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Biomedical subjects

A Seiger

Publications and source records attributed to A Seiger.

At least 55 records · Page 3Linked to original sources

The Stockholm Spinal Cord Injury Study. 3. Health-related issues of the Swedish annual level-of-living survey in SCI subjects and controls.

In previous articles on the Stockholm Spinal Cord Injury Study (SSCIS), we have reported the frequent occurrence of medical problems in a near-total regional SCI population comprising 353 subject. This present study further investigates health-related issues in this SCI population, by a level-of-living survey that has been used annually on 8000-14,000 Swedes since 1974. The health-focused version of this survey was used for data collection in those 326 subjects in the SSCIS who were residents of the Greater Stockholm area. Subjects of the SSCIS living on the island of Gotland were excluded because they represented a sociodemographically different (rural) population. The normative material consisted of 1978 interviews of residents of the Greater Stockholm area, provided by the Swedish Bureau of Statistics. Results show a higher utilisation of health care resources among SCI subjects, shown by higher rates of long-term sick leave and sick pension, and more treatment as inpatients, emergency room attendees, and outpatients. Pain, bladder problems, and psychological symptoms are more commonly reported by SCI subjects. Medications such as antibiotics, analgesics, sedatives, hypnotics and laxatives are used more frequently in the SCI group. In contrast, no statistically significant differences were found as regards reported prevalence of diseases other than SCI, including diabetes, hypertension and cardiac disease. The results thus verify the impression from our previous studies of a clearly increased morbidity among these SCI subjects. The increased morbidity seems to be accounted for by the SCI itself, or conditions directly caused by it.

Adolescent↗

The Stockholm spinal cord injury study: 1. Medical problems in a regional SCI population.

Out of a regional traumatic spinal cord injury population consisting of 379 individuals, 353 (93.1%) participated in the present study. Subjects were individually interviewed using semi-structured protocols. In addition, previous medical records were available for over 96% of subjects, and were used in all these cases to minimise recall bias. Cause of injury, prevalence of present medical symptoms and occurrence of medical complications in the post-acute, post-discharge phase were recorded. Neurological classification was verified by physical examination according to ASIA/IMSOP standards. Many subjects had experienced complications since discharge from initial hospitalisation, especially urinary tract infections, decubitus ulcers, urolithiasis, and neurological deterioration. Prevalence of medical symptoms was also high. More than 41% of subjects with spastic paralysis reported excessive spasticity to be associated with additional functional impairment and/or pain. Almost two-thirds of subjects reported significant pain, with a predominance of neurogenic-type pain. Bladder and bowel dysfunction were each rated by nearly 41% of subjects as a moderate to severe life problem. As expected, sexual dysfunction was also commonly reported. Prevalence of reported symptoms by general systems review was high, particularly fatigue, constipation, ankle oedema, joint and muscle problems, and disturbed sleep. However, lack of adequate normative data precludes comparison with the general population. The frequent occurrence of reported medical problems and complications support advocacy of comprehensive, life-long care for SCI patients. The commonly reported problems of neurogenic pain and neurological deterioration, in particular, require more attention, as these symptoms are not seldom ominous, either by virtue of their impact on quality of life, or because of underlying pathology.

Adolescent↗

Decreased GABA immunoreactivity in spinal cord dorsal horn neurons after transient spinal cord ischemia in the rat.

The number of GABA-like immunoreactive (LI) cells in lamina I-III of the rat spinal cord was significantly decreased bilaterally 48-72 h after photochemical induction of transient spinal cord ischemia compared to sham-operated controls. No significant changes in the number of GABA-LI cells were observed at cervical level. The number of GABA-LI cells was restored 2 weeks after ischemia. These data, together with recent behavioral and electrophysiological findings, suggest that decreased intraneuronal GABA levels after spinal cord ischemia may underlie the development of the temporary pain-like response to innocuous mechanical stimuli (allodynia) in rats after transient spinal cord ischemia.

