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1.
Mol Ther Methods Clin Dev ; 24: 1-10, 2022 Mar 10.
Artículo en Inglés | MEDLINE | ID: mdl-34977267

RESUMEN

Over the last 15 years, optogenetics has changed fundamental research in neuroscience and is now reaching toward therapeutic applications. Vision restoration strategies using optogenetics are now at the forefront of these new clinical opportunities. But applications to human patients suffering from retinal diseases leading to blindness raise important concerns on the long-term functional expression of optogenes and the efficient signal transmission to higher visual centers. Here, we demonstrate in non-human primates continued expression and functionality at the retina level ∼20 months after delivery of our construct. We also performed in vivo recordings of visually evoked potentials in the primary visual cortex of anesthetized animals. Using synaptic blockers, we isolated the in vivo cortical activation resulting from the direct optogenetic stimulation of primate retina. In conclusion, our work indicates long-term transgene expression and transmission of the signal generated in the macaque retina to the visual cortex, two important features for future clinical applications.

2.
Front Cell Neurosci ; 15: 648210, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-33815066

RESUMEN

Human-induced pluripotent stem cell (hiPSC) derived organoids have become increasingly used systems allowing 3D-modeling of human organ development, and disease. They are also a reliable source of cells for transplantation in cell therapy and an excellent model to validate gene therapies. To make full use of these systems, a toolkit of genetic modification techniques is necessary to control their activity in line with the downstream application. We have previously described adeno-associated viruse (AAV) vectors for efficient targeting of cells within human retinal organoids. Here, we describe biological restriction and enhanced gene expression in cone cells of such organoids thanks to the use of a 1.7-kb L-opsin promoter. We illustrate the usefulness of implementing such a promoter to enhance the expression of the red-shifted opsin Jaws in fusion with a fluorescent reporter gene, enabling cell sorting to enrich the desired cell population. Increased Jaws expression after transplantation improved light responses promising better therapeutic outcomes in a cell therapy setting. Our results point to the importance of promoter activity in restricting, improving, and controlling the kinetics of transgene expression during the maturation of hiPSC retinal derivatives. Differentiation requires mechanisms to initiate specific transcriptional changes and to reinforce those changes when mature cell states are reached. By employing a cell-type-specific promoter we put transgene expression under the new transcriptional program of mature cells.

3.
Commun Biol ; 4(1): 125, 2021 01 27.
Artículo en Inglés | MEDLINE | ID: mdl-33504896

RESUMEN

Vision restoration is an ideal medical application for optogenetics, because the eye provides direct optical access to the retina for stimulation. Optogenetic therapy could be used for diseases involving photoreceptor degeneration, such as retinitis pigmentosa or age-related macular degeneration. We describe here the selection, in non-human primates, of a specific optogenetic construct currently tested in a clinical trial. We used the microbial opsin ChrimsonR, and showed that the AAV2.7m8 vector had a higher transfection efficiency than AAV2 in retinal ganglion cells (RGCs) and that ChrimsonR fused to tdTomato (ChR-tdT) was expressed more efficiently than ChrimsonR. Light at 600 nm activated RGCs transfected with AAV2.7m8 ChR-tdT, from an irradiance of 1015 photons.cm-2.s-1. Vector doses of 5 × 1010 and 5 × 1011 vg/eye transfected up to 7000 RGCs/mm2 in the perifovea, with no significant immune reaction. We recorded RGC responses from a stimulus duration of 1 ms upwards. When using the recorded activity to decode stimulus information, we obtained an estimated visual acuity of 20/249, above the level of legal blindness (20/400). These results lay the groundwork for the ongoing clinical trial with the AAV2.7m8 - ChR-tdT vector for vision restoration in patients with retinitis pigmentosa.


