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Nanopharmaceutical Advanced Delivery Systems. Группа авторов
Читать онлайн.Название Nanopharmaceutical Advanced Delivery Systems
Год выпуска 0
isbn 9781119711681
Автор произведения Группа авторов
Жанр Программы
Издательство John Wiley & Sons Limited
3.3.1 Liposomes
They are vesicles of spherical shape that contain one or more bilayers of lipoidal structure self-assembled in aqueous media. They range from 50 to 100 nm in size. They have the ability to carry a wide range of composition matrixes and protect the biomolecules (Figure 3.3). They have the advantages of having higher entrapment efficiency of drug, biodegradability, and biocompatible property. They offer active and passive transfer of biomolecule delivery such as proteins and peptides functionalized with specific target ligands to enhance the bioavailability of the drug at a specific site or tissue [32]. For example, a group of researchers conducted a study alternative approach for intravitreal drug administration to treat diabetic retinopathy. They formulated a nanolipid carrier conjugated (NLC) with a repositioned drug (i.e., Itraconazole) surface coated uniformly with cationic polymer chitosan (CS) yielding a positively charged NLC providing prolonged time of ocular retention—interacting with the eye negatively charged mucosal layer. And it also reported an increase in NLC-drug permeation improving its bioavailability for ocular drug delivery system. Hence, the researchers concluded that CS coated Itraconazole NLCs are promising in the treatment of diabetic retinopathy [33].
Figure 3.3 Basic structure of liposomes.
3.3.2 Solid Lipid Nanoparticles (SLNs)
A globular structure containing a monolayer of phospholipid surrounds the dissolved or dispersed drug in the solid core. The employment of Solid Lipid Nanoparticles (SLN) as a drug delivery vehicle is being increasing day by day because it paves the way to an alternative suitable approach to the available traditional colloidal carrier mediated systems such as liposomes, polymer-based nanocarriers, and emulsions (Figure 3.4). Generally, SLN ranges from 50 to 1000 nm in size. They are constructed using a highly melting fatty matrix (solid lipid ingredients) to mask the challenges and limitations such as cytotoxicity, lipid and polymer degradation, drug leakage, nanoparticles agglomeration, high production cost, lack of large-scale manufacturing, and stability issues. SLN aims to formulate a biologically bio-compatible and protect the drug degradation and prolong the storage stability. Commonly they are formulated as a vehicle for delivering the therapeutic agent to the brain, cancerous tissues, for tubercular therapy, carriers for vaccines, topical application, and cosmetics [34].
Figure 3.4 Solid lipid nanoparticles (SLNs).
3.3.3 Nanocarbon Tubes
These are cylindrical structured molecules having a diameter of 0.3 to 3 nm and length of 20 to 1000 nm (Figure 3.5). Crystalline allotropic carbon sheets form mono- or multilayers of nanotubes. They take advantage by increasing the solubility and enhancing the cellular cytoplasmic and nuclei permeation, and they serve as a carrier for gene-based and protein-based drug delivery, while striking the thermal, electrical, and mechanical properties for the early-stage diagnosis of cancer in patients [35].
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