Results for 'redox regulation'

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  1.  21
    The redox regulation of intermediary metabolism by a superoxide–aconitase rheostat.Jeffrey S. Armstrong, Matthew Whiteman, Hongyuan Yang & Dean P. Jones - 2004 - Bioessays 26 (8):894-900.
    In this article, we discuss a hypothesis to explain the preferential synthesis of the superoxide sensitive form of aconitase in mitochondria and the phenotype observed in manganese superoxide dismutase mutant mice, which show a gross over accumulation of stored fat in liver. The model proposes that intermediary metabolism is redox regulated by mitochondrial superoxide generated during mitochondrial respiration. This regulates the level of reducing equivalents (NADH) entering the electron transport chain (ETC) through the reversible inactivation of mitochondrial aconitase. This (...)
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  2.  20
    Multicellular redox regulation: integrating organismal biology and redox chemistry.Neil W. Blackstone - 2006 - Bioessays 28 (1):72-77.
    Early in the 20th century, Charles Manning Child attributed organismal gradients in metabolism to interactions among groups of cells. Metabolic gradients are now firmly grounded in redox chemistry, yet modern work on metabolic signaling has consistently focused on the cellular level. Multicellular redox regulation, however, may occur when redox state is determined by the behavior of a group of cells. For instance, typically an abundance of substrate will shift the redox state of mitochondria in the (...)
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  3.  17
    Protein disulfide isomerase is regulated in multiple ways: Consequences for conformation, activities, and pathophysiological functions.Lei Wang, Jiaojiao Yu & Chih-Chen Wang - 2021 - Bioessays 43 (3):2000147.
    Protein disulfide isomerase (PDI) is one of the most abundant and critical protein folding catalysts in the endoplasmic reticulum of eukaryotic cells. PDI consists of four thioredoxin domains and interacts with a wide range of substrate and partner proteins due to its intrinsic conformational flexibility. PDI plays multifunctional roles in a variety of pathophysiological events, both as an oxidoreductase and a molecular chaperone. Recent studies have revealed that the conformation and activity of PDI can be regulated in multiple ways, including (...)
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  4.  25
    SAPs as novel regulators of abiotic stress response in plants.Jitender Giri, Prasant K. Dansana, Kamakshi S. Kothari, Gunjan Sharma, Shubha Vij & Akhilesh K. Tyagi - 2013 - Bioessays 35 (7):639-648.
    Stress associated proteins (SAPs), novel A20/AN1 zinc‐finger domain‐containing proteins, are fast emerging as potential candidates for biotechnological approaches in order to improve abiotic stress tolerance in plants – the ultimate aim of which is crop‐yield protection. Until relatively recently, such proteins had only been identified in humans, where they had been shown to be key regulators of innate immunity. Their phylogenetic relationship and recruitment of diverse protein domains reflect an architectural and mechanistic diversity. Emerging evidence suggests that SAPs may act (...)
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  5.  5
    Rho GTPases: Non‐canonical regulation by cysteine oxidation.Mackenzie Hurst, David J. McGarry & Michael F. Olson - 2022 - Bioessays 44 (2):2100152.
    Rho GTPases are critically important and are centrally positioned regulators of the actomyosin cytoskeleton. By influencing the organization and architecture of the cytoskeleton, Rho proteins play prominent roles in many cellular processes including adhesion, migration, intra‐cellular transportation, and proliferation. The most important method of Rho GTPase regulation is via the GTPase cycle; however, post‐translational modifications (PTMs) also play critical roles in Rho protein regulation. Relative to other PTMs such as lipidation or phosphorylation that have been extensively characterized, protein (...)
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  6.  6
    Controlling contacts—Molecular mechanisms to regulate organelle membrane tethering.Suzan Kors, Smija M. Kurian, Joseph L. Costello & Michael Schrader - 2022 - Bioessays 44 (11):2200151.
