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Mittermeier, S.

Publications and source records attributed to Mittermeier, S..

2 recordsLinked to original sources

A self without a "we": Individuals with Borderline personality disorder show signatures of disrupted social basis functions

A capacity to navigate social relationships is fundamental to human wellbeing. However, the cognitive mechanisms underlying social dysfunction in psychiatric conditions remain poorly understood. Using an abstract multi-person decision making task that isolates the relational structure of multi-person interactions, we compare non-clinical controls (NCC, n=51) and individuals with BPD symptoms (n=46), a condition characterized by disturbances in self-other boundaries and chronic feelings of loneliness. Generally, we found a pattern of less self-centered decision-making in BPD. More specifically, individuals with BPD showed signatures of perceiving opponents as a coherent group ("them"), but a markedly reduced tendency to represent themselves as part of their own team ("us"). This pattern of results points towards a disruption of a primary social basis function. Our laboratory findings extend to experienced loneliness in daily life as measured by ecological momentary assessments (EMA). Together, this suggests that BPD is characterized by an unbalanced representation of social structure, with an attenuated "we" alongside a heightened "they".

neuroscience↗

Bovine AAV - a promising vector for pulmonary gene therapy

Efficient systemic delivery to the lung remains a major barrier for adeno-associated virus (AAV)-mediated pulmonary gene therapy, particularly when pre-existing immunity limits the use of conventional capsids. Here, we evaluated Bovine AAV, a phylogenetically divergent capsid, as candidate vector for lung-directed gene transfer. In adult C57BL/6J mice, intravenous delivery of Bovine AAV resulted in robust and preferential lung transduction comparable to AAV4, with predominant targeting of alveolar type I pneumocytes and pulmonary endothelial cells. In primary human lung-resident cells, Bovine AAV was particularly effective in microvascular endothelial cells, a target poorly transduced by AAV4 in vitro. Bovine AAV demonstrated scalable production with yield, purification performance, capsid quality, and genome integrity comparable to AAV9. In sera from healthy adults from the United States and Switzerland, Bovine AAV showed intermediate neutralization frequencies, lower than AAV2 and AAV4 but higher than AAV5 and AAV9. Of relevance, Bovine AAV maintained in vivo transduction efficiency in mice previously immunized with a pool of human and non-human primate-derived AAV capsids, including AAV4. Together, these results position Bovine AAV as a promising lung-tropic and immune-distinct vector for pulmonary gene therapy, with particular relevance for applications requiring systemic delivery in the presence of pre-existing immunity to conventional serotypes.

molecular biology↗