Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Paraparesis, Spastic”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Clinically silent dysfunction of dorsal columns and dorsal spinocerebellar tracts in hereditary spastic paraparesis.

Hereditary spastic paraparesis (HSP) is a neurodegenerative disorder, of which progressive spastic paraparesis is the clinical hallmark. Given the neuropathological evidence of degeneration of pyramidal tracts, dorsal columns, and dorsal spinocerebellar tracts, it is surprising that sensory symptoms are so indistinct compared to motor symptoms. We investigated the involvement of peripheral conduction and spinal proprioceptive pathways by nerve conduction studies, somatosensory evoked potentials of the median and tibial nerves, and quantitative assessment of the vibration perception thresholds of the hands and feet respectively in 32 patients suffering from HSP and healthy control groups. We did not find peripheral conduction abnormalities in HSP patients. Log-transformed vibration perception thresholds of the feet were abnormal in 13/32 HSP patients and in 0/64 controls (p < 0.00001), while tibial nerve somatosensory evoked potentials were abnormal in 20/32 patients and in 1/17 controls (p = 0.00001). The values for the upper extremities were within normal limits for nearly all subjects. In the HSP group, the neurophysiological disturbances did not correlate significantly with duration or severity of the disease, when age was controlled for, except for median nerve SSEP latency, which was affected by severity (p = 0.0072). We conclude that neurophysiological methods detected proprioceptive, subclinical abnormalities in several HSP patients, which may reflect degeneration of the dorsal columns, and/or dorsal spinocerebellar tracts. Since we found no correlation with several disease variables, the fact that not all HSP patients displayed these abnormalities may be caused by anatomical variations in proprioceptive pathways, rather than by phenotypical heterogeneity.

Action Potentials↗

Immunological studies in tropical spastic paraparesis.

Tropical spastic paraparesis (TSP) and other chronic-progressive myelopathies have been clearly associated with increased serum and cerebrospinal fluid antibody titers to human T-lymphotropic virus type I (HTLV-I). However, little is known about the cellular immune function in TSP. In the present study, activated T lymphocytes were found in the peripheral blood of patients with TSP. Specifically, there were increased numbers of large CD3+ cells that also expressed HLA-DR and interleukin-2-receptor molecules. A significantly elevated spontaneous lymphoproliferative response was demonstrated in all patients tested. Generation of measles virus-specific cytotoxic T-cell response was reduced in 4 of 4 patients. This was similar to previous findings in patients with multiple sclerosis. However, unlike multiple sclerosis, reduced generation of cytotoxic T-cell response to influenza and mumps viruses was observed in 2 of 4 patients. These observations confirm further the strong association between TSP and an HTLV-I-like virus and suggest that the observed abnormalities of the cellular immune response in TSP are related to infection of lymphocytes by the retrovirus.

Adolescent↗

Neuroepidemiology of human T-lymphotrophic virus type-I-associated tropical spastic paraparesis.

Tropical spastic paraparesis (TSP) is a chronic neurological syndrome of gradual onset involving the pyramidal tracts and upper motor neurons, resulting in weakness and stiffness of the lower extremities, hyperactive tendon reflexes, spasticity, low back pain, and urinary disturbances. Clusters of endemic TSP have been noted in Africa, the Seychelles Islands, Colombia, and the Caribbean. Recently, studies have linked human T-lymphotrophic virus type-I (HTLV-I) with the endemic form of the disease. In Japan a very similar clinical syndrome has been identified as HTLV-I-associated myelopathy and may be a non-tropical version of the same disease. The purpose of the present review is to examine the role HTLV-I may play in the pathogenesis of these myelopathies from a neuroepidemiological point of view.

Adult↗

[From gene to disease; spastin and hereditary spastic paraparesis].

Hereditary spastic paraparesis (HSP) belongs to a group of genetically and clinically heterogeneous disorders characterised by progressive spasticity of the legs and hyperreflexia. A further clinical distinction is drawn between pure and complicated HSP depending on the presence of other neurological and non-neurological signs. HSP may be inherited either as autosomal dominant, recessive, or X-linked. Twenty-two loci have been identified and additional ones are envisaged. In autosomal dominant HSP, 11 loci (five genes) have been identified, the most prevalent of which is linked to chromosome 2p, coding for spastin, an ATPase belonging to the AAA family (acronym of 'ATPase associated with diverse cellular activities'). Spastin is a nuclear protein, present in neurons, but not in glial cells, and seems to be involved in microtubule dynamics. Nonsense and frameshift mutations result in a reduced amount of spastin.

Adenosine Triphosphatases↗

The neuropathology of hereditary spastic paraparesis.