    In recent years, membrane contact sites (MCS), which mediate interactions between virtually all subcellular organelles, have been extensively characterized and shown to be essential for intracellular communication. In this review essay, we focus on an emerging topic: the regulation of MCS. Focusing on the tether proteins themselves, we discuss some of the known mechanisms which can control organelle tethering events and identify apparent common regulatory hubs, such as the VAP interface at the endoplasmic reticulum (ER). We also highlight several (...)
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  7.  10
    Reactive oxygen species (ROS) constitute an additional player in regulating epithelial development.Sarita Hebbar & Elisabeth Knust - 2021 - Bioessays 43 (8):2100096.
    Reactive oxygen species (ROS) are highly reactive molecules produced in cells. So far, they have mostly been connected to diseases and pathological conditions. More recent results revealed a somewhat unexpected role of ROS in control of developmental processes. In this review, we elaborate on ROS in development, focussing on their connection to epithelial tissue morphogenesis. After briefly summarising unique characteristics of epithelial cells, we present some characteristic features of ROS species, their production and targets, with a focus on proteins important (...)
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  8.  11
    Emerging role of TAK1 in the regulation of skeletal muscle mass.Anirban Roy, Vihang A. Narkar & Ashok Kumar - 2023 - Bioessays 45 (4):2300003.
    Maintenance of skeletal muscle mass and strength throughout life is crucial for heathy living and longevity. Several signaling pathways have been implicated in the regulation of skeletal muscle mass in adults. TGF‐β‐activated kinase 1 (TAK1) is a key protein, which coordinates the activation of multiple signaling pathways. Recently, it was discovered that TAK1 is essential for the maintenance of skeletal muscle mass and myofiber hypertrophy following mechanical overload. Forced activation of TAK1 in skeletal muscle causes hypertrophy and attenuates denervation‐induced (...)
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  9. Regulating animal experimentation.Regulations Governing - 2003 - In Susan Jean Armstrong & Richard George Botzler (eds.), The animal ethics reader. New York: Routledge. pp. 334.
     
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  10.  8
    F or over.Regulating Assisted - 2009 - In Vardit Ravitsky, Autumn Fiester & Arthur L. Caplan (eds.), The Penn Center Guide to Bioethics. Springer Publishing Company. pp. 295.
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  11.  18
    O n any given day, people have to negotiate the regulatory demands of mul-tiple goals. Should they wake up early and eat a leisurely breakfast or.Affect Self-Regulation - 2012 - In Henk Aarts & Andrew J. Elliot (eds.), Goal-directed behavior. New York, NY: Psychology Press. pp. 267.
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  12.  13
    What Philosophy Is. Edited by Havi Carel and David Gamez. London and New York: Continuum, 2004, xviii+ 325 pp., $80.00, pb. $14.95. Formal Logic: A Philosophical Approach, Paul Hoyningen-Huene. Translated by Alex Levine. Pittsburgh: University of Pittsburgh Press, 2004, viii+ 254 pp., $17.95. [REVIEW]Regulating Intimacy - 2005 - Inquiry: An Interdisciplinary Journal of Philosophy 48 (1):99-104.
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  13. Jan Pryor.Regulating Step-Parenthood - 2009 - In Shelley Day Sclater (ed.), Regulating autonomy: sex, reproduction and family. Portland, Or.: Hart. pp. 109.
     
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  14.  2
    Oxiforms: Unique cysteine residue‐ and chemotype‐specified chemical combinations can produce functionally‐distinct proteoforms.James N. Cobley - 2023 - Bioessays 45 (7):2200248.
    A single protein molecule with one or more cysteine residues can occupy a plurality of unique residue and oxidation‐chemotype specified proteoforms that I term oxiforms. In binary reduced or oxidised terms, one molecule with three cysteines will adopt one of eight unique oxiforms. Residue‐defined sulfur chemistry endows specific oxiforms with distinct functionally‐relevant biophysical properties (e.g., steric effects). Their emergent complexity means a functionally‐relevant effect may only manifest when multiple cysteines are oxidised. Like how mixing colours makes new shades, combining discrete (...)
