Literature DB >> 30526550

Multiple evanescent white dot syndrome following rabies vaccination: a case report.

Jia-Song Yang1, Chun-Li Chen2,3, Yu-Zhang Hu4, Rui Zeng5.   

Abstract

BACKGROUND: To report a case of multiple evanescent white dot syndrome (MEWDS) following simultaneous rabies vaccination. CASE
PRESENTATION: Review of the clinical, laboratory, photographic, optical coherence tomographic (OCT), fundus autofluorescent, angiographic, electrophysiologic, and perimetric records of a patient suffering from MEWDS.
RESULTS: A healthy 33-year-old Chinese female suffering from rapidly progressive visual loss of her left eye associated with photopsia and a para-central scotoma, seven days after receiving simultaneous rabies vaccination. Both anterior segments and fundus examination were unremarkable. The findings on OCT, electrophysiology, and perimetry were pathognomonic for MEWDS.
CONCLUSIONS: The clinical presentation and the benign course were consistent with the diagnosis of MEWDS. No other events could be identified as a cause, other than the rabies vaccination. This case may suggest an autoimmune basis for MEWDS in predisposed patients.

Entities:  

Keywords:  Multiple evanescent white dot syndrome; Rabies vaccine; Vaccination/adverse events

Mesh:

Substances:

Year:  2018        PMID: 30526550      PMCID: PMC6286608          DOI: 10.1186/s12886-018-0968-y

Source DB:  PubMed          Journal:  BMC Ophthalmol        ISSN: 1471-2415            Impact factor:   2.209


Background

In 1984, Jampol described a new chorioretinal disorder named multiple evanescent white dot syndrome (MEWDS) which clinically presents in young, often myopic women with unilateral visual blurring and photopsia [1]. Most patients were young adult women and may be associated with visual field loss and abnormalities on the electroretinographic records [2]. Rabies is a zoonotic disease caused by a virus and affects domestic and wild animals and is spread to people through close contact with infectious material. In unvaccinated humans, rabies is nearly always fatal after neurological symptoms have developed. Rabies is a vaccine-preventable disease. Post-exposure prophylaxis through vaccine and immunoglobulin given soon after exposure to rabies virus is highly effective in preventing rabies [3]. While there were several reports of MEWDS development following several different vaccines administration [4-7], this is the first of MEWDS following rabies vaccination.

Case presentation

A 33-year-old Chinese female complained of sudden onset of a para-central large scotoma in her left eye seven days after the third intramuscular administration of rabies vaccine (Rabipur, Novartis) according to standard vaccine time schedule (days 0, 3, 7, 14 and 28) for a stray cat scratch. The type of the rabies vaccine is embryonated-egg vaccine. She has not been administered with other vaccines recently and it was the first time she had symptoms after vaccination. The stray cat was not available for observation of rabies symptoms. Otherwise healthy, the patient has no remarkable medical history or underlying pathology. Her best-corrected visual acuity (BCVA) at the time was 20/20 in both eyes with − 9.0 D right eye and − 8.5 D left eye. An ophthalmoscopic examination of the left eye revealed nothing to explain her complaints. During the follow-up, she developed photopsia in the left eye. Visual field testing showed an enlarged blind spot and decreased sensitivity superiorly and nasally (Fig. 1a). Fundus fluorescence angiography (FFA) and autofluorescence (AF) revealed hyperfluorescence corresponding to the area of the retina in the region of ellipsoid zone abnormalities. FFA showed right eye the normal appearances in arteriovenous phase (Fig. 2a) and late phase (Fig. 2b), and early choroidal background hyperfluorescence (Fig. 2c) and mild diffuse leakage of fluorescein was noted in the late phase (Fig. 2d) of the left eye. Optical coherence tomography (OCT) demonstrated disruptions in the ellipsoid zone of the posterior retina (Fig. 3a). Fundus AF demonstrated multiple ill-defined spots of markedly increased AF in the posterior pole (Fig. 4a).
Fig. 1

a. Octopus visual field showed an enlarged blind spot and decreased sensitivity superiorly and nasally. b. 2 months later, the visual field resolved

Fig. 2

FFA showed right eye the normal appearances in arteriovenous phase (a) and late phase (b), and early choroidal background hyperfluorescence (c) and mild diffuse leakage of fluorescein was noted in the late phase (d) of the left eye

Fig. 3

a. Optical coherence tomograpy scan showed the interrupted ellipsoid zone of the left eye at the initial visiting time. b. The ellipsoid zone partially resolved 2 months later

