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Biomedical subjects

Y Olsson

Publications and source records attributed to Y Olsson.

At least 91 records · Page 5Linked to original sources

Intrathecal and epidural somatostatin for patients with cancer. Analgesic effects and postmortem neuropathologic investigations of spinal cord and nerve roots.

BACKGROUND: The antinociceptive effects of somatostatin (SST) after intrathecal administration in rats and dogs and analgesic effects after intrathecal or epidural administration in humans were described previously. In this study, we seek to determine the efficacy of SST in cancer pain management and its potential neurotoxicity. METHODS: Eight patients with intractable cancer pain were studied. Pain intensity was assessed by patients on a four-grade scale (severe, moderate, mild, none). Additional analgesic drug requirements before and concomitant with SST treatment were used to evaluate the pain relief and assessed on a four-grade scale (poor, fair, good, or excellent). Spinal cords of five patients were autopsied. RESULTS: The mean duration of SST treatment was 11.3 days. The mean daily dose was 1,252 micrograms (range 250-3,000 micrograms). In six patients the pain relief was rated "excellent" or "good" and in two patients it was assessed "poor" or "fair". None of the patients demonstrated any evidence of neurologic deficit related to the SST treatment. At autopsy, two patients exhibited a moderate demyelination of some spinal dorsal roots and one patient also had a slight demyelination of the dorsal columns. CONCLUSIONS: SST administered intrathecally and epidurally was an effective analgesic in patients with terminal cancer. Because the described neuropathologic changes could also be cancer-related or result from chemotherapy or radiation therapy we suggest that further judicious use of SST is justified in this category of patients, if their pain remains unrelieved despite large doses of opioid analgesics.

Adult↗

In memory of Patrick Sourander (1917-1993).

Patrick Sourander was the Professor of Neuropathology at the University of Göteborg, Sweden, who died on September 28, 1993. His scientific interests focused on metabolic disturbances, in particular leucodystrophies, lipidosis and the consequences of malnutrition. He was the co-discoverer of an inherited cerebrovascular disease now termed CADASIL (cerebral autosomal dominant arteriopathy with subcortical infarcts and leuokoencephalopathy). Earlier than many contemporary neuropathologists, Patrick Sourander realized the potential of a close cooperation between basic neurobiology and clinical investigations. As a founding member of the International Society of Neuropathology, Patrick held the office of Vice-President during 1974-1978 and was the President of the Xth International Congress of Neuropathology held in Stockholm, in 1986.

Finland↗

Effect of the 21-aminosteroid U74006F and methylprednisolone on motor function recovery and oedema after spinal cord compression in rats.

The effect of the 21-aminosteroid U74006F and methylprednisolone (MP) on motor function and oedema were investigated after spinal cord compression in rats. Each compound was administered i.v. as a single dose 60 min after injury. The hind limb motor function was assessed using the inclined plane technique and expressed as the capacity angle. The water content was calculated as the percent wet weight of the total weight. Prior to compression the capacity angle was close to 62-64 degrees. One day after compression the motor function was reduced significantly in all rats. However, the capacity angle was significantly higher after treatment with U74006F or MP than with vehicle, i.e. 50 degrees +/- 4, 45 degrees +/- 5, and 32 degrees +/- 3, respectively. This improved functional recovery persisted during the initial nine days. After compression of the spinal cord the water content increased to a maximum on day 4 in all groups. The water content was not significantly different in any of the groups except on day one and nine when it was less in groups treated with U74006F. In conclusion, a single i. v. injection of U74006 or MP given 60 min after compression of the spinal cord improved motor function without effecting oedema expressed as water content.

Animals↗

Age-related reduction of human growth hormone-binding sites in the human brain.

