BACKGROUND:Investigating the causes of stillbirth is crucial for both parents and healthcare providers as it helps explain why the baby died, guides clinical care in future pregnancies, and aids in developing strategies to prevent stillbirth. The usefulness or utility of investigations for stillbirth is poorly defined and unclear. As a result, protocols for investigating the causes of stillbirth are currently based on clinical consensus and fail to prioritise investigative approaches that are most effective at determining a cause of death. OBJECTIVES:The objectives of this scoping review were to identify the available evidence, key characteristics, and knowledge gaps regarding the utility of stillbirth investigations. SEARCH STRATEGY:An a priori protocol was implemented and included a systematic search in MEDLINE, CINAHL, EMBASE, Scopus, and Cochrane from inception until 28 May 2024. SELECTION CRITERIA:Studies examining stillbirth investigations, yield, and value were included. DATA COLLECTION AND ANALYSIS:Data were collected using a purpose-built data extraction tool and an analysis was undertaken. RESULTS:57 potentially eligible studies were identified, and 34 studies (with 11,410 stillbirths) were included. Three studies examined clinical utility using a comprehensive testing protocol. Definition of utility or value of investigations varied across the studies, classification system for cause of death and investigation protocols varied. Placental pathology was reported as the most useful investigation in 65%-96% of cases, identified a cause of death in 61-71% of cases and impacting the medical management in 36% of cases (13 studies, 5,169 stillbirths). Autopsy can identify the cause of death in 36-77% of cases and provided new information in 17-26% of cases (17 studies, 4,336 stillbirths). Genetic analysis was useful in 29% of cases (seven studies, 1,886 stillbirths). One study (512 stillbirths) examined the value of investigation by presenting clinical scenario. CONCLUSIONS:This review indicates that Investigation protocols for stillbirth should include placental pathology, autopsy, and genetic testing. Future studies should address the value of tests by presenting clinical scenarios, use of a consistent definition of stillbirth, classification system and measurement of investigation value.
Extranodal extension (ENE) increases the risk of recurrence and death in head and neck squamous cell carcinoma (HNSCC) patients and is an indication for treatment escalation. Histopathology forms the mainstay of diagnosing ENE. There is substantial variation in the diagnosis of ENE and related terminology. Harmonising the diagnostic criteria for ENE was identified as a priority by the Head and Neck Consensus Language for Ease of Reproducibility (HN CLEAR) Steering Committee and its global stakeholders. An international working group including 16 head and neck pathologists from eight countries across five continents evaluated whole slide images of haematoxylin and eosin-stained sections depicting potential diagnostic problems through nine virtual meetings to develop consensus guidelines. ENE should be diagnosed only when viable carcinoma extends through the primary lymph node (LN) capsule and directly interacts with the extranodal host environment with or without desmoplastic stromal response. Identifying the original LN capsule and reconstruction of its contour can assist in the detection and assessment of ENE. The term matting is recommended for confluence of two or more nodes due to histologically identifiable tumour extending from one LN to another. Matting constitutes major form of ENE. On the other hand, the terms fusion/adhesion/confluence/conglomeration and other synonyms of adhesion should be limited to confluence due to fibrosis or inflammation without histologically identifiable tumour between involved lymph nodes. Tumour extension along narrow needle tracks or spillage of cyst contents following an FNA do not constitute ENE. The consensus recommendations encompassing the definition of ENE, macroscopic and histologic examination of lymph nodes (LN) and practical guidelines for handling challenging cases are provided.
