Use of intravitreal rituximab for treatment of vitreoretinal lymphoma

Kelly L. Larkin, Ujwala S. Saboo, Grant M. Comer, Farzin Forooghian, Friederike Mackensen, Pauline Merrill, H. Nida Sen, Arun Singh, Rohan W. Essex, Stewart Lake, Lyndell L. Lim, Daniel V. Vasconcelos-Santos, C. Stephen Foster, David J. Wilson, Justine R. Smith

Research output: Contribution to journalArticlepeer-review

65 Scopus citations

Abstract

Aim: Vitreoretinal lymphoma is a diffuse large B cell non-Hodgkin lymphoma. Targeting malignant cells with rituximab is being used increasingly as local chemotherapy, but information on this treatment is scant. We aimed to describe current therapeutic approaches, as well as responses to and complications of, intravitreal rituximab in patients with vitreoretinal lymphoma. Methods: Clinical data were collected in a standardised manner retrospectively on patients with vitreoretinal lymphoma treated with intravitreal rituximab. Results: 48 eyes (34 patients) with vitreoretinal lymphoma were treated with a median of 3.5 intravitreal injections of rituximab (1 mg/0.1 mL) for new diagnosis (68.8%), progressive disease (29.9%) and maintenance therapy (2.1%). Intravitreal rituximab±methotrexate was the sole treatment in 19 eyes (39.6%). 31 eyes (64.6%) eyes achieved complete remission, after a median of 3 injections; 7 of these eyes developed recurrent disease. 11 eyes (22.9%) achieved partial remission. Although rituximab may have contributed to complications reported in 12 eyes (25.0%), a 2-line loss of Snellen visual acuity occurred in only 2 of those eyes (4.2%). Conclusions: Approaches in rituximab-based intravitreal chemotherapy vary widely, but our findings suggest that this treatment may be safe and effective in inducing remission in a majority of eyes with vitreoretinal lymphoma.

Original languageEnglish (US)
Pages (from-to)99-103
Number of pages5
JournalBritish Journal of Ophthalmology
Volume98
Issue number1
DOIs
StatePublished - Jan 2014

ASJC Scopus subject areas

  • Ophthalmology
  • Sensory Systems
  • Cellular and Molecular Neuroscience

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