12 research outputs found
COVID-19 Epidemic Peer Support and Crisis Intervention Via Social Media
This article is made available for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.This article describes a peer support project developed and carried out by a group of experienced mental health professionals, organized to offer peer psychological support from overseas to healthcare professionals on the frontline of the COVID-19 outbreak in Wuhan, China. This pandemic extremely challenged the existing health care systems and caused severe mental distress to frontline healthcare workers. The authors describe the infrastructure of the team and a novel model of peer support and crisis intervention that utilized a popular social media application on smartphone. Such a model for intervention that can be used elsewhere in the face of current global pandemic, or future disaster response
QTL Mapping for Grain Zinc and Iron Concentrations in Bread Wheat
Deficiency of micronutrient elements, such as zinc (Zn) and iron (Fe), is called “hidden hunger,” and bio-fortification is the most effective way to overcome the problem. In this study, a high-density Affymetrix 50K single-nucleotide polymorphism (SNP) array was used to map quantitative trait loci (QTL) for grain Zn (GZn) and grain Fe (GFe) concentrations in 254 recombinant inbred lines (RILs) from a cross Jingdong 8/Bainong AK58 in nine environments. There was a wide range of variation in GZn and GFe concentrations among the RILs, with the largest effect contributed by the line × environment interaction, followed by line and environmental effects. The broad sense heritabilities of GZn and GFe were 0.36 ± 0.03 and 0.39 ± 0.03, respectively. Seven QTL for GZn on chromosomes 1DS, 2AS, 3BS, 4DS, 6AS, 6DL, and 7BL accounted for 2.2–25.1% of the phenotypic variances, and four QTL for GFe on chromosomes 3BL, 4DS, 6AS, and 7BL explained 2.3–30.4% of the phenotypic variances. QTL on chromosomes 4DS, 6AS, and 7BL might have pleiotropic effects on both GZn and GFe that were validated on a germplasm panel. Closely linked SNP markers were converted to high-throughput KASP markers, providing valuable tools for selection of improved Zn and Fe bio-fortification in breeding
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GxcM-Fbp17/RacC-WASP signaling regulates polarized cortex assembly in migrating cells via Arp2/3
The actin-rich cortex plays a fundamental role in many cellular processes. Its architecture and molecular composition vary across cell types and physiological states. The full complement of actin assembly factors driving cortex formation and how their activities are spatiotemporally regulated remain to be fully elucidated. Using Dictyostelium as a model for polarized and rapidly migrating cells, we show that GxcM, a RhoGEF localized specifically in the rear of migrating cells, functions together with F-BAR protein Fbp17, a small GTPase RacC, and the actin nucleation-promoting factor WASP to coordinately promote Arp2/3 complex-mediated cortical actin assembly. Overactivation of this signaling cascade leads to excessive actin polymerization in the rear cortex, whereas its disruption causes defects in cortical integrity and function. Therefore, apart from its well-defined role in the formation of the protrusions at the cell front, the Arp2/3 complex-based actin carries out a previously unappreciated function in building the rear cortical subcompartment in rapidly migrating cells
Ecosystem service research in protected areas: A systematic review of the literature on current practices and future prospects
Protected areas (PAs) are globally important environmental management tools against the effects of human activities, as they support the conservation of marine biodiversity, habitats, ecosystems and the processes within them, as well as resources in a broad sense. However, the application of Ecosystem Services (ESs) research in the environmental management of PAs has not been elucidated and it still has obvious shortcomings. Here, we present the first systematic review of studies that have assessed the application of ES research in PAs, evaluated the beneficial evidence of using ES for PA management, and identified research gaps to be addressed for future work. The majority of the 84 studies examined were conducted in Europe (44.44%) and Asia (30.77%), and they primarily examined cultural and provisioning ESs. Most case studies focused on methodological design and lacked an understanding of the spatial and temporal evolution patterns of ESs and of the interaction between ESs and management decisions in PAs. Future studies of PAs should (1) identify the main ESs provided, (2) improve ESs assessment methods and data acquisition capabilities, and (3) assess how pressures from outside the boundaries of PAs affect their ability to maintain biodiversity and ESs in the long term
Application of the Mannich reaction in the structural modification of natural products
AbstractThe Mannich reaction is commonly used to introduce N atoms into compound molecules and is thus widely applied in drug synthesis. The Mannich reaction accounts for a certain proportion of structural modifications of natural products. The introduction of Mannich bases can significantly improve the activity, hydrophilicity, and medicinal properties of compounds; therefore, the Mannich reaction is widely used for the structural modification of natural products. In this paper, the application of the Mannich reaction to the structural modification of natural products is reviewed, providing a method for the structural modification of natural products
