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Palmer, E. R.

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

2 recordsLinked to original sources

Shared genetic basis for brain structure, insulin resistance and inflammation in schizophrenia: a colocalization study

Schizophrenia (SZ) is accompanied by structural brain alterations and elevated cardiometabolic risk, potentially linked through shared immune-metabolic mechanisms. To test for shared genetic underpinnings, we performed multi-trait colocalization across SZ, structural MRI measures (bilateral cortical thickness, grey matter volume), insulin resistance markers (TG:HDL-C ratio, fasting insulin adjusted for BMI), and IL-6 signalling traits (IL-6, IL-6R, IL-6ST) at 185 genome-wide significant loci. Colocalization was detected at 53 loci, including a robust cluster at the SLC39A8 missense variant rs13107325 linking SZ with cortical structure, peripheral IL-6ST, and TG:HDL-C (PPcoloc = 0.73-0.99). A secondary, lower-confidence colocalization signal at FGF21 (PPcoloc = 0.6) further implicated metabolic- behavioural coupling as a convergent pathway. Downstream analyses of rs13107325 pQTLs indicated enrichment in synaptic development and cardiometabolic pathways. Together, these findings identify rs13107325 as a shared causal variant bridging neurodevelopment, immunity, and metabolism, and highlight metal-ion transport and FGF21 signalling as potential therapeutic entry points to address the intertwined psychiatric and metabolic burden of SZ.

neuroscience↗

Synthesis and in vitro evaluation shows disquaramide compounds are a promising class of anti-leishmanial drugs

An increasing number of treatment failures with current pharmaceutics, as well as a lack of a vaccine, demonstrates the need to develop new treatment options for leishmaniasis. Herein, we describe the synthesis and in vitro analysis of 24 disquaramide compounds targeting the Leishmania major parasite. Of the compounds that were evaluated, six of them (13, 19, 20, 22, 24, and 26) were capable of significantly decreasing the number of parasites by up to 42% compared to the control by day four. This demonstrates that disquaramides either impair parasite replication or have leishmancidal effects. Additionally, none of the disquaramide compounds tested displayed host cell cytotoxicity. These experiments provide evidence that disquaramides have the potential to be effective anti-leishmanial therapeutics.

microbiology↗