Animals↗

Morphology and growth of embryonic, human dorsal root ganglion explants in long-term culture: expression of cell type-specific markers during early differentiation.

Embryonic, human spinal ganglion explants were plated at 5-12 weeks postconceptional age and cultured for 5-50 days on a semisynthetic substrate in a serum-containing culture medium without addition of antibiotics or preconditioned medium. The growth pattern in vitro was found to be age dependent. Five- to 6-week ganglia showed a characteristic semicircular growth pattern with bidirectional extension of neurites on top of a monolayer of supportive cells. Explanted 9- to 10-week ganglia showed an extensive, multidirectional neurite outgrowth with less pronounced proliferation of nonneuronal cells. Neurite extension, fasciculation, cell migration and morphology were studied immunohistochemically with antibodies to neurofilament (NF), S-100, and the Thy-1 glycoprotein. Both NF and S-100 were expressed at 5 weeks gestational age in ganglionic neurons and in proliferating Schwann cells in contact with axonal processes, respectively. NF was homogeneously distributed in both cell somata and neurites, whereas S-100 immunoreactivity showed an intense nuclear and a weaker cytoplasmic distribution in spindle-shaped, bipolar Schwann cells. This staining pattern was conserved during differentiation in long-term culture. Thy-1 was expressed on ganglionic neurites forming fascicles by the third week in culture. However, Thy-1 was never expressed until the total age of 10 weeks. In addition, Thy-1 was found on fibroblasts from the first week in culture. The distribution of Thy-1 on the cytoplasmic membrane was similar in both cell types, showing a coarsely granulated membrane staining. The temporal as well as the spatial expression of differentiation antigens in tissue sections of early embryonic spinal cord and spinal ganglia were very similar to what was observed in vitro.

Antigens, Surface↗

NBQX, a competitive non-NMDA receptor antagonist, reduces degeneration due to focal spinal cord ischemia.

We have used the laser-induced photochemical thrombosis model in adult rats to evaluate the significance of the non-N-methyl-D-aspartate (non-NMDA) subtype of glutamate receptors in situations of focal spinal cord ischemia. The animals were pretreated with the selective non-NMDA antagonist 2,3-dihydroxy-6-nitro-7-sulfamoyl-benzo(f)-quinoxaline (NBQX) or, for comparison, the NMDA antagonist (+)-5-methyl-10,11-dihydro-5H-dibenzo[a,d] cyclohepten-5-10-imine (MK-801). Neurological function was quantified using evaluations of motor score and inclined plane. The MK-801-treated rats had higher motor scores during the 3-week observation period while NBQX-treated rats only performed significantly better at 1 week. Both treatments caused significantly better performance in the inclined plane test. NBQX and MK-801 reduced the volume of necrosis by approximately 47% at 3 weeks postlesion. We conclude that blockade of both NMDA and non-NMDA subtypes of glutamate receptors reduces ischemic necrosis, possibly by preventing excessive stimulation of these receptors by released excitatory amino acids in the lesion area.

Analysis of Variance↗

Neuronal development in embryonic brain tissue derived from schizophrenic women and grafted to animal hosts.

The distribution of schizophrenia in families supports the hypothesis of heritable risk factors in schizophrenia, but there is as yet no identification of an inherited neurobiological defect. Human embryonic brain tissue fragments, derived from first trimester abortions, can be transplanted into rat hosts, where they continue neuronal development and are accessible for neurobiological investigation. Hippocampal transplants derived from three schizophrenic women and a larger series of normal women have been studied. If there are heritable neuronal defects associated with schizophrenia, a proportion of the transplants from schizophrenic women would be expected to carry these defects. The transplants from the first two schizophrenic women showed profound abnormalities in survival and growth, compared to the series of transplants from normal women. The transplants from the third schizophrenic woman showed normal growth and development, as well as typical histological and electrophysiological features. The data must be regarded as preliminary, because of the small number of subjects that have been studied. However, they are consistent with the transmission of a defect in neuronal development to some of the offspring of schizophrenic women, a possibility consistent with other studies of the pathogenesis of schizophrenia. The mechanism of the defect in development remains to be identified.

