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1.
Ann Pharm Fr ; 69(2): 100-7, 2011 Mar.
Artículo en Francés | MEDLINE | ID: mdl-21440102

RESUMEN

Intravitreal administration has been widely used since 20 years and has been shown to improve the treatment of diseases of the posterior segment of the eye with infectious origin or in edematous maculopathies. This route of administration allows to achieve high concentration of drug in the vitreous and avoids the problems resulting from systemic administration. However, two basic problems limit the use of intravitreal therapy. Many drugs are rapidly cleared from the vitreous humor; therefore, to reach and to maintain effective therapy repeated injections are necessary. Repeated intravitreal injections increase the risk of endophthalmitis, damage to lens, retinal detachment. Moreover, some drugs provoke a local toxicity at their effective dose inducing side-effects and possible retinal lesions. In this context, the development and the use of new drug delivery systems for intravitreal administration are necessary to treat chronic ocular diseases. Among them, particulate systems such as liposomes have been widely studied. Liposomes are easily injectable and permit to reduce the toxicity and to increase the residence time of several drugs in the eye. They are also able to protect in vivo poorly-stable molecules from degradation such as peptides and nucleic acids. Some promising results have been obtained for the treatment of retinitis induced by cytomegalovirus in human and more recently for the treatment of uveitis in animal. Finally, the fate of liposomes in ocular tissues and fluids after their injection into the vitreous and their elimination routes begin to be more known.


Asunto(s)
Portadores de Fármacos , Oftalmopatías/tratamiento farmacológico , Liposomas , Preparaciones Farmacéuticas/administración & dosificación , Cuerpo Vítreo/fisiología , Portadores de Fármacos/farmacocinética , Sistemas de Liberación de Medicamentos , Efectos Colaterales y Reacciones Adversas Relacionados con Medicamentos , Ojo/metabolismo , Humanos , Inyecciones Intravítreas , Liposomas/farmacocinética
2.
Ophthalmic Res ; 40(3-4): 145-50, 2008.
Artículo en Inglés | MEDLINE | ID: mdl-18421229

RESUMEN

The use of liposomes as carriers for the delivery of biologically active molecules into the eye is of major interest. Indeed, encapsulation of biologically active molecules in liposomes may increase their bioavailability and may induce a sustained release, thus avoiding repeated intraocular injections and reducing side effects. We describe here the fate of rhodamine-conjugated liposomes (Rh-Lip) injected into the vitreous of normal Lewis rats. Twenty-four hours after intravitreal injection fluorescent liposomes were detected in the vitreous, the inner layer of the retina and to a lesser extent in the anterior segment of the eye. In addition, numerous Rh-Lip were also observed in the episclera and conjunctival stroma, in conjunctival lymphatic vessels and cervical lymph nodes (LN) draining the conjunctiva and the eye. In the LN, Rh-Lip were taken up by resident macrophages adjacent to CD4+ and CD8+ T cells. Thus, intravitreal injection of anti-inflammatory drugs loaded in liposomes could modulate the ocular immune microenvironment. In addition the passage of drugs into the cervical LN could alter the immune status of these LN and contribute to the regulation of intraocular inflammation. Our results suggest that this phenomenon should be taken into account to design new therapies based on intraocular drug administration.


Asunto(s)
Conjuntiva/metabolismo , Colorantes Fluorescentes/metabolismo , Ganglios Linfáticos/metabolismo , Sistema Linfático/fisiología , Rodaminas/metabolismo , Cuerpo Vítreo/metabolismo , Animales , Inmunohistoquímica , Inyecciones , Liposomas , Masculino , Microscopía Confocal , Cuello , Ratas , Ratas Endogámicas Lew , Retina/metabolismo
3.
Mol Vis ; 13: 2263-74, 2007 Dec 07.
Artículo en Inglés | MEDLINE | ID: mdl-18451986

