A rehabilitating strategy combining early CCP and further DFG proved to be a valuable approach in children with CCA, offering significant benefits in terms of socket expansion, prosthetic retention, psychological impact, and cosmetic outcomes.
Background/AimsMicrophthalmia and anophthalmia are rare conditions, which represent ocular maldevelopment; both may be associated with orbital cysts. Current literature recommends retention to stimulate orbital growth during socket rehabilitation but does not illustrate their potential to deform the periocular tissues. This study aims to illustrate the long-term outcomes when other elements, such as forniceal and lid development, are also considered when formulating bespoke treatment plans for patients.MethodsRetrospective case series of 78 patients attending a single prosthetics clinic between 1988 and 2020. Clinical and surgical notes, radiological imaging, clinical photographs and patient/doctor satisfaction questionnaires were used to report patient outcomes and natural history data.Results89 sockets of 78 patients (11 bilateral) were included; average age of presentation being 2.8 years (9 days to 29.5 years). Cysts were clinically detected (48%) or were incidental findings (52%). The mean follow-up time was 7.2 years (6 months to 28 years). Cysts in 46% of sockets underwent surgical excision while the remainder were retained. Satisfaction surveys were obtained for 75 patients, with cosmetic outcomes rated as ‘excellent’ or ‘good’ in 90% of cases by physicians and 97% of cases by patients or guardians.ConclusionThe favourable long-term outcomes in this study have resulted from bespoke plans which considered periocular tissue development, regional orbital growth and orbital volume replacement. The authors contemplate cyst excision if the prosthetic fitting or retention is impeded by the cyst as this often heralds the increased risk of long-term periocular distortion.
Purpose: To assess clinical and biomolecular changes of the conjunctival epithelium in anophthalmic patients wearing an ocular prosthesis. Methods: Thirty-five unilateral anophthalmic patients were enrolled. Patients with blepharitis, lid abnormalities, and topical/systemic medication affecting the ocular surface were excluded. Symptom Assessment in Dry Eye (SANDE) questionnaire and tear function test (Schirmer Test Type I) were recorded. Conjunctival inflammation and meibomian gland dysfunction (MGD) were graded in the anophthalmic side and fellow eye. Impression cytology sampling of the upper, lower tarsal, and posterior/bulbar conjunctiva from the anophthalmic socket were collected and compared to healthy controls. Results: Patients had significantly higher SANDE ( p < 0.001), Schirmer I test ( p = 0.004), conjunctival inflammation ( p < 0.001), and MGD scores ( p < 0.001) on the anophthalmic side compared to the fellow eye. Mucin 5AC, inflammatory markers (MMP-9, ICAM-1) expression ( p < 0.001), and response to oxidative stress (NRF2-KEAP1 signaling pathway) ( p < 0.05) were significantly upregulated in the posterior conjunctival surface in the anophthalmic socket. Conclusions: Anophthalmic patients complained of more pronounced dry eye symptoms and presented more significant signs of inflammation and MGD on the anophthalmic side. The bulbar conjunctiva, behind the prosthesis, showed more significant hyperexpression of mucins, markers of inflammation, and increased response to oxidative stress compared to the tarsal conjunctiva. Patients wearing ocular prosthesis had signs of inflammation resembling dry eye disease.
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