Asunto(s)
Optogenética , Estimulación Luminosa , Degeneración Retiniana/terapia , Visión Ocular/fisiología , Animales , Equipos y Suministros , Femenino , Humanos , Macaca fascicularis , Masculino , Optogenética/instrumentación , Optogenética/métodos , Reconocimiento Visual de Modelos/fisiología , Estimulación Luminosa/instrumentación , Estimulación Luminosa/métodos , Primates , Degeneración Retiniana/fisiopatología , Degeneración Retiniana/rehabilitación , Terapias en Investigación/instrumentación , Terapias en Investigación/métodos
4.
Front Cell Dev Biol ; 8: 585675, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-33195235

RESUMEN

Optic neuropathies are a major cause of visual impairment due to retinal ganglion cell (RGC) degeneration. Human induced-pluripotent stem cells (iPSCs) represent a powerful tool for studying both human RGC development and RGC-related pathological mechanisms. Because RGC loss can be massive before the diagnosis of visual impairment, cell replacement is one of the most encouraging strategies. The present work describes the generation of functional RGCs from iPSCs based on innovative 3D/2D stepwise differentiation protocol. We demonstrate that targeting the cell surface marker THY1 is an effective strategy to select transplantable RGCs. By generating a fluorescent GFP reporter iPSC line to follow transplanted cells, we provide evidence that THY1-positive RGCs injected into the vitreous of mice with optic neuropathy can survive up to 1 month, intermingled with the host RGC layer. These data support the usefulness of iPSC-derived RGC exploration as a potential future therapeutic strategy for optic nerve regeneration.

5.
Cell Rep ; 33(1): 108220, 2020 10 06.
Artículo en Inglés | MEDLINE | ID: mdl-33027659

RESUMEN

Axonal arbors in many neuronal networks are exuberant early during development and become refined by activity-dependent competitive mechanisms. Theoretical work proposed non-competitive interactions between co-active axons to co-stabilize their connections, but the demonstration of such interactions is lacking. Here, we provide experimental evidence that reducing cyclic AMP (cAMP) signaling in a subset of retinal ganglion cells favors the elimination of thalamic projections from neighboring neurons, pointing to a cAMP-dependent interaction that promotes axon stabilization.


Asunto(s)
Axones/metabolismo , AMP Cíclico/metabolismo , Neuronas/metabolismo , Humanos , Transducción de Señal
6.
Nat Commun ; 10(1): 4524, 2019 10 04.
Artículo en Inglés | MEDLINE | ID: mdl-31586094

RESUMEN

A major challenge in the treatment of retinal degenerative diseases, with the transplantation of replacement photoreceptors, is the difficulty in inducing the grafted cells to grow and maintain light sensitive outer segments in the host retina, which depends on proper interaction with the underlying retinal pigment epithelium (RPE). Here, for an RPE-independent treatment approach, we introduce a hyperpolarizing microbial opsin into photoreceptor precursors from newborn mice, and transplant them into blind mice lacking the photoreceptor layer. These optogenetically-transformed photoreceptors are light responsive and their transplantation leads to the recovery of visual function, as shown by ganglion cell recordings and behavioral tests. Subsequently, we generate cone photoreceptors from human induced pluripotent stem cells, expressing the chloride pump Jaws. After transplantation into blind mice, we observe light-driven responses at the photoreceptor and ganglion cell levels. These results demonstrate that structural and functional retinal repair is possible by combining stem cell therapy and optogenetics.


Asunto(s)
Ingeniería Celular/métodos , Optogenética/métodos , Células Fotorreceptoras de Vertebrados/trasplante , Degeneración Retiniana/terapia , Animales , Animales Recién Nacidos , Técnicas de Cultivo de Célula/métodos , Dependovirus/genética , Modelos Animales de Enfermedad , Femenino , Vectores Genéticos/genética , Células HEK293 , Halorrodopsinas/genética , Humanos , Células Madre Pluripotentes Inducidas , Masculino , Ratones , Ratones Noqueados , Degeneración Retiniana/genética , Rodopsina/genética , Transfección , Resultado del Tratamiento
7.
Front Neurosci ; 12: 789, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-30450028