Adult↗

Photochemically induced spinal cord ischaemia in rats: assessment of blood flow by laser Doppler flowmetry.

A photochemical technique was used to create central nervous system ischaemia in rats. Changes in blood flow in the spinal cord were assessed by laser Doppler flowmetry. The Th11 spinal cord segment was irradiated by an argon ion laser after intravenous injection of an organic dye, erythrosin B, to rats with or without a laminectomy. In the group of laminectomized rats, laser irradiation for 5 s did not influence cord blood flow, but 10 s irradiation caused a 25% decrease of blood flow, which normalized within 20 min. Decreases of 50 and 80% in spinal cord blood flow were noted after 20 s and after 1 min of laser irradiation, respectively, with no recovery observed after 20 min. In the group of rats without a laminectomy, 1 min of laser irradiation caused approximately a 25% decrease of spinal cord blood flow, which gradually recovered within 12 min, whereas 5 min of laser irradiation caused a more severe reduction of spinal cord blood flow (45%) with some recovery was observed 30 min later. We could thus confirm that the interaction between a photosensitizing dye and laser irradiation reduced the regional spinal cord blood flow and the extent of this effect could be modified by varying the duration of laser irradiation. The present results therefore provide further support for using this photochemical technique to create animal models of central nervous system ischaemia.

Animals↗

Establishment of a tissue bank for fetal stem cell transplantation.

STUDY OBJECTIVE: To analyse the yield of fetal liver tissue in first trimester abortions and to evaluate the number of nucleated cells obtained from each fetal liver during the sixth to twelfth week of gestation. DESIGN: Prospective descriptive study: LOCATION: University Hospital. MATERIAL: Women seeking abortion during a 12 month period 1992/1993. RESULTS: Out of 1271 women seeking abortion, 152 were asked whether they were willing to donate fetal tissue for fetal transplantation. Of these women, 105 (69%) accepted the proposal and underwent a modified low suction vacuum curettage. Fetal liver tissue was obtained in 61 (58%) of these procedures. The frequency at which tissue was retrieved was strongly related to gestational age and rose from 29% in week 6 to 79% in the tenth to twelfth week of gestation. The mean number of nucleated cells obtained from each fetal liver demonstrated a concomitant increase with gestational age, rising from 16 to 43 x 10(6) per liver during these weeks of gestation. Of the 61 cases in which fetal liver was obtained, four subjects were shown to be abnormal by laboratory analyses and 11 did not alter the mandatory follow-up appointment. This left 46 cases for use in the program of fetal to fetal transplantations. CONCLUSIONS: Most women seeking abortion seem to be in favor of the idea of fetal tissue donation for the treatment of other fetuses. The possibility of obtaining fetal liver tissue and the number of fetal stem cells retrieved are closely correlated to gestational age. A tissue bank appears to facilitate the operation of a fetal to fetal stem cell transplantation program.

Attitude to Health↗

Intracranial infusion of purified nerve growth factor to an Alzheimer patient: the first attempt of a possible future treatment strategy.

We report on the clinical outcome of a first case of intracranial infusion of nerve growth factor (NGF) to an Alzheimer patient. The therapeutic attempt is based on animal research showing that NGF stimulates central cholinergic neurons of the type known to be lost during the development of Alzheimer's disease (AD). Furthermore, our own previous clinical experience of infusing NGF to support the survival of intracranially transplanted adrenal chromaffin cells to Parkinsonian patients indicate this approach to be technically possible and safe and clinically of significant potential. Our first case was a 69-year-old woman, with symptoms of dementia since 8 years. Intraventricular infusion of 6.6 mg NGF over three months resulted in a marked transient increase in uptake and binding of [11C]nicotine in frontal and temporal cortex and a persistent increase in cortical blood flow as measured by PET as well as progressive decreases of slow wave EEG activity. After one month of NGF infusion, tests of verbal episodic memory were improved whereas other cognitive tests were not. No adverse effects of the NGF infusion were found. The results of this single case indicate that NGF may counteract cholinergic deficits in AD, and suggest that further clinical trials of NGF infusion in AD are warranted.

