Tdp-43 Biomarker

A TDP-43 biomarker is a measurable indicator of abnormal TAR DNA-binding protein 43 pathology, which is associated with several neurodegenerative disorders and helps characterize disease biology. In affected neurons, TDP-43 can leave the nucleus and accumulate in the cytoplasm as phosphorylated, ubiquitinated, and fragmented inclusions, disrupting RNA processing and other cellular functions. Researchers assess these changes in brain tissue and are developing fluid-based assays for cerebrospinal fluid and blood to detect disease-related signals. TDP-43 biomarkers may improve diagnosis, distinguish overlapping conditions such as amyotrophic lateral sclerosis and frontotemporal dementia, support patient stratification, and enable monitoring of targeted therapies.

Tdp-43 Biomarker - Related Videos

Research

JoVE Journal - Bioengineering

Novel Atomic Force Microscopy Based Biopanning for Isolation of Morphology Specific Reagents against TDP-43 Variants in Amyotrophic Lateral Sclerosis

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Cited by 17 •

2015

Using atomic force microscopy in combination with biopanning technology we created a negative and positive biopanning system to acquire antibodies against disease-specific protein variants present in any biological material, even at low concentrations. We were successful in obtaining antibodies to TDP-43 protein variants involved in Amyotrophic Lateral Sclerosis.

Measuring Glucose Uptake in Drosophila Models of TDP-43 Proteinopathy

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Cited by 3 •

2021

Glucose uptake is increased in Drosophila motor neurons affected by TAR DNA binding protein (TDP-43) proteinopathy, as indicated by a FRET-based, genetically encoded glucose sensor.

Optogenetic Phase Transition of TDP-43 in Spinal Motor Neurons of Zebrafish Larvae

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2022

We describe a protocol to induce phase transition of TAR DNA-binding protein 43 (TDP-43) by light in the spinal motor neurons using zebrafish as a model.

Research

JoVE Journal - Medicine
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Biomarkers in an Animal Model for Revealing Neural, Hematologic, and Behavioral Correlates of PTSD

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Cited by 29 •

2012

We describe a rat model of post traumatic stress disorder (PTSD) that reveals the persistent alterations in neuroendocrine function and the delayed long-term, exaggerated fear response, characteristic of PTSD patients. The animal model and methods described here are useful for correlating biomarkers in brain nuclei, which are mechanistic but cannot be measured in patients, with biomarkers in peripheral white blood cells, which can.

Perturbing Endothelial Biomechanics via Connexin 43 Structural Disruption

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Cited by 6 •

2019

Here, we present a mechanics-based protocol to disrupt the gap junction connexin 43 and measure the subsequent impact this has on endothelial biomechanics via observation of tractions and intercellular stresses.

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