scholarly journals A Proinflammatory Function of Toll-Like Receptor 2 in the Retinal Pigment Epithelium as a Novel Target for Reducing Choroidal Neovascularization in Age-Related Macular Degeneration

2017 ◽  
Vol 187 (10) ◽  
pp. 2208-2221 ◽  
Author(s):  
Lili Feng ◽  
Meihua Ju ◽  
Kei Ying V. Lee ◽  
Ashley Mackey ◽  
Mariasilvia Evangelista ◽  
...  

Choroidal neovascularization is defined as the formation of new blood vessels located between the retinal pigment epithelium and the Bruch's membrane. The neovascular structure is taken origin from the choroid, crosses the Bruch membrane, and affects the photoreceptors with RPE. It is most frequently observed in Age-Related Macular Degeneration and less frequently in other eye diseases. This review mentions choroidal neovascularization and its causes as a general.


2019 ◽  
Vol 55 (2) ◽  
pp. 121-132
Author(s):  
Tea Čaljkušić-Mance ◽  
Ivan Brumini ◽  
Renata Gržetić-Lenac ◽  
Tamara Mišljenović-Vučerić ◽  
Zvjezdana Alpeza-Dunato

Senilna makularna degeneracija (engl. age-related macular degeneration; AMD) jedan je od najvažnijih uzroka gubitka centralnog vida kod starije populacije. Dijelimo je na „vlažnu” i „suhu” formu, ovisno o prisutnosti koroidne neovaskularizacije (engl. choroidal neovascularization; CNV). Do sada nijedna terapija nije potvrđena i odobrena za liječenje geografske atrofije (engl. geographic atrophy; GA), najtežeg oblika „suhog” AMD-a, jer nije bilo moguće popraviti oštećenja retinalnog pigmentnog epitela (engl. retinal pigment epithelium; RPE) i fotoreceptora. Liječenje se svodilo na pokušaje zaustavljanja progresije oboljenja i širenja geografske atrofije. Namjera ovog članka je prikazati podatke novijih dovršenih i tekućih kliničkih ispitivanja s naglaskom na mjesto djelovanja potencijalnih lijekova. Danas su nam dostupne brojne nove dijagnostičke metode koje nam omogućavaju bolje praćenje morfoloških promjena mrežnice, RPE-a i žilnice, kao i širenja područja atrofije. Oksidativni stres, kronična upala, insuficijentni koroidalni protok krvi te depoziti lipofuscina za koje se pretpostavlja da bi imali važniju ulogu u razvoju bolesti predstavljaju potencijalne mete za djelovanje lijekova. Velik je broj tekućih studija koje istražuju moguća rješenja, kao što su protuupalni i neuroprotektivni lijekovi te matične stanice, dok će samo neki od lijekova biti dostupni na tržištu i pružiti nadu pacijentima za očuvanje centralnog vida, pa ih je potrebno dugoročno pratiti. Uključiti treba i tretman ispodpražnim i mikropulsnim laserom koji je kod nekih oboljenja mrežnice pokazao određene rezultate u revitalizaciji tkiva, a koji koristimo i na našoj Klinici, te su prvi kratkoročni rezultati skromni ali ohrabrujući i zahtijevaju daljnje tretmane i praćenje.


2021 ◽  
Vol 22 (16) ◽  
pp. 8387
Author(s):  
Alexa Klettner ◽  
Johann Roider

(1) Background: Inflammation is a major pathomechanism in the development and progression of age-related macular degeneration (AMD). The retinal pigment epithelium (RPE) may contribute to retinal inflammation via activation of its Toll-like receptors (TLR). TLR are pattern recognition receptors that detect the pathogen- or danger-associated molecular pattern. The involvement of TLR activation in AMD is so far not understood. (2) Methods: We performed a systematic literature research, consulting the National Library of Medicine (PubMed). (3) Results: We identified 106 studies, of which 54 were included in this review. Based on these studies, the current status of TLR in AMD, the effects of TLR in RPE activation and of the interaction of TLR activated RPE with monocytic cells are given, and the potential of TLR activation in RPE as part of the AMD development is discussed. (4) Conclusion: The activation of TLR2, -3, and -4 induces a profound pro-inflammatory response in the RPE that may contribute to (long-term) inflammation by induction of pro-inflammatory cytokines, reducing RPE function and causing RPE cell degeneration, thereby potentially constantly providing new TLR ligands, which could perpetuate and, in the long run, exacerbate the inflammatory response, which may contribute to AMD development. Furthermore, the combined activation of RPE and microglia may exacerbate neurotoxic effects.


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