BACKGROUND:Stillbirth continues to pose a significant public health challenge. Autopsy and placental assessments are recognized as the gold standard for stillbirth investigation. The utility of these procedures can vary based on the quality of the examination. The aim of this study is to determine the quality of placenta pathology reporting in Australia in the context of a stillbirth. MATERIALS AND METHODS:Placenta pathology reports from stillbirths were reviewed from 18 maternity hospital from 2013 to 2018. The Khong tool was used to produce a placenta quality score (PQS), by a blinded panel of assessors to the cause of death. Outcome measures were the number of reports achieving the minimal acceptable score (MAS) of 75% or a poor score (PS) of 50% of the PQS. RESULTS:560 placental pathology reports of which 494 were singleton and 66 were twin placentas. 282 (50%) achieved the MAS score. Macroscopic items were recorded well and microscopic items recorded poorly. CONCLUSIONS:The standard of placenta pathology reporting can be improved in Australia. The use of templates or checklists for both macroscopic descriptions and histological reporting is recommended to ensure all key components are described.
Context The obesity epidemic parallels an increasing type 1 diabetes incidence, such that westernized diets, containing high fat, sugar, and/or protein, through inducing nutrient-induced islet beta-cell stress, have been proposed as contributing factors. The broad-spectrum neutral amino acid transporter (B0AT1), encoded by Slc6a19, is the major neutral amino acids transporter in intestine and kidney. B0AT1 deficiency in C567Bl/6J mice causes aminoaciduria, lowers insulinemia, and improves glucose tolerance.Objective We investigated the effects of standard rodent chow (chow), high-fat high-sucrose (HFHS), and high-fat high-protein (HFHP) diets, in addition to B0AT1 deficiency, on the diabetes incidence of male nonobese diabetic (NOD/ShiLtJArc (NOD)) mice.Methods Male NOD.Slc6a19+/+ and NOD.Slc6a19-/- mice were fed chow, HFHS and HFHP diets from 6 to 24 weeks of age. A separate cohort of male NOD mice were fed the three diets from 6-30 weeks of age. Body weight and fed-state blood glucose and plasma insulin were monitored, and urinary amino-acid profiles, intraperitoneal glucose tolerance, diabetes incidence, pancreatic islet number, insulitis scores and beta-cell mass were measured.Results The incidence of diabetes and severe glucose intolerance was 3.8% in HFHS-fed, 25.0% in HFHP-fed, and 14.7% in chow-fed mice, with higher pancreatic islet number and lower insulitis scores in HFHS-fed mice. B0AT1 deficiency had no effect on diabetes incidence, but curtailed HFHS-induced excessive weight gain, adipose tissue expansion, and hyperinsulinemia. In HFHP-fed mice, B0AT1 deficiency significantly increased pancreatic beta-cell clusters and small islets. Male NOD mice that did not develop autoimmune diabetes were resistant to diet-induced hyperglycemia.Conclusion Dietary composition does, but B0AT1 deficiency does not, affect autoimmune diabetes incidence in male NOD mice. B0AT1 deficiency, however, reduces diet-induced metabolic dysfunction and in HFHP-fed mice increases pancreatic beta-cell clusters and small islets.
Almost half of patients with triple-negative breast cancer develop distant metastases, heralding unfavorable outcomes. Here, we provide novel insights into the contribution of the PI3K-mTOR pathway to the triple-negative breast cancer phenotypes that promote growth, migration, metastasis, and therapy resistance. Specifically, we demonstrate that dual targeting of PI3K and mTOR but not PI3K alone inhibits cancer cell proliferation and migration in vitro. Dual PI3K-mTOR inhibition with paxalisib not only promotes a favorable mesenchymal-to-epithelial phenotype but also inhibits signatures associated with metastasis-initiating cells, including the highly aggressive cancer stem cell phenotype, persister cancer cell phenotype (p65, FOXQ1, NRF2, and NNMT), and a cancer drug resistance signature (ABCB5, SNAIL, and ALDH1). In vivo, paxalisib overcomes immunotherapy resistance to reduce primary tumor burden, circulating tumor cells, and direct and indirect indicators of metastasis with a favorable toxicity profile. Gene expression and spatial analyses show that paxalisib profoundly affects the immune microenvironment in tumors, reducing adaptive immune phenotypes associated with immunotherapy resistance (exhausted T cells and regulatory T cells) and protumor innate immune populations such as mast cells. PI3K-mTOR blockade acts upstream of EZH2, impacting both the classic repressive catalytic p85β-EZH2-H27ME3 and active EZH2-NF-κB pathways. Our data suggest that dual targeting of the PI3K-mTOR pathway disrupts both the catalytic and noncatalytic axes of EZH2 to inhibit metastasis and enhance cancer immune visibility, potentially increasing the utility of immunotherapy in resistant individuals.
