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1.
Eur J Pharm Biopharm ; 119: 1-10, 2017 Oct.
Article in English | MEDLINE | ID: mdl-28512018

ABSTRACT

The anti-inflammatory effect of polymeric deflazacort nanocapsules (NC-DFZ) was investigated, and possible improvement of epithelial barrier function using filter grown monolayers of Calu-3 cells was assessed. NC prepared from poly(ε-caprolactone) (PCL) had a mean size around 200nm, slightly negative zeta potential (∼-8mV), and low polydispersity index (<0.10). Encapsulation of DFZ had an efficiency of 85%. No cytotoxic effects were observed at particle concentration of 9.85×1011NC/ml, which was therefore chosen to evaluate the effect of NC-DFZ at 1% (w/v) of PCL and 0.5% (w/v) of DFZ on the epithelial barrier function of Calu-3 monolayers. Nanoencapsulated drug at 0.5% (w/v) increased transepithelial electrical resistance and decreased permeability of the paracellular marker sodium fluorescein, while non-encapsulated DFZ failed to improve these parameters. Moreover, NC-DFZ reduced the lipopolysaccharide (LPS) mediated secretion of the inflammatory marker IL-8. In vitro dissolution testing revealed controlled release of DFZ from nanocapsules, which may explain the improved effect of DFZ on the cells. These data suggest that nanoencapsulation of pulmonary delivered corticosteroids could be advantageous for the treatment of inflammatory conditions, such as asthma and chronic obstructive pulmonary diseases.


Subject(s)
Anti-Inflammatory Agents/administration & dosage , Blood-Air Barrier/drug effects , Glucocorticoids/administration & dosage , Nanocapsules/administration & dosage , Respiratory Mucosa/drug effects , A549 Cells , Anti-Inflammatory Agents/chemistry , Blood-Air Barrier/metabolism , Cell Line , Cell Survival/drug effects , Cell Survival/physiology , Dose-Response Relationship, Drug , Glucocorticoids/chemistry , Humans , Inflammation Mediators/antagonists & inhibitors , Inflammation Mediators/metabolism , Nanocapsules/chemistry , Respiratory Mucosa/metabolism
2.
Anal Chem ; 88(14): 7014-22, 2016 07 19.
Article in English | MEDLINE | ID: mdl-27329347

ABSTRACT

Increased molecular understanding of multifactorial diseases paves the way for novel therapeutic approaches requiring sophisticated carriers for intracellular delivery of actives. We designed and characterized self-assembling lipid-core nanocapsules for coencapsulation of two poorly soluble natural polyphenols curcumin and resveratrol. The polyphenols were identified as high-potential therapeutic candidates intervening in the intracellular inflammation cascade of chondrocytes during the progress of osteoarthritis. To elucidate the interplay between chondrocytes and nanocapsules and their therapeutic effect, we pursued a complementary analytical approach combining label-free visualization with biological assays. Primary human chondrocytes did not show any adverse effects upon nanocapsule application and coherent anti-Stokes Raman scattering images visualized their intracellular uptake. Further, by systematically blocking different uptake mechanisms, an energy independent uptake into the cells could be identified. Additionally, we tested the therapeutic effect of the polyphenol-loaded carriers on inflamed chondrocytes. Treatment with nanocapsules resulted in a major reduction of nitric oxide levels, a well-known apoptosis trigger during the course of osteoarthritis. For a more profound examination of this protective effect on joint cells, we pursued studies with atomic force microscopy investigations. Significant changes in the cell cytoskeleton as well as prominent dents in the cell membrane upon induced apoptosis were revealed. Interestingly, these effects could not be detected for chondrocytes which were pretreated with the nanocapsules. Overall, besides presenting a sophisticated carrier system for joint application, these results highlight the necessity of establishing combinatorial analytical approaches to elucidate cellular uptake, the interplay of codelivered drugs and their therapeutic effect on the subcellular level.


Subject(s)
Chondrocytes/metabolism , Curcumin/metabolism , Drug Carriers/metabolism , Nanocapsules/chemistry , Polyphenols/metabolism , Stilbenes/metabolism , Anti-Inflammatory Agents, Non-Steroidal/metabolism , Anti-Inflammatory Agents, Non-Steroidal/pharmacology , Curcumin/pharmacology , Drug Carriers/pharmacology , Grape Seed Extract/chemistry , Humans , Inflammation/metabolism , Microscopy, Atomic Force , Nonlinear Optical Microscopy , Particle Size , Polyphenols/pharmacology , Polysorbates/chemistry , Resveratrol , Stilbenes/pharmacology , Vitis
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