Fig. 4

a. Fundus AF demonstrated multiple ill-defined spots of markedly increased AF in the posterior pole. b. 2 months later, the hyerfluoscent spots decreased on AF

a. Octopus visual field showed an enlarged blind spot and decreased sensitivity superiorly and nasally. b. 2 months later, the visual field resolved FFA showed right eye the normal appearances in arteriovenous phase (a) and late phase (b), and early choroidal background hyperfluorescence (c) and mild diffuse leakage of fluorescein was noted in the late phase (d) of the left eye a. Optical coherence tomograpy scan showed the interrupted ellipsoid zone of the left eye at the initial visiting time. b. The ellipsoid zone partially resolved 2 months later a. Fundus AF demonstrated multiple ill-defined spots of markedly increased AF in the posterior pole. b. 2 months later, the hyerfluoscent spots decreased on AF Initial work-up for a complete blood cell count, immunological test, syphilis, human immunodeficiency virus (HIV), and brain computed tomography (CT) were all negative. MEWDS was high in the differential diagnosis. As the patient refused to take oral steroid, she received local steroid injection (retrobulbar injection of triamcinolone acetonide 40 mg). At the follow-up examination 2 months after the initial evaluation, symptoms, OCT (Fig. 3b), Fundus AF (Fig. 4b), and the visual field (Fig. 1b) were partially resolved. Three years later, the patient was examined again, the fundus was completely restored to normal both on fundus photograph and OCT (Fig. 5 a&b) and the BCVA was 20/20 and all symptoms disappeared.
Fig. 5

a & b. Three years later, the fundus was completely restored to normal both on fundus phtograph and OCT

a & b. Three years later, the fundus was completely restored to normal both on fundus phtograph and OCT

Discussion

This case, to our knowledge, represents the first reported ophthalmic association following rabies vaccination. Due to the authors’ lack of experience in diagnosing MEWDS, we did not notice the foveal granularity or macular granity during the first visit. As no fundus abnormalities were recognized during the patient initial visit, the fundus data were not preserved. However, there are signs that support the diagnosis. The symptoms and signs of this case as well as the auxiliary examinations are consistent with the characteristic of MEWDS: photopsia, disruption of the ellipsoid zone and the interdigitation layer at the center of the fovea, which is coincidence with what was observed by Cahuzac et al. [8], multifocal hyperautofluorescent lesions at posterior pole and midperiphery, visual field defect corresponding the outer retinal abnormalities. Follow up the entire course of this case revealed complete recovery of the macular and retinal structures and function consistent the natural history of MEWDS. The differential diagnosis of MEWDS and acute zonal outer retinopathy (AZOOR) is difficult, especially in the early stages of the two conditions. We misdiagnosed the patient as AZOOR at the first consultation. In 2014, Yannuzzi described a specific definition of AZOOR based on multimodal imagings that differ from other white spot syndromes of the posterior fundus [9]. In that retrospective study, Yannuzzi proposed the most characteristic fundus imaging changes of AZOOR: the trizonal pattern changes involving outer retina, retinal pigment epithelium, and choroid, and the demarcating line at the outer retina as the lesion progresses. Our patient’s outer retina was fully recovered, and the visual field defect returned to normal during short-term follow-up. There were also reports of MEWDS combined with AZOOR, but rapid recovery and good prognosis of this case, the report was confirmed as MEWDS rather than AZOOR. There have been several reports of multiple evanescent white dots syndrome (MEWDS) after receiving the influenza vaccination, human papilloma virus and meningococcus vaccination, hepatitis A vaccination, and yellow fever vaccination [4-7]. Considering the patient’s recent vaccination, the typical symptoms and ancillary tests characteristic of MEWDS, the rabies vaccination may have induced her retinal abnormalities. The etiology of this entity remains uncertain. MEWDS often occurs in patients after a flu-like illness and an autoimmune mediated inflammatory mechanism could explain the onset of MEWDS in our patient. We still cannot rule out the coincidental association between MEWDS and the rabies vaccination. This is the limitation of a single case report. However, due to the extensive use of rabies vaccines, ophthalmologists need to consider the conditions discussed and related diagnoses when they encounter similar conditions.

Conclusions

The clinical presentation and the benign course were consistent with the diagnosis of MEWDS. No other events could be identified as a cause, other than the rabies vaccination. This case may suggest an autoimmune basis for MEWDS in predisposed patients.
  9 in total

1.  Multiple evanescent white dot syndrome following hepatitis a vaccination.

Authors:  L Fine; A Fine; E T Cunningham
Journal:  Arch Ophthalmol       Date:  2001-12

2.  Multiple evanescent white dot syndrome following recent influenza vaccination.

Authors:  Sunali Goyal; Sarkis M Nazarian; Deepa R Thayi; Frederick Hammond; Velimir Petrovic
Journal:  Can J Ophthalmol       Date:  2013-08-17       Impact factor: 1.882

Review 3.  Rabies.