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  15.  13
    Ascorbic acid modulates immune responses through Jumonji‐C domain containing histone demethylases and Ten eleven translocation (TET) methylcytosine dioxygenase.Jeet Maity, Satyabrata Majumder, Ranjana Pal, Bhaskar Saha & Prabir Kumar Mukhopadhyay - 2023 - Bioessays 45 (11):2300035.
    Ascorbic acid is a redox regulator in many physiological processes. Besides its antioxidant activity, many intriguing functions of ascorbic acid in the expression of immunoregulatory genes have been suggested. Ascorbic acid acts as a co‐factor for the Fe+2‐containing α‐ketoglutarate‐dependent Jumonji‐C domain‐containing histone demethylases (JHDM) and Ten eleven translocation (TET) methylcytosine dioxygenasemediated epigenetic modulation. By influencing JHDM and TET, ascorbic acid facilitates the differentiation of double negative (CD4−CD8−) T cells to double positive (CD4+CD8+) T cells and of T‐helper cells to (...)
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  16.  12
    Cross-talk between circadian clocks, sleep-wake cycles, and metabolic networks: Dispelling the darkness.Sandipan Ray & Akhilesh B. Reddy - 2016 - Bioessays 38 (4):394-405.
    Integration of knowledge concerning circadian rhythms, metabolic networks, and sleep‐wake cycles is imperative for unraveling the mysteries of biological cycles and their underlying mechanisms. During the last decade, enormous progress in circadian biology research has provided a plethora of new insights into the molecular architecture of circadian clocks. However, the recent identification of autonomous redox oscillations in cells has expanded our view of the clockwork beyond conventional transcription/translation feedback loop models, which have been dominant since the first circadian period (...)
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  17.  6
    Modulation by nitric oxide of metalloprotein regulatory activities.Jean-Claude Drapier & CéCile Bouton - 1996 - Bioessays 18 (7):549-556.
    In many cells, a nitric oxide (NO) synthase inducible by immunological stimuli produces a sustained flow of NO that lasts a long time. NO is a short‐lived molecule but it is a diffusibel ligand believed to be capable of reaching distal target sites. Further, several lines of evidence indicate that cysteine‐rich motifs of metal‐binding proteins, as well as redox‐sensitive metal clusters of metalloproteins, are natural sensors of bioradicals like NO. In metalloregulatory proteins, metals are often conveniently located at binding (...)
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  18.  7
    My favorite cell: Giardia.Richard L. Gardner - 1998 - Bioessays 20 (3):256-263.
    The gut protozoan parasite, Giardia duodenalis, is the best characterized example of the most ancient eukaryotes, which are anaerobic and appear to be primitively amitochondrial. Apart from its obvious medical importance, Giardia is fascinating in its own right. Its prokaryotic-like anaerobic metabolism renders it selectively sensitive to some bacterial drugs, especially the nitroimidazoles, which are activated to form toxic radicals. Other features, including an enzyme that reduces oxygen directly to water, cysteine as the keeper of redox balance, a plasmid, (...)
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  19.  3
    My favorite cell: Giardia.Jacqui Upcroft & Peter Upcroft - 1998 - Bioessays 20 (3):256-263.
    The gut protozoan parasite, Giardia duodenalis, is the best characterized example of the most ancient eukaryotes, which are anaerobic and appear to be primitively amitochondrial. Apart from its obvious medical importance, Giardia is fascinating in its own right. Its prokaryotic-like anaerobic metabolism renders it selectively sensitive to some bacterial drugs, especially the nitroimidazoles, which are activated to form toxic radicals. Other features, including an enzyme that reduces oxygen directly to water, cysteine as the keeper of redox balance, a plasmid, (...)