Previous studies have shown that alterations in various neuroendocrine functions occur with increasing age. We here report a study of growth hormone (GH)-binding sites in different areas of post-mortem human brains collected from individual males and females of different age. The results indicate that there exists a significant negative correlation between the density of GH-binding sites and increasing age. This phenomenon was observed in both sexes in brain areas such as choroid plexus, hippocampus, hypothalamus, pituitary and putamen but not in e.g. thalamus. In all tissues (except for choroid plexus), the GH binding was significantly higher in those originating from females than those from males. This discrepancy was found likely to be associated with the affinity of GH to lactogenic rather than to somatogenic sites as no pronounced sex difference in binding was observed in the presence of excessive amounts of human prolactin. Data also indicate that the putative GH receptors in the various brain regions differ with regard to binding constants and to the estimated molecular size of the hormone-binding units. The loss of GH receptors in brain of elderly people may have consequences in several physiological courses. The decrease in GH binding at hypothalamic and pituitary levels may be of importance for the mechanisms behind the release or secretion of the hormone.

Adult↗

Early perifocal cell changes and edema in traumatic injury of the spinal cord are reduced by indomethacin, an inhibitor of prostaglandin synthesis. Experimental study in the rat.

The possibility that prostaglandins participate in the formation of perifocal edema and cell changes following a localized trauma to the spinal cord was investigated in a rat model. A laminectomy was performed in urethane-anesthetized animals at the thoracic T10-11 segment. Using a scalpel blade a unilateral lesion, about 2 mm deep and 5 mm long was made 1 mm to the right of the midline. The deepest part of the injury occupied Rexed's lamina VII of the dorsal horn. Animals were pretreated with the prostaglandin synthesis inhibitor, indomethacin (10 mg/kg, i.p. 30 min prior to trauma). Five hours after the injury the water content was determined and cell changes in and around the primary lesion were examined by light and electron microscopy. Normal and injured rats without indomethacin pretreatment served as controls. Untreated injured rats showed a profound increase of water content in the traumatized T10-11, the rostral (T9) and caudal (T12) segments compared with normal rats. These segments also exhibited marked cell changes in ipsilateral and contralateral dorsal and ventral horns. The gray matter had a spongy appearance and some nerve cells were condensed and distorted. The white matter contained many distorted fibers. Immunostaining for myelin basic protein showed a marked reduction of reaction product in the injured animals compared with normal rats. Ultrastructurally widened extracellular spaces, cytoplasmic vacuolation, swollen and condensed neurons, swollen astrocytes and vesiculation of myelin were frequent findings. Pretreatment of rats with indomethacin significantly reduced the accumulation of water in the traumatized and in the rostral and caudal segments. The structural changes were less pronounced particularly in the cranial and caudal segments.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

p-Chlorophenylalanine, a serotonin synthesis inhibitor, reduces the response of glial fibrillary acidic protein induced by trauma to the spinal cord. An immunohistochemical investigation in the rat.

The possibility that serotonin may influence the early response of astrocytes around a spinal cord trauma was investigated in a rat model by making a unilateral incision into the right dorsal horn of the T10-11 segments. One group of rats received a serotonin synthesis inhibitor, p-chlorophenylalanine (p-CPA) before injury in doses which cause a depletion of serotonin in the cord. Another group of traumatised rats did not receive p-CPA. All animals were allowed to survive for 5 h. Samples for immunohistochemistry were taken from the T9, T10-11 and T12 segments of the cord. Paraffin sections were immunostained for glial fibrillary acidic protein (GFAP) using monoclonal antibodies and avidin-biotin complex technique. Trauma to the cord resulted in a marked increase of GFAP immunoreactivity in all the investigated segments, particularly in the ipsilateral side. Pretreatment with p-CPA markedly reduced the GFAP response. This drug did not by itself influence the GFAP immunoreactivity of the cord of untraumatised rats. Our results show that trauma to the spinal cord induces a rapid enhancement of GFAP immunoreactivity in the cord which is present even far away from the primary lesion. This response can be prevented by pretreatment with the serotonin synthesis inhibitor, p-CPA. The results indicate that serotonin influences the increase of GFAP immunoreactivity following spinal cord injury either directly or indirectly, for instance by its microvascular reactions.

Animals↗

Met-enkephalin-Arg6-Phe7 in spinal cord and brain following traumatic injury to the spinal cord: influence of p-chlorophenylalanine. An experimental study in the rat using radioimmunoassay technique.

