Background/aimsTo determine the frequency and cause of visual loss following intra-arterial melphalan (IAM) in patients with retinoblastoma with age appropriate vision.MethodsAssessment of patients with refractory retinoblastoma that had undergone systemic chemotherapy, with or without local treatment, and were subsequently treated with IAM. Eyes of patients with a healthy foveola were assessed. The main outcome measures included visual, macular (including Pattern Visual Evoked Potentials and Fundus Fluorescein Angiography) and retinal functions (Electroretinograms).ResultsFive of twelve eyes (42%) demonstrated severe visual loss following IAM at last follow-up (median 21 months). This was due to either retinal detachment (1 eye, 20%) or choroidal ischaemia involving the foveola (4 eyes, 80%). All 3 eyes that had technical difficulties or vasospasm during catheterisation suffered visual loss. 8 out of 10 eyes that had a non-age adjusted dose of melphalan suffered visual loss. Electroretinograms post-IAM deteriorated in 4 of 8 eyes (50%) and Pattern Visual Evoked Potentials deteriorated in 3 (37%), though only one of these 3 showed concomitant visual acuity loss.ConclusionsStructural and vascular damage to the foveola limited visual acuity. Complications associated with catheterisation and high doses of melphalan may be contributory factors to visual morbidity. Although visual loss is described, no patient developed metastases and most retained good vision.
Background Retinoblastoma (RB) is a malignant, childhood tumour of the developing retina that occurs with an estimated frequency of 1 in 20 000. Identification of oncogenic mutations in the RB1 gene aids in the clinical management of families with a heritable predisposition to RB. Here we present the spectrum of genetic and epigenetic changes identified in 194 tumours and 209 blood samples, from 403 unrelated RB patients.Methods Mutation screening was carried out across all 27 RB1 exons and their associated splice sites. Small coding sequence changes were detected using fluorescent conformation analysis followed by sequencing. Large exonic deletions were detected by quantitative fluorescent PCR. Methylation specific PCR of the RB1 promoter was performed to detect epigenetic alterations. Polymorphism analysis was used to determine loss of heterozygosity in tumour samples.Results 95% of the expected mutations were identified in the tumour samples, with 16 samples exhibiting only one mutation, while two samples had no detectable RB1 mutation. 96% of bilateral/familial RB blood samples and 9.5% of unilateral sporadic blood samples, yielded mutations. 111 were novel mutations.Conclusions The full range of screening techniques is required to achieve a high screening sensitivity in RB patients.
PURPOSE:To report the efficacy of super-selective intra-ophthalmic artery melphalan (IAM) for the treatment of refractory retinoblastoma and any associated complications of this treatment. DESIGN:A prospective case series. PARTICIPANTS:Eyes with retinoblastoma that had been treated with systemic chemotherapy or local therapy and had a relapse of their condition. METHODS:All patients receiving IAM between May 2009 and September 2010 were included in the study. Intra-ophthalmic artery melphalan was offered to patients who had failed to respond adequately to systemic chemotherapy and local treatment where appropriate or because of a new recurrence of retinoblastoma that could not be treated with local therapies. None of the patients were excluded because of central nervous system abnormalities. Patients received 2 treatments of IAM given 4 weeks apart. All patients received an orthoptic assessment 3 weeks after each treatment and an examination under anesthesia (EUA). A third treatment was given if an unsatisfactory response was observed on EUA after 2 treatments. MAIN OUTCOME MEASURES:The response of the retinoblastoma tumor(s) and any associated local side effects from the treatment. RESULTS:A total of 15 eyes in 14 patients were treated with IAM during the study period. The mean age at the time of IAM was 31.5 months (median 17.3, range 11.2-150.7 months), and the mean follow-up was 8.7 months (3-16.3 months). Tumor control was achieved in 12 eyes (80%), and 12 eyes (80%) had local side effects that included third cranial nerve palsy in 6 (40%), orbital edema in 3 (20%), permanent retinal detachment in 1 (7%), and vitreous hemorrhage in 4 (27%). Seven eyes (47%) developed significant retinal pigment epithelium changes. CONCLUSIONS:Intra-ophthalmic artery melphalan is an effective treatment for retinoblastoma, achieving a high level of remission in refractory tumors. It can be associated with significant local side effects that can result in loss of vision and possible amblyogenesis. Clinicians and parents need to consider the benefits and potential local side effects before embarking on treatment.