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  20.  2
    A paREDOX in the control of cholesterol biosynthesis.Nicole M. Fenton, Lydia Qian, Eloise G. Paine, Laura J. Sharpe & Andrew J. Brown - forthcoming - Bioessays.
    Sterols and the reductant nicotinamide adenine dinucleotide phosphate (NADPH), essential for eukaryotic life, arose because of, and as an adaptation to, rising levels of molecular oxygen (O2). Hence, the NADPH and O2‐intensive process of sterol biosynthesis is inextricably linked to redox status. In mammals, cholesterol biosynthesis is exquisitely regulated post‐translationally by multiple E3 ubiquitin ligases, with membrane associated Really Interesting New Gene (RING) C3HC4 finger 6 (MARCHF6) degrading at least six enzymes in the pathway. Intriguingly, all these MARCHF6‐dependent enzymes (...)
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  21.  26
    Going malignant: the hypoxia‐cancer connection in the prostate.P. W. Hochachka, J. L. Rupert, L. Goldenberg, M. Gleave & P. Kozlowski - 2002 - Bioessays 24 (8):749-757.
    The metabolic organization of both normal and malignant prostate cellular phenotypes involves some unusual and surprising features. In particular, both conditions exhibit ratios of NADH/NAD+ and NADPH/NADP+ charactersitic of high oxidative states despite a chronic shortage of O2 in both conditions. In this paper, we observe that, in prostate cancer cells, the oxidizing power of the fatty acid synthesis (FAS) pathway is so large that redox is stabilized more favorably (more oxidized) than in normal prostate cells. This FAS‐facilitated (...) improvement occurs despite the fact that malignant cells are more O2 limited and therefore express more hypoxia inducible factor 1 (HIF1) and express hypoxia‐regulated genes more robustly. This unusual metabolic situation clearly separates direct regulatory effects of redox balance from secondary effects of hypoxia per se. The physiological significance of the FAS pathway is thus the harnessing of its oxidizing power for improving redox balance despite conditions of more extreme hypoxia. Similar hypoxia defense strategies are found in animal species that are unusually tolerant to oxygen lack. Our hypothesis is that the metabolic organization in the “low zinc, low citrate” phenotype reflects an hypoxia‐defense adaptation geared toward redox balance, with prostate cancer cells being relatively more oxidized, even if more hypoxic, than normal prostate cells. Recognition and understanding of these redox balancing and hypoxia defense functions may lead to new intervention strategies by developing new intracellular targets for prostate cancer therapy. BioEssays 24:749–757, 2002. © 2002 Wiley Periodicals, Inc. (shrink)
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  22.  15
    How does oncogene transformation render tumor cells hypersensitive to nutrient deprivation?Gabriel Leprivier & Poul H. Sorensen - 2014 - Bioessays 36 (11):1082-1090.
    Oncogene activation leads to cellular transformation by deregulation of biological processes such as proliferation and metabolism. Paradoxically, this can also sensitize cells to nutrient deprivation, potentially representing an Achilles' heel in early stage tumors. The mechanisms underlying this phenotype include loss of energetic and redox homeostasis as a result of metabolic reprogramming, favoring synthesis of macromolecules. Moreover, an emerging mechanism involving the deregulation of mRNA translation elongation through inhibition of eukaryotic elongation factor 2 kinase (eEF2K) is presented. The potential (...)
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  23.  9
    Same Redox Evidence But Different Physiological “Stories”: The Rashomon Effect in Biology.Michalis G. Nikolaidis & Nikos V. Margaritelis - 2018 - Bioessays 40 (9):1800041.
    The Rashomon effect – a phenomenon studied in the arts and social sciences – occurs when the same event is given contradictory interpretations by different individuals involved. The effect was named after Akira Kurosawa's 1950 film Rashomon, in which a murder is described in four contradictory ways by four witnesses. In the film, a samurai has been killed under mysterious circumstances. Four people give contradictory reports about the crime. In particular, the samurai's wife claims that she was sexually abused by (...)