RESUMEN

PURPOSE: Local delivery of therapeutic molecules encapsulated within liposomes is a promising method to treat ocular inflammation. The purpose of the present study was to define the biodistribution of rhodamine-conjugated liposomes loaded with vasoactive intestinal peptide (VIP), an immunosuppressive neuropeptide, following their intravitreal (IVT) injection in normal rats. METHODS: Healthy seven- to eight-week-old Lewis male rats were injected into the vitreous with empty rhodamine-conjugated liposomes (Rh-Lip) or with VIP-loaded Rh-Lip (VIP-Rh-Lip; 50 mM of lipids with an encapsulation efficiency of 3.0+/-0.4 mmol VIP/mol lipids). Twenty-four h after IVT injection, the eyes, the cervical, mesenteric, and inguinal lymph nodes (LN), and spleen were collected. The phenotype and distribution of cells internalizing Rh-Lip and VIP-Rh-Lip were studied. Determination of VIP expression in ocular tissues and lymphoid organs and interactions with T cells in cervical LN was performed on whole mounted tissues and frozen tissue sections by immunofluorescence and confocal microscopy. RESULTS: In the eye, 24 h following IVT injection, fluorescent liposomes (Rh-Lip and VIP-Rh-Lip) were detected mainly in the posterior segment of the eye (vitreous, inner layer of the retina) and to a lesser extent at the level of the iris root and ciliary body. Liposomes were internalized by activated retinal Müller glial cells, ocular tissue resident macrophages, and rare infiltrating activated macrophages. In addition, fluorescent liposomes were found in the episclera and conjunctiva where free VIP expression was also detected. In lymphoid organs, Rh-Lip and VIP-Rh-Lip were distributed almost exclusively in the cervical lymph nodes (LN) with only a few Rh-Lip-positive cells detected in the spleen and mesenteric LN and none in the inguinal LN. In the cervical LN, Rh-Lip were internalized by resident ED3-positive macrophages adjacent to CD4 and CD8-positive T lymphocytes. Some of these T lymphocytes in close contact with macrophages containing VIP-Rh-Lip expressed VIP. CONCLUSIONS: Liposomes are specifically internalized by retinal Müller glial cells and resident macrophages in the eye. A limited passage of fluorescent liposomes from the vitreous to the spleen via the conventional outflow pathway and the venous circulation was detected. The majority of fluorescent liposomes deposited in the conjunctiva following IVT injection reached the subcapsular sinus of the cervical LN via conjuntival lymphatics. In the cervical LN, Rh-Lip were internalized by resident subcapsular sinus macrophages adjacent to T lymphocytes. Detection of VIP in both macrophages and T cells in cervical LN suggests that IVT injection of VIP-Rh-Lip may increase ocular immune privilege by modulating the loco-regional immune environment. In conclusion, our observations suggest that IVT injection of VIP-loaded liposomes is a promising therapeutic strategy to dampen ocular inflammation by modulating macrophage and T cell activation mainly in the loco-regional immune system.


Asunto(s)
Rodaminas/administración & dosificación , Rodaminas/farmacocinética , Péptido Intestinal Vasoactivo/administración & dosificación , Péptido Intestinal Vasoactivo/farmacocinética , Cuerpo Vítreo/metabolismo , Animales , Cuerpo Ciliar/citología , Cuerpo Ciliar/efectos de los fármacos , Cuerpo Ciliar/metabolismo , Conjuntiva/citología , Conjuntiva/efectos de los fármacos , Conjuntiva/metabolismo , Endocitosis/efectos de los fármacos , Inyecciones , Iris/citología , Iris/efectos de los fármacos , Iris/metabolismo , Liposomas , Ganglios Linfáticos/citología , Ganglios Linfáticos/efectos de los fármacos , Ganglios Linfáticos/metabolismo , Tejido Linfoide/citología , Tejido Linfoide/efectos de los fármacos , Tejido Linfoide/metabolismo , Masculino , Fagocitos/efectos de los fármacos , Fagocitos/metabolismo , Fenotipo , Ratas , Ratas Endogámicas Lew , Rodaminas/farmacología , Distribución Tisular/efectos de los fármacos , Péptido Intestinal Vasoactivo/farmacología , Cuerpo Vítreo/citología , Cuerpo Vítreo/efectos de los fármacos
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