Retinal oxygen metabolic function in choroideremia and retinitis pigmentosa.

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Tác giả: Giacomo Calzetti, Maria Della Volpe Waizel, Benedetto Falsini, Fabian N Fries, Karolina Kaminska, Giorgio Placidi, Dominique Prétot, Carlo Rivolta, Hendrik P N Scholl, Nóra Szentmáry, Philippe Valmaggia

Ngôn ngữ: eng

Ký hiệu phân loại:

Thông tin xuất bản: Germany : Graefe's archive for clinical and experimental ophthalmology = Albrecht von Graefes Archiv fur klinische und experimentelle Ophthalmologie , 2025

Mô tả vật lý:

Bộ sưu tập: NCBI

ID: 729284

 PURPOSE: To measure the retinal oxygen metabolic function with retinal oximetry (RO) in patients with choroideremia (CHM) and compare these findings with retinitis pigmentosa (RP) patients and controls. METHODS: Prospective observational study including 18 eyes of 9 molecularly confirmed CHM patients (9♂
  40.2 ± 21.2 years (mean ± SD), 77 eyes from 39 patients with RP (15♀ 24♂
  45.6 ± 14.7 years) and 100 eyes from 53 controls (31♀ 22♂
  40.2 ± 13.4 years). Main outcome parameters were the mean arterial (A-SO RESULTS: Eyes suffering from CHM differed significantly from both RP and control eyes, when the retinal oxygen metabolic parameters were taken into account. While RP showed significantly higher A-SO CONCLUSION: The retina in CHM is a relatively hypoxic environment. The decrease in oxygen levels may be due to the profound choroidal degeneration, leading to decreased oxygen flux to the retina. RO measurements may help understand the pathogenesis of CHM and RP. These findings may provide useful details to inform the planning of clinical trials of emerging therapies for CHM. KEY MESSAGES: What was known before? Retinal oxygen metabolic function measured with retinal oximetry (RO) shows significant alterations in patients with retinitis pigmentosa. WHAT THIS STUDY ADDS: RO function in choroideremia is significantly altered when compared to controls. Furthermore, RO in choroideremia shows opposing findings within different oxygen metabolic parameters to those that were so far known for retinitis pigmentosa. By providing insights into the retinal oxygen metabolic mechanisms, RO can help understand the underlying pathophysiology in choroideremia.
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