Background: High dietary iron has been linked to an increased type 2 diabetes risk. We have previously shown that intrauterine growth restriction (IUGR) and feeding a Western diet (WD) to male Sprague-Dawley rats independently, as well as together, cause pancreatic islet inflammation, fibrosis, and hemosiderosis.Objectives: To investigate whether iron has a role in the pathogenesis of this inflammatory islet injury caused by IUGR and WD intake.Methods: Male Sprague-Dawley offspring of bilateral uterine artery ligated (IUGR) and sham-operated (Sham) dams, fostered to non -operated dams, were fed a WD [45% sucrose, 19.4% protein and 23% fat (w/w)] containing low iron (LI, 20 mg/kg) or high iron (HI, 500 mg/kg) from weaning. Four groups were studied: Sham-LI, Sham-HI, IUGR-LI, and IUGR-HI. Serial measurements of rat body weight, blood glucose, lipids and insulin, an intraperitoneal glucose tolerance test (age 13 wk), and histological analysis of pancreas and liver (age 14 wk) were recorded. The effects of iron, IUGR, and their interaction, on these measurements have been analyzed.Results: WD with HI compared with LI caused an 11% greater weight gain by age 14 wk (P < 0.001), impaired glucose tolerance [AUC for glucose (G-AUC) 17% higher; P < 0.001), acute pancreatitis (17/18, HI; 6/17, LI; P < 0.001), pancreas-associated fat necrosis and saponification (7/18, HI; 0/17 LI; P < 0.01), and a trend to islet fibrotic injury (7/18, HI; 1/17 LI; P 1/4 0.051). Although pancreatic and hepatic steatosis was evident in almost all WD-fed rats, pancreatic and hepatic iron accumulation was prevalent only in HI-fed rats (P < 0.0001 for both), being only mild in the livers. IUGR, independent of dietary iron, also caused impairment in glucose tolerance (G-AUC: 17% higher; P < 0.05).Conclusions: A postweaning WD containing HI, independent of IUGR, causes acute pancreatitis and islet injury in Sprague-Dawley rats suggesting a role of dietary iron in the development of steatopancreatitis.
Adverse environmental exposures in utero and early childhood are known to programme long-term health. Climate change, by contributing to severe heatwaves, wildfires, and other natural disasters, is plausibly associated with adverse pregnancy outcomes and an increase in the future burden of chronic diseases in both mothers and their babies. In this Personal View, we highlight the limitations of existing evidence, specifically on the effects of severe heatwave and wildfire events, and compounding syndemic events such as the COVID-19 pandemic, on the short-term and long-term physical and mental health of pregnant women and their babies, taking into account the interactions with individual and community vulnerabilities. We highlight a need for an international, interdisciplinary collaborative effort to systematically study the effects of severe climate-related environmental crises on maternal and child health. This will enable informed changes to public health policy and clinical practice necessary to safeguard the health and wellbeing of current and future generations.
