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Lang, E. R.

Publications and source records attributed to Lang, E. R..

3 recordsLinked to original sources

Atypical somatosensory adaptation in adults on the autism spectrum: a high-density electrophysiological (EEG) mapping study.

Adaptation to repetitive sensory inputs promotes efficient neural processing by attenuating responses to redundant information and reallocating resources to novel stimuli. Reduced adaptation has been proposed to contribute to atypical sensory reactivity in autism, but the physiological mechanisms underlying tactile adaptation remain poorly understood. Here, we examined short-term adaptation to repetitive vibrotactile stimulation in autistic and neurotypical adults using high-density electrophysiological recordings. Fifty participants (18-44 years; 25 autistic; 25 neurotypical), received sequences of four brief vibrations to the index fingertip while viewing silent videos. Neural responses were analyzed for an early negative deflection (N1, [~]100 milliseconds) indexing basic stimulus recognition, and a later positive deflection (P2, [~]200-300 milliseconds) indexing higher-order contextual and attentional processing. Adaptation was quantified as changes in response magnitude across the four vibrations. The N1 did not differ between groups, showing minimal change across repetitions, indicating comparable processing of basic tactile features. In contrast, the P2 was significantly larger overall in the autistic group. Across both groups, responses to the first vibration in each sequence were greater than responses to subsequent vibrations, reflecting re-sensitization following the inter-sequence interval. Autistic participants exhibited consistently amplified P2 responses to initial vibrations, suggesting heightened re-sensitization rather than impaired within-sequence adaptation. Associations between neural responses and clinical measures of autistic traits and tactile sensitivity were modest. These findings indicate that autistic adults show amplified higher-order neural responses to tactile input alongside preserved short-term adaptation. Heightened re-sensitization to repeated touch may reflect shortened refractory periods, contributing to sensory hyper-reactivity and increased perceptual load.

neuroscience↗

Longitudinal Exploration of Auditory Sensory-Perceptual Processing in CLN3 Disease (Juvenile Neuronal Ceroid Lipofuscinosis (Batten disease)): A High-Density Auditory Evoked Potential (AEP) Study.

BackgroundThere is currently limited information about sensory and perceptual abilities across the progression of CLN3 disease (Juvenile Neuronal Ceroid Lipofuscinosis; Batten disease), a recessively inherited lysosomal storage disorder and a leading cause of childhood neurodegeneration. Clinical symptoms include vision loss, motor impairments, and cognitive challenges, making it difficult to accurately assess neurocognitive and perceptual abilities. Thus, there is a critical need to identify objective biomarkers that can be used to inform disease progression and track treatment response in this population. MethodsThis exploratory study investigates longitudinal changes in auditory sensory perceptual processing in a small sample of individuals with genetically confirmed CLN3 disease (N=4; 3 male) compared to a cross-sectional sample of 60 neurotypical (NT) controls using high-density electroencephalography (EEG). We utilized a duration mismatch negativity (MMN) paradigm, identical to what has been used in our previous cross-sectional study. We examined the auditory evoked potentials (AEPs) of the standard tones across three different stimulus onset asynchrony conditions and examined the N1 and P2 components of the AEP. ResultsWe found age related differences in the amplitudes of the N1 and P2 components in individuals with CLN3 disease relative to NT controls. These amplitude differences were most notable in CLN3 disease when participants were presented with standard tones that had the slowest presentation rate. Specifically, N1 and P2 amplitudes were more negative than NT controls in childhood and adolescence and as CLN3 disease participants aged, the amplitude of the AEPs was greater than controls. Further, a more positive N1 amplitude during the longest stimulus presentation condition was associated with both reduced verbal intelligence and working memory abilities in CLN3 disease participants. ConclusionsOur preliminary findings parallel recently published work in a mouse model of CLN3 disease that showed both sex- and age-dependent disruptions in central auditory processing. Taken together, we demonstrate the utility of auditory EEG measures as a sensitive, objective and translational measure in CLN3 disease that may serve as a potential outcome measure useful in tracking disease progression. Continued work is needed in humans focused on sex-based differences and longitudinal changes of auditory processing in CLN3 disease.

neuroscience↗

Dysregulated Repeat Element Viral-like Immune Response in Hepatocellular Carcinoma

PurposeHepatocellular carcinoma (HCC) is a lethal malignancy driven by complex interactions between cancer cells, immune cells, and additional stromal cells in the tumor microenvironment (TME). The LINE1 retrotransposon is a ubiquitous repeat RNA whose de-repression leads to significant cancer cell-intrinsic and TME changes that promote aggressive tumor characteristics. We leveraged single cell spatial transcriptomic profiling to characterize the relationship between LINE1 and differences in the heterogeneous HCC TME. Experimental DesignWe applied our profiling methodology to a cohort of 23 tissue specimens collected from patients who had undergone liver resection or transplantation and validated it in a partially-overlapping similar cohort of 39 specimens using RNA in-situ hybridization (RNA-ISH). ResultsWe found that LINE1-high tumors and LINE1-high single HCC cells exhibited a de-differentiated, stem-like, and inflammatory phenotype. Furthermore, within individual tumors, LINE1 high cancer cells associated spatially with one another and excluded the larger, organized immune cell conglomerates seen in LINE1 low tumors. Finally, we found that LINE1 RNA expression correlated with worse overall survival in the larger expanded retrospective cohort. ConclusionsOur study is the first to show a clearly disorganized immune TME in HCC driven by LINE1 expression, and this observation correlated with poor survival for patients whose tumors expressed large amounts of the LINE1 repeat RNA. These results provide further evidence of how effective anti-tumor immune responses contribute to cures after definitive surgery and may lead to novel biomarkers or drug targets in HCC. TRANSLATIONAL RELEVANCEThe viral-like LINE1 retrotransposon is known to influence tumor cell state and the immune response in a variety of cancer. Here, we have used single cell spatial transcriptomic profiling to resolve repeat and coding gene RNA expression in a cohort of hepatocellular carcinoma (HCC) patients. LINE1 RNA expression in HCC tumor cells was correlated with an undifferentiated stem-like cancer state and a disorganized, sparse immune infiltrate. Using in situ hybridization on an expanded validation cohort, we noted significantly worsened survival in the LINE1 high group. Altogether, LINE1 repeat RNA is a tumor intrinsic biomarker of more aggressive features that can be used for risk stratification and a potential biomarker for response to immunotherapies that merits further investigation.

cancer biology↗