RESUMEN

Optogenetic technologies paved the way to dissect complex neural circuits and monitor neural activity using light in animals. In retinal disease, optogenetics has been used as a therapeutic modality to reanimate the retina after the loss of photoreceptor outer segments. However, it is not clear today which ones of the great diversity of microbial opsins are best suited for therapeutic applications in human retinas as cell lines, primary cell cultures and animal models do not predict expression patterns of microbial opsins in human retinal cells. Therefore, we sought to generate retinal organoids derived from human induced pluripotent stem cells (hiPSCs) as a screening tool to explore the membrane trafficking efficacy of some recently described microbial opsins. We tested both depolarizing and hyperpolarizing microbial opsins including CatCh, ChrimsonR, ReaChR, eNpHR 3.0, and Jaws. The membrane localization of eNpHR 3.0, ReaChR, and Jaws was the highest, likely due to their additional endoplasmic reticulum (ER) release and membrane trafficking signals. In the case of opsins that were not engineered to improve trafficking efficiency in mammalian cells such as CatCh and ChrimsonR, membrane localization was less efficient. Protein accumulation in organelles such as ER and Golgi was observed at high doses with CatCh and ER retention lead to an unfolded protein response. Also, cytoplasmic localization was observed at high doses of ChrimsonR. Our results collectively suggest that retinal organoids derived from hiPSCs can be used to predict the subcellular fate of optogenetic proteins in a human retinal context. Such organoids are also versatile tools to validate other gene therapy products and drug molecules.

8.
Stem Cell Reports ; 11(3): 665-680, 2018 09 11.
Artículo en Inglés | MEDLINE | ID: mdl-30100409

RESUMEN

Photoreceptor degenerative diseases are a major cause of blindness for which cell replacement is one of the most encouraging strategies. For stem cell-based therapy using human induced pluripotent stem cells (hiPSCs), it is crucial to obtain a homogenous photoreceptor cell population. We confirmed that the cell surface antigen CD73 is exclusively expressed in hiPSC-derived photoreceptors by generating a fluorescent cone rod homeobox (Crx) reporter hiPSC line using CRISPR/Cas9 genome editing. We demonstrated that CD73 targeting by magnetic-activated cell sorting (MACS) is an effective strategy to separate a safe population of transplantable photoreceptors. CD73+ photoreceptor precursors can be isolated in large numbers and transplanted into rat eyes, showing capacity to survive and mature in close proximity to host inner retina of a model of photoreceptor degeneration. These data demonstrate that CD73+ photoreceptor precursors hold great promise for a future safe clinical translation.


Asunto(s)
5'-Nucleotidasa/análisis , Células Madre Pluripotentes Inducidas/citología , Organoides/citología , Retina/citología , Células Fotorreceptoras Retinianas Bastones/citología , Animales , Línea Celular , Proteínas Ligadas a GPI/análisis , Humanos , Organoides/trasplante , Ratas Desnudas , Células Fotorreceptoras Retinianas Bastones/trasplante
9.
Adv Exp Med Biol ; 1074: 69-73, 2018.
Artículo en Inglés | MEDLINE | ID: mdl-29721929

RESUMEN

The expression of light-sensitive microbial opsins is a promising mutation-independent approach to restore vision in retinal degenerative diseases. Using viral vectors, optogenetic tools can be genetically expressed in various subpopulations of retinal neurons. The choice of cell type depends on the availability of surviving retinal cells. If cones are still alive but they lack outer segments, they can be targeted with optogenetic inhibitors, such as halorhodopsin. Alternatively, it is possible to bypass the photoreceptors and to target bipolar cells. In late-stage degeneration, when bipolar cells degenerate, "artificial photoreceptors" can be made from retinal ganglion cells, but with this approach, upstream retinal processing cannot be utilized. However, when ganglion cells are stimulated directly, higher brain regions might be able to compensate for some loss of retinal processing, which is indicated by clinical studies with epiretinal implants, where patients can perform simple visual tasks. Finally, optogenetics in combination with neuroprotective approaches could serve as a valuable strategy to restore the function of remaining cells, as well as to rescue retinal neurons from progressive degeneration.


Asunto(s)
Vectores Genéticos/uso terapéutico , Optogenética/métodos , Degeneración Retiniana/terapia , Rodopsinas Microbianas/uso terapéutico , Células Amacrinas/fisiología , Dependovirus/genética , Humanos , Fármacos Neuroprotectores/uso terapéutico , Especificidad de Órganos , Células Bipolares de la Retina/fisiología , Células Fotorreceptoras Retinianas Conos/fisiología , Degeneración Retiniana/genética , Degeneración Retiniana/metabolismo , Células Ganglionares de la Retina/fisiología , Células Ganglionares de la Retina/efectos de la radiación , Rodopsinas Microbianas/genética , Prótesis Visuales
10.
JCI Insight ; 3(2)2018 01 25.
Artículo en Inglés | MEDLINE | ID: mdl-29367457

