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Quantification of Hypopigmentation Activity In Vitro
Published on: March 6, 2019
Aqueous humor tyrosinase activity is indicative of iris melanocyte toxicity
Sarmistha Mahanty1, Ankush A Kawali2, Shruthi Shirur Dakappa1
1Department of Microbiology and Cell Biology, Indian Institute of Science, Bangalore 560012, India.
Abstract:
Antibiotics such as fluoroquinolones (FQLs) are commonly used to treat ocular infections but are also known to cause dermal melanocyte toxicity. The release of dispersed pigments from the iris into the aqueous humor has been considered a possible ocular side effect of the systemic administration of FQLs such as Moxifloxacin, and this condition is known as bilateral acute iris transillumination (BAIT). Bilateral acute depigmentation of iris (BADI) is a similar condition, with iris pigment released into the aqueous, but it has not been reported as a side effect of FQL. Iris pigments are synthesized by the melanogenic enzyme tyrosinase (TYR) and can be detected but not quantified by using slit-lamp biomicroscopy. The correlation between dispersed pigments in the aqueous and the extent of melanocyte toxicity due to topical antibiotics in vivo is not well studied. Here, we aimed to study the effect of topical FQLs on iris tissue, the pigment release in the aqueous humor and the development of clinically evident iris atrophic changes. We evaluated this process by measuring the activity of TYR in the aqueous humor of 82 healthy eyes undergoing cataract surgery following topical application of FQLs such as Moxifloxacin (27 eyes, preservative-free) or Ciprofloxacin (29 eyes, with preservative) or the application of non-FQL Tobramycin (26 eyes, with preservative) as a control. In addition, the patients were questioned and examined for ocular side effects in pre- and post-operative periods. Our data showed a significantly higher mean TYR activity in the aqueous humor of Ciprofloxacin-treated eyes compared to Moxifloxacin- (preservative free, p < 0.0001) or Tobramycin-treated eyes (p < 0.0001), which indicated that few quinolones under certain conditions are toxic to the iris melanocytes. However, the reduced TYR activity in the aqueous of Moxifloxacin-treated eyes was possibly due to the presence of a higher drug concentration, which inhibits TYR activity. Consistently, immunoblotting analysis of the aqueous humor from both Ciprofloxacin- and Moxifloxacin-treated eyes showed the presence of soluble TYR enzyme, thus reflecting its toxicity to iris melanocytes and corresponding to its activity in the aqueous humor. Intriguingly, none of these patients developed any clinically appreciable ocular side effects characteristic of BAIT or BADI. Overall, our results suggest that topical antibiotics cause different levels of iris melanocyte toxicity, releasing dispersed pigments into the aqueous humor, which can be measured through TYR enzyme activity. Hence, we conclude that topical FQLs may cause subclinical toxicity to the iris melanocytes but may not be the sole cause of the development of BAIT or BADI.
Insights
Topical fluoroquinolones (FQLs) cause subclinical iris melanocyte toxicity, releasing pigment into the aqueous humor, measurable by tyrosinase (TYR) activity. This toxicity may not solely cause bilateral acute iris transillumination (BAIT) or depigmentation (BADI).
Area of Science:
- Ophthalmology
- Pharmacology
- Cell Biology
Background:
- Fluoroquinolones (FQLs) treat ocular infections but can cause melanocyte toxicity.
- Bilateral acute iris transillumination (BAIT) and bilateral acute depigmentation of iris (BADI) involve iris pigment release, potentially linked to FQLs.
- The in vivo correlation between topical antibiotic-induced melanocyte toxicity and pigment release is not well-established.
Purpose of the Study:
- To investigate the effect of topical FQLs on iris tissue and pigment release.
- To assess the development of clinically evident iris atrophic changes following topical antibiotic use.
- To quantify iris melanocyte toxicity by measuring tyrosinase (TYR) activity in aqueous humor.
Main Methods:
- Measured TYR activity in the aqueous humor of 82 eyes undergoing cataract surgery.
- Eyes received topical Moxifloxacin (preservative-free), Ciprofloxacin (with preservative), or Tobramycin (control).
- Patients were monitored pre- and post-operatively for ocular side effects; aqueous humor was analyzed via immunoblotting for soluble TYR.
Main Results:
- Ciprofloxacin treatment showed significantly higher mean TYR activity compared to Moxifloxacin or Tobramycin.
- Reduced TYR activity in Moxifloxacin-treated eyes may be due to higher drug concentration inhibiting TYR.
- Immunoblotting confirmed soluble TYR in aqueous humor from FQL-treated eyes, indicating melanocyte toxicity, yet no patients developed BAIT or BADI.
Conclusions:
- Topical antibiotics induce varying degrees of iris melanocyte toxicity and pigment release, quantifiable via TYR activity.
- Topical FQLs may cause subclinical iris melanocyte toxicity.
- Subclinical toxicity does not appear to be the sole cause of BAIT or BADI.

