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1.
Bioorg Med Chem Lett ; 97: 129562, 2024 01 01.
Artículo en Inglés | MEDLINE | ID: mdl-37967654

RESUMEN

ß2-Adrenergic receptor (ß2AR) agonists have been reported to stimulate glucose uptake (GU) by skeletal muscle cells and are therefore highly interesting as a possible treatment for type 2 diabetes (T2D). The chirality of compounds often has a great impact on the activity of ß2AR agonists, although this has thus far not been investigated for GU. Here we report the GU for a selection of synthesized acyclic and cyclic ß-hydroxy-3-fluorophenethylamines. For the N-butyl and the N-(2-pentyl) compounds, the (R) and (R,R) (3d and 7e) stereoisomers induced the highest GU. When the compounds contained a saturated nitrogen containing 4- to 7-membered heterocycle, the (R,R,R) enantiomer of the azetidine (8a) and the pyrrolidine (9a) had the highest activity. Altogether, these results provide pivotal information for designing novel ß2AR agonist for the treatment of T2D.


Asunto(s)
Agonistas de Receptores Adrenérgicos beta 2 , Diabetes Mellitus Tipo 2 , Humanos , Agonistas Adrenérgicos , Agonistas de Receptores Adrenérgicos beta 2/química , Agonistas de Receptores Adrenérgicos beta 2/farmacología , Agonistas Adrenérgicos beta/química , Agonistas Adrenérgicos beta/farmacología , Aminas , Transporte Biológico , Diabetes Mellitus Tipo 2/tratamiento farmacológico , Glucosa , Receptores Adrenérgicos beta 2/metabolismo
2.
Semin Liver Dis ; 43(2): 149-162, 2023 05.
Artículo en Inglés | MEDLINE | ID: mdl-37156523

RESUMEN

Nonalcoholic fatty liver disease (NAFLD) is the most common chronic liver disorder. Increased sympathetic (noradrenergic) nerve tone has a complex role in the etiopathomechanism of NAFLD, affecting the development/progression of steatosis, inflammation, fibrosis, and liver hemodynamical alterations. Also, lipid sensing by vagal afferent fibers is an important player in the development of hepatic steatosis. Moreover, disorganization and progressive degeneration of liver sympathetic nerves were recently described in human and experimental NAFLD. These structural alterations likely come along with impaired liver sympathetic nerve functionality and lack of adequate hepatic noradrenergic signaling. Here, we first overview the anatomy and physiology of liver nerves. Then, we discuss the nerve impairments in NAFLD and their pathophysiological consequences in hepatic metabolism, inflammation, fibrosis, and hemodynamics. We conclude that further studies considering the spatial-temporal dynamics of structural and functional changes in the hepatic nervous system may lead to more targeted pharmacotherapeutic advances in NAFLD.


Asunto(s)
Enfermedad del Hígado Graso no Alcohólico , Humanos , Fibrosis , Inflamación/metabolismo , Hígado/patología , Enfermedad del Hígado Graso no Alcohólico/metabolismo
3.
Int J Obes (Lond) ; 47(5): 338-347, 2023 05.
Artículo en Inglés | MEDLINE | ID: mdl-36774412

RESUMEN

Exposure to low ambient temperatures has previously been demonstrated to markedly improve glucose homeostasis in both rodents and humans. Although the brown adipose tissue is key in mediating these beneficial effects in rodents, its contribution appears more limited in humans. Hence, the exact tissues and underlying mechanisms that mediate cold-induced improvements in glucose homeostasis in humans remain to be fully established. In this review, we evaluated the response of the main organs involved in glucose metabolism (i.e. pancreas, liver, (white) adipose tissue, and skeletal muscle) to cold exposure and discuss their potential contribution to cold-induced improvements in glucose homeostasis in humans. We here show that cold exposure has widespread effects on metabolic organs involved in glucose regulation. Nevertheless, cold-induced improvements in glucose homeostasis appear primarily mediated via adaptations within the skeletal muscle and (presumably) white adipose tissue. Since the underlying mechanisms remain elusive, future studies should be aimed at pinpointing the exact physiological and molecular mechanisms involved in humans. Nonetheless, cold exposure holds great promise as a novel, additive lifestyle approach to improve glucose homeostasis in insulin resistant individuals. Parts of this graphical abstract were created using (modified) images from Servier Medical Art, licensed under the Creative Commons Attribution 3.0 Unported License. TG = thermogenesis, TAG = triacylglycerol, FFA = free fatty acid, SLN = sarcolipin, UCP3 = uncoupling protein 3, ß2-AR = beta-2 adrenergic receptor, SNS = sympathetic nervous system.