The possibility that trauma to the dorsal horn may affect the release and distribution of enkephalin was examined using the opioid peptide Met-Enk-Arg6-Phe7 (MEAP) as a marker in a rat model. The peptide content of samples of spinal cord and whole brain was measured using a radioimmunoassay (RIA) technique. In addition, the possible functional relation between this peptide and serotonin was evaluated using a pharmacological approach that included depletion of endogenous serotonin. A focal trauma to the right dorsal horn in the T10-11 segments (2 mm deep and 5 mm long) markedly modified the content of MEAP of the adjacent rostral and caudal segments of the cord, as well as the content of MEAP of the brain. Depletion of serotonin with p-CPA (an inhibitor of the synthesis of serotonin) significantly elevated the content of MEAP in the whole brain without affecting the regions of the spinal cord (except T9 level which showed a 25% decrease from an intact control group). Trauma to the spinal cord in the serotonin-depleted animals did not alter the content of MEAP further, as compared to a p-CPA-treated but untraumatized group. These results indicate that enkephalin (i) participates in the pathophysiology of spinal cord trauma and (ii) suggest that the peptide is somehow functionally related with serotonin.

Animals↗

Time course of energy perturbation after compression trauma to the spinal cord: an experimental study in the rat using microdialysis.

Changes occurring in the extracellular fluid (ECF) concentration of energy-related metabolites were investigated in a well-characterized model of compression trauma to the spinal cord. Microdialysis probes were inserted into exposed grey matter of the dorsal horn at the level of Th 7-8, and perfused with mock cerebrospinal fluid. The trauma was produced 2 hours later by compression of the cord with a 9-, 35-, or 50-g load for 5 min. Microdialysis samples (10-minute fractions) were collected for another 2 hours following decompression. The trauma was associated with an accumulation of lactate, inosine, and hypoxanthine, and an increase in the lactate/pyruvate ratio in the ECF, indicating a profound disturbance in energy metabolism. These changes were related to the severity of spinal cord injury as well as to the spinal cord blood flow (SCBF) reductions and neurological deteriorations previously determined. Following decompression, all ECF metabolites normalized within 20-40 min after mild (9 g) to moderate (35 g) trauma. After severe trauma (50 g), resulting in complete ischemia during compression, followed by irreversible paraplegia, there was a partial recovery of ECF inosine and hypoxanthine, whereas the increase in lactate and the lactate/pyruvate ratio persisted. The results suggest that penumbra conditions prevail during the early posttraumatic period when the degree of trauma results in severe neurological deterioration and that ECF lactate levels in the spinal cord is a sensitive indicator of secondary ischemia after compression injury.

Analysis of Variance↗

Prostaglandins modulate alterations of microvascular permeability, blood flow, edema and serotonin levels following spinal cord injury: an experimental study in the rat.

The possibility that prostaglandins influence edema formation, microvascular permeability increase and reduction of blood flow following spinal cord trauma was examined in a rat model. In addition, the influence of prostaglandins on serotonin metabolism of the traumatized spinal cord was evaluated. Trauma to spinal cord (2-mm-deep and 5-mm-long incision in the right dorsal horn of T10-11 segments) resulted in a profound increase of the water content 5 h after injury. At this time, the microvascular permeability to Evans Blue and [131I]sodium was increased by 457 and 394%, respectively. The blood flow was reduced by 30%. The serotonin (5-hydroxytryptamine) content of the spinal cord increased by 205%. The plasma serotonin level rose by 152% in the injured group of rats. Pretreatment with indomethacin (10 mg/kg, i.p.) 30 min before trauma significantly reduced the edema and microvascular permeability increase. The local spinal cord blood flow of traumatized animals was partially restored. The increases of serotonin levels of the spinal cord and plasma were significantly attenuated. These beneficial effects of indomethacin were not present in rats given a lower dose (5 mg/kg). Indomethacin in either dose did not influence these parameters of control rats without trauma to the cord. Since indomethacin is a potential inhibitor of prostaglandins synthesis our observations indicate: (i) that prostaglandins participate in many microvascular responses (permeability changes, edema, blood flow) occurring after a trauma to the spinal cord; (ii) that these effects of the drug seem to be dose dependent, and (iii) that the prostaglandins may influence the serotonin metabolism following trauma to the spinal cord.

