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Schweiger, T.

Publications and source records attributed to Schweiger, T..

2 recordsLinked to original sources

Amygdala metabolic activity on FDG PET is associated with survival, response to immune checkpoint inhibition, and tumor immune signaling in non-small cell lung cancer

Amygdala metabolic activity (AmygAc) measured by [18F]FDG PET has been associated with chronic psychological stress and adverse clinical outcomes, but its relationship with antitumor immunity and treatment response remains incompletely understood. We investigated AmygAc as a host-derived imaging biomarker in non-small cell lung cancer (NSCLC) and examined its association with survival, response to immune checkpoint inhibition (ICI), and the tumor immune microenvironment. Methods: In this multicenter retrospective study, baseline [18F]FDG PET scans from 256 treatment-naive patients with NSCLC were analyzed to quantify AmygAc. Overall survival was assessed in the full cohort, and treatment response was evaluated in 79 patients who subsequently received neoadjuvant ICI therapy. AmygAc was integrated with clinical and tumor-derived imaging parameters. To investigate its biological correlates, tumor tissue from a selected subcohort was analyzed using multiplex immunofluorescence and spatial transcriptomics.

cancer biology↗

Transcriptional profiling sheds light on the fibrotic aspects of idiopathic subglottic tracheal stenosis

1Idiopathic subglottic stenosis (ISGS) is a rare fibrotic disease of the upper trachea with an unknown pathomechanism. It typically affects adult Caucasian female patients, leading to severe airway constrictions caused by progressive scar formation and inflammation with clinical symptoms of dyspnoea, stridor and potential changes to the voice. Endoscopic treatment frequently leads to recurrence, whereas surgical resection and reconstruction provides excellent long-term functional outcome. This study aimed to identify so far unrecognized pathologic aspects of ISGS using single cell RNA sequencing. Our scRNAseq analysis uncovered the cellular composition of the subglottic scar tissue, including the presence of a pathologic, profibrotic fibroblast subtype and the presence of Schwann cells in a profibrotic state. In addition, a pathology-associated increase of plasma cells was identified. Using extended bioinformatics analyses, we decoded pathology-associated changes of factors of the extracellular matrix. Our data identified ongoing fibrotic processes in ISGS and provide novel insights on the contribution of fibroblasts, Schwann cells and plasma cells to the pathogenesis of ISGS. This knowledge could impact the development of novel approaches for diagnosis and therapy of ISGS.

developmental biology↗