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J Kimmel

Publications and source records attributed to J Kimmel.

18 recordsLinked to original sources

Inhibition of glycosyl-phosphatidylinositol biosynthesis in Plasmodium falciparum by C-2 substituted mannose analogues.

Mannose analogues (2-deoxy-D-glucose, 2-deoxy-2-fluoro-D-glucose and 2-amino-2-deoxy-D-mannose) have been used to study glycosylphosphatidylinositol (GPtdIns) biosynthesis and GPtdIns protein anchoring in protozoal and mammalian systems. The effects of these analogues on GPtdIns biosynthesis and GPtdIns-protein anchoring of the human malaria parasite Plasmodium falciparum were evaluated in this study. At lower concentrations of 2-deoxy-D-glucose and 2-deoxy-2-fluoro-D glucose (0.2 and 0.1 mm, respectively), GPtdIns biosynthesis is inhibited without significant effects on total protein biosynthesis. At higher concentrations of 2-deoxy-D-glucose and 2-deoxy-2-fluoro-D-glucose (1.5 and 0.8 mm, respectively), the incorporation of [3H]glucosamine into glycolipids was inhibited by 90%, and the attachment of GPtdIns anchor to merozoite surface protein-1 (MSP-1) was prevented. However, at these concentrations, both sugar analogues inhibit MSP-1 synthesis and total protein biosynthesis. In contrast to 2-deoxy-2-fluoro-D-glucose and 2-amino-2-deoxy-D-mannose (mannosamine), the formation of new glycolipids was observed only in the presence of tritiated or nonradiolabelled 2-deoxy-D-glucose. Mannosamine inhibits GPtdIns biosynthesis at a concentration of 5 mm, but neither an accumulation of aberrant intermediates nor significant inhibition of total protein biosynthesis was observed in the presence of this analogue. Furthermore, the [3H]mannosamine-labelled glycolipid spectrum resembled the one described for [3H]glucosamine labelling. Total hydrolysis of mannosamine labelled glycolipids showed that half of the tritiated mannosamine incorporated into glycolipids was converted to glucosamine. This high rate of conversion led us to suggest that no actual inhibition from GPtdIns biosynthesis is achieved with the treatment with mannosamine, which is different to what has been observed for mammalian cells and other parasitic protozoa.

Animals↗

Conservative management of small bowel obstruction.

Intestinal Cantor tubes were used in the management of 69 gynecologic patients with pelvic malignancies who presented with small bowel obstruction. Small bowel obstruction was secondary to radiation injury, persistent or recurrent carcinoma, or postoperative adhesions. Thirty-one patients (45%) in this series had successful resolution of their small bowel obstruction with a Cantor tube, including 12 of 14 patients (86%) with postoperative adhesions. Complete obstruction of the small bowel was the only prognostic factor definitely associated with tube failure. Seventy percent of all patients had successful passage of the tube on one attempt, and no major complications were encountered. The Cantor tube has proved to be safe, effective, and easy to use, and guidelines for the management of it are included. Cantor tube decompression should be considered in the initial management of small bowel obstruction, since a significant percentage of the patients with this condition will not require surgical intervention.

Adult↗

Three dimensional analysis of retinal neuropeptides and amine in the chick.

Three dimensional analysis of retinal neuropeptides and monoamine-containing amacrine cells were performed on flat-mount preparations of the chick retina by using indirect immunofluorescence method. somatostatin (SOM), neurotensin (NT), leu-enkephalin (ENK), vasoactive intestinal polypeptide (VIP), substance P (SP), corticotropin releasing factor (CRF), avian pancreatic polypeptide (APP), glucagon (GLC), 5-hydroxytryptamine (5HT) and tyrosine hydroxylase (TH) were examined with specific antisera. To localize these substances in the amacrine cells, and to see in which layers their processes arborize, frozen sections were examined. There were four patterns of distribution. (1) Substances with more immunoreactive cells in the central than in the peripheral portions (SOM, NT, VIP, SP, GLC, 5HT), (2) Substances with more immunoreactive cells in the peripheral portion than in the central portion (APP), (3) Substances for which such cells were evenly distributed (TH), and (4) Substances with more immunoreactive cells in the inferior than in the superior portion (CRF). Subtypes were identified among the amacrine cells containing single peptides or monoamine.

Animals↗

Computed tomography in the management of acetabular fractures.

Twenty-four patients who sustained major hip trauma received computed tomography (CT) scans as well as conventional radiographs. A comparison of plain films with the CT scans showed that CT aided the diagnosis in 23 patients (96%): that CT altered the diagnosis in 14 patients (58%) and that the CT findings altered the management in eight patients (33%). It is our conclusion that CT scanning plays an essential role in the work-up and management of patients with major hip trauma.

Accidents, Traffic↗

NADPH-diaphorase: a selective histochemical marker for striatal neurons containing both somatostatin- and avian pancreatic polypeptide (APP)-like immunoreactivities.