RESUMEN

Intraocular injection of adeno-associated viral (AAV) vectors has been an evident route for delivering gene drugs into the retina. However, gaps in our understanding of AAV transduction patterns within the anatomically unique environments of the subretinal and intravitreal space of the primate eye impeded the establishment of noninvasive and efficient gene delivery to foveal cones in the clinic. Here, we establish new vector-promoter combinations to overcome the limitations associated with AAV-mediated cone transduction in the fovea with supporting studies in mouse models, human induced pluripotent stem cell-derived organoids, postmortem human retinal explants, and living macaques. We show that an AAV9 variant provides efficient foveal cone transduction when injected into the subretinal space several millimeters away from the fovea, without detaching this delicate region. An engineered AAV2 variant provides gene delivery to foveal cones with a well-tolerated dose administered intravitreally. Both delivery modalities rely on a cone-specific promoter and result in high-level transgene expression compatible with optogenetic vision restoration. The model systems described here provide insight into the behavior of AAV vectors across species to obtain safety and efficacy needed for gene therapy in neurodegenerative disorders.


Asunto(s)
Fóvea Central/patología , Terapia Genética/métodos , Vectores Genéticos/administración & dosificación , Transducción Genética/métodos , Trastornos de la Visión/terapia , Animales , Línea Celular , Dependovirus/genética , Femenino , Fóvea Central/diagnóstico por imagen , Vectores Genéticos/genética , Humanos , Células Madre Pluripotentes Inducidas , Inyecciones Intraoculares , Microscopía Intravital , Macaca fascicularis , Masculino , Ratones , Modelos Animales , Optogenética/métodos , Técnicas de Placa-Clamp , Regiones Promotoras Genéticas/genética , Transgenes/genética , Trastornos de la Visión/genética , Trastornos de la Visión/patología
11.
Curr Biol ; 27(17): 2600-2609.e4, 2017 Sep 11.
Artículo en Inglés | MEDLINE | ID: mdl-28844643

RESUMEN

Cone bipolar cells are interneurons that receive synaptic input from cone photoreceptor cells and provide the output of the first synaptic layer of the retina. These cells exhibit center-surround receptive fields, a prototype of lateral inhibition between neighboring sensory cells in which stimulation of the receptive field center excites the cell whereas stimulation of the surrounding region laterally inhibits the cell. This fundamental sensory coding mechanism facilitates spatial discrimination and detection of stimulus edges. However, although it is well established that the receptive field surround is strongest when ambient or background illumination is most intense, e.g., at midday, and that the surround is minimal following maintained darkness, the synaptic mechanisms that produce and modulate the surround have not been resolved. Using electrical recording of bipolar cells under experimental conditions in which the cells exhibited surround light responses, and light and electron microscopic immunocytochemistry, we show in the rabbit retina that bright-light-induced activation of dopamine D1 receptors located on ON-center cone bipolar cell dendrites increases the expression and activity of GABAA receptors on the dendrites of the cells and that surround light responses depend on endogenous GABAA receptor activation. We also show that maintained darkness and D1 receptor blockade following maintained illumination and D1 receptor activation result in minimal GABAA receptor expression and activity and greatly diminished surrounds. Modulation of the D1/GABAA receptor signaling pathway of ON-cBC dendrites by the ambient light level facilitates detection of spatial details on bright days and large dim objects on moonless nights.


Asunto(s)
Regulación de la Expresión Génica , Receptores de Dopamina D1/genética , Receptores de GABA-A/genética , Retina/fisiología , Células Bipolares de la Retina/fisiología , Animales , Dendritas/fisiología , Dendritas/efectos de la radiación , Femenino , Masculino , Estimulación Luminosa , Conejos , Receptores de Dopamina D1/metabolismo , Receptores de GABA-A/metabolismo , Retina/efectos de la radiación , Células Bipolares de la Retina/efectos de la radiación
12.
Mol Ther ; 25(11): 2546-2560, 2017 11 01.
Artículo en Inglés | MEDLINE | ID: mdl-28807567