Hereditary spastic paraparesis or Strümpell's disease is a genetically determined neurodegenerative disorder in which the signs and symptoms are predominant in the legs. Inheritance is usually autosomal dominant and in a minority recessive. Neuropathological study reveals a degeneration of the corticospinal tract decreasing from lower lumbar to cervical level and of posterior columns increasing from lumbar to upper cervical level as well as degeneration of the spinocerebellar tracts in approximately 50%. The nature of this nucleo-distal central axonopathy and clinicopathological discrepancy for posterior columns, as well as the limits of the pathological process are poorly understood.

Genes, Dominant↗

Intrathecal synthesis of antibodies to human T lymphotropic virus type I and the presence of IgG oligoclonal bands in the cerebrospinal fluid of patients with endemic tropical spastic paraparesis.

Tropical spastic paraparesis (TSP), a neuromyelopathy predominantly involving the pyramidal tract and commonly observed in tropical and equatorial areas, was recently found to be associated with human T lymphotropic virus type I (HTLV-I). We investigated sera and cerebrospinal fluid (CSF) from 19 patients with TSP who were from the Caribbean area, French Guiana, and Africa. Our results showed an elevated intra-blood-brain barrier IgG synthesis rate and an elevated IgG index, with an increased HTLV-I antibody-to-albumin ratio and the presence of CSF oligoclonal bands in the majority of the patients. These data, in association with similar HTLV-I antibody patterns between patients with TSP who were from these three regions, strengthen the probable etiologic role of HTLV-I in the pathogenesis of such chronic neuromyelopathies.

Adult↗

Isolation of an HTLV-1-like retrovirus from patients with tropical spastic paraparesis.

Tropical spastic paraparesis (TSP) is a slowly progressive myelopathy associated with increased serum and cerebrospinal fluid antibodies to the human T-lymphotropic retrovirus type I (HTLV-I) (ref. 1), and has been observed in many regions of the world. A similar condition known as HTLV-I-associated myelopathy occurs in the Kagoshima prefecture of Japan. Recent but controversial reports suggest involvement of virus related to HTLV-I in multiple sclerosis. Magnetic resonance imaging and electrophysiological studies indicate that TSP lesions are like multiple sclerosis in that they are disseminated throughout the nervous system. Complete virus from patients with TSP has proved difficult to isolate using techniques successful in adult T-cell leukaemia cases associated with HTLV-I. Here we report the isolation of an HTLV-I-like virus from T-cell lines derived from the peripheral blood and cerebrospinal fluid of TSP patients. The monoclonal antibody OKT3 was used to generate non-transformed T-cell lines that express HTLV-I antigens. Infectious virus was demonstrated by co-cultivation and complete, replicating virions were visualized ultrastructurally.

Antigens, Viral↗

Mutation analysis of the spastin gene (SPG4) in patients with hereditary spastic paraparesis.

BACKGROUND: Hereditary spastic paraparesis is a genetically heterogeneous condition. Recently, mutations in the spastin gene were reported in families linked to the common SPG4 locus on chromosome 2p21-22. OBJECTIVES: To study a population of patients with hereditary spastic paraparesis for mutations in the spastin gene (SPG4) on chromosome 2p21-22. METHODS: DNA from 32 patients (12 from families known to be linked to SPG4) was analysed for mutations in the spastin gene by single strand conformational polymorphism analysis and sequencing. All patients were also examined clinically. RESULTS: Thirteen SPG4 mutations were identified, 11 of which are novel. These mutations include missense, nonsense, frameshift, and splice site mutations, the majority of which affect the AAA cassette. We also describe a nucleotide substitution outside this conserved region which appears to behave as a recessive mutation. CONCLUSIONS: Recurrent mutations in the spastin gene are uncommon. This reduces the ease of mutation detection as a part of the diagnostic work up of patients with hereditary spastic paraparesis. Our findings have important implications for the presumed function of spastin and schemes for mutation detection in HSP patients.

Adenosine Triphosphatases↗

A founder variant in TBCB is associated with global developmental delay, autism spectrum, and spastic paraparesis.

