Skip directly to site content Skip directly to page options Skip directly to A-Z link Skip directly to A-Z link Skip directly to A-Z link
Volume 21, Number 1—January 2015
Letter

Endophthalmitis Outbreak Associated with Repackaged Bevacizumab

On This Page
Article Metrics
28
citations of this article
EID Journal Metrics on Scopus

Cite This Article

To the Editor: An outbreak of endophthalmitis associated with repackaged bevacizumab occurred during February–March 2013 in Georgia and Indiana, USA. Bevacizumab (Avastin; Genentech, Inc., South San Francisco, CA, USA) is a vascular endothelial growth factor inhibitor that is approved by the US Food and Drug Administration as an antineoplastic agent but is commonly used off-label to treat retinal disorders, including age-related macular degeneration (1,2). Bevacizumab is manufactured in single-use, preservative-free, 4-mL vials; compounding pharmacies repackage bevacizumab into syringes for intraocular administration at smaller doses (e.g., 1.25 mg bevacizumab in 0.05-mL injection). Repackaged bevacizumab has been linked to endophthalmitis outbreaks worldwide in which compounding procedure deficiencies have led to microbial contamination and subsequent endophthalmitis (37). Endophthalmitis often results in vision loss, particularly if the infection is not identified early and treated aggressively (46).

During March 6–8, 2013, four patients with age-related macular degeneration received a diagnosis of acute endophthalmitis after receiving intravitreal bevacizumab injections on March 4, 2013, at a retinal specialty clinic (clinic A) in Georgia. All 4 patients were injected with bevacizumab from the same lot (lot Z), which was repackaged at a Georgia compounding pharmacy (pharmacy A) on February 13, 2013. The Georgia Department of Public Health (DPH) and the Georgia Drug and Narcotics Agency (GDNA) were notified of the outbreak by clinic A, and the outbreak was investigated to determine the extent and source of infections and to prevent additional cases.

Cases were defined as acute endophthalmitis occurring among patients <14 days after they received intraocular injection with bevacizumab that had been repackaged at pharmacy A after December 18, 2012. Pharmacy A records indicated that bevacizumab had been distributed to 11 clinics in 4 states; state public health authorities were notified, and facilities that received the medication were contacted and asked to report cases to DPH. Clinic A identified 60 additional patients who received bevacizumab from lot Z and monitored them for signs of infection. One additional patient with endophthalmitis was identified in Indiana; this patient was injected on February 22 with bevacizumab that had been repackaged at pharmacy A on February 13, 2013.

DPH epidemiologists evaluated clinic A infection prevention practices, including use of face masks and sterile techniques during injection procedures; examined possible sources of contamination; and reviewed case-patient medical records. DPH and GDNA evaluated pharmacy A, including its equipment and sterile compounding procedures. Vitreal fluid samples were collected from all case-patients and were cultured on chocolate agar medium.

The median age of the 5 case-patients was 80 years (range 59–89 years); 3 case-patients were men. Postprocedural signs and symptoms included pain, vision loss, retinal hemorrhage, hypopyon, and vitreous haze. Patients who received a diagnosis of endophthalmitis were treated with pars plana vitrectomy or vitreal tap; intraocular injection of vancomycin with gentamicin, ceftazidime, or ceftazidime and amphotericin; and oral moxafloxacin. All patients regained vision in the affected eye.

Evaluation of clinic A found appropriate mask and glove use and no deficiencies in bevacizumab injection technique or medication storage and handling. Investigation of pharmacy A revealed multiple areas in which practices did not conform to United States Pharmacopeial Convention Chapter 797 standards for compounding sterile preparations or to recommended best practices for repackaging bevacizumab; these deficiencies might have contributed to bevacizumab contamination (6,8). GDNA suspended pharmacy A from performing sterile compounding until compliance with these standards.

Culture of vitreous fluid samples from all patients in Georgia grew Granulicatella adiacens, a gram-positive bacterium that is part of the oral flora but a rare human pathogen not previously reported to cause endophthalmitis (9). The Indiana patient was infected with Abiotrophia (not further speciated); Granulicatella and Abiotrophia are similar bacterial genera that are difficult to distinguish by morphologic features (10).

Contamination introduced during repackaging at pharmacy A was the likely source of this outbreak. This conclusion was supported by evidence of common or similar organisms among 5 patients from 2 states after injection with bevacizumab repackaged on the same date at pharmacy A, combined with documented deficiencies in pharmacy A’s sterile compounding processes.