RESUMEN

The majority of inherited retinal degenerations converge on the phenotype of photoreceptor cell death. Second- and third-order neurons are spared in these diseases, making it possible to restore retinal light responses using optogenetics. Viral expression of channelrhodopsin in the third-order neurons under ubiquitous promoters was previously shown to restore visual function, albeit at light intensities above illumination safety thresholds. Here, we report (to our knowledge, for the first time) activation of macaque retinas, up to 6 months post-injection, using channelrhodopsin-Ca2+-permeable channelrhodopsin (CatCh) at safe light intensities. High-level CatCh expression was achieved due to a new promoter based on the regulatory region of the gamma-synuclein gene (SNCG) allowing strong expression in ganglion cells across species. Our promoter, in combination with clinically proven adeno-associated virus 2 (AAV2), provides CatCh expression in peri-foveolar ganglion cells responding robustly to light under the illumination safety thresholds for the human eye. On the contrary, the threshold of activation and the proportion of unresponsive cells were much higher when a ubiquitous promoter (cytomegalovirus [CMV]) was used to express CatCh. The results of our study suggest that the inclusion of optimized promoters is key in the path to clinical translation of optogenetics.


Asunto(s)
Channelrhodopsins/genética , Vectores Genéticos/administración & dosificación , Regiones Promotoras Genéticas , Recuperación de la Función , Degeneración Retiniana/terapia , Animales , Channelrhodopsins/metabolismo , Dependovirus/genética , Dependovirus/metabolismo , Modelos Animales de Enfermedad , Expresión Génica , Terapia Genética/métodos , Vectores Genéticos/química , Vectores Genéticos/metabolismo , Inyecciones Intravítreas , Luz , Macaca fascicularis , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Optogenética , Células Fotorreceptoras de Vertebrados/metabolismo , Células Fotorreceptoras de Vertebrados/patología , Degeneración Retiniana/genética , Degeneración Retiniana/metabolismo , Degeneración Retiniana/patología , Células Ganglionares de la Retina/metabolismo , Células Ganglionares de la Retina/patología , Transducción Genética , Transgenes , Visión Ocular/fisiología
13.
Stem Cells ; 35(5): 1176-1188, 2017 05.
Artículo en Inglés | MEDLINE | ID: mdl-28220575

RESUMEN

Human induced pluripotent stem cells (hiPSCs) are potentially useful in regenerative therapies for retinal disease. For medical applications, therapeutic retinal cells, such as retinal pigmented epithelial (RPE) cells or photoreceptor precursors, must be generated under completely defined conditions. To this purpose, we have developed a two-step xeno-free/feeder-free (XF/FF) culture system to efficiently differentiate hiPSCs into retinal cells. This simple method, relies only on adherent hiPSCs cultured in chemically defined media, bypassing embryoid body formation. In less than 1 month, adherent hiPSCs are able to generate self-forming neuroretinal-like structures containing retinal progenitor cells (RPCs). Floating cultures of isolated structures enabled the differentiation of RPCs into all types of retinal cells in a sequential overlapping order, with the generation of transplantation-compatible CD73+ photoreceptor precursors in less than 100 days. Our XF/FF culture conditions allow the maintenance of both mature cones and rods in retinal organoids until 280 days with specific photoreceptor ultrastructures. Moreover, both hiPSC-derived retinal organoids and dissociated retinal cells can be easily cryopreserved while retaining their phenotypic characteristics and the preservation of CD73+ photoreceptor precursors. Concomitantly to neural retina, this process allows the generation of RPE cells that can be effortlessly amplified, passaged, and frozen while retaining a proper RPE phenotype. These results demonstrate that simple and efficient retinal differentiation of adherent hiPSCs can be accomplished in XF/FF conditions. This new method is amenable to the development of an in vitro GMP-compliant retinal cell manufacturing protocol allowing large-scale production and banking of hiPSC-derived retinal cells and tissues. Stem Cells 2017;35:1176-1188.


