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  • thema EDItEUR::P Mathematics and Science::PS Biology, life sciences  (404)
  • thema EDItEUR::N History and Archaeology::NH History
  • MDPI - Multidisciplinary Digital Publishing Institute  (612)
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  • 1
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-06
    Description: In 2015, the United Nations decided to establish the goal of achieving “zero hunger” in the world by 2030 through “outcome targets” such as eliminating hunger and improving access to food, ending all forms of malnutrition, promoting sustainable and resilient agriculture, and maintaining genetic diversity in food production. As a result of this decision, strategies are under way in different countries around the world in the form of political, academic, development, and non-governmental organization projects and programs. Five years later, these strategies have certainly generated results that need to be documented and analyzed so as to answer the following questions: what are the progress and success stories in terms of policies, innovations, technologies, and approaches to reach the zero hunger goal? What are the constraints and mitigation strategies? Are we really in a phase of transition towards the zero hunger goal? What new directions do we need to consider to achieve this goal, particularly in the context of COVID-19 pandemic, which affects all sectors of development around the world? Transitioning to Zero Hunger is part of MDPI's new Open Access book series Transitioning to Sustainability. With this series, MDPI pursues environmentally and socially relevant research which contributes to efforts toward a sustainable world. Transitioning to Sustainability aims to add to the conversation about regional and global sustainable development according to the 17 SDGs. The book series is intended to reach beyond disciplinary, even academic boundaries.
    Keywords: hunger; food; Sustainability; nutrition; technology; malnutrition; agriculture ; thema EDItEUR::N History and Archaeology::NH History ; thema EDItEUR::J Society and Social Sciences::JB Society and culture: general::JBF Social and ethical issues
    Language: English
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  • 2
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: DNA methylation, a modification found in most species, regulates chromatin functions in conjunction with other epigenome modifications, such as histone post-translational modifications and non-coding RNAs. In mammals, DNA methylation has an essential role in development by orchestrating the generation and maintenance of the phenotypic diversity of human cell types. Recent years have brought spectacular advances in our understanding of the mechanism, function and regulation of DNA methyltransferases through their interaction with other epigenome modifications, chromatin factors and post-translational modifications, which are described in this Special Issue of Genes. Manuscripts are specifically addressing describing the targeting and regulation of DNA methyltransferases by interacting factors and their roles in cellular differentiation and the development of diseases. Prof. Dr. Albert Jeltsch and Prof. Dr. Humaira Gowher, Guest Editors
    Keywords: QH301-705.5 ; Q1-390 ; DNMTs ; n/a ; histone modification ; TBRS ; DNA methyltransferases ; autoinhibition ; epigenetics ; DNMT ; cell identity ; embryogenesis ; dwarfism ; DNMT3B ; germ cells ; HSAN1E ; USP7 ; DNMT3A ; DNA methyltransferase ; gene expression ; DNMT1 ; de novo DNA methylation ; DNA methyltransferase structure ; UHRF1 ; DNA methyltransferase mechanism ; allosteric regulation ; rare diseases ; DNA Methylation ; maintenance DNA methylation ; DNA methylation ; ADCA-DN ; PCC/PGL ; ubiquitination ; TETs ; DNA methyltransferase function ; molecular epigenetics ; DNA methyltransferase regulation ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
    Language: English
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  • 3
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: Recombinant viruses expressing reporter fluorescent or bioluminescent proteins are an excellent option to evaluate the dynamics of viral infection progression in both cultured cells and/or validated animal models of viral infection. Reporter proteins are valid surrogates for direct detection of infected cells in vitro and in vivo, without the use of secondary methodologies to identify infected cells. By eliminating the need of secondary labeling, tractable replicating-competent, reporter-expressing viruses provide an ideal approach to monitor viral infections in real time, representing a significant advance in the study of the biology of viruses, to evaluate vaccination approaches, and to identify new therapeutics against viral infections using high-throughput screening settings. In this Special Issue “Replication-Competent Reporter-Expressing Viruses” we review replication-competent, reporter-expressing viruses belonging to different families, methods of characterization, and applications to facilitate the study of in vitro and in vivo viral infections. We also seek to discuss disadvantages and limitations associated with these reporter-expressing viruses. Finally, we provide rational future perspectives and additional avenues for the development, characterization, and applications of recombinant, reporter-expressing, competent viruses.