Certain neurons in the brain are specifically and intensely stained by a histochemical method which demonstrates nicotinamide adenine dinucleotide phosphate NADPH-diaphorase activity. The cell types containing this enzyme in certain areas of the rat forebrain were examined by combining NADPH-diaphorase histochemistry with the indirect immunofluorescence technique. Neurons containing somatostatin- or avian pancreatic polypeptide (APP)-like immunoreactivities were found throughout the forebrain including the striatum and neocortex. These two neuropeptides were also found to coexist in many telencephalic neurons. After photography, the sections processed for immunohistochemistry were stained for NADPH-diaphorase activity by a histochemical method. It was found that within the striatum all of the neurons that were selectively stained by this technique also contained both somatostatin- and APP-like immunoreactivities. Also in the neocortex NADPH-diaphorase was found only in those neurons displaying somatostatin- or APP-like immunoreactivity. In other brain regions such as the nucleus laterodorsalis tegmenti, NADPH-diaphorase-containing cells did not contain these neuropeptides. The results indicate that NADPH-diaphorase histochemistry provides a simple, reliable, histochemical method to demonstrate those striatal neurons in which somatostatin- and APP-like immunoreactivities coexist. The selective occurrence of this enzyme within these neurons may provide a useful target for pharmacological studies of these neuropeptide-containing cells.

Animals↗

Coexistence of somatostatin- and avian pancreatic polypeptide (APP)-like immunoreactivity in some forebrain neurons.

The indirect immunofluorescence technique was used to demonstrate the coexistence of somatostatin together with avian pancreatic polypeptide-like immunoreactivity within certain neurons of the rat forebrain. Numerous neurons containing these peptides were observed in the neocortex, hippocampus, olfactory tubercle, striatum, nucleus accumbens and lateral septum. In studies of serial sections stained alternately for these two peptides, and in restaining experiments, It could be determined that in many neurons in these areas these two peptides coexisted. In other brain areas such as the anterior periventricular hypothalamus, somatostatin cells were never found to contain avian pancreatic polypeptide-like immunoreactivity. Also, within the pancreas these two peptides were never found to coexist in the same cells. The findings represent a further example of the coexistence of more than one neuropeptide within a single neuron.

Animals↗

Organizational principles in the peripheral sympathetic nervous system: subdivision by coexisting peptides (somatostatin-, avian pancreatic polypeptide-, and vasoactive intestinal polypeptide-like immunoreactive materials).

Sympathetic ganglia and some peripheral tissues of adult guinea pig and cat were analyzed by the indirect immunofluorescence technique with antisera to catecholamine-synthesizing enzymes and some peptides. In the guinea pig, noradrenergic neurons could be subdivided into three populations containing respectively (i) somatostatin-like immunoreactive material, (ii) avian pancreatic polypeptide (APP)-like immunoreactive material, and (iii) apparently only noradrenaline (NA; norepinephrine). A fourth population of sympathetic neurons was nonadrenergic and contained vasoactive intestinal polypeptide (VIP)-immunoreactive material. In the cat many noradrenergic neurons with APP and some without this peptide were seen, but no somatostatin-immunoreactive neurons were observed. Also a population of non-adrenergic, presumably cholinergic, neurons containing a VIP-like peptide was observed. These neuron populations seemed to innervate different tissues with some target specificity. For example, in the nasal mucosa of the cat, nerves containing NA/APP-like immunoreactive material (called NA/APP nerves) were found around small arteries and arterioles, whereas venules and sinusoids were surrounded by nerves containing only NA (called NA nerves). Also in the submandibular salivary gland of the cat, the NA/APP nerves surrounded arteries and arterioles, whereas NA nerves were seen in relation to acini and ducts. The sympathetic (cholinergic) VIP-containing neurons innervated blood vessels and exocrine tissue in the cat sweat glands. In the coeliac-superior mesenteric ganglion complex of the guinea pig and cat, a dense network of VIP-immunoreactive fibers was seen preferentially around noradrenergic ganglionic cell bodies lacking APP-immunoreactive material. Thus, adult peripheral sympathetic neurons can be subdivided into several categories on the basis of specific peptides. These subdivisions may innervate specific targets and may receive peptide-specific neuronal inputs.

Animals↗

Avian pancreatic polypeptide (APP) immunoreactive neurons in the spinal cord and spinal trigeminal nucleus.

Using indirect immunofluorescence technique, avian pancreatic polypeptide (APP) immunoreactive cell bodies and fibres have been observed in the superficial laminae of the dorsal horn of the spinal cord and of the spinal trigeminal nucleus. Fibres were also seen in the ventral horns, in low numbers at the cervical and thoracic levels and in high numbers at the lower lumbar and upper sacral levels. Neither total cord transection, nor dorsal rhizotomy, nor capsaicin treatment seemed to affect the APP systems described above. The present findings suggest that an APP-like peptide may be involved in processing of sensory information at the level of the first relay station.

Animals↗

Repair of rotator cuff tears in tennis players.

Twenty-three tennis players with a symptomatic full-thickness rotator cuff tear underwent anterior acromioplasty and rotator cuff repair. There were 8 small tears (less than 1 cm), 5 moderate tears (1 to 3 cm), 2 large tears (3 to 5 cm), and 8 massive tears (greater than 5 cm). The dominant shoulder was involved in all patients and all were unable to play tennis before surgery. Eleven patients experienced a traumatic event that caused an injury, 6 while playing tennis, and 12 patients had a gradual onset of symptoms. At average follow-up of 42 months, 19 patients (83%) achieved a good result, were pain-free, and were able to play tennis at their presymptomatic competitive level. Three patients (13%), all with massive tears, had a satisfactory result and were able to play tennis, although at a lower competitive level secondary to weakness. One patient (4%), who also had a massive tear, had an unsatisfactory result and was unable to play tennis.

Adult↗