Cell-to-cell communication mediated by Extracellular Vesicles (EVs) is a novel and emerging area of research, especially during pregnancy, in which placenta derived EVs can facilitate the feto-maternal communication. EVs comprise a heterogeneous group of vesicle sub-populations with diverse physical and biochemical characteristics and originate by specific biogenesis mechanisms. EVs transfer molecular cargo (including proteins, nucleic acids, and lipids) between cells and are critical mediators of cell communication. There is growing interest among researchers to explore into the molecular cargo of EVs and their functions in a physiological and pathological context. For example, inflammatory mediators such as cytokines are shown to be released in EVs and EVs derived from immune cells play key roles in mediating the immune response as well as immunoregulatory pathways. Pregnancy complications such as gestational diabetes mellitus, preeclampsia, intrauterine growth restriction and preterm birth are associated with altered levels of circulating EVs, with differential EV cargo and bioactivity in target cells. This implicates the intriguing roles of EVs in reprogramming the maternal physiology during pregnancy. Moreover, the capacity of EVs to carry bioactive molecules makes them a promising tool for biomarker development and targeted therapies in pregnancy complications. This review summarizes the physiological and pathological roles played by EVs in pregnancy and pregnancy-related disorders and describes the potential of EVs to be translated into clinical applications in the diagnosis and treatment of pregnancy complications.
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http://dx.doi.org/10.1016/j.cytogfr.2023.12.004 | DOI Listing |
Hum Resour Health
January 2025
Health Development Research Department, Capital Institute of Pediatrics, Beijing, 100020, People's Republic of China.
Background: Quantitative methods for estimating the workload of primary healthcare (PHC) workers are essential for improving the performance of PHC institutions. However, measuring the workload of PHC workers is challenging due to the diverse and complex range of services covered by PHC. This study aims to use an equivalent value (EV)-based approach to assess the workload of PHC workers and inform policymakers about the current workload burden in Beijing, China.
View Article and Find Full Text PDFSci Rep
January 2025
Department of Biology, Biotechnical Faculty, University of Ljubljana, Ljubljana, Slovenia.
Aureobasidium melanogenum is a black yeast-like fungus that occurs frequently both in nature and in domestic environments. It is becoming increasingly important as an opportunistic pathogen. Nevertheless, its effect on human cells has not yet been studied.
View Article and Find Full Text PDFAnal Chim Acta
January 2025
School of Medical Technology, Guangdong Medical University, Dongguan, 523808, China; School of Basic Medical Science, Southern Medical University, Guangzhou, 510515, China. Electronic address:
Background: Extracellular Vesicles (EVs), as nano-scale vesicles rich in biological information, hold an indispensable status in the biomedical field. However, due to the intrinsic small size and low abundance of EVs, their effective detection presents significant challenges. Although various EV detection techniques exist, their sensitivity and ease of operation still need enhancement.
View Article and Find Full Text PDFGait Posture
December 2024
School of Health and Exercise Sciences, The University of British Columbia Okanagan, Kelowna, British Columbia, Canada. Electronic address:
Background: To maintain standing balance, vestibular cues are processed and integrated with other sensorimotor signals to produce appropriate motor adjustments. Whole-body vestibular-driven postural responses are context-dependent and transformed based upon head and foot posture. Previous reports indicate the importance of intrinsic foot muscles during standing, but it is unclear how vestibular-driven responses of these muscles are modulated by alterations in stability and head posture.
View Article and Find Full Text PDFBackground: Brain derived Extracellular Vesicles (EVs) was isolated from blood and their containing pthogenic proteins were quantified to develop a biomarker signature for the classification of Tau aggregation in the brain.
Method: Brain derived EVs and their cargo were measured directly in the plasma of patients with AD and determined to be Tau-PET positive (visual read) (n=10) and other age matched healthy controls (n = 22) at one time-point. AD pathogenic proteins bound to EVs were quantified by in-house custom developed immunoassays.
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