Asunto(s)
Células Nutrientes/citología , Células Madre Pluripotentes Inducidas/citología , Organoides/citología , Preservación Biológica , Epitelio Pigmentado de la Retina/citología , Adhesión Celular , Diferenciación Celular , Línea Celular , Criopreservación , Humanos , Organoides/ultraestructura , Células Fotorreceptoras/citología
14.
EMBO Mol Med ; 8(11): 1248-1264, 2016 11.
Artículo en Inglés | MEDLINE | ID: mdl-27679671

RESUMEN

Targeting the photosensitive ion channel channelrhodopsin-2 (ChR2) to the retinal circuitry downstream of photoreceptors holds promise in treating vision loss caused by retinal degeneration. However, the high intensity of blue light necessary to activate channelrhodopsin-2 exceeds the safety threshold of retinal illumination because of its strong potential to induce photochemical damage. In contrast, the damage potential of red-shifted light is vastly lower than that of blue light. Here, we show that a red-shifted channelrhodopsin (ReaChR), delivered by AAV injections in blind rd1 mice, enables restoration of light responses at the retinal, cortical, and behavioral levels, using orange light at intensities below the safety threshold for the human retina. We further show that postmortem macaque retinae infected with AAV-ReaChR can respond with spike trains to orange light at safe intensities. Finally, to directly address the question of translatability to human subjects, we demonstrate for the first time, AAV- and lentivirus-mediated optogenetic spike responses in ganglion cells of the postmortem human retina.


Asunto(s)
Terapia Genética/métodos , Fototerapia/métodos , Retina/fisiología , Degeneración Retiniana/terapia , Rodopsina/genética , Animales , Dependovirus/genética , Vectores Genéticos , Humanos , Lentivirus/genética , Luz , Macaca , Ratones , Rodopsina/metabolismo , Transducción Genética , Resultado del Tratamiento
15.
Antioxid Redox Signal ; 24(16): 909-23, 2016 06 01.
Artículo en Inglés | MEDLINE | ID: mdl-27025156

RESUMEN

AIMS: Rod-derived cone viability factor long (RdCVFL) is an enzymatically active thioredoxin encoded by the nucleoredoxin-like-1 (Nxnl1) gene. The second product of the gene, RdCVF, made by alternative splicing is a novel trophic factor secreted by rods that protects cones in rodent models of retinitis pigmentosa, the most prevalent inherited retinal disease. It acts on cones by stimulating aerobic glycolysis through its interaction with a complex containing basigin-1 and the glucose transporter GLUT1. We studied the role of Nxnl1 in cones after its homologous recombination using a transgenic line expressing Cre recombinase under the control of a cone opsin promoter. RESULTS: We show that the cones of these mice are dysfunctional and degenerate by 8 months of age. The age-related deficit in cones is exacerbated in young animals by exposure to high level of oxygen. In agreement with this phenotype, we found that the cones express only one of the two Nxnl1 gene products, the thioredoxin RdCVFL. Administration of RdCVFL to the mouse carrying a deletion of the Nxnl1 gene in cones reduces the damage produced by oxidative stress. Silencing the expression of RdCVFL in cone-enriched culture reduces cell viability, showing that RdCVFL is a cell-autonomous mechanism of protection. INNOVATION: This novel mode of action is certainly relevant for the therapy of retinitis pigmentosa since the delivery into cones of the rd10 mouse, a recessive model of the disease, rescues cones. CONCLUSION: Our work highlights the duality of the Nxnl1 gene, which protects the cones by two distinct mechanisms. Antioxid. Redox Signal. 24, 909-923.


Asunto(s)
Proteínas del Ojo/genética , Estrés Oxidativo , Células Fotorreceptoras Retinianas Conos/metabolismo , Tiorredoxinas/genética , Animales , Supervivencia Celular , Células Cultivadas , Proteínas del Ojo/metabolismo , Hiperoxia/metabolismo , Ratones Endogámicos BALB C , Ratones Endogámicos C57BL , Ratones Noqueados , Factores Protectores , Retina/metabolismo , Retinitis Pigmentosa/metabolismo , Análisis de la Célula Individual , Tiorredoxinas/metabolismo
16.
Mol Ther ; 23(1): 7-16, 2015 Jan.
Artículo en Inglés | MEDLINE | ID: mdl-25095892