Acute postinjection endophthalmitis can occur when intraocular bevacizumab is used because of risks associated with repackaging contents from single-use, preservative-free vials. Ensuring adherence to standards for sterile compounding is critical for preventing contamination and providing patients with a safe source of intraocular bevacizumab (6). If this drug were available from the manufacturer in appropriately sized, prefilled syringes or containers, risks associated with repackaging and mishandling might be eliminated (2,6). Ophthalmology clinics that rely on repackaged bevacizumab for intraocular use should be vigilant in selecting pharmacies to perform this service. Resources are available to assist facilities in assessing the quality of outsourced sterile compounding services (e.g., http://www.ashpfoundation.org/MainMenuCategories/PracticeTools/SterileProductsTool/SterileProductsAssessmentTool.aspx). In addition, ophthalmologists should adhere to aseptic techniques and safe injection practices (http://www.cdc.gov/injectionsafety/ip07_standardprecaution.html) when preparing or administering intraocular injections. A single case of endophthalmitis may signal a more widespread problem; prompt reporting to public health authorities, investigation, clinician engagement, and product recalls can be critical for limiting patient harm.

Top

Laura S. EdisonComments to Author , Hope O. Dishman, Melissa Tobin-D’Angelo, C. Richard Allen, Alice Y. Guh, and Cherie L. Drenzek
Author affiliations: Centers for Disease Control and Prevention Atlanta, Georgia, USA (L.S. Edison, A.Y. Guh); Georgia Department of Public Health, Atlanta (L.S. Edison, H.O. Dishman, M.J. Tobin-D’Angelo, A.Y. Guh, C.L. Drenzek); Georgia Drug and Narcotics Agency, Atlanta (C.R. Allen)

Top

References

  1. Martin  DF, Maguire  MG, Fine  SL, Ying  GS, Jaffe  GJ, Grunwald  JE, Ranibizumab and bevacizumab for treatment of neovascular age-related macular degeneration: two-year results. Ophthalmology. 2012;119:138898. DOIPubMedGoogle Scholar
  2. CATT Research Group. Martin DF, Maguire MG, Ying GS, Grunwald JE, Fine SL, Jaffe GJ. Ranibizumab and bevacizumab for neovascular age-related macular degeneration. N Engl J Med. 2011;364:1897908. DOIPubMedGoogle Scholar
  3. Falavarjani  KG, Modarres  M, Hashemi  M, Parvaresh  MM, Naseripour  M, Zare-Moghaddam  A, Incidence of acute endophthalmitis after intravitreal bevacizumab injection in a single clinical center. Retina. 2013;33:9714. DOIPubMedGoogle Scholar
  4. Goldberg  RA, Flynn  HW Jr, Isom  RF, Miller  D, Gonzalez  S. An outbreak of Streptococcus endophthalmitis after intravitreal injection of bevacizumab. Am J Ophthalmol. 2012;153:204–8.e1.
  5. Goldberg  RA, Flynn  HW Jr, Miller  D, Gonzalez  S, Isom  RF. Streptococcus endophthalmitis outbreak after intravitreal injection of bevacizumab: one-year outcomes and investigative results. Ophthalmology. 2013;120:144853. DOIPubMedGoogle Scholar
  6. Gonzalez  S, Rosenfeld  PJ, Stewart  MW, Brown  J, Murphy  SP. Avastin doesn’t blind people, people blind people. Am J Ophthalmol. 2012;153:196–203.e1.
  7. Frost  BA, Kainer  MA. Safe preparation and administration of intravitreal bevacizumab injections. N Engl J Med. 2011;365:2238. DOIPubMedGoogle Scholar
  8. US Pharmacopeial Convention. USP 35-NF 30. Pharmaceutical compounding—sterile preparations. Rockville (MD): US Pharmacopeial Convention; 2012. p. 350–87.
  9. Christensen  JJ, Facklam  RR. Granulicatella and Abiotrophia species from human clinical specimens. J Clin Microbiol. 2001;39:35203. DOIPubMedGoogle Scholar
  10. Collins  MD, Lawson  PA. The genus Abiotrophia (Kawamura et al.) is not monophyletic: proposal of Granulicatella gen. nov., Granulicatella adiacens comb. nov., Granulicatella elegans comb. nov. and Granulicatella balaenopterae comb. nov. Int J Syst Evol Microbiol. 2000;50:3659. DOIPubMedGoogle Scholar

Top

Cite This Article

DOI: 10.3201/eid2101.141040

Related Links

Top

Table of Contents – Volume 21, Number 1—January 2015

EID Search Options
presentation_01 Advanced Article Search – Search articles by author and/or keyword.
presentation_01 Articles by Country Search – Search articles by the topic country.
presentation_01 Article Type Search – Search articles by article type and issue.

Top

Comments

Please use the form below to submit correspondence to the authors or contact them at the following address:

Laura S. Edison, Georgia Department of Public Health, Acute Disease Epidemiology Section, 2 Peachtree St NW, Suite 14-232, Atlanta, GA 30303, USA

Send To

10000 character(s) remaining.

Top

Page created: December 19, 2014
Page updated: December 19, 2014
Page reviewed: December 19, 2014
The conclusions, findings, and opinions expressed by authors contributing to this journal do not necessarily reflect the official position of the U.S. Department of Health and Human Services, the Public Health Service, the Centers for Disease Control and Prevention, or the authors' affiliated institutions. Use of trade names is for identification only and does not imply endorsement by any of the groups named above.
file_external