Animals↗

Indomethacin, an inhibitor of prostaglandin synthesis attenuates alteration in spinal cord evoked potentials and edema formation after trauma to the spinal cord: an experimental study in the rat.

The potential efficacy of indomethacin (a potent inhibitor of endogenous prostaglandin synthesis) on spinal cord-evoked potentials and edema formation occurring after a focal trauma to the spinal cord was examined in a rat model. The spinal cord evoked potentials were recorded in urethane-anesthetized male rats using monopolar electrodes placed epidurally over the T9 (rostral) and T12 (caudal) segments after stimulation of the ipsilateral right tibial and sural nerves. Reference electrodes were placed in the corresponding paravertebral muscles. The spinal cord evoked potential consisted of a small positive peak followed by a broad and high negative peak. Amplitudes and latencies of the maximal positive peak and the maximal negative peak were measured. The latencies and amplitudes 30 min before injury were used as references (100%). A complete loss was denoted as 0%. All the potentials were quite stable during 30 min of recording before injury. Infliction of trauma to the T10-T11 segments of the spinal cord with a sterile scalpel blade (about 5 mm longitudinal and 2 mm deep incision into the right dorsal horn extending to Rexed's laminae VII) in untreated animals resulted in an immediate depression of the rostral maximal negative peak amplitude (60-100%) which persisted during 5 h of recording. The latencies of the rostral as well as caudal maximal negative and positive peaks increased successively from 2 h post-trauma. In this group of animals, 5 h after injury the spinal cord water content in the traumatized segments was increased by more than 6% as compared with a group of uninjured animals. Pretreatment with indomethacin (10 mg/kg body weight i.p. 30 min before injury) markedly attenuated the immediate decrease in the maximal negative peak amplitude after injury, but did not influence the successive latency increase. However, the increase in the water content of the traumatized cord after 5 h was less pronounced compared with untreated injured rats. Our results show a beneficial effect of indomethacin on trauma-induced spinal cord evoked potential changes and edema formation. Prostaglandins may thus influence early bioelectrical changes occurring in traumatized spinal cord not reported earlier. The findings support the view that early recording of spinal cord evoked potential may be useful to predict the outcome in some forms of spinal cord injuries.

Analysis of Variance↗

Regional changes in interstitial K+ and Ca2+ levels following cortical compression contusion trauma in rats.

Brain trauma is associated with acute functional impairment and neuronal injury. At present, it is unclear to what extent disturbances in ion homeostasis are involved in these changes. We used ion-selective microelectrodes to register interstitial potassium ([K+]e) and calcium ([Ca2+]e) concentrations in the brain cortex following cerebral compression contusion in the rat. The trauma was produced by dropping a 21 g weight from a height of 35 cm onto a piston that compressed the cortex 1.5 mm. Ion measurements were made in two different locations of the contused region: in the perimeter, i.e., the shear stress zone (region A), and in the center (region B). The trauma resulted in an immediate increase in [K+]e from a control level of 3 mM to a level > 60 mM in both regions, and a concomitant negative shift in DC potential. In both regions, there was a simultaneous, dramatic decrease in [Ca2+]e from a baseline of 1.1 mM to 0.3-0.1 mM. Interstitial [K+] and the DC potential normalized within 3 min after trauma. In region B, [Ca2+]e recovered to near control levels within 5 min after ictus. In region A, however, recovery of [Ca2+]e was significantly slower, with a return to near baseline values within 50 min after trauma. The prolonged lowering of [Ca2+]e in region A was associated with an inability to propagate cortical spreading depression, suggesting a profound functional disturbance. Histologic evaluation 72 h after trauma revealed that neuronal injury was confined exclusively to region A. The results indicate that compression contusion trauma produces a transient membrane depolarization associated with a pronounced cellular release of K+ and a massive Ca2+ entry into the intracellular compartment. We suggest that the acute functional impairment and the subsequent neuronal injury in region A is caused by the prolonged disturbance of cellular calcium homeostasis mediated by leaky membranes exposed to shear stress.

Animals↗

Endothelin-1-like immunoreactivity is expressed in human reactive astrocytes.

