Hydroxyl free radical production during torsional phacoemulsification.

Steven D Aust, Thomas Hebdon, Jordan Humbert, Ramon Dimalanta

Journal: Journal of cataract and refractive surgery 2011;36(12):2146-9

PMID: 21111319

Abstract

PURPOSE

To quantitate free radical generation during phacoemulsification using an ultrasonic phacoemulsification device that includes a torsional mode and evaluate tip designs specific to the torsional mode.

SETTING

Chemistry and Biochemistry Department, Utah State University, Logan, Utah, USA.

DESIGN

Experimental study.

METHODS

Experiments were performed using the Infiniti Vision System and OZil handpiece. Hydroxyl radical concentrations in the aspirated irrigation solution during torsional phacoemulsification were quantitated as nanomolar malondialdehyde (nM MDA) and determined spectrophotometrically using the deoxyribose assay.

RESULTS

The mean free radical production during phacoemulsification with torsional modality at 100% amplitude was 30.1 nM MDA ± 5.1 (SD) using a 0.9 mm 45-degree Kelman tapered ABS tip. With other tip designs intended for use with the torsional modality, free radical production was further reduced when fitted with the 0.9 mm 45-degree Kelman mini-flared ABS tip (13.2 ± 5.6 nM MDA) or the 0.9 mm 45-degree OZil-12 mini-flared ABS tip (14.3 ± 6.7 nM MDA). Although the measurements resulting from the use of the latter 2 tips were not statistically significantly different (P ≈ .25), they were different from those of the tapered tip (P<.0001).

CONCLUSIONS

The MDA concentration in the aspirated irrigation solution using the torsional modality was approximately one half that reported for the handpiece's longitudinal modality in a previous study using the same bent-tip design (Kelman tapered, P<.0001). The level of MDA was further reduced approximately one half with torsional-specific tips.

Copyright © 2010 ASCRS and ESCRS. Published by Elsevier Inc. All rights reserved.

Address: Chemistry and Biochemistry Department, Utah State University, Logan, Utah 84322-0300, USA. [email protected]
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