    Keywords: QH301-705.5 ; luminescence ; virus rescue approaches ; fluorescence ; Recombinant viruses ; plasmid-based reverse genetics ; reporter genes ; replicating-competent reporter-expressing viruses ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
    Language: English
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  • 4
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: Several epidemiological studies have demonstrated that oxidative stress is associated with a number of health disorders, including cardiovascular malfunction, certain types of cancer, diabetes mellitus, many other auto-immune diseases, and even ageing. The body possesses multiple mechanisms to counteract oxidative stress, which employ antioxidant compounds that are either naturally generated in situ (endogenous antioxidants) or externally supplied through food (exogenous antioxidants). These antioxidants are able to counteract oxidative stress, thanks to their ability to neutralize excess free radicals and protect the cellular lipids, proteins, and DNA from molecular damage. Exogenous antioxidants from the diet are of increasing interest because of their beneficial role in maintaining good health and in preventing chronic diseases. Indeed, a diet rich in dietary antioxidants, especially from fruits and vegetables, has been correlated with a successful prevention and lower incidence of several degenerative pathologies, including obesity, diabetes, cardiovascular diseases, and cancer. This Special Issue of Nutrients welcomes the submission of manuscripts, either describing original research or reviewing scientific literature, examining the role of diets rich in antioxidant compounds in the prevention of chronic diseases and the characteristics of the antioxidants included in such diets.
    Keywords: QH301-705.5 ; antioxidants ; chronic diseases ; dietary supplementation ; human health ; prevention ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
    Language: English
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  • 5
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: Diet and nutrition are key tools in promoting health and reducing the comorbidities of chronic diseases. There are thousands of biomolecules in fruits, vegetables, wild and medicinal plants, other land and marine organisms, which can exert functional and health-promoting effects through bioactivity beyond nutrition. From the enormous amount of knowledge generated from different natural bioactive ingredients present in foods, we are aiming to bring together experts working in different fields of food, nutrition, and health, in order to work on this Special Issue, with a comprehensive collection of papers to gain insight into the most promising bioactive compounds in different foods, to improve the preservation of bioactivity during the food processing chain, and to provide scientific evidence of the efficacy of key bioactives in foods in preventing disease and improving health and wellbeing.
    Keywords: QH301-705.5 ; TX341-641 ; Health ; Bioactives ; Nutrition and Metabolism ; Nutrients ; Bioavailability ; Food ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
    Language: English
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  • 6
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: “Personalised Nutrition” represents any initiative that attempts to provide tailor-made healthy eating advice based on the nutritional needs of each individual, as these are dictated by the individual’s behaviour, phenotype and/or genotype, and their interactions. This Special Issue of Nutrients is dedicated to the development, implementation and assessment of the effectiveness of evidence-based “Personalised Nutrition” strategies. In this regard, a selection of reviews and original research manuscripts will bring together the latest evidence on how lifestyle habits, physiology, nutraceuticals, gut microbiome and genetics can be integrated into nutritional solutions, specific to the needs of each individual, for maintaining health and preventing diseases.
    Keywords: QH301-705.5 ; Q1-390 ; TX341-641 ; n/a ; gene-based ; taste ; postprandial leptin ; children ; personalised ; obesity ; macronutrient composition ; gastrointestinal symptoms ; postprandial adiponectin ; formula diet ; avoidance diet ; weight loss ; weight ; omega-3 fatty acids ; microbiome ; genotype ; nutrition ; direct-to-consumer test ; intervention ; clinical nutrition ; postprandial total ghrelin ; dietary intervention ; microbiota ; low-carbohydrate diet ; insulin ; FADS polymorphism ; adults ; genetics ; diet ; healthcare professionals ; HbA1c ; PROX1 gene ; phenotype ; high-fat meal ; glucose ; personalised nutrition ; irritable bowel syndrome ; dietary recommendation ; postprandial metabolic fingerprinting ; type 2 diabetes mellitus risk ; high-carbohydrate meal ; health ; ultra-high performance liquid chromatography ; food allergy ; normo-carbohydrate meal ; nutrimetabolomics ; type 2 diabetes ; nutrigenetics ; gene–diet interaction ; personalized nutrition ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
    Language: English
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  • 7
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: The Hippo pathway is a highly dynamic cellular signaling nexus that plays central roles in multiple cell types and regulates regeneration, metabolism, and development. The Hippo pathway integrates mechanotransduction, cell polarity, inflammation, and numerous types of paracrine signaling. If not tightly regulated, dysregulated Hippo pathway signaling drives the onset and progression of a range of diseases, including fibrosis and cancer. The molecular understanding of the Hippo pathway is rapidly evolving. This Special Issue contains ten articles contributed by established and up-and-coming Hippo pathway experts that, as a whole, provides an up-to-date overview of how dysregulated Hippo pathway activity is a common driver of specific diseases. The articles have a particular focus on the underlying molecular and cellular mechanisms that cause the Hippo pathway to go awry, and especially how this drives disease. The articles analyze disease-specific as well as common themes, which provides valuable insights into the fundamental molecular mechanisms in the dysfunctioning Hippo pathway, and thereby offer practical insights into potential future therapeutic intervention strategies.
