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Regenerative Therapy by Suprachoroidal Cell Autograft in Dry Age-related Macular Degeneration: Preliminary In Vivo Report
Published on: February 12, 2018
Review of type 3 macular neovascularization in age-related macular degeneration: no DRAMA (Deep Retinal Age-related
Livia Faes1, Jacques Bijon1, Tommaso Bacci2
1Vitreous Retina Macula Consultants of New York, New York, USA.
Abstract:
Type 3 macular neovascularization (MNV) is a unique form of neovascular age-related macular degeneration (AMD) that presents distinct pathogenetic features, clinical manifestations, and prognostic considerations when compared to types 1 and 2 MNV. Insights gained from clinicopathological correlations, bridging in vivo examination techniques with ex vivo histological analysis, have significantly enhanced our comprehension of this MNV phenotype, shaped current management strategies and influenced future directions for therapeutics. The particularities of type 3 MNV, which may largely stem from its origin from the retinal vasculature, are critically important for predicting the disease course. Our current understanding suggests that type 3 MNV occurs in response to retinal pigment epithelium (RPE) disruption and photoreceptor loss when neovessels originating from the deep capillary plexus are accompanied by activated Müller glia as they infiltrate sub-retinal pigment epithelium basal laminar deposits. Dysregulation of angiogenic and angiostatic factors are thought to play a key role in its pathogenesis. The prognosis for type 3 MNV is likely bilateral involvement and progression towards macular atrophy. It may be imperative for practitioners to distinguish type 3 MNV from other mimicking pathologies such as intraretinal microvascular anomalies, which are also part of the type 3 disease spectrum. For instance, deep retinal age-related microvascular anomalies (DRAMA) may present with similar features on multimodal imaging yet may necessitate distinct management protocols. Distinguishing between these conditions may be vital for implementing tailored treatment regimens and improving patient outcomes in the diverse landscape of AMD phenotypes in the future.
Insights
Type 3 macular neovascularization (MNV), a form of age-related macular degeneration (AMD), originates from retinal vasculature and has distinct features. Differentiating it from similar conditions is crucial for effective treatment and improved patient outcomes.
Area of Science:
- Ophthalmology
- Neovascular Age-Related Macular Degeneration (AMD)
- Retinal Vasculature Pathophysiology
Background:
- Type 3 macular neovascularization (MNV) is a distinct phenotype of neovascular age-related macular degeneration (AMD).
- Its unique pathogenetic features, clinical presentation, and prognosis differentiate it from types 1 and 2 MNV.
- Understanding type 3 MNV is critical for advancing AMD management and therapeutics.
Purpose of the Study:
- To elucidate the distinct pathogenetic mechanisms and clinical characteristics of type 3 MNV.
- To highlight the importance of differentiating type 3 MNV from mimicking pathologies like deep retinal age-related microvascular anomalies (DRAMA).
- To emphasize the impact of clinicopathological correlations on understanding and managing type 3 MNV.
Main Methods:
- Clinicopathological correlations integrating in vivo imaging with ex vivo histological analysis.
- Examination of neovascularization originating from the deep capillary plexus.
- Analysis of the role of retinal pigment epithelium (RPE) disruption and Müller glia activation.
Main Results:
- Type 3 MNV arises from retinal vasculature, often involving RPE disruption and photoreceptor loss.
- Activated Müller glia and infiltration of sub-RPE basal laminar deposits are key features.
- Dysregulation of angiogenic factors contributes to pathogenesis.
Conclusions:
- Type 3 MNV exhibits unique features stemming from its retinal vascular origin.
- Prognosis includes potential bilateral involvement and progression to macular atrophy.
- Accurate differentiation from conditions like DRAMA is vital for tailored treatment strategies and improved patient outcomes in AMD.
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