Asunto(s)
Tejido Adiposo Pardo , Tejido Adiposo Blanco , Humanos , Tejido Adiposo Pardo/metabolismo , Tejido Adiposo Blanco/metabolismo , Transducción de Señal , Ácidos Grasos no Esterificados/metabolismo , Homeostasis , Glucosa/metabolismo , Termogénesis , Frío
4.
Mol Psychiatry ; 27(8): 3533-3543, 2022 08.
Artículo en Inglés | MEDLINE | ID: mdl-35418601

RESUMEN

Liver-generated plasma apolipoprotein E (apoE) does not enter the brain but nonetheless correlates with Alzheimer's disease (AD) risk and AD biomarker levels. Carriers of APOEε4, the strongest genetic AD risk factor, exhibit lower plasma apoE and altered brain integrity already at mid-life versus non-APOEε4 carriers. Whether altered plasma liver-derived apoE or specifically an APOEε4 liver phenotype promotes neurodegeneration is unknown. Here we investigated the brains of Fah-/-, Rag2-/-, Il2rg-/- mice on the Non-Obese Diabetic (NOD) background (FRGN) with humanized-livers of an AD risk-associated APOE ε4/ε4 versus an APOE ε2/ε3 genotype. Reduced endogenous mouse apoE levels in the brains of APOE ε4/ε4 liver mice were accompanied by various changes in markers of synaptic integrity, neuroinflammation and insulin signaling. Plasma apoE4 levels were associated with unfavorable changes in several of the assessed markers. These results propose a previously unexplored role of the liver in the APOEε4-associated risk of neurodegenerative disease.


Asunto(s)
Enfermedad de Alzheimer , Enfermedades Neurodegenerativas , Animales , Ratones , Apolipoproteína E4/genética , Ratones Endogámicos NOD , Apolipoproteínas E/genética , Encéfalo/metabolismo , Enfermedad de Alzheimer/genética , Genotipo , Biomarcadores , Hígado/metabolismo
5.
Am J Physiol Endocrinol Metab ; 320(3): E619-E628, 2021 03 01.
Artículo en Inglés | MEDLINE | ID: mdl-33522400

RESUMEN

Prolonged supplementation with the ß2-agonist clenbuterol improves glucose homeostasis in diabetic rodents, likely via ß2-adrenoceptor (ß2-AR)-mediated effects in the skeletal muscle and liver. However, since rodents have, in contrast to-especially diabetic-humans, substantial quantities of brown adipose tissue (BAT) and clenbuterol has affinity to ß1- and ß3-ARs, the contribution of BAT to these improvements is unclear. Therefore, we investigated clenbuterol-mediated improvements in glucose homeostasis in uncoupling protein 1-deficient (UCP1-/-) mice, lacking thermogenic BAT, versus wild-type (WT) mice. Anesthetized WT and UCP1-/- C57Bl/6 mice were injected with saline or clenbuterol and whole body oxygen consumption was measured. Furthermore, male WT and UCP1-/- C57Bl/6 mice were subjected to 17-wk of chow feeding, high-fat feeding, or high-fat feeding with clenbuterol treatment between weeks 13 and 17. Body composition was measured weekly with MRI. Oral glucose tolerance and insulin tolerance tests were performed in week 15 and 17, respectively. Clenbuterol increased oxygen consumption approximately twofold in WT mice. This increase was blunted in UCP1-/- mice, indicating clenbuterol-mediated activation of BAT thermogenesis. High-fat feeding induced diabetogenic phenotypes in both genotypes. However, low-dose clenbuterol treatment for 2 wk significantly reduced fasting blood glucose by 12.9% in WT and 14.8% in UCP1-/- mice. Clenbuterol treatment improved glucose and insulin tolerance in both genotypes compared with HFD controls and normalized to chow-fed control mice independent of body mass and composition alterations. Clenbuterol improved whole body glucose homeostasis independent of UCP1. Given the low human abundancy of BAT, ß2-AR agonist treatment provides a potential novel route for glucose disposal in diabetic humans.NEW & NOTEWORTHY Improvements in whole body glucose homeostasis of rodents upon prolonged ß2-adrenergic agonist supplementation could potentially be attributed to UCP1-mediated BAT thermogenesis. Indeed, we show that acute injection with the ß2-AR agonist clenbuterol induces BAT activation in mice. However, we also demonstrate that prolonged clenbuterol supplementation robustly improves whole body glucose and insulin tolerance in a similar way in both DIO WT and UCP1-/- mice, indicating that ß2-AR agonist supplementation improves whole body glucose homeostasis independent of UCP1-mediated BAT thermogenesis.


Asunto(s)
Agonistas de Receptores Adrenérgicos beta 2/administración & dosificación , Glucosa/metabolismo , Obesidad/tratamiento farmacológico , Obesidad/metabolismo , Proteína Desacopladora 1/genética , Tejido Adiposo Pardo/metabolismo , Agonistas de Receptores Adrenérgicos beta 2/farmacología , Animales , Clenbuterol/administración & dosificación , Clenbuterol/farmacología , Dieta Alta en Grasa , Esquema de Medicación , Intolerancia a la Glucosa/tratamiento farmacológico , Intolerancia a la Glucosa/genética , Intolerancia a la Glucosa/metabolismo , Homeostasis/genética , Resistencia a la Insulina/genética , Masculino , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Ratones Obesos , Obesidad/etiología , Obesidad/patología , Receptores Adrenérgicos beta 2/metabolismo , Termogénesis/efectos de los fármacos , Termogénesis/genética , Factores de Tiempo , Proteína Desacopladora 1/deficiencia
6.
Diabetologia ; 63(8): 1603-1615, 2020 08.
Artículo en Inglés | MEDLINE | ID: mdl-32472192