PURPOSE: Hereditary spastic paraparesis (HSP) is a genetically diverse group of Mendelian disorders characterized by length-dependent axonal degeneration. Microtubule dysfunction is a known mechanism in HSP that impairs axonal dynamics. TBCB encodes tubulin-folding cofactor B (TBCB), which, along with TBCE, regulates &#x3b1;&#x3b2;-heterodimer dynamics and neuronal axonal growth. Here, we describe a new form of complicated HSP caused by a founder variant in TBCB. METHODS: Exome sequencing revealed a homozygous c.589T>A p.(Tyr197Asn) variant in TBCB in a cohort of 10 individuals assembled through genematching tools. Protein function was assessed using Saccharomyces cerevisiae ortholog ALF1, and a CRISPR-Cas9-generated homologous mutant in Drosophila melanogaster. TBCB expression and localization were examined in fibroblasts using western blot and immunofluorescence. RESULTS: Participants displayed late-childhood-onset spastic paraparesis, global developmental delay, and autism spectrum. TBCB protein levels were reduced in affected fibroblasts. The ALF1 mutant in yeast increased benomyl sensitivity, resembling a loss-of-function phenotype. In Drosophila melanogaster, the homologous mutant led to reduced survival and impaired climbing ability. CONCLUSION: We describe a novel neurodevelopmental disorder with spastic paraparesis and a high carrier rate in the Ashkenazi Jewish population. Our results indicate that TBCB has a vital role in the development of central nervous system and potentially in axonal function in humans.

Humans↗

X-linked adrenoleukodystrophy presenting as neurologically pure familial spastic paraparesis.

The familial spastic paraplegias (FSPs) are heterogeneous neurologic disorders that are known to occur clinically as "pure" or "complicated" forms. Although some of the complicated FSPs have been linked to specific metabolic defects, the pure forms of this disorder remain idiopathic and are considered to be primary system degenerations. We report the case of a 28-year-old man who has evidenced a neurologically pure spastic paraparesis since age twenty-five. Consistent with this diagnosis were the findings of magnetic resonance imaging, which revealed atrophy of the thoracic spinal cord without evidence for white matter disease in the cerebrum, cerebellum, or brainstem. His 32-year-old brother has also evidenced progressive spastic paraparesis since age 30, but his case is confounded by a severe head injury at age 24 that caused a skull fracture and a focal demyelinating lesion of the right frontal lobe. Both patients have had hypogonadism, requiring treatment with testosterone, since age 20. Measurement of plasma levels of very long-chain fatty acids (VLCFA) revealed that both brothers had concentrations diagnostic of adrenoleukodystrophy; their mother had plasma VLCFA levels in the heterozygous range. We conclude that neurologically pure FSP can be an early manifestation of adrenoleukodystrophy and that levels of plasma VLCFA should be determined for all cases of FSP in which X-linked inheritance appears tenable. These considerations may have bearing on the ongoing linkage studies for these disorders.

Adrenoleukodystrophy↗

Urinary dysfunction in tropical spastic paraparesis: preliminary urodynamic survey.

Tropical spastic paraparesis is an infection caused by human T lymphotropic virus type 1 (HTLV-1). We present the urodynamic findings in 4 female and 1 male patient with tropical spastic paraparesis. All patients underwent synchronous video-pressure-flow urodynamics, while 3 also underwent electromyographic examination. Of the 5 patients 4 presented with detrusor external sphincter dyssynergia and 1 had detrusor hyperreflexia with a coordinated sphincter contraction. The preliminary results of this series suggest that patients with tropical spastic paraparesis and voiding symptoms should undergo urodynamic examination so that diagnosis and appropriate therapy may be instituted.

Adult↗

[Two cases of familial spastic paraparesis with amyotrophy of the hands].

Familial spastic paraparesis with amyotrophy of the hands was reported, and its significance in the literature was reviewed. Case 1: An 18 year-old boy, who had been suffering from spastic gait since 12 years old, noticed his hand muscle wasting distributed bilateral first interosseous muscle, thenar and hypothenar muscle at age 17. Case 2: A 20 year-old man, elder brother of case 1, who also walked in spastic manner from his childhood, developed bilateral hand muscle atrophy similar to case 1 at age 19. Clinical features of these two cases could be summarized as familial spastic paraparesis with amyotrophy characterized by hand muscle atrophy, spasticity of lower extremities with hyperreflexia and bilateral positive pathological reflexes and spastic gait. Their younger sister was also examined, who showed only minimal spastic paraparesis. The electrophysiological examination including EMG and SEP suggested the pathological process could involve not only lateral column, but also posterior column and anterior horn. Slight but generalized spinal cord atrophy was demonstrated on metrizamide CT myelography. The muscle biopsy performed from left gastrocnemius in case 2, confirmed neurogenic changes. Although the association of retinal degeneration, cataracta, mental retardation, pes cavus or even generalized amyotrophy has been reported in familial spastic paraparesis, only limited cases are available, dealing with the amyotrophy of limbs. As far the cases with amyotrophy localized to the hands are concerned, it is absolutely rare and only the cases reported by Silver could be regarded as similar or same clinical entities to our cases.

Adolescent↗

Familial spastic paraparesis: a case of a mitochondrial disorder.

