AI Article Synopsis

  • * Dysregulation of this system can lead to retinal diseases such as geographic atrophy and diabetic retinopathy, creating interest in targeting the complement system for treatment.
  • * Current research includes various studies on the pathophysiology of complement dysfunction, and some complement inhibitors have already been FDA-approved for treating geographic atrophy, indicating potential for new therapies.

Article Abstract

The complement cascade is a vital system in the human body's defense against pathogens. During the natural aging process, it has been observed that this system is imperative for ensuring the integrity and homeostasis of the retina. While this system is critical for proper host defense and retinal integrity, it has also been found that dysregulation of this system may lead to certain retinal pathologies, including geographic atrophy and diabetic retinopathy. Targeting components of the complement system for retinal diseases has been an area of interest, and in vivo, ex vivo, and clinical trials have been conducted in this area. Following clinical trials, medications targeting the complement system for retinal disease have also become available. In this manuscript, we discuss the pathophysiology of complement dysfunction in the retina and specific pathologies. We then describe the results of cellular, animal, and clinical studies targeting the complement system for retinal diseases. We then provide an overview of complement inhibitors that have been approved by the Food and Drug Administration (FDA) for geographic atrophy. The complement system in retinal diseases continues to serve as an emerging therapeutic target, and further research in this field will provide additional insights into the mechanisms and considerations for treatment of retinal pathologies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11205777PMC
http://dx.doi.org/10.3390/medicina60060945DOI Listing

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