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D Searle

Publications and source records attributed to D Searle.

4 recordsLinked to original sources

Equine castration: review of anatomy, approaches, techniques and complications in normal, cryptorchid and monorchid horses.

Complications associated with equine castration are the most common cause of malpractice claims against equine practitioners in North America. An understanding of the embryological development and surgical anatomy is essential to differentiate abnormal from normal structures and to minimise complications. Castration of the normal horse can be performed using sedation and regional anaesthesia while the horse is standing, or under general anaesthesia when it is recumbent. Castration of cryptorchid horses is best performed under general anaesthesia at a surgical facility. Techniques for castration include open, closed and half-closed techniques. Failure of left and right testicles to descend occurs with nearly equal frequency, however, the left testicle is found in the abdomen in 75% of cryptorchid horses compared to 42% of right testicles. Bilateral cryptorchid and monorchid horses are uncommon. Surgical approaches described for the castration of cryptorchid horses include an inguinal approach with or without retrieval of the scrotal ligament, a parainguinal approach, or less commonly a suprapubic paramedian or flank approach. Laparoscopic castration of cryptorchid horses has recently been described but the technique has limited application in practice at this time. A definitive diagnosis of monorchidism can only be made after surgical exploration of the abdomen, removal of the normal testis and hormonal testing. Hormonal assays reported to be useful include analysis of basal plasma or serum testosterone or oestrone sulphate concentrations, testosterone concentrations following hCG stimulation, and faecal oestrone sulphate concentrations. Reported complications of castration include postoperative swelling, excessive haemorrhage, eventration, funiculitis, peritonitis, hydrocele, penile damage and continued stallion-like behaviour.

Animals↗

Legacy of decay.

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Bulgaria↗

Metabolic clearance and plasma half-disappearance time of D-TRP6 and exogenous luteinizing hormone-releasing hormone.

The MCR and t1/2 of D-Trp6 LRH, a potent analog of LRH, were compared to those of exogenous LRH. Studies were performed on eight normal subjects during and after cessation of a constant infusion of D-Trp6 LRH and LRH. The D-Trp6 LRH and LRH were quantitated individually by sensitive and specific RIAs which did not cross-react with the other peptide infused or fragments of the degraded peptides. High performance liquid chromatography of plasma from a patient infused with D-Trp6 LRH alone yielded one peak, which coeluted with D-Trp6 LRH. The kinetics of peptide clearance were biphasic, with a rapid and a slow component of elimination. The t1/2 of the rapid component of D-Trp6 LRH clearance was 18.7 +/- 1.8 (SEM) min. This was significantly longer (P less than 0.001) than the t1/2 for the LRH of 7.8 +/- 1.1 min. The MCRs for D-Trp6 LRH and LRH were 503.4 +/- 196.4 and 1766.6 +/- 404.3 ml/min, respectively (P less than 0.01). The longer t1/2 of D-Trp6 LRH compared to that of LRH reflects the slower clearance, which is probably due to a decreased rate of degradation. These findings indicated that the enhanced bioactivity of D-Trp6 LRH is in part due to a decreased rate of degradation.

Adult↗