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Beyond bone: the emerging role of osteoclasts in immune regulation, leukemia development and following myeloablative therapy

Osteoclasts are important regulators of bone remodeling, with an established role in maintaining skeletal homeostasis. The emergence of osteoimmunology has identified osteoclasts as key players in the immune system. In particular, osteoclasts can initiate bi-directional crosstalk mechanisms with hematopoietic stem cells and various immune cells, such as T cells, B cells and NK cells, to influence hematopoiesis and inflammatory response.

A primary cell model of the very preterm epithelium reveals barrier defects at 1 year of age

Limited evidence suggests that airway epithelial structure and function is disrupted in very preterm infants; however, the epithelial morphology and physiology has not been well characterised following discharge from neonatal intensive care. This study aimed to characterise the nasal airway epithelium from 1-year-old survivors of very preterm birth.

Health literacy scale for English-speaking children: translation and validation of the HLS-Child-Q15-EN

To translate and validate the HLS-Child-Q15, a relatively short questionnaire for assessing health literacy in children originally validated in German, into English to make it accessible to a large population of English-speaking children.

The role of childhood illness in shaping relationships through to young adulthood

To explore how those with a physical illness in childhood are managing in relationships across childhood to young adulthood.

Cardiometabolic Biomarkers and Prediction of Kidney Disease Progression: The eGFR Cohort Study

Traditional markers modestly predict chronic kidney disease progression in Aboriginal and Torres Strait Islander people. Therefore, we assessed associations of cardiometabolic and inflammatory clinical biomarkers with kidney disease progression among Aboriginal and Torres Strait Islander people with and without diabetes.

Histone methyltransferase PRDM9 promotes survival of drug-tolerant persister cells in glioblastoma

Chemotherapy often kills a large fraction of cancer cells but leaves behind a small population of drug-tolerant persister cells. These persister cells survive drug treatments through reversible, non-genetic mechanisms and cause tumour recurrence upon cessation of therapy. Here, we report a drug tolerance mechanism regulated by the germ-cell-specific H3K4 methyltransferase PRDM9. 

Prevalence of type 2 diabetes among global Indigenous adult populations: a systematic review

Despite evidence documenting high prevalence of type 2 diabetes among several Indigenous populations, a comprehensive systematic review of type 2 diabetes among global Indigenous Peoples has not been recently conducted. Our aim was to report region-, time-, age- and sex-specific type 2 diabetes prevalence among Indigenous adult populations globally.

Conservation of gene expression patterns between the amniotic and nasal epithelium at birth

Amniotic epithelial cells are fetal-derived stem cells, capable of differentiating into all three germ layers, including mature epithelial cell populations. Here, we hypothesised that the amniotic epithelium might serve as a surrogate tissue source for investigating transcriptional profiles in the respiratory epithelium of newborns.

Depression and Anxiety Among Young Gender- and Sexuality-Diverse Adolescents

Gender- and sexuality-diverse (GSD) youths are at increased risk of depression and anxiety compared with their cisgender and heterosexual counterparts. Little is known about the risks for younger GSD adolescents (<15 years).

Sex-specific placental transcriptome alterations in late-onset preeclampsia reveal male-biased immune and metabolic dysregulation

Preeclampsia is a hypertensive disorder of pregnancy with major maternal and fetal consequences. While the molecular basis of early-onset preeclampsia is well studied, the mechanisms underlying late-onset disease-and how they differ by fetal sex-remain poorly understood. Placental transcriptomic profiling at term can reveal persistent molecular alterations reflecting cumulative disease processes.