RESUMEN

AIMS/HYPOTHESIS: Chronic stimulation of ß2-adrenoceptors, opposite to acute treatment, was reported to reduce blood glucose levels, as well as to improve glucose and insulin tolerance in rodent models of diabetes by essentially unknown mechanisms. We recently described a novel pathway that mediates glucose uptake in skeletal muscle cells via stimulation of ß2-adrenoceptors. In the current study we further explored the potential therapeutic relevance of ß2-adrenoceptor stimulation to improve glucose homeostasis and the mechanisms responsible for the effect. METHODS: C57Bl/6N mice with diet-induced obesity were treated both acutely and for up to 42 days with a wide range of clenbuterol dosages and treatment durations. Glucose homeostasis was assessed by glucose tolerance test. We also measured in vivo glucose uptake in skeletal muscle, insulin sensitivity by insulin tolerance test, plasma insulin levels, hepatic lipids and glycogen. RESULTS: Consistent with previous findings, acute clenbuterol administration increased blood glucose and insulin levels. However, already after 4 days of treatment, beneficial effects of clenbuterol were manifested in glucose homeostasis (32% improvement of glucose tolerance after 4 days of treatment, p < 0.01) and these effects persisted up to 42 days of treatment. These favourable metabolic effects could be achieved with doses as low as 0.025 mg kg-1 day-1 (40 times lower than previously studied). Mechanistically, these effects were not due to increased insulin levels, but clenbuterol enhanced glucose uptake in skeletal muscle in vivo both acutely in lean mice (by 64%, p < 0.001) as well as during chronic treatment in diet-induced obese mice (by 74%, p < 0.001). Notably, prolonged treatment with low-dose clenbuterol improved whole-body insulin sensitivity (glucose disposal rate after insulin injection increased up to 1.38 ± 0.31%/min in comparison with 0.15 ± 0.36%/min in control mice, p < 0.05) and drastically reduced hepatic steatosis (by 40%, p < 0.01) and glycogen (by 23%, p < 0.05). CONCLUSIONS/INTERPRETATION: Clenbuterol improved glucose tolerance after 4 days of treatment and these effects were maintained for up to 42 days. Effects were achieved with doses in a clinically relevant microgram range. Mechanistically, prolonged treatment with a low dose of clenbuterol improved glucose homeostasis in insulin resistant mice, most likely by stimulating glucose uptake in skeletal muscle and improving whole-body insulin sensitivity as well as by reducing hepatic lipids and glycogen. We conclude that selective ß2-adrenergic agonists might be an attractive potential treatment for type 2 diabetes. This remains to be confirmed in humans. Graphical abstract.


Asunto(s)
Agonistas de Receptores Adrenérgicos beta 2/uso terapéutico , Clenbuterol/uso terapéutico , Hígado Graso/tratamiento farmacológico , Hígado Graso/metabolismo , Glucosa/metabolismo , Músculo Esquelético/efectos de los fármacos , Músculo Esquelético/metabolismo , Animales , Homeostasis/efectos de los fármacos , Resistencia a la Insulina/fisiología , Masculino , Ratones , Ratones Endogámicos C57BL , Obesidad/etiología , Obesidad/metabolismo
7.
Am J Physiol Regul Integr Comp Physiol ; 316(5): R666-R677, 2019 05 01.
Artículo en Inglés | MEDLINE | ID: mdl-30892909

RESUMEN

The type 2 diabetes epidemic makes it important to find insulin-independent ways to improve glucose homeostasis. This study examines the mechanisms activated by a dual ß2-/ß3-adrenoceptor agonist, BRL37344, to increase glucose uptake in skeletal muscle and its effects on glucose homeostasis in vivo. We measured the effect of BRL37344 on glucose uptake, glucose transporter 4 (GLUT4) translocation, cAMP levels, ß2-adrenoceptor desensitization, ß-arrestin recruitment, Akt, AMPK, and mammalian target of rapamycin (mTOR) phosphorylation using L6 skeletal muscle cells as a model. We further tested the ability of BRL37344 to modulate skeletal muscle glucose metabolism in animal models (glucose tolerance tests and in vivo and ex vivo skeletal muscle glucose uptake). In L6 cells, BRL37344 increased GLUT4 translocation and glucose uptake only by activation of ß2-adrenoceptors, with a similar potency and efficacy to that of the nonselective ß-adrenoceptor agonist isoprenaline, despite being a partial agonist with respect to cAMP generation. GLUT4 translocation occurred independently of Akt and AMPK phosphorylation but was dependent on mTORC2. Furthermore, in contrast to isoprenaline, BRL37344 did not promote agonist-mediated desensitization and failed to recruit ß-arrestin1/2 to the ß2-adrenoceptor. In conclusion, BRL37344 improved glucose tolerance and increased glucose uptake into skeletal muscle in vivo and ex vivo through a ß2-adrenoceptor-mediated mechanism independently of Akt. BRL37344 was a partial agonist with respect to cAMP, but a full agonist for glucose uptake, and importantly did not cause classical receptor desensitization or internalization of the receptor.