Background Cancer cells favour glycolysis and lactate production over mitochondrial metabolism despite the presence of oxygen (the Warburg effect). Increased pyruvate dehydrogenase kinase (PDK) activity contributes to this glycolytic phenotype. Dichloroacetate (DCA) is a PDK inhibitor with anti-cancer potential that inhibits all four isoforms of PDK but with differing potencies, thus expression of different isoforms may determine sensitivity to DCA. Methods The association of sensitivity to growth inhibition by DCA, on-target effects of DCA and expression of all four isoforms of PDKs in a range of epithelial cancer cell lines was investigated in vitro and in vivo . Results DCA inhibited growth of cancer cells in vivo and in vitro, reduced pyruvate dehydrogenase phosphorylation and reduced lactate production. The magnitude of the effect of DCA on growth was variable and correlated with the PDK expression profiles of the cells, with low expression of PDK3 (highest K i for DCA) conferring the highest sensitivity towards DCA. PDK2 siRNA-knockdown inhibited growth to a similar extent to DCA, whilst PDK3 knockdown significantly increased sensitivity to DCA. Conclusion The PDK expression profile is a potential biomarker for sensitivity to DCA, and should be considered when translating PDK inhibitors into clinical use.
Background: To avoid patient harm, laboratories require protocols to resolve identification and specimen handling errors.This case describes how correct diagnoses were conveyed to two patients after their
BackgroundUp to 20% of all stillbirths and 45% of term stillbirths are currently classified as unexplained. Many of these stillbirths do not undergo currently recommended investigations. This may leave questions unanswered and not identify stillbirths with a recurrence risk in subsequent pregnancies. AimsTo validate a new tool (Stillbirth Investigation Utility Tool) to identify the clinical utility of investigations in stillbirth and the inter-rater agreement on cause of stillbirth using the Perinatal Society of Australia and New Zealand-Perinatal Death Classification (PSANZ-PDC). Materials and methodsThirty-four stillbirths were randomly selected for inclusion, each assessed independently by five blinded assessors. The investigations were grouped into three categories: clinical and laboratory; placental pathology; and autopsy examination. The cause of death was assigned at the end of each group. Outcome measures were clinical utility of investigations measured by assessor rated usefulness and inter-rater agreement on the assigned cause of death. ResultsComprehensive maternal history, maternal full blood count, maternal blood group and screen and placenta histopathology were useful in all cases. Clinical photographs were not performed and should have been performed in 50% of cases. The inter-rater agreement on cause of death assigned after all investigation results was 0.93 (95% CI 0.87-1.0). ConclusionsThe new Stillbirth Investigation Utility Tool showed very good agreement in assigning the cause of death using PSANZ-PDC. Four investigations were useful in all cases. Minor refinements will be made based on feedback to enhance usability for wider implementation in research studies to assess the yield of investigations in stillbirths.
The maternal hormonal and metabolic milieu adapt in normal pregnancy to provide the developing fetus with an optimal nutrient supply that is delivered via the placenta. This optimal nutrient supply, however, is disturbed in all types of diabetes and obesity, resulting in greater mixed nutrient supply to the fetus. Our research suggests that the placenta is limited in preventing excess glucose transfer to the fetus. In fact, once the fetus becomes hyperinsulinaemic in the early phases of macrosomia, it can accelerate glucose transfer across the placenta through a glucose steal phenomenon. The placental trophoblast layer does seem to be able buffer the developing fetus from an excess fatty acid supply. The morphological changes in the placenta appear determined by the severity of hyperglycaemia and the level of insulin. Hyperinsulinaemia from both the mother (early in pregnancy) and the fetus (later in pregnancy) of obese/diabetic mothers increase placental growth and secondarily fetal growth. Severe hyperglycaemia early in pregnancy, however, can disrupt normal placentation increasing the risk for a small placenta, gestational hypertensive disorders, and intrauterine growth restriction. Our research therefore shows both defender and offender roles of the placenta in response to the common metabolic disorders of maternal obesity and diabetes.