Aged↗

Neurochemical differentiation of human bulbospinal monoaminergic neurons during the first trimester.

The neurochemical differentiation of bulbospinal noradrenergic and serotonergic neurons has been followed in first trimester human fetuses. Analysis of microdissected CNS regions revealed detectable levels of noradrenaline (NA) and serotonin (5-HT) in pons, medulla oblongata and throughout the spinal cord from 5-6 weeks of gestation. In all regions there was a pronounced increase in tissue levels of the monoamines, especially from 8-9 weeks on. 5-HT levels were lower than NA levels except for pons, where the opposite was true. With increasing fetal age, the results seemed less consistent because of considerable interindividual variations. Using immunohistochemical localization of tyrosine hydroxylase (TH), a marker for noradrenergic neurons, immature cell bodies were seen in the brain stem at the earliest stage studied, that is at 4 weeks of gestation. Several TH and 5-HT-immunoreactive (IR) cell groups were found in pons and medulla oblongata at 5 weeks. Significant structural differentiation of TH- and 5-HT-IR cell bodies was seen during the first trimester. Immunoreactive fibers began to appear at 5 weeks in the cervical spinal cord. At 6 weeks both types of fibers could be found in the white matter throughout the entire spinal cord while fibers in gray matter appeared at 9 weeks. The number of TH-IR fibers was considerably larger than the number of 5-HT-IR fibers. This is the first time the biochemical development of human bulbospinal monoaminergic neurons during the first trimester has been described. Continued investigations of the ontogenetic growth and differentiation of these human bulbospinal monoaminergic neurons will gain necessary insight into the genetically determined capacity for plasticity, potentially possible to activate later in life in response to spinal cord injury. Further, intraspinal transplantation of CNS tissue relevant to the severed spinal cord would by necessity entail selection of embryonic cell populations. Using such therapeutic strategies, detailed knowledge of the inherent capacities of the donor tissues will be crucial.

Cell Differentiation↗

Effect of grafting order on innervation of spinal cord transplants by grafted locus coeruleus neurons in oculo.

Fetal brain stem containing locus coeruleus/subcoeruleus (hereafter referred to as LC) and thoracic spinal cord (SC) were sequentially allografted into the anterior eye chamber of adult Sprague-Dawley albino rats creating two groups: (1) LC graft followed after 11 weeks by an SC graft (LC-SC); (2) SC graft followed after 11 weeks by an LC graft (SC-LC). The cografts were allowed to mature in oculo for 15-18 months. After sacrifice, the grafts were processed for the immunohistochemical localization of tyrosine hydroxylase (TH) and dopamine beta-hydroxylase (D beta H) and the extent of fiber ingrowth into the SC graft was measured using computerized image analysis. TH- and D beta H-immunoreactive fibers were found to innervate the SC cograft in five of the six SC-LC graft combinations. The innervation was abundant, but uneven in distribution. The average density of TH-immunoreactive fibers (derived from the LC graft) was 8.29% of the total cross-sectional area of the SC graft neuropil. In contrast, the innervation of the SC graft neuropil was very sparse in the LC-SC graft combinations, with an uneven distribution and an average density of TH-immunoreactive fibers in the SC graft of only 2.28% of the cross-sectional area of the SC graft neuropil. The results support earlier studies of intraspinal grafting of LC neurons, in that embryonic LC neurons upon grafting and during ontogenetic fiber growth are capable of innervating mature spinal cord neuropil devoid of its normal catecholaminergic innervation. However, embryonic spinal cord tissue is a poor stimulant to reinitiate terminal fiber growth from mature LC neurons, in contrast to several other LC target areas such as the cerebral cortex and hippocampus.