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  24.  18
    Redox rhythmicity: clocks at the core of temporal coherence.David Lloyd & Douglas B. Murray - 2007 - Bioessays 29 (5):465-473.
    Ultradian rhythms are those that cycle many times in a day and are therefore measured in hours, minutes, seconds or even fractions of a second. In yeasts and protists, a temperature‐compensated clock with a period of about an hour (30–90 minutes) provides the time base upon which all central processes are synchronized. A 40‐minute clock in yeast times metabolic, respiratory and transcriptional processes, and controls cell division cycle progression. This system has at its core a redox cycle involving NAD(P)H (...)
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  25.  24
    Redox control and the evolution of multicellularity.Neil W. Blackstone - 2000 - Bioessays 22 (10):947-953.
  26.  53
    Redox reactions: inconsistencies in their description. [REVIEW]Jozef Šima - 2011 - Foundations of Chemistry 15 (1):57-64.
    The paper is aimed at defining reduction, oxidation, and redox reactions based both on the oxidation number and charge changes in reacting species. It is rationalized that the processes of oxidation and reduction, usually occurring simultaneously, can occur also as independent processes. It is explained that in balancing chemical equations of redox reactions the “gain” or “loss” of electrons should be understood as changes in oxidation number. A formal expressions “+n e−” and “−n e−” represent in reality a (...)
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  27.  24
    Redox bifurcations: Mechanisms and importance to life now, and at its origin.Wolfgang Nitschke & Michael J. Russell - 2012 - Bioessays 34 (2):106-109.
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  28.  29
    Multifunctional plasma membrane redox systems.Miguel Ángel Medina, Antonio Del Castillo-Olivares & Ignacio NúÑez De Castro - 1997 - Bioessays 19 (11):977-984.
    All the biological membranes contain oxidoreduction systems actively involved in their bioenergetics. Plasma membrane redox systems seem to be ubiquitous and they have been related to several important functions, including not only their role in cell bioenergetics, but also in cell defense through the generation of reactive oxygen species, in iron uptake, in the control of cell growth and proliferation and in signal transduction. In the last few years, an increasing number of mechanistic and molecular studies have deeply widened (...)
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  29. Biological regulation: controlling the system from within.Leonardo Bich, Matteo Mossio, Kepa Ruiz-Mirazo & Alvaro Moreno - 2016 - Biology and Philosophy 31 (2):237-265.
    Biological regulation is what allows an organism to handle the effects of a perturbation, modulating its own constitutive dynamics in response to particular changes in internal and external conditions. With the central focus of analysis on the case of minimal living systems, we argue that regulation consists in a specific form of second-order control, exerted over the core regime of production and maintenance of the components that actually put together the organism. The main argument is that regulation (...)
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  30.  16
    Self-Regulation Failure? The Influence Mechanism of Leader Reward Omission on Employee Deviant Behavior.Tian Wang, Zhoutao Cao, Xi Zhong & Chunhua Chen - 2021 - Frontiers in Psychology 12:558293.
    Contingent reinforcement behavior is generally regarded as one of the key elements of being a “good” leader, yet the question of what happens when this behavior is absent has received little attention in past empirical research. Drawing upon self-regulation theory, we develop and test a model that specifies the effects of leader reward omission on employes’ deviant behavior. Using the data of 230 workers from two manufacturing companies located in South China collected across three time points, we find that (...)
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  31.  41
    Emotion regulation in depression: Relation to cognitive inhibition.Jutta Joormann & Ian H. Gotlib - 2010 - Cognition and Emotion 24 (2):281-298.
    Depression is a disorder of impaired emotion regulation. Consequently, examining individual differences in the habitual use of emotion-regulation strategies has considerable potential to inform models of this debilitating disorder. The aim of the current study was to identify cognitive processes that may be associated with the use of emotion-regulation strategies and to elucidate their relation to depression. Depression has been found to be associated with difficulties in cognitive control and, more specifically, with difficulties inhibiting the processing of (...)
