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Biomedical subjects

Jennifer M Farmer

Publications and source records attributed to Jennifer M Farmer.

8 recordsLinked to original sources

Biochemical and pathological characterization of frontotemporal dementia due to a Leu266Val mutation in microtubule-associated protein tau in an African American individual.

Frontotemporal dementia (FTD) is a clinically heterogeneous disorder characterized by alterations in language and/or behavior, often in association with Parkinsonism or motor neuron disease. A familial form of FTD is associated with mutations in the microtubule-associated protein tau (MAPT) gene. We report here on the clinical, neuroimaging, cerebral spinal fluid biomarker, genetic, biochemical and postmortem neuropathological analyses of a case of familial FTD with a Leu266Val MAPT mutation which results in a very early age of onset and a rapid course of disease. This is also the first reported case of any MAPT mutation in an individual of African American ethnicity.

Adult↗

Performance measures in Friedreich ataxia: potential utility as clinical outcome tools.

Although several neuroprotective agents have been proposed as potential therapies in Friedreich ataxia (FA), clinical trials of their efficacy are limited by a lack of sensitive outcome measures. We assessed whether performance measures (nine-hole peg test, the timed 25-foot walk, and low-contrast letter acuity) provide valid measures of disease status in FA. Scores for each measure correlated significantly with neurologic disability and disease duration. Rank correlations between scores for performance measures were moderate in magnitude, suggesting that the each test captures separate yet related dimensions of neurological function in FA. Linear regression models demonstrated that scores from the nine-hole peg test and the timed 25-foot walk (after reciprocal transformation) were predicted by age and triplet repeat length in patients with FA. In addition, comparison of the temporal courses of change for each performance measure demonstrated that scores from the timed 25-foot walk change early in the course of FA, nine-hole peg test scores change slowly over the full course of the disorder, and low-contrast letter acuity scores change in the later stages of the disease. Thus, a composite scale derived from these performance measures may provide the best overall measure for assessing disease progression throughout the illness.

Adult↗

Frontotemporal dementia: genetics and genetic counseling dilemmas.

BACKGROUND: Frontotemporal dementia (FTD) is a neurodegenerative disease with early symptoms of personality change and/or language disorder. Approximately 40% of individuals with FTD have a family history of dementia; however, in our experience, less than 10% have clear autosomal dominant inheritance. Mutations in the microtubule-associated protein tau (MAPT) gene have been reported in up to 50% of hereditary cases, but are unusual except in families with more than 3 individuals with FTD. The genetics of FTD is complicated by clinical heterogeneity, variable expression, phenocopies, misdiagnoses, and lost family histories. The objective of this paper is to enable physicians to recognize hereditary patterns and genetic concerns of FTD families and to understand genetic counseling strategies. REVIEW SUMMARY: The complexity of FTD genetics and genetic counseling are illustrated using 4 case histories. Case 1 demonstrates the difficulty obtaining a reliable FTD family history. Case 2 illustrates how psychiatric phenocopies can make family linkage studies difficult. The lack of genotype and phenotype correlation and issues of predictive genetic testing within FTD families are the subject of case 3, and case 4 shows how normal aging language difficulties and cognitive changes can be misinterpreted when a family history of dementia is present. CONCLUSIONS: Physicians seeing patients with possible FTD should be aware of the risk of a genetic etiology. A 3-generation family history should be obtained with attention to neurologic, psychiatric, and behavioral symptoms. Variable expression and phenocopies are confounding factors when assessing a possible genetic etiology. Referral of the patient and family for genetic counseling is recommended.

Dementia↗

Familial frontotemporal dementia: from gene discovery to clinical molecular diagnostics.

