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1.
Nature ; 585(7825): 420-425, 2020 09.
Artigo em Inglês | MEDLINE | ID: mdl-32879486

RESUMO

The opsin family of G-protein-coupled receptors are used as light detectors in animals. Opsin 5 (also known as neuropsin or OPN5) is a highly conserved opsin that is sensitive to visible violet light1,2. In mice, OPN5 is a known photoreceptor in the retina3 and skin4 but is also expressed in the hypothalamic preoptic area (POA)5. Here we describe a light-sensing pathway in which POA neurons that express Opn5 regulate thermogenesis in brown adipose tissue (BAT). We show that Opn5 is expressed in glutamatergic warm-sensing POA neurons that receive synaptic input from several thermoregulatory nuclei. We further show that Opn5 POA neurons project to BAT and decrease its activity under chemogenetic stimulation. Opn5-null mice show overactive BAT, increased body temperature, and exaggerated thermogenesis when cold-challenged. Moreover, violet photostimulation during cold exposure acutely suppresses BAT temperature in wild-type mice but not in Opn5-null mice. Direct measurements of intracellular cAMP ex vivo show that Opn5 POA neurons increase cAMP when stimulated with violet light. This analysis thus identifies a violet light-sensitive deep brain photoreceptor that normally suppresses BAT thermogenesis.


Assuntos
Cor , Luz , Proteínas de Membrana/metabolismo , Neurônios/metabolismo , Neurônios/efeitos da radiação , Opsinas/metabolismo , Área Pré-Óptica/citologia , Termogênese/efeitos da radiação , Tecido Adiposo Marrom/inervação , Tecido Adiposo Marrom/metabolismo , Tecido Adiposo Marrom/efeitos da radiação , Animais , Temperatura Corporal , Temperatura Baixa , AMP Cíclico/metabolismo , Feminino , Masculino , Proteínas de Membrana/deficiência , Proteínas de Membrana/genética , Camundongos , Opsinas/deficiência , Opsinas/genética , Termogênese/genética
2.
J Women Aging ; 35(5): 465-475, 2023.
Artigo em Inglês | MEDLINE | ID: mdl-36256528

RESUMO

It is estimated that around half of all kinship carers in the UK are grandparents. International studies show that when broken down by gender, these carers are predominantly grandmothers. However, there is little research exploring the gender dimensions of kinship carers' experiences. Drawing on data from qualitative interviews with 27 grandparent kinship carers, this article highlights the gendered context in which the grandparents we spoke to found themselves. The grandparents - the majority of whom were grandmothers - described lives filled with multiple unpaid caring commitments and demands. We discuss the ways that gender norms, roles and stereotypes, alongside economic models and policies that invisiblise women's care work, shaped the experiences of the grandmothers who took part in our research. We argue that, despite their undeniable determination and commitment to love, nurture and care for their grandchildren in very difficult circumstances, and the money they are saving the state in doing so, grandmother kinship carers are penalized in multiple ways. Economically, emotionally, socially, physically and practically, grandmother kinship carers are unsupported and undervalued. We need a social, economic and cultural shift around the value of care and a redistribution of care work across genders. The situations of grandmother kinship carers need to be part of this shift, so that grandmothers who care for their grandchildren are no longer penalized, and all kinship carers are properly supported and valued.

7.
J Vis Exp ; (196)2023 06 02.
Artigo em Inglês | MEDLINE | ID: mdl-37335100

RESUMO

Organisms appear opaque largely because their outer tissue layers are strongly scattering to incident light; strongly absorbing pigments, such as blood, typically have narrow absorbances, such that the mean free path of light outside the absorbance peaks can be quite long. As people cannot see through tissue, they generally imagine that tissues like the brain, fat, and bone contain little or no light. However, photoresponsive opsin proteins are expressed within many of these tissues, and their functions are poorly understood. Radiance internal to tissue is also important for understanding photosynthesis. For example, giant clams are strongly absorbing yet maintain a dense population of algae deep in the tissue. Light propagation through systems like sediments and biofilms can be complex, and these communities can be major contributors to ecosystem productivity. Therefore, a method for constructing optical micro-probes for measuring scalar irradiance (photon flux intersecting a point) and downwelling irradiance (photon flux crossing a plane perpendicularly) to better understand these phenomena inside living tissue has been developed. This technique is also tractable in field laboratories. These micro-probes are made from heat-pulled optical fibers that are then secured in pulled glass pipettes. To change the angular acceptance of the probe, a 10-100 µm sized sphere of UV-curable epoxy mixed with titanium dioxide is then secured to the end of a pulled, trimmed fiber. The probe is inserted into living tissue, and its position is controlled using a micromanipulator. These probes are capable of measuring in situ tissue radiance at spatial resolutions of 10-100 µm or on the scale of single cells. These probes were used to characterize the light reaching the adipose and brain cells 4 mm below the skin of a living mouse and to characterize the light reaching similar depths within living algae-rich giant clam tissue.


