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Biomedical subjects

José L Molinuevo

Publications and source records attributed to José L Molinuevo.

8 recordsLinked to original sources

[Genetics of prevalent neurodegenerative disorders].

A large number of mutations and polymorphisms associated with neurodegenerative disorders have been described during the last years. These findings have been helpful to improve our knowledge about the pathogenesis of these disorders. In this review we describe the genetic alterations and variants that cause or predispose to develop several neurodegenerative disorders, such as Huntington's disease, Alzheimer's disease, frontotemporal dementia, Parkinson's disease and other parkinsonisms. We also comment on the possible pathogenic mechanism of these mutations, clinical features and the usefulness of this information for the diagnosis and management of these disorders.

Alzheimer Disease↗

Pure akinesia: an unusual phenotype of Hallervorden-Spatz syndrome.

Two siblings were seen in our outpatient movement disorders clinic with an indolent clinical picture of a pure akinesia syndrome. Magnetic resonance showed the typical "eye of the tiger" sign, and genetic screening disclosed that both siblings were compound heterozygotes with two missense mutations in the PANK2 gene 734A-->G and 1172T-->C. This case report highlights the phenotypic diversity of Hallervorden Spatz syndrome and the need for further investigation of adult-onset pure akinesia syndromes.

Adult↗

Regulatory issues.

Any medical decision generates consequences for the patient and for society. Medical practice should, therefore, be performed under the guidance of the following ethical principles: beneficence, nonmaleficence, autonomy, justice, integrity, dignity, and vulnerability. The overarching objective of clinical research is to develop knowledge to improve health, and the subjects who participate are the means to securing such knowledge. Clinical research, as part of medical practice, should be ruled by the same ethical principles.

Aged↗

Frequency of mutations in the presenilin and amyloid precursor protein genes in early-onset Alzheimer disease in Spain.

BACKGROUND: The relative contribution of mutations in the presenilin (PSEN) and amyloid precursor protein genes to autosomal dominant and other early-onset Alzheimer disease (AD) cases is not well established. OBJECTIVES: To clarify the respective contribution of the amyloid precursor protein and PSEN mutations to autosomal dominant AD and to determine its contribution to sporadic and familial nonautosomal dominant early-onset AD and familial late-onset AD in a referral-based Spanish population. SUBJECTS AND METHODS: Ninety-four patients with AD (60 with early-onset AD and 34 with late-onset AD) from 82 independent families were studied. According to the family history, patients were classified into the following groups: autosomal dominant, familial nonautosomal dominant, and sporadic. Mutational analysis of the coding regions of the amyloid precursor protein, presenilin 1, and presenilin 2 was performed in all patients. Apolipoprotein E was also genotyped. RESULTS: Of the 60 early-onset cases, 44 from 36 families had a positive family history (11 with autosomal dominant AD and 25 with familial nonautosomal dominant AD) and 16 were sporadic. The frequency of mutations was 54.6% (6/11) among the autosomal dominant group, 6.2% (1/16) among the sporadic group, and 4% (1/25) among the familial nonautosomal dominant AD group. Most PSEN mutations (92%) would have been detected using a cutoff age of 58 years. The apolipoprotein E epsilon4 allele frequency was increased among early-onset AD without PSEN mutations. CONCLUSIONS: More than half of the families with autosomal dominant early-onset AD can be explained by coding mutations in the PSEN genes. In the familial and sporadic early-onset groups mutations are rare. When family history is unavailable, an age of 58 years may be used as a cutoff point for genetic analysis. The increased apolipoprotein E epsilon4 allele in patients without PSEN mutations confirms that it is an important risk factor in the cause of non-PSEN early-onset AD.

Adult↗

Bilateral subthalamic stimulation monotherapy in advanced Parkinson's disease: long-term follow-up of patients.

