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Balint, L.

Publications and source records attributed to Balint, L..

2 recordsLinked to original sources

An innovative approach in identifying a network of priority wetland sites in the East Asian-Australasian Flyway for a new sustainable management investment programme

The East Asian-Australasian Flyway (EAAF) is widely recognised to be the most threatened of the eight flyways in the world, with wetlands rapidly lost due to land cover change, unsustainable use, and the wider impacts of climate change. The recently established Regional Flyway Initiative aims to bring a network of priority wetlands in the EAAF under improved protection, management, and restoration in 10 Asian countries, while mobilising resources for sustainable agriculture, aquaculture, ecotourism, and other livelihoods for local communities. A major step in the development of this initiative is the identification of priority wetland sites through the application of international criteria, based on modern waterbird count data collated from wetland sites across Asia. Through existing analyses and stakeholder consultations, we short-listed 400 internationally important wetlands as candidate sites for further assessment. Count data of EAAF waterbird species was then assessed against international criteria aligned with the Convention on Wetlands (Ramsar Convention), the EAAF Partnerships Flyway Site Network and Important Bird Areas and Biodiversity for each site to iteratively identify a subset of priority sites, drawing on newly available species population thresholds. Each site was scored and ranked using a metric (Prioritisation Criterion1) calculated from the proportions of every occurring EAAF species against published population thresholds. We identified a total of 147 wetland sites of high conservation priority across the 10 countries, thereby representing the full suite of wetland landscapes and habitats in Asia, both freshwater and coastal, all critical sites for the conservation of migratory waterbirds in the flyway. At least 34 threatened species, including significant proportions of their global populations are represented in this network of 147 sites. To ensure that conservation opportunities are maximised for species and ecosystem services, there is a need to ensure that selected sites and landscapes are reconciled with the conservation and development priorities of each country, and to evaluate priority sites for their ecosystem services.

ecology↗

Lymphatic activation of ACKR3 signaling regulates lymphatic response after ischemic heart injury.

2.BackgroundIschemic heart disease is a prevalent cause of death and disability worldwide. Recent studies reported a rapid expansion of the cardiac lymphatic network upon ischemic heart injury and proposed that cardiac lymphatics may attenuate tissue edema and inflammatory mechanisms after ischemic heart injury. Nevertheless, the mechanisms through which hypoxic conditions affect cardiac lymphangiogenesis and function remain unclear. Here, we aimed to characterize the role of the adrenomedullin decoy receptor atypical chemokine receptor 3 (ACKR3) in the lymphatic response following ischemic heart injury. MethodsSpatial assessment of ACKR3 signaling in the heart after ischemic heart injury was conducted using ACKR3-TangoGFP reporter mice. Roles of ACKR3 after ischemic heart injury were characterized in Ackr3{Delta}Lyve1 mice and in cultured human lymphatic endothelial cells (LECs) exposed to hypoxia. ResultsUsing the novel ACKR3-Tango-GFP reporter mice, we detected activation of ACKR3 signaling in cardiac lymphatics adjacent to the site of ischemic injury of left anterior descending artery (LAD) ligation. Ackr3{Delta}Lyve1 mice exhibited better survival and were protected from the formation of acute tissue edema after ischemic cardiac injury. Ackr3{Delta}Lyve1 mice exhibited a denser cardiac lymphatic network after LAD ligation, especially in the injured tissues. Transcriptomic analysis revealed changes in cardiac lymphatic gene expression patterns that have been associated with extracellular matrix remodeling and immune activation. We also found that ACKR3 plays a critical role in the regulating continuous cell-cell junction dynamics in LECs under hypoxic conditions. ConclusionsLymphatic expression of ACKR3 governs numerous processes following ischemic heart injury, including the lymphangiogenic response, edema protection and overall survival. These results expand our understanding of how the heart failure biomarker adrenomedullin, regulated by lymphatic ACKR3, may exert its cardioprotective roles after ischemic cardiac injury.

physiology↗