The expression of endothelin-1-like immunoreactivity in astrocytes of the human brain was investigated by the avidin-biotin-peroxidase complex method in post mortem material. A marked immunoreaction was present in reactive astrocytes around infarcts, lacunes, traumatic injuries, the lesions of progressive multifocal leuco-encephalopathy and in the cerebral cortex and white matter of Alzheimer's disease. The brains of patients who had neither history nor signs of cerebral disease exhibited only occasional immunoreactive astrocytes. A hypothesis is presented that endothelin-1 may be released from reactive astrocytes in many organic diseases of the human brain with considerable pathogenic consequences. It is known from experimental investigations that endothelin-1 may for instance cause severe vasoconstriction resulting in cell injury and that it may act as a growth factor for glial cells.

Aged↗

Structural and vascular permeability abnormalities associated with lacunes of the human brain.

Histopathological and immune-histochemical studies were carried out in four cases with multiple lacunes of the central grey matter and in control cases without such lesions. Routine light microscopic techniques were applied on paraffin-embedded material to identify lesions that may represent developing lacunes. In addition, polyclonal antisera to human albumin, IgG, fibrinogen and fibronectin were chosen as markers for extravasated plasma proteins. The brain tissue between lacunes contained several forms of focal injuries which may represent precursors of lacunes. Such lesions included foci of status spongiosus and status cribrosus, regions with dilated extracellular spaces and astrocytic gliosis, and multi-locular cysts. These "lacune-associated lesions" often included albumin immune-reactivity in extracellular spaces, nerve cell bodies and astrocytes. Less frequently signs of extravasated IgG, fibrinogen and fibronectin were identified. Thus, lacunes of the human brain frequently showed signs of antigenic sites to albumin. The extracellular deposits probably represent extravasated material from the blood. Vasogenic and cytotoxic oedema combined with other factors probably play important roles during the formation of some of the lacunes.

Aged↗

Immunohistochemical evidence of endothelin-1 in human choroid plexus.

An immunohistochemical investigation was carried out on 17 specimens of human choroid plexus obtained post mortem, 1 biopsy of normal choroid plexus including part of the lateral ventricle and 1 papilloma of the choroid plexus removed surgically. The material was fixed in formalin. Paraffin and cryostat sections were used. A polyclonal antiserum to endothelin-1 served as a primary antibody. The avidin-biotin-peroxidase method was applied to demonstrate the immunoreaction. The epithelial cells of the choroid plexuses, the choroid papilloma and most ependymal cells of the lateral ventricle showed a distinct brown reaction product in their cytoplasm indicating antigenic sites to endothelin-1. The reaction was of lesser intensity in the ependymal cells. The connective tissue in choroid plexus was unstained. A positive immunoreaction was present in the walls of some vessels in the choroid plexus in cryostat sections. This is the first report on the presence of antigenic sites to endothelin-1 in the epithelial cells of the human choroid plexus. The role of endothelin in these cells should be investigated to ascertain if the cells synthesize this biologically active peptide or if it is merely bound to receptors in them.

Adult↗

Exudation of fibronectin and albumin after spinal cord injury in rats.

Spinal cord of the rat was investigated immunohistochemically to detect signs of extravasation of fibronectin in animals in which the cord was subjected to different degrees of compression trauma. Immunohistochemistry was performed after survival periods of 4 and 24 h and parallel sections were incubated for albumin immunoreactivity to detect signs of breakdown of the blood-spinal cord barrier. Extravascular reaction products indicating the presence of fibronectin were found within and in the vicinity of the compression provided that bleeding had occurred in the spinal cord, i.e., in rats with severe trauma. Immunoreactive material indicating extravascular albumin was present in the traumatized region and in many segments of the cord located away from the compressed part. Such material was seen both proximal and distal to the primary injury and even in rats with a low magnitude of compression. Generally, with more severe trauma and longer survival periods extravascular albumin was more extensively distributed along the cord. No signs of fibronectin antigen were detected in spinal cord segments away from the compression even though such regions showed albumin immunoreactivity outside the vessels. The results indicate that within and close to the primary injury of compressed spinal cord exudation of fibronectin may occur from the plasma of microvessels provided that the impact is severe enough to cause intramedullary hemorrhages.