Background: The compounding effects of climate change catastrophes such as bushfires and pandemics impose significant burden on individuals, societies, and their economies. The enduring effects of such syndemics on mental health remain poorly understood, particularly for at-risk populations (e.g., pregnant women and newborns). The aim of this study was to investigate the impact of direct and indirect exposure to the 2019/20 Australian Capital Territory and South-Eastern New South Wales bushfires followed by COVID-19 on the mental health and wellbeing of pregnant women and mothers with newborn babies. Methods: All women who were pregnant, had given birth, or were within three months of conceiving during the 2019/2020 bushfires, lived within the catchment area, and provided consent were invited to participate. Those who consented were asked to complete three online surveys. Mental health was assessed with the DASS-21 and the WHO-5. Bushfire, smoke, and COVID-19 exposures were assessed by self-report. Cross-sectional associations between exposures and mental health measures were tested with hierarchical regression models. Results: Of the women who participated, and had minimum data (n = 919), most (>75%) reported at least one acute bushfire exposure and 63% reported severe smoke exposure. Compared to Australian norms, participants had higher depression (+12%), anxiety (+35%), and stress (+43%) scores. Women with greater exposure to bushfires/smoke but not COVID-19 had poorer scores on all mental health measures. Conclusions: These findings provide novel evidence that the mental health of pregnant women and mothers of newborn babies is vulnerable to major climate catastrophes such as bushfires.
Protein kinase C (PKC)-θ is a serine/threonine kinase with both cytoplasmic and nuclear functions. Nuclear chromatin-associated PKC-θ (nPKC-θ) is increasingly recognized to be pathogenic in cancer, whereas its cytoplasmic signaling is restricted to normal T-cell function. Here we show that nPKC-θ is enriched in circulating tumor cells (CTCs) in patients with triple-negative breast cancer (TNBC) brain metastases and immunotherapy-resistant metastatic melanoma and is associated with poor survival in immunotherapy-resistant disease. To target nPKC-θ, we designed a novel PKC-θ peptide inhibitor (nPKC-θi2) that selectively inhibits nPKC-θ nuclear translocation but not PKC-θ signaling in healthy T cells. Targeting nPKC-θ reduced mesenchymal cancer stem cell signatures in immunotherapy-resistant CTCs and TNBC xenografts. PKC-θ was also enriched in the nuclei of CD8+ T cells isolated from stage IV immunotherapy-resistant metastatic cancer patients. We show for the first time that nPKC-θ complexes with ZEB1, a key repressive transcription factor in epithelial-to-mesenchymal transition (EMT), in immunotherapy-resistant dysfunctional PD1+/CD8+ T cells. nPKC-θi2 inhibited the ZEB1/PKC-θ repressive complex to induce cytokine production in CD8+ T cells isolated from patients with immunotherapy-resistant disease. These data establish for the first time that nPKC-θ mediates immunotherapy resistance via its activity in CTCs and dysfunctional CD8+ T cells. Disrupting nPKC-θ but retaining its cytoplasmic function may offer a means to target metastases in combination with chemotherapy or immunotherapy.
Hypoxic ischemic encephalopathy (HIE) is associated with acute kidney injury (AKI) in neonates with birth asphyxia. This study aimed to utilize urinary biomarkers to characterize AKI in an established neonatal rat model of HIE. Day 7 Sprague-Dawley rat pups underwent HIE using the Rice-Vannucci model (unilateral carotid ligation followed by 120 mins of 8% oxygen). Controls included no surgery and sham surgery. Weights and urine for biomarkers (NGAL, osteopontin, KIM-1, albumin) were collected the day prior, daily for 3days post-intervention, and at sacrifice day 14. Kidneys and brains were processed for histology. HIE pups displayed histological evidence of kidney injury including damage to the proximal tubules, consistent with resolving acute tubular necrosis, and had significantly elevated urinary levels of NGAL and albumin compared to sham or controls 1-day post-insult that elevated for 3days. KIM-1 significantly increased for 2days post-HIE. HIE did not significantly alter osteopon tin levels. Seven days post-start of experiment, controls were 81.2% above starting weight compared to 52.1% in HIE pups. NGAL and albumin levels inversely correlated with body weight following HIE injury. The AKI produced by the Rice-Vannucci HIE model is detectable by urinary biomarkers, which can be used for future studies of treatments to reduce kidney injury.