Genetic testing is important for diagnosis and prediction of many diseases. The development of a clinical genetic test can be rapid for common disorders, but for rare genetic disorders this process can take years, if it occurs at all. We review the path from gene discovery to development of a clinical genetic test, using frontotemporal dementia with parkinsonism linked to chromosome 17 (FTDP-17) as an example of a complex, rare genetic condition. An Institutional Review Board-approved multidisciplinary research program was developed to identify patients with familial frontotemporal dementia. Genetic counseling is provided and DNA obtained to identify mutations associated with FTDP-17. In some cases it may be appropriate for individuals to be given the opportunity to learn information from the research study to prevent unnecessary diagnostic studies or the utilization of inappropriate therapies, and to make predictive testing possible. Mutations identified in a research laboratory must be confirmed in a clinical laboratory to be used clinically. To facilitate the development of clinical genetic testing for a rare disorder, it is useful for a research laboratory to partner with a clinical laboratory. Most clinical molecular assays are developed in research laboratories and must be properly validated. We conclude that the transition of genetic testing for rare diseases from the research laboratory to the clinical laboratory requires a validation process that maintains the quality-control elements necessary for genetic testing but is flexible enough to permit testing to be developed for the benefit of patients and families.

Chromosomes, Human, Pair 17↗

Friedreich ataxia: effects of genetic understanding on clinical evaluation and therapy.

The discovery of the genetic cause of Friedreich ataxia has significantly affected our understanding of the disorder at both the clinical and basic science levels. Friedreich ataxia results from a deficiency of functional frataxin, a protein that appears to be involved in mitochondrial iron homeostasis. This leads to iron accumulation and mitochondrial abnormalities with consequent oxidant damage. The clinical spectrum of Friedreich ataxia has also expanded with the recognition of broader phenotypic features, including the absence of classical Friedreich ataxia features, later age at onset, and spasticity instead of ataxia. Although no proven therapy is yet available, antioxidants are a potential method for therapeutic intervention.

Animals↗

Near infrared muscle spectroscopy in patients with Friedreich's ataxia.

Friedreich's ataxia is a progressive neurodegenerative disorder of the afferent cerebellar pathways associated with mitochondrial dysfunction at the cellular level. We have used noninvasive continuous near infrared muscle spectroscopy (NIRS) to investigate the delivery and utilization of oxygen in response to exercise in this disorder. Patients performed an incremental treadmill walking protocol in which levels of muscle deoxygenation or oxygenation were continuously measured in the medial calf muscle. The kinetics of recovery from exercise-induced deoxygenation, called the half-time of recovery (t(1/2)) were determined. The t(1/2) was prolonged in patients with Friedreich's ataxia compared with controls, and the degree of prolongation correlated with the length of the shorter GAA repeat, a genetic measure that correlates with the age of onset of disease. The t(1/2) also correlated inversely with patient age and with the maximum treadmill speed attained. Several patients also displayed features consistent with inadequate oxygen utilization by muscle. These results suggest that NIRS may be an effective tool for monitoring the biochemical and functional features of Friedreich's ataxia in parallel.

Adolescent↗

Contrast letter acuity as a measure of visual dysfunction in patients with Friedreich ataxia.

BACKGROUND: Friedreich ataxia is a progressive neurodegenerative disorder affecting afferent cerebellar pathways and other neuronal systems, including afferent visual pathways. A systematic clinical outcome measure for examination of visual dysfunction in Friedreich ataxia has not been identified. We sought to identify a simple, reliable method for assessing clinical and subclinical visual dysfunction in patients with Friedreich ataxia. METHODS: Contrast letter acuity was measured binocularly in Friedreich ataxia patients and age-matched visually asymptomatic volunteers (control group) using the Low-contrast Sloan Letter Charts at three different low-contrast levels (5.0%, 1.25%, and 0.6%). Binocular high-contrast visual acuity (100% level) was also determined for each participant. RESULTS: Despite equal median binocular high-contrast visual acuities between the two groups, patients with Friedreich ataxia had significantly lower (worse) Low-contrast Sloan Letter Chart scores compared with controls, particularly at the lowest contrast levels (1.25% and 0.6%). Ambulation status significantly predicted Low-contrast Sloan Letter Charts scores in linear regression models accounting for patient age, suggesting a potential complementary role for Low-contrast Sloan Letter Chart testing in the assessment of disease status as well as visual function in Friedreich ataxia. CONCLUSIONS: This study demonstrates that Low-contrast Sloan Letter Chart testing may provide a useful clinical outcome measure for Friedreich ataxia and other neuro-ophthalmologic disorders.

Adolescent↗