    Keywords: QH301-705.5 ; Q1-390 ; STRIPAK ; skin cancer ; n/a ; Lats2 ; transcription ; myofibroblast ; epigenetic ; Hippo ; cancer immunity ; TAZ ; Taz ; TAZ (transcriptional co-activator with PDZ-binding motif) ; adaptive immunity ; fibroblasts ; innate immunity ; LATS ; MST (mammalian STE20-like protein kinase) ; phosphorylation ; stem cells ; wound healing ; signal transduction ; angiogenesis ; LATS1/2 ; EMT ; protein-protein interactions ; structure biology ; Hippo pathway ; hippo pathway ; autoimmunity ; Mps one binder ; YAP/TAZ ; GPCR ; fibrosis ; MST1/2 ; YAP (yes-associated protein) ; YAP ; Yap ; protein kinase ; LATS (large tumor suppressor kinase) ; peripheral nerve sheath tumor ; signal cross-talk ; stem cell ; skin development ; STK38 ; tumorigenesis ; NDR ; schwannoma ; G protein-coupled receptor ; anti-cancer therapy ; feedback loops ; vascular mimicry ; castration resistance ; chromatin ; Hippo signalling ; ECM ; MST ; prostate cancer ; TEAD ; cancer ; zebrafish ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
    Language: English
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  • 8
    Publication Date: 2024-04-05
    Description: Planting trees in the agricultural landscape, in the form of establishing agroforestry systems, has a significant role to play in potentially improving ecosystem services, such as increased biodiversity, reduced soil erosion, increased soil carbon storage, improved food security and nutrition, and reduced greenhouse gas emissions. While the role of trees in agroforestry systems in improving ecosystem services has been researched, studies in new systems/regions and new agroforestry system designs are still emerging. This Special Issue includes selected papers presented at the 4th World Congress on Agroforestry, Montpellier, France 20–22 May 2019, and other volunteer papers. The scope of articles includes all aspects of agroforestry systems.
    Keywords: QH301-705.5 ; Q1-390 ; S1-972 ; farmers’ knowledge ; ahannon-wiener index ; economic benefits ; alley cropping ; lignin ; shelterbelts ; agroforestry ; natural capital ; forest farming ; nutrient content ; agroforestry system ; review ; Amazonia ; cropland ; riparian buffers ; climate change ; subtropical acidic forest soil ; bees ; phosphorus ; pollination ; 15N tracing experiment ; stable isotope ; West Java ; interspecific competition ; growth form ; cropping system ; climate change mitigation ; gross N transformation rates ; East Africa ; improved-fallow ; N-fixing trees ; carbon sequestration ; home garden ; margalef index ; windbreaks ; leaf nutrient diagnosis ; agroforestry systems ; pollinators ; sorption ; forestland ; China ; temperature change ; fractionation ; hedgerows ; native trees ; slash-and-mulch ; soil N ; shade tree species ; soil C ; Alpinia oxyphylla ; sustainable management ; plant water use ; rubber-based agroforestry system ; ecosystem services ; Indonesia ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
    Language: English
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  • 9
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: The range of human neurodegenerative diseases continues to pose significant unmet medical needs for societies around the world. The progressive and terminal nature of these conditions places a considerable personal burden on the individual affected but also on public health systems and health services. Tens of millions of people are indiscriminately affected by various dementias, which are rising at an alarming rate. There are no cures for many conditions, and it is clear that treatments applied as early as possible could greatly improve outcomes for patients. Therefore, new disease classification and diagnostic tools should be a key priority. Metabolomics represents a relatively new field of analytical science, which can be extremely useful in the early diagnosis of disease. The relatively unique feature of metabolites is that they sit at the intersection between the genetic background of an organism and its environment. Because many neurodegenerative diseases are not genetically inherited (instead having a range of known genetic risk factors and also a large number of unknown environmental triggers) the field of metabolomics offers great promise for the discovery of new, biologically, and clinically relevant biomarkers for neurodegenerative disorders. It is already bringing forward new knowledge in terms of the mechanisms of neurodegenerative disease.
