidative stress
- multiple sclerosis
- ionic liquid
- spinal cord injury
- signaling pathway
- risk assessment
- photodynamic therapy
- functional connectivity
- binding protein
- neuropathic pain
- drug induced
- adverse drug
- aqueous solution
- wound healing
- highly efficient