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1.
Front Insect Sci ; 4: 1385895, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38835480

RESUMO

Voltage-gated ion channels (VGICs) respond to changes in membrane potential (Vm) and typically exhibit fast kinetic properties. They play an important role in signal detection and propagation in excitable tissues. In contrast, the role of VGICs in non-excitable tissues like epithelia is less studied and less clear. Studies in epithelia of vertebrates and invertebrates demonstrate wide expression of VGICs in epithelia of animals. Recently, VGICs have emerged as regulators of ion transport in the Malpighian tubules (MTs) and other osmoregulatory organs of insects. This mini-review aims to concisely summarize which VGICs have been implicated in the regulation of ion transport in the osmoregulatory epithelia of insects to date, and highlight select groups for further study. We have also speculated on the roles VGICs may potentially play in regulating processes connected directly to ion transport in insects (e.g., acid-base balance, desiccation, thermal tolerance). This review is not meant to be exhaustive but should rather serve as a thought-provoking collection of select existing highlights on VGICs, and to emphasize how understudied this mechanism of ion transport regulation is in insect epithelia.

2.
Kidney Int ; 104(2): 324-333, 2023 08.
Artigo em Inglês | MEDLINE | ID: mdl-37224917

RESUMO

The kidney is critical in controlling salt and water balance, with the interstitium involved with a variety of components including immune cells in steady state. However, the roles of resident immune cells in kidney physiology are largely unknown. To help unravel some of these unknowns, we employed cell fate mapping, and identified a population of embryo-derived self-maintaining macrophages (SM-MØ) that were independent of the bone marrow in adult mouse kidneys. This kidney-specific SM-MØ population was distinctive from the kidney monocyte-derived macrophages in transcriptome and in their distribution. Specifically, the SM-MØ highly expressed nerve-associated genes; high-resolution confocal microscopy revealed that the SM-MØ in the cortex were in close association with sympathetic nerves and there was a dynamical interaction between macrophages and sympathetic nerves when live kidney sections were monitored. Kidney-specific depletion of the SM-MØ resulted in reduced sympathetic distribution and tone, leading to reduced renin secretion, increased glomerular filtration rate and solute diuresis, which caused salt decompensation and significant weight loss under a low-salt diet challenge. Supplementation of L-3,4-dihydroxyphenylserine which is converted to norepinephrine in vivo rescued the phenotype of SM-MØ-depleted mice. Thus, our findings provide insights in kidney macrophage heterogeneity and address a non-canonical role of macrophages in kidney physiology. In contrast to the well-appreciated way of central regulation, local regulation of sympathetic nerve distribution and activities in the kidney was uncovered.


Assuntos
Rim , Macrófagos , Camundongos , Animais , Rim/fisiologia , Cloreto de Sódio na Dieta , Sistema Nervoso Simpático , Cloreto de Sódio , Água
3.
J Exp Biol ; 223(Pt 4)2020 02 17.
Artigo em Inglês | MEDLINE | ID: mdl-31953364

RESUMO

Estuarine crocodiles, Crocodylus porosus, inhabit freshwater, estuarine and marine environments. Despite being known to undertake extensive movements throughout and between hypo-osmotic and hyperosmotic environments, little is known about the role of the cloaca in coping with changes in salinity. We report here that, in addition to the well-documented functional plasticity of the lingual salt glands, the middle of the three cloacal segments (i.e. the urodaeum) responds to increased ambient salinity to enhance solute-coupled water absorption. This post-renal modification of urine serves to conserve water when exposed to hyperosmotic environments and, in conjunction with lingual salt gland secretions, enables C. porosus to maintain salt and water balance and thereby thrive in hyperosmotic environments. Isolated epithelia from the urodaeum of 70% seawater-acclimated C. porosus had a strongly enhanced short-circuit current (an indicator of active ion transport) compared with freshwater-acclimated crocodiles. This enhanced active ion absorption was driven by increased Na+/K+-ATPase activity, and possibly enhanced proton pump activity, and was facilitated by the apical epithelial Na+ channel (ENaC) and/or the apical Na+/H+ exchanger (NHE2), both of which are expressed in the urodaeum. NHE3 was expressed at very low levels in the urodaeum and probably does not contribute to solute-coupled water absorption in this cloacal segment. As C. porosus does not appear to drink water of salinities above 18 ppt, observations of elevated short-circuit current in the rectum as well as a trend for increased NHE2 expression in the oesophagus, the anterior intestine and the rectum suggest that dietary salt intake may stimulate salt and possibly water absorption by the gastrointestinal tract of C. porosus living in hyperosmotic environments.


Assuntos
Jacarés e Crocodilos/fisiologia , Cloaca/metabolismo , Reto/metabolismo , Salinidade , Aclimatação/fisiologia , Jacarés e Crocodilos/metabolismo , Animais , Canais Epiteliais de Sódio/genética , Canais Epiteliais de Sódio/metabolismo , Transporte de Íons/fisiologia , Masculino , Trocadores de Sódio-Hidrogênio/genética , Trocadores de Sódio-Hidrogênio/metabolismo , ATPase Trocadora de Sódio-Potássio/genética , ATPase Trocadora de Sódio-Potássio/metabolismo , Urina/química
4.
Clin Exp Med ; 16(3): 443-9, 2016 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-26206554

RESUMO

Natriuretic peptides (NP) play a key role in regulation of salt and water balance. Corin, a serine protease which activates NP, plays a key role in regulation of blood pressure and cardiac function. The aim of the study was to evaluate the involvement of corin in renal physiopathology, analyze its levels in dialyzed patients and evaluate its relation with fluid overload and comorbidities such as heart failure and blood hypertension. We studied serum corin in uremic patients (n = 20) undergoing hemodialysis therapy (HD) and in healthy subjects (HS). Corin levels in uremic patients were higher than in HS (p < 0.0001). Moreover, its concentration did not change after a single HD session. Hypertensive patients and subject suffering from heart failure were characterized by high values of corin. After multivariate analysis, direct correlations were maintained between corin and dialysis vintage (ß = 0.83; p = 0.0002), heart failure (ß = 0.42; p < 0.0001), systolic blood pressure (ß = -0.70; p = 0.0002) and body weight (ß = -0.39; p < 0.0001). Corin might be implicated in the regulation of salt and water balance and the disturbances of volume homeostasis of HD patients. However, further studies are warranted to understand the role of corin in kidney diseases and to define its diagnostic and prognostic role.


Assuntos
Volume Sanguíneo , Homeostase , Diálise Renal/efeitos adversos , Sais/sangue , Serina Endopeptidases/sangue , Adulto , Idoso , Idoso de 80 Anos ou mais , Diálise , Feminino , Voluntários Saudáveis , Humanos , Masculino , Pessoa de Meia-Idade , Uremia/terapia , Água
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