The AO Hook plate has been used for stabilization of acromioclavicular joint dislocations. We present our experience of this newly introduced device in a general hospital, since there are not many papers in the literature reporting on this. A total of 16 patients were treated with the AO Hook plate between November 2001 and November 2003 at Princess Alexandra Hospital in Harlow, UK. For functional assessment 6 months after removal of the plate, the constant score and the pain visual analogue score were used. The pain visual analogue score ranged from 0 to 6 (mean: 0.87) and the constant score ranged from 78 to 100 (mean: 96.4). In one instance, a patient developed instability after removal of the plate. The use of this device results in excellent functional outcome for the treatment of acromioclavicular joint dislocations.
In the present study, hydrophilic interaction liquid chromatography (HILIC) and reversed-phase liquid chromatography (RPLC) combined with tandem mass spectrometric detection (MS/MS) were evaluated and compared for the determination of donepezil, cetirizine and loratadine in human plasma, in terms of sensitivity and sample preparation procedure. A retention study for the above compounds of various polarities was performed, using both C(18) and silica columns, with several aqueous-organic mobile phase ratios, in order to investigate their retention mechanism profile under HILIC and RPLC. Both chromatographic conditions were compared for chromatographic analysis of plasma samples processed with a liquid-liquid extraction (LLE) method for donepezil determination, resulting in significantly higher sensitivity under HILIC. Furthermore, HILIC and RPLC were compared for direct injection, and novel methods including LLE, solid-phase extraction and protein precipitation protocols were developed. Direct injection technique significantly reduced sample preparation time, increasing at the same time method sensitivity. The current study contributes to broadening the range of analyzable compounds by HILIC-MS/MS to molecules of medium polarity.
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