Authors:  Anthony R Fooks; Florence Cliquet; Stefan Finke; Conrad Freuling; Thiravat Hemachudha; Reeta S Mani; Thomas Müller; Susan Nadin-Davis; Evelyne Picard-Meyer; Henry Wilde; Ashley C Banyard
Journal:  Nat Rev Dis Primers       Date:  2017-11-30       Impact factor: 52.329

4.  Multimodal imaging findings in 'hyper-early' stage MEWDS.

Authors:  Armelle Cahuzac; Benjamin Wolff; Thibaud Mathis; Marie-Hélène Errera; José-Alain Sahel; Martine Mauget-Faÿsse
Journal:  Br J Ophthalmol       Date:  2017-02-15       Impact factor: 4.638

Review 5.  Multiple evanescent white dot syndrome (MEWDS).

Authors:  Roberto dell'Omo; Carlos E Pavesio
Journal:  Int Ophthalmol Clin       Date:  2012

6.  Multiple evanescent white dot syndrome following simultaneous hepatitis-A and yellow fever vaccination.

Authors:  Alexandros Stangos; Marc Zaninetti; Ioannis Petropoulos; Edoardo Baglivo; Constantin Pournaras
Journal:  Ocul Immunol Inflamm       Date:  2006-10       Impact factor: 3.070

7.  Multiple evanescent white dot syndrome. I. Clinical findings.

Authors:  L M Jampol; P A Sieving; D Pugh; G A Fishman; H Gilbert
Journal:  Arch Ophthalmol       Date:  1984-05

8.  Multiple Evanescent White Dot Syndrome After Vaccination for Human Papilloma Virus and Meningococcus.

Authors:  Steven M Cohen
Journal:  J Pediatr Ophthalmol Strabismus       Date:  2009-06-25       Impact factor: 1.402

9.  Acute zonal occult outer retinopathy: a classification based on multimodal imaging.

Authors:  Sarah Mrejen; Samira Khan; Roberto Gallego-Pinazo; Lee M Jampol; Lawrence A Yannuzzi
Journal:  JAMA Ophthalmol       Date:  2014-09       Impact factor: 7.389

  9 in total
  9 in total

1.  Ocular Adverse Events after Inactivated COVID-19 Vaccination.

Authors:  Zhihua Li; Feng Hu; Qian Li; Shuang Wang; Chunli Chen; Yongpeng Zhang; Yu Mao; Xuehui Shi; Haiying Zhou; Xusheng Cao; Xiaoyan Peng
Journal:  Vaccines (Basel)       Date:  2022-06-09

2.  Multiple evanescent white dot syndrome following influenza immunization - A multimodal imaging study.

Authors:  Caleb C Ng; J Michael Jumper; Emmett T Cunningham
Journal:  Am J Ophthalmol Case Rep       Date:  2020-08-03

3.  COVID-19 Recombinant mRNA Vaccines and Serious Ocular Inflammatory Side Effects: Real or Coincidence?

Authors:  Arash Maleki; Sydney Look-Why; Ambika Manhapra; C Stephen Foster
Journal:  J Ophthalmic Vis Res       Date:  2021-07-29

4.  Association between Vaccination with the BNT162b2 mRNA Coronavirus Disease 2019 Vaccine and Noninfectious Uveitis: A Population-Based Study.

Authors:  Oren Tomkins-Netzer; Shaul Sar; Ofra Barnett-Griness; Binyamin Friedman; Hana Shyriaieva; Walid Saliba
Journal:  Ophthalmology       Date:  2022-05-25       Impact factor: 14.277

5.  Choroidal neovascularization in a patient after resolution of multiple evanescent white dot syndrome: A case report.

Authors:  Marie Burova; Alexandr Stepanov; Basma Almesmary; Nada Jiraskova
Journal:  Clin Case Rep       Date:  2022-05-15

6.  Multiple Evanescent White Dot Syndrome Presenting in Possibly Contracted Hand-Foot-and-Mouth Disease: A Rare Presentation.

Authors:  Lakmal S Ekanayake; Vikrant Bhatnagar; Philip A Bucur; Amandeep Goyal
Journal:  Cureus       Date:  2019-06-14

7.  Multiple evanescent white dot syndrome following vaccination for COVID-19: A case report.

Authors:  Sayako Inagawa; Masahiro Onda; Taishi Miyase; Shiho Murase; Hiroki Murase; Kiyofumi Mochizuki; Hirokazu Sakaguchi
Journal:  Medicine (Baltimore)       Date:  2022-01-14       Impact factor: 1.817

8.  Multiple Evanescent White Dot Syndrome Developing Three Days following Administration of mRNA-1273 Booster Vaccine: Case Report.

Authors:  Rashed Alhabshan; David Scales
Journal:  Case Rep Ophthalmol       Date:  2022-07-18

9.  A CARE-compliant article: a case report of possible association between recurrence of multiple evanescent white dot syndrome and the Herpesviridae family.

Authors:  Yu-Lin Haw; Teng-Chieh Yu; Chang-Sue Yang
Journal:  Medicine (Baltimore)       Date:  2020-04       Impact factor: 1.817

  9 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.