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  32. Glycemia Regulation: From Feedback Loops to Organizational Closure.Leonardo Bich, Matteo Mossio & Ana M. Soto - 2020 - Frontiers in Physiology 11.
    Endocrinologists apply the idea of feedback loops to explain how hormones regulate certain bodily functions such as glucose metabolism. In particular, feedback loops focus on the maintenance of the plasma concentrations of glucose within a narrow range. Here, we put forward a different, organicist perspective on the endocrine regulation of glycaemia, by relying on the pivotal concept of closure of constraints. From this perspective, biological systems are understood as organized ones, which means that they are constituted of a set (...)
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  33.  26
    Organic cofactors participated more frequently than transition metals in redox reactions of primitive proteins.Hong-Fang Ji, Lei Chen & Hong-Yu Zhang - 2008 - Bioessays 30 (8):766-771.
    Protein redox reactions are one of the most basic and important biochemical actions. As amino acids are weak redox mediators, most protein redox functions are undertaken by protein cofactors, which include organic ligands and transition metal ions. Since both kinds of redox cofactors were available in the pre‐protein RNA world, it is challenging to explore which one was more involved in redox processes of primitive proteins? In this paper, using an examination of the redox (...)
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  34. Regulating Child Sex Robots: Restriction or Experimentation?John Danaher - 2019 - Medical Law Review 27 (4):553-575.
    In July 2014, the roboticist Ronald Arkin suggested that child sex robots could be used to treat those with paedophilic predilections in the same way that methadone is used to treat heroin addicts. Taking this onboard, it would seem that there is reason to experiment with the regulation of this technology. But most people seem to disagree with this idea, with legal authorities in both the UK and US taking steps to outlaw such devices. In this paper, I subject (...)
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  35.  46
    Private Regulation and Trade Union Rights: Why Codes of Conduct Have Limited Impact on Trade Union Rights.Niklas Egels-Zandén & Jeroen Merk - 2014 - Journal of Business Ethics 123 (3):461-473.
    Codes of conduct are the main tools to privately regulate worker rights in global value chains. Scholars have shown that while codes may improve outcome standards (such as occupational health and safety), they have had limited impact on process rights (such as freedom of association and collective bargaining). Scholars have, though, only provided vague or general explanations for this empirical finding. We address this shortcoming by providing a holistic and detailed explanation, and argue that codes, in their current form, have (...)
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  36.  87
    Self-regulation, Corporate Social Responsibility, and the Business Case: Do they Work in Achieving Workplace Equality and Safety?Susan Margaret Hart - 2010 - Journal of Business Ethics 92 (4):585-600.
    The political shift toward an economic liberalism in many developed market economies, emphasizing the importance of the marketplace rather than government intervention in the economy and society (Dorman, Systematic Occupational Health and Safety Management: Perspectives on an International Development, 2000; Tombs, Policy and Practice in Health and Safety 3(1): 24-25, 2005; Walters, Policy and Practice in Health and Safety 03(2):3-19, 2005), featured a prominent discourse centered on the need for business flexibility and competitiveness in a global economy (Dorman, 2000; Tombs, (...)
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  37.  24
    Regulation and the social licence for medical research.Mary Dixon-Woods & Richard E. Ashcroft - 2008 - Medicine, Health Care and Philosophy 11 (4):381-391.
    Regulation and governance of medical research is frequently criticised by researchers. In this paper, we draw on Everett Hughes’ concepts of professional licence and professional mandate, and on contemporary sociological theory on risk regulation, to explain the emergence of research governance and the kinds of criticism it receives. We offer explanations for researcher criticism of the rules and practices of research governance, suggesting that these are perceived as interference in their mandate. We argue that, in spite of their (...)