Assuntos
Ecossistema , Fotossíntese , Animais , Camundongos , Fibras Ópticas , Fótons , Radiometria
8.
Int J Offender Ther Comp Criminol ; 62(4): 915-934, 2018 03.
Artigo em Inglês | MEDLINE | ID: mdl-29409402

RESUMO

An examination of scholarly literature concerning fatal violence (i.e., parricide) and non-fatal violence toward parents reveals dominant themes of mental illness, child abuse, and pathology based on a research paradigm that focuses on adolescent perpetrators and, to a lesser extent, elderly victims. This article presents a critical analysis of this literature and argues for a more contextualized approach to the study of violence against parents. It is argued that criminologists should widen their methodological lens to examine this issue from a life course perspective and draw on conceptual tools such as developmental pathways, sources of conflict, and intersectionality to allow for an analysis that can offer new ways of thinking about violence toward parents.


Assuntos
Vítimas de Crime , Violência Doméstica/psicologia , Pais , Adolescente , Humanos
9.
J R Soc Interface ; 14(130)2017 05.
Artigo em Inglês | MEDLINE | ID: mdl-28468923

RESUMO

The largest habitat by volume on Earth is the oceanic midwater, which is also one of the least understood in terms of animal ecology. The organisms here exhibit a spectacular array of optical adaptations for living in a visual void that have only barely begun to be described. We describe a complex pattern of broadband scattering from the skin of Argyropelecus sp., a hatchetfish found in the mesopelagic zone of the world's oceans. Hatchetfish skin superficially resembles the unpolished side of aluminium foil, but on closer inspection contains a complex composite array of subwavelength-scale dielectric structures. The superficial layer of this array contains dielectric stacks that are rectangular in cross-section, while the deeper layer contains dielectric bundles that are elliptical in cross-section; the cells in both layers have their longest dimension running parallel to the dorsal-ventral axis of the fish. Using the finite-difference time-domain approach and photographic radiometry, we explored the structural origins of this scattering behaviour and its environmental consequences. When the fish's flank is illuminated from an arbitrary incident angle, a portion of the scattered light exits in an arc parallel to the fish's anterior-posterior axis. Simultaneously, some incident light is also scattered downwards through the complex birefringent skin structure and exits from the ventral photophores. We show that this complex scattering pattern will provide camouflage simultaneously against the horizontal radially symmetric solar radiance in this habitat, and the predatory bioluminescent searchlights that are common here. The structure also directs light incident on the flank of the fish into the downwelling, silhouette-hiding counter-illumination of the ventral photophores.


Assuntos
Mimetismo Biológico/fisiologia , Peixes/fisiologia , Pigmentação da Pele/fisiologia , Pele , Animais
10.
Adv Mater ; 29(44)2017 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-29034980

RESUMO

It will be ideal to deliver equal, optimally efficient "doses" of sunlight to all cells in a photobioreactor system, while simultaneously utilizing the entire solar resource. Backed by the numerical scattering simulation and optimization, here, the design, synthesis, and characterization of the synthetic iridocytes that recapitulated the salient forward-scattering behavior of the Tridacnid clam system are reported, which presents the first geometric solution to allow narrow, precise forward redistribution of flux, utilizing the solar resource at the maximum quantum efficiency possible in living cells. The synthetic iridocytes are composed of silica nanoparticles in microspheres embedded in gelatin, both are low refractive index materials and inexpensive. They show wavelength selectivity, have little loss (the back-scattering intensity is reduced to less than ≈0.01% of the forward-scattered intensity), and narrow forward scattering cone similar to giant clams. Moreover, by comparing experiments and theoretical calculation, it is confirmed that the nonuniformity of the scatter sizes is a "feature not a bug" of the design, allowing for efficient, forward redistribution of solar flux in a micrometer-scaled paradigm. This method is environmentally benign, inexpensive, and scalable to produce optical components that will find uses in efficiency-limited solar conversion technologies, heat sinks, and biofuel production.

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