Background: International guidelines state any post-surgical margin wider than tumour on ink (ToI) following breast conserving surgery (BCS) for invasive cancer is acceptable, based on analyses of margin width and local recurrence (LR). We aimed to determine if margin involvement is associated with distant recurrence (DR) and to determine a minimum margin to minimize DR and LR.
Chemotherapy is a mainstay of colorectal cancer treatment, and often involves a combination drug regime. CpG island methylator phenotype (CIMP)-positive tumors are potentially more responsive to the topoisomerase-inhibitor irinotecan. The mechanistic basis of the increased sensitivity of CIMP cancers to irinotecan is poorly understood. Mutated in Colorectal Cancer (MCC) is emerging as a multifunctional tumor suppressor gene in colorectal and liver cancers, and has been implicated in drug responsiveness. Here, we found that CIMP tumors undergo MCC loss almost exclusively via promoter hypermethylation rather than copy number variation or mutations. A subset of cancers display hypomethylation which is also associated with low MCC expression, particularly in rectal cancer, where CIMP is rare. MCC knockdown or deletion was found to sensitize cells to SN38 (the active metabolite of irinotecan) or the PARP-inhibitor Olaparib. A synergistic effect on cell death was evident when these drugs were used concurrently. The improved SN38/irinotecan efficacy was accompanied by the down-regulation of DNA repair genes. Thus, differential methylation of MCC is potentially a valuable biomarker to identify colorectal cancers suitable for irinotecan therapy, possibly in combination with PARP inhibitors.
There is a paucity of literature on the normative levels of plasma renin concentration (PRC) and serum aldosterone (SA) in premature neonates. This study aims to provide normative data on PRC and SA levels in preterm neonates in the first 2 weeks after birth and explore associations with maternal, perinatal, or postnatal factors. Neonates born at 26- to 34-week gestation were recruited from two neonatal intensive care units in Canada and Australia. The direct renin assay PRC and SA were analyzed on day 1 and days 14–21 after birth to compare across categorical variables and to produce normative values. A total of 262 subjects were enrolled from the Canadian (29%) and Australian (71%) sites. The mean gestational age was 30 weeks, with a mean birth weight of 1457 g. The normative values of PRC and SA for neonates born between 26 + 0 and 29 + 6 weeks and 30 + 0 and 34 + 0 weeks of gestation were produced for day 1 and day 14–21 after birth. Both PRC and SA increased from day 1 to day 14–21. The more premature neonates reached a higher PRC on days 14–21 after birth but exhibited lower SA levels on day 1 after birth. When comparing gender, birth weight, and maternal risk factor categories, no statistical differences in PRC or SA were found. A small but significant decrease in PRC, but not SA, was noted for neonates with placental pathology. This study produced normative values of PRA and SA in clinically stable preterm neonates that can be referenced for use in clinical practice.
Many materials have been engineered and commercialized as hemostatic agents. However, there is still a gap in the availability of hemostats that offer biocompatibility and biodegradability in combination with effective hemostatic properties. Cellulose nanofibers are investigated as hemostatic materials with most studies focusing on oxidized cellulose-derived hemostats. The recent studies demonstrate that by optimizing the morphological properties of nonoxidized cellulose nanofibers (CNFs) enhanced hemostasis is achieved. Herein, the hemostatic and wound-healing properties of CNFs with optimized morphology using two forms, gel, and sponge is investigated. In vitro thromboelastometry studies demonstrate that CNFs reduce clotting time by 68% (±SE 2%) and 88% (±SE 5%) in gel and sponge forms, respectively. In an in vivo murine liver injury model, CNFs significantly reduce blood loss by 38% (±SE 10%). The pH-neutral CNFs do not damage red blood cells, nor do they impede the proliferation of fibroblast or endothelial cells. Subcutaneously-implanted CNFs show a foreign body reaction resolving with the degradation of CNFs on histological examination and there is no scarring in the skin after 8 weeks. Demonstrating superior hemostatic performance in a variety of forms, as well as biocompatibility and biodegradability, CNFs hold significant potential for use in surgical and first-aid environments.