Asunto(s)
Agonistas de Receptores Adrenérgicos beta 2/farmacología , Etanolaminas/farmacología , Transportador de Glucosa de Tipo 4/metabolismo , Glucosa/metabolismo , Músculo Esquelético/efectos de los fármacos , Mioblastos Esqueléticos/efectos de los fármacos , Receptores Adrenérgicos beta 2/efectos de los fármacos , Animales , Línea Celular , AMP Cíclico/metabolismo , Femenino , Transportador de Glucosa de Tipo 4/genética , Humanos , Cinética , Diana Mecanicista del Complejo 2 de la Rapamicina/metabolismo , Ratones Noqueados , Músculo Esquelético/citología , Músculo Esquelético/metabolismo , Mioblastos Esqueléticos/metabolismo , Transporte de Proteínas , Ratas , Receptores Adrenérgicos beta 2/metabolismo , Receptores Adrenérgicos beta 3/genética , Receptores Adrenérgicos beta 3/metabolismo , Transducción de Señal
8.
Pharmacol Res ; 116: 87-92, 2017 02.
Artículo en Inglés | MEDLINE | ID: mdl-28025104

RESUMEN

Uptake of glucose into skeletal muscle and adipose tissue plays a vital role in metabolism and energy balance. Insulin released from ß-islet cells of the pancreas promotes glucose uptake in these target tissues by stimulating translocation of GLUT4 transporters to the cell surface. This process is complex, involving signaling proteins including the mechanistic (or mammalian) target of rapamycin (mTOR) and Akt that intersect with multiple pathways controlling cell survival, growth and proliferation. mTOR exists in two forms, mTOR complex 1 (mTORC1), and mTOR complex 2 (mTORC2). mTORC1 has been intensively studied, acting as a key regulator of protein and lipid synthesis that integrates cellular nutrient availability and energy balance. Studies on mTORC2 have focused largely on its capacity to activate Akt by phosphorylation at Ser473, however recent findings demonstrate a novel role for mTORC2 in cellular glucose uptake. For example, agonists acting at ß2-adrenoceptors (ARs) in skeletal muscle or ß3-ARs in brown adipose tissue increase glucose uptake in vitro and in vivo via mechanisms dependent on mTORC2 but not Akt. In this review, we will focus on the signaling pathways downstream of ß-ARs that promote glucose uptake in skeletal muscle and brown adipocytes, and will highlight how the insulin and adrenergic pathways converge and interact in these cells. The identification of insulin-independent mechanisms that promote glucose uptake should facilitate novel treatment strategies for metabolic disease.


Asunto(s)
Adipocitos/metabolismo , Glucosa/metabolismo , Insulina/metabolismo , Músculo Esquelético/metabolismo , Receptores Adrenérgicos/metabolismo , Transducción de Señal/fisiología , Serina-Treonina Quinasas TOR/metabolismo , Animales , Humanos
9.
Exp Cell Res ; 328(1): 143-155, 2014 Oct 15.
Artículo en Inglés | MEDLINE | ID: mdl-25102377

RESUMEN

The physiological agonist norepinephrine promotes cell proliferation of brown preadipocytes during the process of tissue recruitment. In a primary culture system, cAMP mediates these adrenergic effects. In the present study, we demonstrated that, in contrast to other systems where the mitogenic effect of cAMP requires the synergistic action of (serum) growth factors, especially insulin/IGF, the cAMP effect in brown preadipocytes was independent of serum and insulin. Protein kinase A, rather than Epac, mediated the cAMP mitogenic effect. The Erk 1/2 family of MAPK, the PI3K system and the mTOR complexes were all activated by cAMP, but these activations were not necessary for cAMP-induced cell proliferation; a protein kinase C isoform may be involved in mediating cAMP-activated cell proliferation. We conclude that the generally acknowledged cellular mediators for induction of cell proliferation are not involved in this process in the brown preadipocyte system; this conclusion may be of relevance both for examination of mechanisms for induction of brown adipose tissue recruitment but also for understanding the mechanism behind e.g. certain endocrine neoplasias.


Asunto(s)
Tejido Adiposo Pardo/citología , Tejido Adiposo Pardo/metabolismo , Proliferación Celular , Proteínas Quinasas Dependientes de AMP Cíclico/metabolismo , Proteína Quinasa 1 Activada por Mitógenos/metabolismo , Proteína Quinasa 3 Activada por Mitógenos/metabolismo , Fosfatidilinositol 3-Quinasas/metabolismo , Serina-Treonina Quinasas TOR/metabolismo , Animales , Western Blotting , Ciclo Celular , Células Cultivadas , AMP Cíclico/farmacología , Citometría de Flujo , Factores de Intercambio de Guanina Nucleótido/metabolismo , Masculino , Ratones , Norepinefrina , Fosforilación , Transducción de Señal
10.
Pharmacol Res Perspect ; 12(1): e1176, 2024 Feb.
Artículo en Inglés | MEDLINE | ID: mdl-38332691