RESUMEN

Most inherited retinal dystrophies display progressive photoreceptor cell degeneration leading to severe visual impairment. Optogenetic reactivation of retinal neurons mediated by adeno-associated virus (AAV) gene therapy has the potential to restore vision regardless of patient-specific mutations. The challenge for clinical translatability is to restore a vision as close to natural vision as possible, while using a surgically safe delivery route for the fragile degenerated retina. To preserve the visual processing of the inner retina, we targeted ON bipolar cells, which are still present at late stages of disease. For safe gene delivery, we used a recently engineered AAV variant that can transduce the bipolar cells after injection into the eye's easily accessible vitreous humor. We show that AAV encoding channelrhodopsin under the ON bipolar cell-specific promoter mediates long-term gene delivery restricted to ON-bipolar cells after intravitreal administration. Channelrhodopsin expression in ON bipolar cells leads to restoration of ON and OFF responses at the retinal and cortical levels. Moreover, light-induced locomotory behavior is restored in treated blind mice. Our results support the clinical relevance of a minimally invasive AAV-mediated optogenetic therapy for visual restoration.


Asunto(s)
Ceguera/terapia , Dependovirus/genética , Terapia Genética/métodos , Células Bipolares de la Retina/metabolismo , Degeneración Retiniana/terapia , Animales , Conducta Animal , Ceguera/genética , Ceguera/patología , Channelrhodopsins , Femenino , Expresión Génica , Técnicas de Transferencia de Gen , Ingeniería Genética , Vectores Genéticos , Inyecciones Intravítreas , Luz , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Regiones Promotoras Genéticas , Células Bipolares de la Retina/patología , Degeneración Retiniana/genética , Degeneración Retiniana/patología , Células Ganglionares de la Retina/metabolismo , Células Ganglionares de la Retina/patología , Percepción Visual/genética , Cuerpo Vítreo
17.
PLoS Comput Biol ; 10(12): e1003975, 2014 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-25474026

RESUMEN

In the olfactory system of male moths, a specialized subset of neurons detects and processes the main component of the sex pheromone emitted by females. It is composed of several thousand first-order olfactory receptor neurons (ORNs), all expressing the same pheromone receptor, that contact synaptically a few tens of second-order projection neurons (PNs) within a single restricted brain area. The functional simplicity of this system makes it a favorable model for studying the factors that contribute to its exquisite sensitivity and speed. Sensory information--primarily the identity and intensity of the stimulus--is encoded as the firing rate of the action potentials, and possibly as the latency of the neuron response. We found that over all their dynamic range, PNs respond with a shorter latency and a higher firing rate than most ORNs. Modelling showed that the increased sensitivity of PNs can be explained by the ORN-to-PN convergent architecture alone, whereas their faster response also requires cell-to-cell heterogeneity of the ORN population. So, far from being detrimental to signal detection, the ORN heterogeneity is exploited by PNs, and results in two different schemes of population coding based either on the response of a few extreme neurons (latency) or on the average response of many (firing rate). Moreover, ORN-to-PN transformations are linear for latency and nonlinear for firing rate, suggesting that latency could be involved in concentration-invariant coding of the pheromone blend and that sensitivity at low concentrations is achieved at the expense of precise encoding at high concentrations.


Asunto(s)
Modelos Neurológicos , Neuronas/fisiología , Vías Olfatorias/fisiología , Neuronas Receptoras Olfatorias/fisiología , Animales , Biología Computacional , Masculino , Mariposas Nocturnas/fisiología , Neuronas Receptoras Olfatorias/metabolismo , Feromonas/metabolismo
18.
PLoS Comput Biol ; 10(10): e1003861, 2014 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-25330317

RESUMEN

Male moths aiming to locate pheromone-releasing females rely on stimulus-adapted search maneuvers complicated by a discontinuous distribution of pheromone patches. They alternate sequences of upwind surge when perceiving the pheromone and cross- or downwind casting when the odor is lost. We compare four search strategies: three reactive versus one cognitive. The former consist of pre-programmed movement sequences triggered by pheromone detections while the latter uses Bayesian inference to build spatial probability maps. Based on the analysis of triphasic responses of antennal lobe neurons (On, inhibition, Off), we propose three reactive strategies. One combines upwind surge (representing the On response to a pheromone detection) and spiral casting, only. The other two additionally include crosswind (zigzag) casting representing the Off phase. As cognitive strategy we use the infotaxis algorithm which was developed for searching in a turbulent medium. Detection events in the electroantennogram of a moth attached to a robot indirectly control this cyborg, depending on the strategy in use. The recorded trajectories are analyzed with regard to success rates, efficiency, and other features. In addition, we qualitatively compare our robotic trajectories to behavioral search paths. Reactive searching is more efficient (yielding shorter trajectories) for higher pheromone doses whereas cognitive searching works better for lower doses. With respect to our experimental conditions (2 m from starting position to pheromone source), reactive searching with crosswind zigzag yields the shortest trajectories (for comparable success rates). Assuming that the neuronal Off response represents a short-term memory, zigzagging is an efficient movement to relocate a recently lost pheromone plume. Accordingly, such reactive strategies offer an interesting alternative to complex cognitive searching.


