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Cerebrospinal fluid protein findings during prophylaxis and treatment of neuromeningosis in leukaemic patients.

Methotrexate and Aracytin commonly employed in prophylaxis and treatment of leukaemic neuromeningosis, can induce neuromeningeal injury. Cerebrospinal fluid (CSF) protein disturbance may reflect the damage. In this study we have examined 141 CSF samples collected by lumbar puncture from 51 subjects: 15 normal controls and 36 leukaemic patients during the prophylaxis or the Central Nervous System (CNS) involvement treatment. In all the CSF samples, total proteins, IgG and IgA were examined. CSF total protein and albumin levels increased in the presence of leukaemic neuromeningosis and also after a prolonged CNS prophylaxis or therapy. The same behaviour was found in IgG levels. The IgA levels did not show any modification. We conclude that these parameters are not reliable indices of leukaemic CNS involvement.

Adult↗

Cerebrospinal fluid protein profile in experimental pneumococcal meningitis and its alteration by ampicillin and anti-inflammatory agents.

We studied the effects of ampicillin and anti-inflammatory agents on cerebrospinal fluid (CSF) protein patterns in rabbits with meningitis caused by Streptococcus pneumoniae. CSF proteins were analyzed in the acute phase of infection and during convalescence by using sodium dodecyl sulfate-polyacrylamide gel electrophoresis, followed by two types of staining or by immunoblotting. During the acute phase a massive influx of serum albumin into the CSF was accompanied by the appearance of other proteins of high and low molecular weight. In untreated animals and animals given ampicillin alone or together with indomethacin, the abnormal pattern persisted for up to 30 d. Combined treatment with ampicillin and dexamethasone or oxindanac, a new nonsteroidal anti-inflammatory drug, partially prevented the alterations in CSF protein patterns. Reversion to normal CSF protein patterns was fastest in these two groups.

Ampicillin↗

Horizontal two-dimensional electrophoresis of cerebrospinal fluid proteins with immobilized pH gradients in the first dimension.

A horizontal two-dimensional electrophoresis method with immobilized pH gradient isoelectric focusing supplemented with carrier ampholytes in the first dimension was applied to cerebrospinal fluid (CSF) proteins. About 300 protein spots could be detected on the silver-stained two-dimensional maps of CSF samples. This high-resolution method is a tool worthy of consideration for the research of CSF proteins and disease-specific changes in different neurological disorders.

Cerebrospinal Fluid Proteins↗

Polyacrylamide-gel disc electrophoresis of native cerebrospinal fluid proteins with special reference to immunoglobulins and some clinical applications.

Polyacrylamide-gel disc electrophoresis has been applied to the fractionation of CSF samples obtained from 2m control subjects (range of age 16 to 77 yr, mean 41.0 yr) and from 157 patients with various neurological diseases, with the purpose of evaluating the diagnostic significance of separated protein bands. It was found that the immunoglobulins, with some exceptions, were fractionated in the G-zone which was defined as an area between the origin and 0.57 in terms of relative migration based on transferrin (RT). Fourty-four percent of the whole Bence Jones protein bands which were examined were detected in the area of RT 0.70-0.90. The normal values of CSF protein fractions were (means+/-SD):Pre-alb-zone, 10.97+/-2.31%; Alb-zone, 40.74+/-5.72%; A1-zone, 5.25+/-0.72%; A2-zone, 8.23+/-1.24%; B1-zone, 10.82+/-2.18%. B2-zone, 7.94+/-1.93%; G-zone, 16.05+/-2.49%. The following significant results were obtained: (1) When the total protein concentration (TP) of CSF is increased: the percentage of the Pre-alb-zone is lowered and that of the A1- and G-zones is increased in diseases such as neurosyphilis, infectious meningitis, brain tumour, multiple sclerosis, intervertebral disc protrusion and cerebral infarction. The A2-zone was diminished in cerebral infarction, and a similar change was seen in brain tumour with in addition a decrease of the B2-zone; (2) When the TP was normal: the percentage of the G-zone was increased in multiple sclerosis, brain tumour and intervertebral disc protrusion. In the latter 2 disorders the A1-zone also increased. This fraction also increased in the cases of cerebral infarction, whose mean age was, however, much higher than that of the control subjects.

Adolescent↗