RESUMEN

Truncation of the C-terminal tail of the ß2 -AR, transfection of ßARKct or over-expression of a kinase-dead GRK mutant reduces isoprenaline-stimulated glucose uptake, indicating that GRK is important for this response. We explored whether phosphorylation of the ß2 -AR by GRK2 has a role in glucose uptake or if this response is related to the role of GRK2 as a scaffolding protein. CHO-GLUT4myc cells expressing wild-type and mutant ß2 -ARs were generated and receptor affinity for [3 H]-CGP12177A and density of binding sites determined together with the affinity of isoprenaline and BRL37344. Following receptor activation by ß2 -AR agonists, cAMP accumulation, GLUT4 translocation, [3 H]-2-deoxyglucose uptake, and ß2 -AR internalization were measured. Bioluminescence resonance energy transfer was used to investigate interactions between ß2 -AR and ß-arrestin2 or between ß2 -AR and GRK2. Glucose uptake after siRNA knockdown or GRK inhibitors was measured in response to ß2 -AR agonists. BRL37344 was a poor partial agonist for cAMP generation but displayed similar potency and efficacy to isoprenaline for glucose uptake and GLUT4 translocation. These responses to ß2 -AR agonists occurred in CHO-GLUT4myc cells expressing ß2 -ARs lacking GRK or GRK/PKA phosphorylation sites as well as in cells expressing the wild-type ß2 -AR. However, ß2 -ARs lacking phosphorylation sites failed to recruit ß-arrestin2 and did not internalize. GRK2 knock-down or GRK2 inhibitors decreased isoprenaline-stimulated glucose uptake in rat L6 skeletal muscle cells. Thus, GRK phosphorylation of the ß2 -AR is not associated with isoprenaline- or BRL37344-stimulated glucose uptake. However, GRKs acting as scaffold proteins are important for glucose uptake as GRK2 knock-down or GRK2 inhibition reduces isoprenaline-stimulated glucose uptake.


Asunto(s)
Quinasas de Receptores Acoplados a Proteína-G , Glucosa , Ratas , Animales , Isoproterenol/farmacología , Glucosa/metabolismo , Receptores Acoplados a Proteínas G , Receptores Adrenérgicos
11.
Nutrients ; 16(10)2024 May 14.
Artículo en Inglés | MEDLINE | ID: mdl-38794713

RESUMEN

Hypertensive diseases of pregnancy (HDPs) represent a global clinical challenge, affecting 5-10% of women and leading to complications for both maternal well-being and fetal development. At the heart of these complications is endothelial dysfunction, with oxidative stress emerging as a pivotal causative factor. The reduction in nitric oxide (NO) bioavailability is a vital indicator of this dysfunction, culminating in blood pressure dysregulation. In the therapeutic context, although antihypertensive medications are commonly used, they come with inherent concerns related to maternal-fetal safety, and a percentage of women do not respond to these therapies. Therefore, alternative strategies that directly address the pathophysiology of HDPs are required. This article focuses on the potential of the nitrate-nitrite-NO pathway, abundantly present in dark leafy greens and beetroot, as an alternative approach to treating HDPs. The objective of this review is to discuss the prospective antioxidant role of nitrate. We hope our discussion paves the way for using nitrate to improve endothelial dysfunction and control oxidative stress, offering a potential therapy for managing HDPs.


Asunto(s)
Hipertensión Inducida en el Embarazo , Nitratos , Óxido Nítrico , Nitritos , Estrés Oxidativo , Humanos , Estrés Oxidativo/efectos de los fármacos , Embarazo , Nitratos/metabolismo , Femenino , Óxido Nítrico/metabolismo , Nitritos/metabolismo , Hipertensión Inducida en el Embarazo/tratamiento farmacológico , Hipertensión Inducida en el Embarazo/metabolismo , Antioxidantes , Beta vulgaris
12.
Mol Metab ; 85: 101931, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38796310

RESUMEN

OBJECTIVE: Simultaneous activation of ß2- and ß3-adrenoceptors (ARs) improves whole-body metabolism via beneficial effects in skeletal muscle and brown adipose tissue (BAT). Nevertheless, high-efficacy agonists simultaneously targeting these receptors whilst limiting activation of ß1-ARs - and thus inducing cardiovascular complications - are currently non-existent. Therefore, we here developed and evaluated the therapeutic potential of a novel ß2-and ß3-AR, named ATR-127, for the treatment of obesity and its associated metabolic perturbations in preclinical models. METHODS: In the developmental phase, we assessed the impact of ATR-127's on cAMP accumulation in relation to the non-selective ß-AR agonist isoprenaline across various rodent ß-AR subtypes, including neonatal rat cardiomyocytes. Following these experiments, L6 muscle cells were stimulated with ATR-127 to assess the impact on GLUT4-mediated glucose uptake and intramyocellular cAMP accumulation. Additionally, in vitro, and in vivo assessments are conducted to measure ATR-127's effects on BAT glucose uptake and thermogenesis. Finally, diet-induced obese mice were treated with 5 mg/kg ATR-127 for 21 days to investigate the effects on glucose homeostasis, body weight, fat mass, skeletal muscle glucose uptake, BAT thermogenesis and hepatic steatosis. RESULTS: Exposure of L6 muscle cells to ATR-127 robustly enhanced GLUT4-mediated glucose uptake despite low intramyocellular cAMP accumulation. Similarly, ATR-127 markedly increased BAT glucose uptake and thermogenesis both in vitro and in vivo. Prolonged treatment of diet-induced obese mice with ATR-127 dramatically improved glucose homeostasis, an effect accompanied by decreases in body weight and fat mass. These effects were paralleled by an enhanced skeletal muscle glucose uptake, BAT thermogenesis, and improvements in hepatic steatosis. CONCLUSIONS: Our results demonstrate that ATR-127 is a highly effective, novel ß2- and ß3-ARs agonist holding great therapeutic promise for the treatment of obesity and its comorbidities, whilst potentially limiting cardiovascular complications. As such, the therapeutic effects of ATR-127 should be investigated in more detail in clinical studies.