Bilateral subthalamic nucleus stimulation (STN-DBS) is used to improve parkinsonian symptoms and attenuate levodopa-induced motor complications. In some patients, such clinical improvement allows antiparkinsonian medication (ApMed) withdrawal. We show the clinical outcome at the long-term follow-up of patients with advanced Parkinson's disease (PD) in which STN-DBS was used in monotherapy, and compare the clinical results of patients without medication with those obtained in parkinsonian patients in which ApMed were reduced but could not be totally displaced after surgery. We analyzed clinical outcome of ten patients with PD in which all ApMed was withdrawn after bilateral subthalamic stimulation and 16 parkinsonian patients still taking antiparkinsonian medication after surgery. After 1.5 years, STN-DBS monotherapy produced UPDRS motor scores similar to those observed in the on-drug condition before surgery without the inconvenience of motor fluctuations and dyskinesias. No significant differences were seen in most of clinical outcome measures when comparing patients still taking ApMed with patients in STN-DBS monotherapy but a few patients still taking ApMed presented mild dyskinesias and motor fluctuations and patients with STN-DBS monotherapy did not. STN-DBS is useful in the treatment of advanced PD and in some patients it is possible to maintain this therapy alone in the long term. The therapeutic effect of STN-DBS on motor signs can be equipotent to that of levodopa with the additional benefit of avoiding motor fluctuations and dyskinesias.

Antiparkinson Agents↗

Memantine: an antiglutamatergic option for dementia.

Alzheimer's disease (AD) is the most common form of dementia in occidental countries. Currently approved treatments for AD provide mainly symptomatic benefits without clear evidence of neuroprotection. N-methyl-D-aspartate (NMDA) receptor antagonists have therapeutic potential in several central nervous system disorders, including neuroprotective treatment in chronic neurodegenerative diseases, and symptomatic treatment in other neurologic diseases. Memantine, an NMDA antagonist, has been recently approved for the treatment of advanced AD. Due to its mechanism of action, memantine is considered a neuroprotective drug, whose utility has been demonstrated in preclinical studies. In addition, memantine is a useful symptomatic treatment for AD and vascular dementia. This paper reviews both aspects of memantine as well as some basic mechanisms mediating cognition and glutamatergic neurodegeneration.

Clinical Trials as Topic↗

Memantine: targeting glutamate excitotoxicity in Alzheimer's disease and other dementias.

The management of dementia has changed since the development of new antidementia drugs. The benefits observed in Alzheimer's disease (AD) with selective cholinergic transmission treatments are mainly symptomatic, without clear evidence of neuroprotection. The hypothesis that glutamate-mediated neurotoxicity is involved in the pathogenesis of AD is finding increasingly more acceptance in the scientific community. Glutamate receptors are overactive, and N-methyl-D-aspartate (NMDA) receptor antagonists have therapeutic potential for the treatment of AD and other neurological disorders. Memantine is a noncompetitive NMDA antagonist that is considered a neuroprotective drug. Memantine's capacity has been demonstrated in preclinical studies, and it is considered a useful symptomatic treatment for AD. Memantine has been shown to benefit cognition, function, and global outcome in patients with moderate to severe AD, and it is currently approved by the US Food and Drug Administration (FDA) for the treatment of moderate to severe AD. Recently, memantine has also demonstrated efficacy in the initial stages of AD, although FDA authorization is pending. This review highlights the important pharmacological and clinical aspects of memantine, as well as some basic mechanisms mediating glutamatergic neurodegeneration.

Amino Acid Transport System X-AG↗

Emotional reactions to predictive testing in Alzheimer's disease and other inherited dementias.

This work describes the reasons and emotional responses of healthy descendants after counseling for presenilin mutations in early-onset familial Alzheimer's disease (EOFAD), tau mutations in familial frontotemporal dementia (FTD), and prion mutations in fatal familial insomnia (FFI). A multidisciplinary protocol following Huntington's disease counseling guidelines and a post-test follow-up program were developed to counsel healthy descendants of affected families. The psychological consequences, anxiety levels, and depression status were assessed through validated scales before and after disclosing the information. Nine people from three different families, one with EOFAD, another with FTD, and the other with FFI came for counseling. Their main reason for testing was to initiate early treatment in the future. Disclosing the information decreased anxiety in two carriers, increased it temporarily in one, and had no effect in another. All noncarriers felt relieved. Overall, after a mean of 30 months of follow-up, no negative psychological reactions were observed. All participants positively valued the program. Although preliminary, our observations suggest that predictive testing in EOFAD, FTD, and FFI is safe and may be of benefit when performed with a delicate approach under strict pretest counseling protocols and post-test follow-up programs. The emotional reactions were similar, although the diseases, their phenotype, and mutation characteristics were different.

Adult↗