Animals↗

Effects of cryopreservation on subsets of fetal liver cells.

Human fetal livers from 6 to 13 weeks postconception were analysed before and after cryopreservation. The percentages of cell subsets, detected by MoAbs, did not change significantly after cryopreservation. Compared with BM, fetal liver contained significantly smaller subsets of cells identified by MoAbs, with two exceptions. Fetal liver contained a mean of 47% M5 positive cells versus 31% in BM, and there was no difference in the numbers of CD34+ cells. The colony-forming capacity was studied: 53 colonies grew from 10(5) cells from fresh fetal liver compared with 51 colonies from cryopreserved cells. For fresh BM the corresponding value was 88 per 10(5) cells. Incubation time for fetal stem cells was 17-18 days while the corresponding time for BM cells was 8-10 days.

Antigens, CD↗

Systemic excitatory amino acid receptor antagonists of the alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor and of the N-methyl-D-aspartate (NMDA) receptor relieve mechanical hypersensitivity after transient spinal cord ischemia in rats.

We have previously reported that transient spinal cord ischemia induced a behavioral hypersensitivity (allodynia) to innocuous cutaneous mechanical stimulation in rats. The spinal ischemia-induced allodynia was not relieved by morphine, but it was relieved by the gamma-aminobutyric acid (GABA)-B receptor agonist baclofen, indicating that the allodynia may be related to dysfunction of the spinal GABA-ergic inhibitory system. In the present study we report that systemic application of 2,3-dihydroxy-6-nitro-7-sulfamoyl-benzo(f)quinoxaline (NBQX), an antagonist of the alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor for excitatory amino acids, dose-dependently relieved allodynia after spinal cord ischemia. The analgesic effect of NBQX at a low dose (7.5 mg/kg) was not accompanied by motor deficits or sedation. On the other hand, the N-methyl-D-aspartate (NMDA) receptor antagonist dizocilpine (MK-801) only partially alleviated allodynia, even at doses that produced severe motor deficits. It is suggested that the abnormal, possibly painful, sensations elicited by innocuous mechanical stimulation observed after spinal cord ischemia may be mediated by excitatory amino acids, acting mainly on the AMPA receptor. Antagonists of excitatory amino acid receptors, especially at the AMPA site, may be effective in treating pain conditions where input from low threshold afferents triggers painful sensations.

Animals↗

Initial studies of embryonic transplants of human hippocampus and cerebral cortex derived from schizophrenic women.

Human fetal brain tissue was obtained from first-trimester elective abortions of two women who also had schizophrenia. Portions of the embryonic hippocampus or cerebral cortex were transplanted into the anterior eye chamber of immunologically compromised athymic nude rats. In this environment, embryonic brain tissue derived from normal women generally continues organotypic growth and development for many months. Although initial survival after transplantation was normal, the tissue derived from schizophrenic women manifested less robust growth. However, cells in the transplants showed typical neuronal differentiation, with development of different neuronal types, such as pyramidal cells, granule cells, and gamma-aminobutyric acid (GABA)-containing interneurons. Rhythmic electrical activity was also observed, indicative of some local synaptic organization. The presence of messenger RNA (mRNA) for brain-derived neuronotrophic factor (BDNF) was observed using in situ hybridization. The reason for the decreased rate of growth of these transplants remains unknown and the significance of the finding cannot be assessed from only two fetuses. However, these preliminary findings suggest that fetal transplants may be a useful model system for the detection of developmental pathogenic processes in the expression and transmission of schizophrenia.

Adult↗

Systemic tocainide relieves mechanical hypersensitivity and normalizes the responses of hyperexcitable dorsal horn wide-dynamic-range neurons after transient spinal cord ischemia in rats.