Asunto(s)
Tejido Adiposo Pardo , Ratones Endogámicos C57BL , Músculo Esquelético , Animales , Tejido Adiposo Pardo/metabolismo , Tejido Adiposo Pardo/efectos de los fármacos , Ratones , Músculo Esquelético/metabolismo , Músculo Esquelético/efectos de los fármacos , Masculino , Ratas , Obesidad/metabolismo , Obesidad/tratamiento farmacológico , Hígado Graso/metabolismo , Hígado Graso/tratamiento farmacológico , Termogénesis/efectos de los fármacos , Agonistas Adrenérgicos/farmacología
13.
J Biol Chem ; 287(24): 20674-88, 2012 Jun 08.
Artículo en Inglés | MEDLINE | ID: mdl-22535965

RESUMEN

Caveolins act as scaffold proteins in multiprotein complexes and have been implicated in signaling by G protein-coupled receptors. Studies using knock-out mice suggest that ß(3)-adrenoceptor (ß(3)-AR) signaling is dependent on caveolin-1; however, it is not known whether caveolin-1 is associated with the ß(3)-AR or solely with downstream signaling proteins. We have addressed this question by examining the impact of membrane rafts and caveolin-1 on the differential signaling of mouse ß(3a)- and ß(3b)-AR isoforms that diverge at the distal C terminus. Only the ß(3b)-AR promotes pertussis toxin (PTX)-sensitive cAMP accumulation. When cells expressing the ß(3a)-AR were treated with filipin III to disrupt membrane rafts or transfected with caveolin-1 siRNA, the cyclic AMP response to the ß(3)-AR agonist CL316243 became PTX-sensitive, suggesting Gα(i/o) coupling. The ß(3a)-AR C terminus, SP(384)PLNRF(389)DGY(392)EGARPF(398)PT, resembles a caveolin interaction motif. Mutant ß(3a)-ARs (F389A/Y392A/F398A or P384S/F389A) promoted PTX-sensitive cAMP responses, and in situ proximity assays demonstrated an association between caveolin-1 and the wild type ß(3a)-AR but not the mutant receptors. In membrane preparations, the ß(3b)-AR activated Gα(o) and mediated PTX-sensitive cAMP responses, whereas the ß(3a)-AR did not activate Gα(i/o) proteins. The endogenous ß(3a)-AR displayed Gα(i/o) coupling in brown adipocytes from caveolin-1 knock-out mice or in wild type adipocytes treated with filipin III. Our studies indicate that interaction of the ß(3a)-AR with caveolin inhibits coupling to Gα(i/o) proteins and suggest that signaling is modulated by a raft-enriched complex containing the ß(3a)-AR, caveolin-1, Gα(s), and adenylyl cyclase.


Asunto(s)
Caveolina 1/metabolismo , Subunidades alfa de la Proteína de Unión al GTP Gi-Go/metabolismo , Microdominios de Membrana/metabolismo , Receptores Adrenérgicos beta 3/metabolismo , Transducción de Señal/fisiología , Adenilil Ciclasas/genética , Adenilil Ciclasas/metabolismo , Agonistas Adrenérgicos beta/farmacología , Secuencias de Aminoácidos , Sustitución de Aminoácidos , Animales , Células CHO , Caveolina 1/genética , Cricetinae , Cricetulus , Dioxoles/farmacología , Subunidades alfa de la Proteína de Unión al GTP Gi-Go/genética , Microdominios de Membrana/genética , Ratones , Ratones Noqueados , Mutación Missense , Isoformas de Proteínas/genética , Isoformas de Proteínas/metabolismo , Receptores Adrenérgicos beta 3/genética , Transducción de Señal/efectos de los fármacos
14.
Methods Mol Biol ; 2662: 77-85, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37076672

RESUMEN

Induction of thermogenesis in brown and brite adipocytes has recently emerged as a therapeutic target for novel anti obesogenic therapies necessitating the development of methods that can accurately measure heat production in these cells. Modern isothermal microcalorimetric techniques allow for the high throughput quantitative measurement of cellular heat production with limited sample material. Here, we describe the application of this technique for the measurement of thermogenesis in both floating and adherent adipocytes from various murine depots and human cell lines.