Asunto(s)
Algoritmos , Conducta Apetitiva , Inteligencia Artificial , Modelos Biológicos , Odorantes/análisis , Robótica , Animales , Biología Computacional , Femenino , Vuelo Animal , Masculino , Mariposas Nocturnas , Feromonas
19.
Chem Senses ; 39(5): 451-63, 2014 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-24798893

RESUMEN

In nature, male moths are exposed to a complex plant odorant environment when they fly upwind to a sex pheromone source in their search for mates. Plant odors have been shown to affect responses to pheromone at various levels but how does pheromone affects plant odor perception? We recorded responses from neurons within the non-pheromonal "ordinary glome ruli" of the primary olfactory center, the antennal lobe (AL), to single and pulsed stimulations with the plant odorant heptanal, the pheromone, and their mixture in the male moth Agrotis ipsilon. We identified 3 physiological types of neurons according to their activity patterns combining excitatory and inhibitory phases. Both local and projection neurons were identified in each physiological type. Neurons with excitatory responses to heptanal responded also frequently to the pheromone and showed additive responses to the mixture. Moreover, the neuron's ability of resolving successive pulses generally improved with the mixture. Only some neurons with combined excitatory/inhibitory, or purely inhibitory responses to heptanal, also responded to the pheromone. Although individual mixture responses were not significantly different from heptanal responses in these neurons, pulse resolution was improved with the mixture as compared with heptanal alone. These results demonstrate that the pheromone and the general odorant subsystems interact more intensely in the moth AL than previously thought.


Asunto(s)
Antenas de Artrópodos/fisiología , Flores/química , Mariposas Nocturnas/fisiología , Neuronas Receptoras Olfatorias/fisiología , Atractivos Sexuales/fisiología , Aldehídos , Animales , Antenas de Artrópodos/anatomía & histología , Masculino , Odorantes , Plantas/química , Conducta Sexual Animal/fisiología , Compuestos Orgánicos Volátiles/química
20.
PLoS One ; 8(4): e61220, 2013.
Artículo en Inglés | MEDLINE | ID: mdl-23613816

RESUMEN

Insects and robots searching for odour sources in turbulent plumes face the same problem: the random nature of mixing causes fluctuations and intermittency in perception. Pheromone-tracking male moths appear to deal with discontinuous flows of information by surging upwind, upon sensing a pheromone patch, and casting crosswind, upon losing the plume. Using a combination of neurophysiological recordings, computational modelling and experiments with a cyborg, we propose a neuronal mechanism that promotes a behavioural switch between surge and casting. We show how multiphasic On/Off pheromone-sensitive neurons may guide action selection based on signalling presence or loss of the pheromone. A Hodgkin-Huxley-type neuron model with a small-conductance calcium-activated potassium (SK) channel reproduces physiological On/Off responses. Using this model as a command neuron and the antennae of tethered moths as pheromone sensors, we demonstrate the efficiency of multiphasic patterning in driving a robotic searcher toward the source. Taken together, our results suggest that multiphasic On/Off responses may mediate olfactory navigation and that SK channels may account for these responses.


Asunto(s)
Conducta Apetitiva/efectos de los fármacos , Mariposas Nocturnas/efectos de los fármacos , Mariposas Nocturnas/fisiología , Neuronas/efectos de los fármacos , Neuronas/fisiología , Feromonas/farmacología , Animales , Bicuculina/farmacología , Masculino , Modelos Neurológicos , Picrotoxina/farmacología , Canales de Potasio Calcio-Activados/metabolismo , Reproducibilidad de los Resultados
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