In the present study we examined the effect of systemic tocainide on sensory hypersensitivity in rats after spinal cord ischemia induced by a photochemical technique. After induction of spinal cord ischemia the rats exhibited a sensory disturbance which was mainly expressed as vocalization to innocuous cutaneous mechanical stimuli (allodynia) in the flank area during the following several days. Tocainide at 75 mg/kg i.p., but not 50 mg/kg i.p., significantly increased the vocalization threshold to mechanical pressure for 2 h. The effect of intraarterial (i.a.) tocainide on the responses of dorsal horn wide-dynamic-range (WDR) neurons to suprathreshold electrical stimulation of their receptive fields was also examined in normal rats and after transient spinal cord ischemia, at a time when the animals exhibited typical behavioral allodynia in the dermatomes innervated by the ischemic spinal segments. In normal rats, tocainide (50 mg/kg i.a.) strongly suppressed the responses of WDR neurons to C fiber input with lesser effect on A fiber input. In allodynic rats, tocainide suppressed the augmented A and C fiber mediated responses of WDR neurons to the extent that their responses were similar to those seen in normal rats without tocainide. There was no difference in the overall depression of A and C fiber mediated input by tocainide between normal and allodynic rats. The present results demonstrated the analgesic effect of systemic tocainide in relieving allodynia in rats and indicated that systemic local anesthetics, at doses that do not block nerve conduction, can be effective in suppressing dorsal horn WDR neuronal activity.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Protective effect of the NMDA antagonist MK-801 on photochemically induced spinal lesions in the rat.

Photochemically induced ischemic lesions in the rat spinal cord were studied using neurological tests and morphological evaluation in order to investigate ischemia-mediated pathophysiological mechanisms in traumatic spinal cord injury. One week after ischemic lesioning, animals were severely impaired with 85% decrease of performance in neurological tests. During the next 2 weeks considerable recovery occurred. Pretreatment with the noncompetitive N-methyl-D-aspartate antagonist MK-801 at a dose of 0.5-1.0 mg/kg significantly improved the recovery of function after spinal ischemia while lower doses exerted no protection. Morphologically, no dose-response effect on the extent of tissue necrosis was found, but a significant difference between groups with severe neurological deficit versus mildly affected groups was observed. Immunohistochemical staining for glial fibrillary acidic protein in the area close to the lesion revealed extensive gliosis, while neurofilament immunohistochemistry showed an irregular pattern of fiber loss with large variability between animals. The degree of gliosis or loss of neurofilament immunoreactivity in nonnecrotic tissue was not affected by MK-801. These results suggest that excessive stimulation of N-methyl-D-aspartate receptors participates in the development of spinal cord ischemia and possibly also participates after traumatic spinal cord injury.

Animals↗

Photochemically induced transient spinal ischemia induces behavioral hypersensitivity to mechanical and cold stimuli, but not to noxious-heat stimuli, in the rat.

Pain-like sensory disorders lasting several days were observed in rats after transient ischemia in the lumbar region of the spinal cord. The ischemia was induced with a recently developed photochemical technique. Rats exhibited strong allodynia, a pain-like reaction to innocuous stimuli, to mechanical stimulation of the caudal trunk, hind limbs, and hind paws, which were areas innervated by the ischemic spinal segments. The rats also expressed hypersensitivity to cold stimuli. However, no changes in sensitivity to noxious heat could be detected with the hot-plate test. Furthermore, no morphological damage could be observed in the spinal cord at the light microscopic level in the majority of rats after transient spinal cord ischemia. The present results indicate that allodynia-like symptoms to mechanical stimuli after spinal ischemia may be mediated by myelinated afferents and could be associated with dysfunction of inhibitory transmission in the spinal cord. We suggest that this pain-related syndrome after spinal ischemia could be considered as an animal model of painful states of spinal origin.

Animals↗