Asunto(s)
Adipocitos Beige , Adipocitos , Humanos , Animales , Ratones , Adipocitos/metabolismo , Línea Celular , Termogénesis , Adipocitos Marrones/metabolismo
15.
ACS Mater Au ; 3(6): 659-668, 2023 Nov 08.
Artículo en Inglés | MEDLINE | ID: mdl-38089657

RESUMEN

Mesoporous silica particles (MSPs) have been studied for their potential therapeutic uses in controlling obesity and diabetes. Previous studies have shown that the level of digestion of starch by α-amylase is considerably reduced in the presence of MSPs, and it has been shown to be caused by the adsorption of α-amylase by MSPs. In this study, we tested a hypothesis of enzymatic deactivation and measured the activity of α-amylase together with MSPs (SBA-15) using comparably small CNP-G3 (2-chloro-4-nitrophenyl alpha-d-maltotrioside) as a substrate. We showed that pore-incorporated α-amylase was active and displayed higher activity and stability compared to amylase in solution (the control). We attribute this to physical effects: the coadsorption of CNP-G3 on the MSPs and the relatively snug fit of the amylase in the pores. Biosorption in this article refers to the process of removal or adsorption of α-amylase from its solution phase into the same solution dispersed in, or adsorbed on, the MSPs. Large quantities of α-amylase were biosorbed (about 21% w/w) on the MSPs, and high values of the maximum reaction rate (Vmax) and the Michaelis-Menten constant (KM) were observed for the enzyme kinetics. These findings show that the reduced enzymatic activity for α-amylase on MSP observed here and in earlier studies was related to the large probe (starch) being too large to adsorb in the pores, and potato starch has indeed a hydrodynamic diameter much larger than the pore sizes of MSPs. Further insights into the interactions and environments of the α-amylase inside the MSPs were provided by 1H fast magic-angle spinning (MAS) nuclear magnetic resonance (NMR) and 13C/15N dynamic nuclear polarization MAS NMR experiments. It could be concluded that the overall fold and solvation of the α-amylase inside the MSPs were nearly identical to those in solution.

16.
Artículo en Inglés | MEDLINE | ID: mdl-36731867

RESUMEN

Mesoporous silica particles (MSPs) can be used as food additives, clinically for therapeutic applications, or as oral delivery vehicles. It has also been discussed to be used for a number of novel applications including treatment for diabetes and obesity. However, a major question for their possible usage has been if these particles persist structurally and retain their effect when passing through the gastrointestinal tract (GIT). A substantial breaking down of the particles could reduce function and be clinically problematic for safety issues. Hence, we investigated the biostability of MSPs of the SBA-15 kind prepared at large scales (100 and 1000 L). The MSPs were orally administered in a murine model and clinically in humans. A joint extraction and calcination method was developed to recover the MSPs from fecal mass, and the MSPs were characterized physically, structurally, morphologically, and functionally before and after GIT passage. Analyses with N2 adsorption, X-ray diffraction, electron microscopy, and as a proxy for general function, adsorption of the enzyme α-amylase, were conducted. The adsorption capacity of α-amylase on extracted MSPs was not reduced as compared to the pristine and control MSPs, and adsorption of up to 17% (w/w) was measured. It was demonstrated that the particles did not break down to any substantial degree and retained their function after passing through the GITs of the murine model and in humans. The fact the particles were not absorbed into the body was ascribed to that they were micron-sized and ingested as agglomerates and too big to pass the intestinal barrier. The results strongly suggest that orally ingested MSPs can be used for a number of clinical applications.

17.
Nat Commun ; 14(1): 173, 2023 01 12.
Artículo en Inglés | MEDLINE | ID: mdl-36635304

RESUMEN

ß2-agonist treatment improves skeletal muscle glucose uptake and whole-body glucose homeostasis in rodents, likely via mTORC2-mediated signalling. However, human data on this topic is virtually absent. We here investigate the effects of two-weeks treatment with the ß2-agonist clenbuterol (40 µg/day) on glucose control as well as energy- and substrate metabolism in healthy young men (age: 18-30 years, BMI: 20-25 kg/m2) in a randomised, placebo-controlled, double-blinded, cross-over study (ClinicalTrials.gov-identifier: NCT03800290). Randomisation occurred by controlled randomisation and the final allocation sequence was seven (period 1: clenbuterol, period 2: placebo) to four (period 1: placebo, period 2: clenbuterol). The primary and secondary outcome were peripheral insulin-stimulated glucose disposal and skeletal muscle GLUT4 translocation, respectively. Primary analyses were performed on eleven participants. No serious adverse events were reported. The study was performed at Maastricht University, Maastricht, The Netherlands, between August 2019 and April 2021. Clenbuterol treatment improved peripheral insulin-stimulated glucose disposal by 13% (46.6 ± 3.5 versus 41.2 ± 2.7 µmol/kg/min, p = 0.032), whereas skeletal muscle GLUT4 translocation assessed in overnight fasted muscle biopsies remained unaffected. These results highlight the potential of ß2-agonist treatment in improving skeletal muscle glucose uptake and underscore the therapeutic value of this pathway for the treatment of type 2 diabetes. However, given the well-known (cardiovascular) side-effects of systemic ß2-agonist treatment, further exploration on the underlying mechanisms is needed to identify viable therapeutic targets.