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COVID-19 Epidemic Peer Support and Crisis Intervention Via Social Media
This article describes a peer support project developed and carried out by a group of experienced mental health professionals, organized to offer peer psychological support from overseas to healthcare professionals on the frontline of the COVID-19 outbreak in Wuhan, China. This pandemic extremely challenged the existing health care systems and caused severe mental distress to frontline healthcare workers. The authors describe the infrastructure of the team and a novel model of peer support and crisis intervention that utilized a popular social media application on smartphone. Such a model for intervention that can be used elsewhere in the face of current global pandemic, or future disaster response
Recommended from our members
GxcM-Fbp17/RacC-WASP signaling regulates polarized cortex assembly in migrating cells via Arp2/3
The actin-rich cortex plays a fundamental role in many cellular processes. Its architecture and molecular composition vary across cell types and physiological states. The full complement of actin assembly factors driving cortex formation and how their activities are spatiotemporally regulated remain to be fully elucidated. Using Dictyostelium as a model for polarized and rapidly migrating cells, we show that GxcM, a RhoGEF localized specifically in the rear of migrating cells, functions together with F-BAR protein Fbp17, a small GTPase RacC, and the actin nucleation-promoting factor WASP to coordinately promote Arp2/3 complex-mediated cortical actin assembly. Overactivation of this signaling cascade leads to excessive actin polymerization in the rear cortex, whereas its disruption causes defects in cortical integrity and function. Therefore, apart from its well-defined role in the formation of the protrusions at the cell front, the Arp2/3 complex-based actin carries out a previously unappreciated function in building the rear cortical subcompartment in rapidly migrating cells
Temporal Proteomic and Lipidomic Profiles of Cerulein-Induced Acute Pancreatitis Reveal Novel Insights for Metabolic Alterations in the Disease Pathogenesis
The pathophysiological mechanisms of acute pancreatitis
(AP) are
complex and have remained a mystery to date, but metabolism is gradually
recognized as an important driver of AP onset and development. We
used a cerulein-induced AP mouse model to conduct liquid chromatography–mass
spectrometry (LC–MS/MS)-based time-course proteomics and lipidomics
in order to better understand the underlying metabolic alterations
linked with AP. Results showed that a series of significant changes
in proteins over time with a boost in expression were enriched in
lipase activity, lipoprotein, and lipids absorption and transport
regulation. Furthermore, 16 proteins associated with lipid metabolism
and signaling pathways together with the whole lipid species changing
profile led to the vital identification of changing law in glycerides,
phosphoglycerides, and free fatty acids. In addition to lipid metabolism
and regulation-associated proteins, several digestive enzymes and
adaptive anti-trypsin, stress response, and energy metabolism-related
proteins showed an increment in abundance. Notably, central carbon
and branched chain amino acid metabolism were enhanced during 0–24
h from the first cerulein stimulation. Taken together, this integrated
proteomics and lipidomics revealed a novel metabolic insight into
metabolites transforming rules that might be relevant to their function
and drug targets investigation. (Created with Biorender.com.
Temporal Proteomic and Lipidomic Profiles of Cerulein-Induced Acute Pancreatitis Reveal Novel Insights for Metabolic Alterations in the Disease Pathogenesis
The pathophysiological mechanisms of acute pancreatitis
(AP) are
complex and have remained a mystery to date, but metabolism is gradually
recognized as an important driver of AP onset and development. We
used a cerulein-induced AP mouse model to conduct liquid chromatography–mass
spectrometry (LC–MS/MS)-based time-course proteomics and lipidomics
in order to better understand the underlying metabolic alterations
linked with AP. Results showed that a series of significant changes
in proteins over time with a boost in expression were enriched in
lipase activity, lipoprotein, and lipids absorption and transport
regulation. Furthermore, 16 proteins associated with lipid metabolism
and signaling pathways together with the whole lipid species changing
profile led to the vital identification of changing law in glycerides,
phosphoglycerides, and free fatty acids. In addition to lipid metabolism
and regulation-associated proteins, several digestive enzymes and
adaptive anti-trypsin, stress response, and energy metabolism-related
proteins showed an increment in abundance. Notably, central carbon
and branched chain amino acid metabolism were enhanced during 0–24
h from the first cerulein stimulation. Taken together, this integrated
proteomics and lipidomics revealed a novel metabolic insight into
metabolites transforming rules that might be relevant to their function
and drug targets investigation. (Created with Biorender.com.