Reprint

Smart Nanovesicles for Drug Targeting and Delivery

Edited by
May 2019
198 pages
  • ISBN978-3-03897-894-7 (Paperback)
  • ISBN978-3-03897-895-4 (PDF)

This book is a reprint of the Special Issue Smart Nanovesicles for Drug Targeting and Delivery that was published in

Biology & Life Sciences
Chemistry & Materials Science
Medicine & Pharmacology
Summary

Nanovesicles are highly-promising systems for the delivery and/or targeting of drugs, biomolecules and contrast agents. Despite the fact that initial studies in this area were performed on phospholipid vesicles, there is an ever-increasing interest in the use of other molecules to obtain smart vesicular carriers focusing on strategies for targeted delivery. These systems can be obtained using newly synthesized smart molecules, or by intelligent design of opportune carriers to achieve specific delivery to the site of action.

 

The drug/contrast agent-containing vesicles need to be directed to precise locations within the body to obtain desired magnitude and duration of the therapeutic or diagnostic effect. This spatial control in the delivery might open new avenues to modulate drug activity while avoiding side-effects and to optimize contrast agent properties while avoiding a broad distribution in the organism. However, delivering and targeting active substances into specific tissues and cells is still a challenge in designing novel therapeutic approaches against untreatable disorders, such as tumors and degenerative diseases.

Format
  • Paperback
License
© 2019 by the authors; CC BY-NC-ND license
Keywords
nanovesicular nasal carrier; nasal delivery system; buspirone; hot flushes; ovariectomized rat; mesoporous silica nanoparticles; MCM-41; protocells; SBA-15; Stober’s synthesis; tetraethyl orthosilicate; liposomes; brain delivery; surfactant; cationic liposomes; andrographolide; PAMPA; hCMEC/D3 cells; Plectranthus ecklonii; Parvifloron D; cytotoxicity; pancreatic cancer; nanoparticles; lipophilic compound; caryophyllene sesquiterpene; antiproliferative activity; liposomes; lamellarity; drug loading; magnetic/plasmonic nanoparticles; multifunctional liposomes; manganese ferrite; gold shell; anti-tumor drugs; cancer therapy; pancreatic ductal adenocarcinoma; liposomes; protein corona; soy lecithin liposomes; nanocochleates; andrographolide; freeze-drying; gastrointestinal stability; uptake and safety; gingiva mesenchymal stromal cells; paclitaxel; squamous cell carcinoma; drug delivery; exosomes; Ibuprofen; pH-sensitive niosomes; Pain; Analgesia; NSAIDs; n/a