Asunto(s)
Clenbuterol , Diabetes Mellitus Tipo 2 , Masculino , Humanos , Adolescente , Adulto Joven , Adulto , Glucosa/metabolismo , Clenbuterol/farmacología , Clenbuterol/metabolismo , Diabetes Mellitus Tipo 2/metabolismo , Insulina/metabolismo , Estudios Cruzados , Músculo Esquelético/metabolismo
18.
Eur J Pharm Biopharm ; 173: 1-11, 2022 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-35134512

RESUMEN

Mesoporous silica particles (MSPs) are emerging as an interesting option to reduce calorific uptake as a treatment for obesity and other metabolic conditions. However, their further development under the pharmaceutical regulatory framework is hindered by poor understanding of the mechanisms by which they exert their effects. In the current study the interaction of MSPs with the lipid digestion process is investigated, specifically interactions with lipase enzymes and lipid digestion products as a key contributing factor to lipid absorption and calorific intake. The impact of exposing lipase to MSPs on the enzyme activity was assessed directly using the tributyrin digestion test. The extent of interaction of digestion products with MSPs was studied using selectively radiolabeled bile components and lipids, while the impact on in vivo absorption of lipids was studied by incorporation of radiolabelled lipid (triolein) into milk and administration with and without particles. The studies showed that particles that inhibited lipase activity also tended to interact more extensively with lipid digestion products. In vitro X-ray scattering studies revealed the interaction of some MSPs with lipid digestion products through changes in lipid self-assembly during digestion. The MSPs led to reduced lipid absorption in vivo compared to the control particles and MSP-free milk. While the specific properties of the MSPs that drive the differences between the behavior of MSPs during lipid digestion remain elusive, the studies highlight that interactions with the lipid digestion and absorption pathways are a likely mechanism for reducing calorific uptake.


Asunto(s)
Obesidad , Dióxido de Silicio , Digestión , Humanos , Lípidos , Obesidad/tratamiento farmacológico , Dióxido de Silicio/uso terapéutico
19.
Nutrients ; 14(3)2022 Jan 27.
Artículo en Inglés | MEDLINE | ID: mdl-35276915

RESUMEN

The fatty acid elongase elongation of very long-chain fatty acids protein 2 (ELOVL2) controls the elongation of polyunsaturated fatty acids (PUFA) producing precursors for omega-3, docosahexaenoic acid (DHA), and omega-6, docosapentaenoic acid (DPAn-6) in vivo. Expectedly, Elovl2-ablation drastically reduced the DHA and DPAn-6 in liver mitochondrial membranes. Unexpectedly, however, total PUFAs levels decreased further than could be explained by Elovl2 ablation. The lipid peroxidation process was not involved in PUFAs reduction since malondialdehyde-lysine (MDAL) and other oxidative stress biomarkers were not enhanced. The content of mitochondrial respiratory chain proteins remained unchanged. Still, membrane remodeling was associated with the high voltage-dependent anion channel (VDAC) and adenine nucleotide translocase 2 (ANT2), a possible reflection of the increased demand on phospholipid transport to the mitochondria. Mitochondrial function was impaired despite preserved content of the respiratory chain proteins and the absence of oxidative damage. Oligomycin-insensitive oxygen consumption increased, and coefficients of respiratory control were reduced by 50%. The mitochondria became very sensitive to fatty acid-induced uncoupling and permeabilization, where ANT2 is involved. Mitochondrial volume and number of peroxisomes increased as revealed by transmission electron microscopy. In conclusion, the results imply that endogenous DHA production is vital for the normal function of mouse liver mitochondria and could be relevant not only for mice but also for human metabolism.


Asunto(s)
Mitocondrias Hepáticas , Membranas Mitocondriales , Animales , Ácidos Grasos , Hígado , Ratones , Mitocondrias
20.
Nanomedicine (Lond) ; 17(1): 9-22, 2022 01.
Artículo en Inglés | MEDLINE | ID: mdl-34854740

RESUMEN

Aim: To investigate the effect of oral consumption of engineered mesoporous silica particles, SiPore15®, on long-term blood glucose levels and other metabolic parameters in individuals with prediabetes and newly diagnosed Type 2 diabetes. Method: An open-label, single-arm, multicenter trial was conducted in which SiPore15 was consumed three times daily for 12 weeks. Hemoglobin A1c (HbA1c, primary end point) and an array of metabolic parameters were measured at baseline and throughout the trial. Result: SiPore15 treatment significantly reduced HbA1c by a clinically meaningful degree and improved several disease-associated parameters with minimal side effects. Conclusion: The results from this study demonstrate the potential use of SiPore15 as a treatment for prediabetes that may also delay or prevent the onset of Type 2 diabetes.


Lay abstract Prediabetes is a health condition in which blood sugar levels are higher than normal but below diabetes diagnosis level. Without intervention, prediabetic adults and children are most likely to progress to Type 2 diabetes. To try and prevent this progression, the authors of this article are proposing an innovative solution with an engineered material called SiPore15®. SiPore15 is classified as a medical device, and is made up entirely of porous silica particles. It has been proven to be safe to take orally. The effects of SiPore15 were investigated in people with prediabetes and newly diagnosed Type 2 diabetes. SiPore15 was taken three times a day for 12 weeks. It significantly reduced long-term blood glucose levels and improved other factors related to the disease with minimal side effects. The results from this study show that SiPore15 has the potential to be used as a treatment for prediabetes. This may help to delay or prevent the onset of Type 2 diabetes. Clinical Trial Registration: NCT03823027 (ClinicalTrials.gov).


Asunto(s)
Diabetes Mellitus Tipo 2 , Estado Prediabético , Glucemia/metabolismo , Hemoglobina Glucada/análisis , Hemoglobina Glucada/metabolismo , Humanos , Estado Prediabético/diagnóstico , Estado Prediabético/tratamiento farmacológico , Dióxido de Silicio
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