    Keywords: QH301-705.5 ; Q1-390 ; glutamic acid ; n/a ; direct mass spectrometry ; neurodegeneration ; 6-OHDA ; targeted mass spectrometry ; mitochondrial dysfunction ; myo-inositol ; metabolomics ; bile acids ; subacute mild traumatic brain injury ; age-related macular degeneration ; metabolic pathways ; energy metabolism ; midbrain ; Alzheimer’s disease ; biomarkers ; 1H NMR ; Parkinson’s disease dementia ; GC-MS ; pathogenesis ; tricarboxylic acid cycle ; micro-dialysis ; 13C-labeled succinate ; metabolism ; lipidomics ; dementia with Lewy bodies ; fatty acid ; prodromal Parkinson’s disease ; malonate ; cerebral ischemia ; mass spectrometry ; retinal pigment epithelium ; excitotoxicity ; endothelin-1 ; reperfusion ; C. elegans ; Streptomyces venezuelae ; ?-synuclein aggregates ; natural product ; fatty acid metabolism ; imaging mass spectrometry ; LC-MS ; drusen ; cerebral palsy ; plasma ; Parkinson’s disease ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
    Language: English
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  • 10
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    MDPI - Multidisciplinary Digital Publishing Institute
    Publication Date: 2024-04-05
    Description: Welfare is a multidimensional concept that can be described as the state of an animal as it copes with the environment. Captive environments can impact farmed animals at different levels, especially fishes, considering their highly complex sensory world. Understanding the ethology of a species is therefore essential to address fish welfare, and the interpretation of behavioral responses in specific rearing contexts (aquaculture or experimental contexts) demands knowledge of their underlying physiological, developmental, functional, and evolutionary mechanisms. In natural environments, the stress response has evolved to help animals survive challenging conditions. However, animals are adapted to deal with natural stressors, while anthropogenic stimuli may represent stressors that fishes are unable to cope with. Under such circumstances, stress responses may be maladaptive and cause severe damage to the animal. As welfare in captivity is affected in multiple dimensions, multiple possible indicators can be used to assess the welfare state of individuals. In the past, research on welfare has been largely focusing on health indicators and predominantly based on physiological stress. Ethological indicators, however, also integrate the mental perspective of the individual and have been gradually assuming an important role in welfare research: behavioral responses to stressors are an early response to adverse conditions, easily observable, and demonstrative of emotional states. Many behavioral indicators can be used as non-invasive measurements of welfare in practical contexts such as aquaculture and experimentation. Presently, research in fish welfare is growing in importance and interest because of the growing economic importance of fish farming, the comparative biology opportunities that experimental fishes provide, and the increasing public sensitivity to welfare issues.
    Keywords: QH301-705.5 ; SF1-1100 ; Q1-390 ; n/a ; muscle texture ; fractal analysis ; fish welfare ; Danio rerio ; motivation ; histopathology ; elevated phosphate concentrations ; sharks ; welfare ; African catfish (Clarias gariepinus) ; feed efficiency ; fighting ability ; aggressive interaction ; social rank ; boldness ; ethology ; fisheries management ; physiological response ; FishEthoBase ; welfare scores ; welfare criteria ; stress ; pain ; stereotypical behaviour ; Scyliorhinus canicula ; animal behavior ; welfare enhancement ; social communication ; nociception ; negative and positive affect ; aggression ; fertilisation success ; risk analysis ; aquaculture ; hematology ; Amyloodinium ocellatum ; framework ; structural complexity ; territorial ; growth ; positive welfare ; social stress ; age ; thema EDItEUR::P Mathematics and Science::PS Biology, life sciences
    Language: English
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