Familial spastic paraparesis is characterized by progressive gait disturbance without associated sensory, cerebellar, or cranial nerve deficits. Mitochondrial disorders are associated with heterogenic clinical presentations, though not with spastic paraparesis. A patient with familial spastic paraparesis had deficiencies of respiratory chain enzyme complex I, III, and IV. Progressive spasticity was arrested after treatment with coenzyme Q, carnitine, vitamin C and K. Familial spastic paraparesis may represent a mitochondrial disorder.

Biopsy↗

A novel presenilin 1 mutation (Y154N) in a patient with early onset Alzheimer's disease with spastic paraparesis.

Early onset familial Alzheimer's disease with spastic paraparesis (FAD-SP) has been associated with mutations of the presenilin 1 gene (PSEN1). We report a pedigree of FAD-SP due to a novel missense mutation of PSEN1 (Y154N). The symptoms of the proband were characterized by presenile dementia in her 40s, preceded by spastic paraparesis in her 30s, whereas the mother of the proband presented with spastic paraparesis in her 40s, followed by symptoms of dementia in her mid 60s. The mutation was found only in the proband, and not in a normal family member, normal Japanese control subjects, patients with sporadic Alzheimer's disease or patients with familial spastic paraparesis without dementia. Thus, Y154N is a novel PSEN1 mutation responsible for FAD-SP of Japanese origin.

Alzheimer Disease↗

[Lack of air conditioning and mycotoxin poisoning are basic co-factors in tropical spastic paraparesis].

INTRODUCTION: Chronic idiopathic spastic paraparesis (CHISPA) have been associated to HTLV-I virus infection, and unknown environmental factors have been suggested to play a role in its pathogenesis. METHOD: Based in our previous studies we wanted to know if the lack of refrigerators and the mycotoxin contamination of food might have any relationship with the presence of CHISPA in patients living at southeastern Colombia. RESULTS: Interestingly only four out of 15 patients with CHISPA had some method of refrigeration, in, 14 out of these 15 patients at least a metabolite of Fusarium was detected. CONCLUSIONS: The fact that mycotoxins found in the urine samples of these patients are immunosuppressors and demyelinating allow us to suggest that these toxins could be the most important environmental cofactors leading to the susceptible people to the clinically established disease.

Adult↗

Magnetic resonance investigation of the upper spinal cord in pure and complicated hereditary spastic paraparesis.

Neuropathological studies of hereditary spastic paraparesis (HSP) have described axonal loss involving corticospinal and somatosensory tracts in the spinal cord. This MRI-based study was intended to investigate in vivo diameter alterations of the spinal cord in HSP, including both pure HSP (p-HSP, n = 20) and complicated HSP (c-HSP, n = 10). Standard MRI examinations of the cervical and thoracic spinal cord in HSP patients and a control group (n = 54) were analyzed by standardized spinal cord planimetry. In HSP patients, significant atrophy of the upper spinal cord compared to controls was observed at p < 0.001 both at the cervical and at the thoracic level. Myelon diameters at both levels were also significantly reduced in the two HSP subgroups in an additional comparison with age-matched subgroups of controls each, but p-HSP and c-HSP groups themselves did not differ. Marked atrophy of the upper spinal cord seems to be associated with HSP, assumedly due to the central-distal axonopathy. However, the differences between p-HSP and c-HSP could not be visualized by structural MRI at spinal cord level.

Adult↗

Hereditary spastic paraparesis and psychosis.

Hereditary spastic paraparesis (HSP) is characterized by progressive spasticity and weakness of the legs with or without additional abnormalities. Reports of psychiatric disorders in patients with HSP are limited to mood disturbances rather than to psychosis. We had noted significant psychotic illness in several patients recruited to a survey of HSP in Ireland and therefore set about examining the frequency and nature of psychosis in our patients with HSP. Cases with HSP and psychotic illness were identified from a nationwide epidemiological and clinical study. Psychiatric case notes were reviewed and Operational Diagnostic Criteria Checklist (OPCRIT) applied. Six patients from four families with HSP had evidence of psychosis in addition to paraparesis. OPCRIT diagnoses were 'narrow schizophrenia' (n = 2), 'broad schizophrenia' (n = 2) and 'schizo-affective/manic disorder' (n = 2). Patients were from families with Kjellin's syndrome and SPG4-HSP but not other kindreds and psychosis was not evident in family members without HSP. We found a higher than expected rate of psychosis in the Irish HSP population. Two groups of HSP patients may have increased risk of developing psychosis: those with Kjellin's syndrome and those with SPG4-HSP.

Adenosine Triphosphatases↗