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  38. Regulating abortion after ectogestation.Joona Räsänen - 2023 - Journal of Medical Ethics 49 (6):419-422.
    A few decades from now, it might become possible to gestate fetuses in artificial wombs. Ectogestation as this is called, raises major legal and ethical issues, especially for abortion rights. In countries allowing abortion, regulation often revolves around the viability threshold—the point in fetal development after which the fetus can survive outside the womb. How should viability be understood—and abortion thus regulated—after ectogestation? Should we ban, allow or require the use of artificial wombs as an alternative to standard abortions? (...)
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  39.  36
    Regulating Aversion: Tolerance in the Age of Identity and Empire.Wendy Brown - 2008 - Princeton University Press.
    Tolerance is generally regarded as an unqualified achievement of the modern West. Emerging in early modern Europe to defuse violent religious conflict and reduce persecution, tolerance today is hailed as a key to decreasing conflict across a wide range of other dividing lines-- cultural, racial, ethnic, and sexual. But, as political theorist Wendy Brown argues in Regulating Aversion, tolerance also has dark and troubling undercurrents. Dislike, disapproval, and regulation lurk at the heart of tolerance. To tolerate is not to (...)
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  40.  68
    The regulation of cognitive enhancement devices : extending the medical model.Hannah Maslen, Thomas Douglas, Roi Cohen Kadosh, Neil Levy & Julian Savulescu - 2014 - Journal of Law and the Biosciences 1 (1):68-93.
    This article presents a model for regulating cognitive enhancement devices. Recently, it has become very easy for individuals to purchase devices which directly modulate brain function. For example, transcranial direct current stimulators are increasingly being produced and marketed online as devices for cognitive enhancement. Despite posing risks in a similar way to medical devices, devices that do not make any therapeutic claims do not have to meet anything more than basic product safety standards. We present the case for extending existing (...)
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  41. Emotion Regulation: Past, Present, Future.James J. Gross - 1999 - Cognition and Emotion 13 (5):551-573.
    Modern emotion theories emphasise the adaptive value of emotions. Emotions are by no means always helpful, however. They often must be regulated. The study of emotion regulation has its origins in the psychoanalytic and stress and coping traditions. Recently, increased interest in emotion regulation has led to crucial boundary ambiguities that now threaten progress in this domain. It is argued that distinctions need to be made between (1) regulation of emotion and regulation by emotion; (2) emotion (...)
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  42. The Regulative and the Theoretical in Epistemology.Robert Lockie - 2014 - Abstracta 8 (1):3-14.
    The distinction between the regulative (‘practical’, ‘subjective’, ‘decision-procedural’) and the theoretical (‘objective’, ‘absolute’) pertains to the aims (the desiderata) of an account of justification. This distinction began in ethics and spread to epistemology. Each of internalism, externalism, is separately forced to draw this distinction to avoid a stock, otherwise fatal, argument levelled against them by the other. Given this situation however, we may finesse much partisan conflict in epistemology by simply seeing differing accounts of justification as answering to radically distinct (...)
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  43. Regulation by Design: Features, Practices, Limitations, and Governance Implications.Kostina Prifti, Jessica Morley, Claudio Novelli & Luciano Floridi - 2024 - Minds and Machines 34 (2):1-23.
    Regulation by design (RBD) is a growing research field that explores, develops, and criticises the regulative function of design. In this article, we provide a qualitative thematic synthesis of the existing literature. The aim is to explore and analyse RBD’s core features, practices, limitations, and related governance implications. To fulfil this aim, we examine the extant literature on RBD in the context of digital technologies. We start by identifying and structuring the core features of RBD, namely the goals, regulators, (...)
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  44. Emotion regulation: Conceptual foundations.James J. Gross & Ross A. Thompson (eds.) - 2007
  45.  67
    Emotion regulation through listening to music in everyday situations.Myriam V. Thoma, Stefan Ryf, Changiz Mohiyeddini, Ulrike Ehlert & Urs M. Nater - 2012 - Cognition and Emotion 26 (3):550-560.
