| Literature DB >> 21490757 |
Gyan P Mishra1, Mahuya Bagui, Viral Tamboli, Ashim K Mitra.
Abstract
Liposomal formulations were significantly explored over the last decade for the ophthalmic drug delivery applications. These formulations are mainly composed of <span class="Chemical">phosphatidylcholine (PC) and other constituents such as <span class="Chemical">cholesterol and lipid-conjugated hydrophilic polymers. Liposomes are biodegradable and biocompatible in nature. Current approaches for topical delivery of liposomes are focused on improving the corneal adhesion and permeation by incorporating various bioadhesive and penetration enhancing polymers. In the case of posterior segment disorders improvement in intravitreal half life and targeted drug delivery to the retina is achieved by liposomes. In this paper we have attempted to summarize the applications of liposomes in the field of ophthalmic drug delivery by citing numerous investigators over the last decade.Entities:
Year: 2011 PMID: 21490757 PMCID: PMC3066533 DOI: 10.1155/2011/863734
Source DB: PubMed Journal: J Drug Deliv ISSN: 2090-3022
Figure 1Schematic representation of basic structures and different types of liposomes.
Size of different types of liposomes [12].
| Vesicle type | Size |
|---|---|
| SUVs | ~20 nm to ~200 nm |
| LUVs | ~200 nm to ~1 |
| MLVs |
|
| GUVs |
|
Application of liposomes for the delivery of various drug molecules.
| Drug | Formulation | Result | Year | Ref |
|---|---|---|---|---|
| GCV | Liposomes |
| 2007 | [ |
| Ciprofloxacin | Liposomal hydrogel | Fivefold higher transcorneal permeation than the liposomes alone | 2010 | [ |
| Levofloxacin | Liposomes attached to the contact lens | Drug was released following first-order kinetics for more than 6 days and formulation had showed activity against | 2007 | [ |
| Herpes simplex virus antigens | Periocular vaccine | Treated rabbits showed anti-gB immune response and protected against reactivation of HSV infection | 2006 | [ |
| Acetazolamide | Neutral- and surface-charged liposomes | Positively charged liposomes reduced IOP and exhibited prolonged effect than negatively charged liposomes | 2007 | [ |
| Tacrolimus | Liposomes | More than 50 ng/mL vitreous concentration was maintained for 2 weeks and reduced drug related toxicity | 2010 | [ |
| Vasoactive intestinal peptide | Rhodamine-conjugated liposomes | Liposomes were internalized by retinal Müller glial cells, resident macrophages; majority of the liposomes reached the cervical lymph nodes and resulted in slower release and long-term expression inside the eye | 2007 | [ |
| Clodronate | Liposomes | Effectively inhibit infiltration of ED2-positive macrophages | 2005 | [ |
| Plasmid DNA | Cationic liposomes | Significantly increased transfection efficiency of pDNA | 2004 | [ |
| Therapeutic DNA | Cationic lipoplexes | Achieved good vitreous mobility with moderately pegylated cationic lipoplexes with size less than 500 nm | 2005 | [ |
Figure 2Corneal penetration profiles of diclofenac sodium in different vehicles, noncoated liposome (Non-L), LCHL2 (0.25% Low molecular weight chitosan, w/v), and LCHL3 (0.5% low molecular weight chitosan, w/v), (with permission from [10])
Figure 3Histopathology microscopy of the ocular tissues after being treated with LCHL for 7 days. cornea of nontreated (a), treated with LCHL2 (b), and LCHL3 (c); conjunctiva of nontreated (d), treated with LCHL2 (e) and LCHL3 (f) (with permission from [10]).
Figure 4In vitro transcorneal permeation of GCV liposomes and solution (with permission from [26]).
Figure 5Concentration-time profile of GCV in aqueous humor after instillation of 1 mg/mL GCV liposome preparation and GCV solution in rabbits (with permission from [26]).