A 13-year-old boy developed widespread osteoblastic bone metastases, with dissemination throughout the neuraxis, 1 year following treatment of a differentiated (Kernohan and Sayre grade II) astrocytoma of the left parietal cortex. This unusual clinical picture and the possible route of tumour dissemination are discussed.
Forty-nine primary retinoblastoma (Rb) tumors were analyzed by the use of comparative genomic hybridization (CGH), and clinical/histological correlations were performed. Adverse histological factors were present in 13 patients. Chromosomal imbalance was a frequent phenomenon, seen in 96% of the tumors. Gain of 6p represented the most frequent event (69% of the tumors), whereas +1q was observed in 57%, confirming that these abnormalities are key secondary events in retinoblastoma tumor progression. Loss of 13q and 16 was significantly associated with tumors displaying adverse histo-prognostic factors, whereas -16q was significantly associated with tumors without adverse features. In three patients who developed an extra-ocular relapse, the tumors showed -13q and 2/3 had -5q, suggesting that these abnormalities may be associated with metastasis. Children >or= 36 months of age at enucleation tended to have more CGH abnormalities per tumor than children < 12 months (median numbers 11 vs. 3). In addition, +1q, +13q, -16, and -16q were more frequent in children with an older age at enucleation. Identical CGH changes were found in both tumors from one patient with bilateral tumors, suggesting a common origin. It is possible that tumors displaying loss of 13q and 5q indicate those patients who may suffer an adverse outcome and who would require alternative or more intensive therapy. CGH analysis on larger cohorts and in prospective clinical trials will be invaluable in determining whether a genetic classification of retinoblastoma represents a reliable measure of prognosis.
Twenty-five primary retinoblastoma tumours were analysed by real-time quantitative polymerase chain reaction to determine the genomic copy number of the N-MYC gene (2p24) relative to the copy number for REL, B2M, ALB, AF10 and MLL. Twenty-one of these tumours were shown by Comparative Genomic Hybridization to contain variable copy number increases of chromosomal material mapping to 2p. High level amplification (>30-fold) of N-MYC was found in three tumours, none of which showed adverse histological features and all patients are surviving at between 54 and 108 months post enucleation. Furthermore, the three tumours associated with metastasis and adverse patient outcome showed normal N-MYC copy number. Although high level amplification of N-MYC is an unfavourable prognostic indicator in neuroblastoma, these data show no evidence of a correlation between amplification of N-MYC and adverse outcome in retinoblastoma.
We describe four cases of childhood acute lymphoblastic leukemia with monosomy 20 as the sole cytogenetic abnormality. These cases represent 3.4% of cytogenetically abnormal childhood ALL studied in our institute at diagnosis. The patients presented at similar age, ranging from 31 to 36 months. All four patients remain in first remission with survival time being at least 20 months from the time of diagnosis.
Twelve out of a series of 630 children with retinoblastoma, treated in the ocular oncology units at St Bartholomew's and Moorfields Eye Hospitals during the past 30 years, have developed ectopic intracranial retinoblastoma. The ectopic tumour occurred in the pineal region in eight children and in the suprasellar region in four. Ten patients had bilateral retinoblastoma, one unilateral disease, and one child presented with an isolated suprasellar tumour but no evidence of retinal disease. The interval from the initial diagnosis of retinoblastoma to the development of ectopic intracranial disease ranged from 4 to 70 months, median 34 months. Methods of treatment for the ectopic tumour varied, but all 12 children died with a median survival of only 8 months following the diagnosis of ectopic retinoblastoma. Subsequent spread of tumour to other sites within the central nervous system proved to be the most frequent cause of death. Ectopic intracranial retinoblastoma is a potentially curable neoplasm, but it requires adequate therapy to the whole neuraxis as well as high dose equivalent radiotherapy to the primary tumour.