    Music is a stimulus capable of triggering an array of basic and complex emotions. We investigated whether and how individuals employ music to induce specific emotional states in everyday situations for the purpose of emotion regulation. Furthermore, we wanted to examine whether specific emotion-regulation styles influence music selection in specific situations. Participants indicated how likely it would be that they would want to listen to various pieces of music (which are known to elicit specific emotions) in various emotional (...)
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  46.  26
    Emotion Regulation, Subjective Well-Being, and Perceived Stress in Daily Life of Geriatric Nurses.Marko Katana, Christina Röcke, Seth M. Spain & Mathias Allemand - 2019 - Frontiers in Psychology 10.
    This daily diary study examined the within-person coupling between four emotion regulation strategies and both subjective well-being and perceived stress in daily life of geriatric nurses. Participants (N = 89) described how they regulated their emotions in terms of cognitive reappraisal and suppression. They also indicated their subjective well-being and level of perceived stress each day over three weeks. At the within-person level, cognitive reappraisal intended to increase positive emotions was positively associated with higher subjective well-being and negatively associated (...)
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  47.  8
    Morphogenetic Régulation in action: understanding inclusive governance, neoliberalizing processes in Palestine, and the political economy of the contemporary internet.Andrew Dryhurst, Daniel ‘Zach’ Sloman & Yazid Zahda - 2023 - Journal of Critical Realism 22 (5):813-839.
    The Morphogenetic Régulation approach (MR) contributes to the Morphogenetic Approach by explaining the material and ideational origins of change and stasis in agency, structure, and culture. In this paper, we focus on the expressive quality of ideas and systemic persistence in three research projects. The first demystifies inclusive governance and its adverse impacts. It shows how, contrary to institutions of governance, inclusiveness is not simply a norm but actually the explication of corporate agents’ ideas about rational choice institutionalism which leads (...)
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  48.  51
    Regulating Genome Editing: For an Enlightened Democratic Governance.Giulia Cavaliere, Katrien Devolder & Alberto Giubilini - 2019 - Cambridge Quarterly of Healthcare Ethics 28 (1):76-88.
    How should we regulate genome editing in the face of persistent substantive disagreement about the moral status of this technology and its applications? In this paper, we aim to contribute to resolving this question. We first present two diametrically opposed possible approaches to the regulation of genome editing. A first approach, which we refer to as “elitist,” is inspired by Joshua Greene’s work in moral psychology. It aims to derive at an abstract theoretical level what preferences people would have (...)
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  49. Reconciling Regulation with Scientific Autonomy in Dual-Use Research.Nicholas G. Evans, Michael J. Selgelid & Robert Mark Simpson - 2022 - Journal of Medicine and Philosophy 47 (1):72-94.
    In debates over the regulation of communication related to dual-use research, the risks that such communication creates must be weighed against against the value of scientific autonomy. The censorship of such communication seems justifiable in certain cases, given the potentially catastrophic applications of some dual-use research. This conclusion however, gives rise to another kind of danger: that regulators will use overly simplistic cost-benefit analysis to rationalize excessive regulation of scientific research. In response to this, we show how institutional (...)
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  50.  16
    Better Regulation of End-Of-Life Care: A Call For A Holistic Approach.Ben P. White, Lindy Willmott & Eliana Close - 2022 - Journal of Bioethical Inquiry 19 (4):683-693.
    Existing regulation of end-of-life care is flawed. Problems include poorly-designed laws, policies, ethical codes, training, and funding programs, which often are neither effective nor helpful in guiding decision-making. This leads to adverse outcomes for patients, families, health professionals, and the health system as a whole. A key factor contributing to the harms of current regulation is a siloed approach to regulating end-of-life care. Existing approaches to regulation, and research into how that regulation could be improved, have (...)
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