Albumins↗

Binswanger's disease in the absence of chronic arterial hypertension. A case report with clinical, radiological and immunohistochemical observations on intracerebral blood vessels.

The cerebral changes are described in a woman of 54 who suffered from Binswanger's encephalopathy: there were no signs or symptoms of chronic arterial hypertension. The disease presented as dementia of about 3 years duration. Computed tomography of the brain 2.5 years before her death showed bilateral widespread hypodense lesions in the cerebral white matter. She died of an asthmatic attack. Autopsy disclosed extensive bilateral degeneration of the central white matter, lacunes and gliosis. Severe obliterative arteriolosclerosis occurred in the meningeal vessels and those supplying the affected parts of the brain. Light microscopy showed that the most severe lesions occurred in the arterioles. Immunohistochemistry demonstrated profound extravasation of plasma proteins chiefly albumin, indicating dysfunction of the blood-brain barrier. Thus, the lesions characteristic of Binswanger's encephalopathy may develop in the absence of chronic arterial hypertension. Additional pathogenic factors, possibly genetic predisposition to vascular injury may play a role in the development of this condition.

Blood Proteins↗

Dynorphin A content in the rat brain and spinal cord after a localized trauma to the spinal cord and its modification with p-chlorophenylalanine. An experimental study using radioimmunoassay technique.

The distribution of dynorphin A in the spinal cord and brain of normal rats and of rats subjected to a focal injury of the spinal cord was examined in a rat model using a radioimmunoassay (RIA) technique. The validity of RIA was checked by high performance liquid chromatography (HPLC). Furthermore, the possibility that the peptide is somehow functionally related with endogenous 5-hydroxytryptamine (5-HT, serotonin), was also evaluated using a pharmacological approach. In normal animals, the peptide content was very similar in the spinal cord segments (T9, T10-11, and T12) examined whereas, the dynorphin content of the whole brain was about two-fold higher compared with that in the spinal cord. A focal injury to the spinal cord in the right dorsal horn (about 1.5 mm deep, 2.5 mm long and 1.5 mm to the right of the midline) of the lower thoracic cord (T10-11) in urethane anaesthetised animals significantly altered the peptide content in the whole brain as well as in the spinal cord. Thus, a decrease in the peptide level in whole brain, T10-11 and in the T12 segments of the spinal cord was observed 1 and 2 h after trauma. At 5 h, the peptide had accumulated markedly in the T9 segment (about a two-fold increase) as compared with the controls. At this time, the peptide content had been restored in the T10-11 and T12 segments. On the other hand, the whole brain dynorphin level continued to remain low (by 55%) as compared to the control group.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Release of endogenous neurochemicals may increase vascular permeability, induce edema and influence cell changes in trauma to the spinal cord.

Trauma to the spinal cord induces a series of electrophysiological, immunological and biochemical events, but it is still unclear how such reactions are initiated and maintained. Most likely release of neurochemicals, breakdown of microvascular permeability and the formation of vasogenic edema play important roles in the pathophysiology of spinal cord trauma. In an animal model we have focused the attention to the possible involvement of endogenous serotonin, prostaglandins and opioid peptides in the formation of edema and associated disturbances of vascular permeability. The trauma was produced in anesthetized rats by making a focal lesion in the right dorsal horn at the T10-11 segments. This injury resulted in a profound increase in the microvascular permeability to 131I-sodium and an elevation of water content in the rostral T9 and caudal T12 segments as measured 5 h after the onset of the injury. Light microscopy of the perifocal changes in the T9-T12 segments using Nissl stain and immunohistochemistry to glial fibrillary acidic protein (GFAP) and myelin basic protein (MBP) showed profound cellular changes which were most severe in the ipsilateral ventral horn. Many nerve cell bodies were shrunken and the tissue had a spongy edematous appearance. There was a marked increase of GFAP immunoreactivity as well as a significant diminution of MBP staining. Pre-treatment with p-chlorophenylalanine (p-CPA, an endogenous serotonin depletor and synthesis inhibitor) or indomethacin (an endogenous prostaglandin synthesis inhibitor) or naloxone (an opioid receptor antagonist) significantly reduced the permeability changes and the edema formation.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