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1.
J Cell Physiol ; 227(5): 1980-7, 2012 May.
Artículo en Inglés | MEDLINE | ID: mdl-21732369

RESUMEN

Hypertrophy of human mesangial cells (HMC) is among the earliest characteristics in patients with diabetic nephropathy (DN). Recently, we observed the upregulation of parathyroid hormone (PTH)-related protein (PTHrP) in experimental DN, associated with renal hypertrophy. Herein, we first examined whether PTHrP was overexpressed in human DN, and next assessed the putative role of this protein on high glucose (HG)-induced HMC hypertrophy. As previously found in mice, kidneys from diabetic patients showed an increased tubular and glomerular immunostaining for PTHrP. In HMC, HG medium increased PTHrP protein expression associated with the development of hypertrophy as assessed by cell protein content. This effect was also induced by PTHrP(1-36). HG and PTHrP(1-36)-induced hypertrophy were associated with an increase in cyclin D1 and p27Kip1 protein expression, a decreased cyclin E expression, and the prevention of cyclin E/cdk2 complex activation. Both PTHrP neutralizing antiserum (α-PTHrP) and the PTH/PTHrP receptor antagonist (JB4250) were able to abolish HG induction of hypertrophy, the aforementioned changes in cell cycle proteins, and also TGF-ß1 up-regulation. Moreover, the capability of both HG and PTHrP(1-36) to induce HMC hypertrophy was abolished by α-TGFß1. These data show for the first time that PTHrP is upregulated in the kidney of patients with DN. Our findings also demonstrate that PTHrP acts as an important mediator of HG-induced HMC hypertrophy by modulating cell cycle regulatory proteins and TGF-ß1.


Asunto(s)
Nefropatías Diabéticas/metabolismo , Nefropatías Diabéticas/patología , Riñón/metabolismo , Riñón/patología , Células Mesangiales/metabolismo , Células Mesangiales/patología , Proteína Relacionada con la Hormona Paratiroidea/metabolismo , Animales , Proliferación Celular , Células Cultivadas , Ciclina D1/genética , Ciclina D1/metabolismo , Ciclina E/genética , Ciclina E/metabolismo , Quinasa 2 Dependiente de la Ciclina/genética , Quinasa 2 Dependiente de la Ciclina/metabolismo , Inhibidor p27 de las Quinasas Dependientes de la Ciclina/genética , Inhibidor p27 de las Quinasas Dependientes de la Ciclina/metabolismo , Femenino , Humanos , Hipertrofia/metabolismo , Hipertrofia/patología , Riñón/citología , Masculino , Células Mesangiales/citología , Ratones , Persona de Mediana Edad , Proteína Relacionada con la Hormona Paratiroidea/genética , Factor de Crecimiento Transformador beta1/metabolismo
2.
Aging Dis ; 9(5): 769-784, 2018 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-30271655

RESUMEN

In mammalians, advancing age is associated with sarcopenia, the progressive and involuntary loss of muscle mass and strength. Hyperphosphatemia is an aging-related condition involved in several pathologies. The aim of this work was to assess whether hyperphosphatemia plays a role in the age-related loss of mass muscle and strength by inducing cellular senescence in murine myoblasts and to explore the intracellular mechanism involved in this effect. Cultured mouse C2C12 cells were treated with 10 mM beta-glycerophosphate (BGP] at different periods of time to induce hyperphosphatemia. BGP promoted cellular senescence after 24 h of treatment, assessed by the increased expression of p53, acetylated-p53 and p21 and senescence associated ß-galactosidase activity. In parallel, BGP increased ILK expression and activity, followed by mTOR activation and autophagy reduction. Knocking-down ILK expression increased autophagy and protected cells from senescence induced by hyperphosphatemia. BGP also reduced the proliferative capacity of cultured myoblasts. Old mice (24-months-old] presented higher serum phosphate concentration, lower forelimb strength, higher expression of p53 and ILK and less autophagy in vastus muscle than young mice (5-months-old]. In conclusion, we propose that hyperphosphatemia induces senescence in cultured myoblasts through ILK overexpression, reducing their proliferative capacity, which could be a mechanism involved in the development of sarcopenia, since old mice showed loss of muscular strength correlated with high serum phosphate concentration and increased levels of ILK and p53.

3.
Aging (Albany NY) ; 9(3): 778-789, 2017 03 08.
Artículo en Inglés | MEDLINE | ID: mdl-28278131

RESUMEN

Vascular calcification is commonly seen in elderly people, though it can also appear in middle-aged subjects affected by premature vascular aging. The aim of this work is to test the involvement of microvesicles (MVs) produced by senescent endothelial cells (EC) and from plasma of elderly people in vascular calcification. The present work shows that MVs produced by senescent cultured ECs, plus those found in the plasma of elderly subjects, promote calcification in vascular smooth muscle cells. Only MVs from senescent ECs, and from elderly subjects' plasma, induced calcification. This ability correlated with these types of MVs' carriage of: a) increased quantities of annexins (which might act as nucleation sites for calcification), b) increased quantities of bone-morphogenic protein, and c) larger Ca contents. The MVs of senescent, cultured ECs, and those present in the plasma of elderly subjects, promote vascular calcification. The present results provide mechanistic insights into the observed increase in vascular calcification-related diseases in the elderly, and in younger patients with premature vascular aging, paving the way towards novel therapeutic strategies.


Asunto(s)
Envejecimiento/patología , Calcio/metabolismo , Micropartículas Derivadas de Células/patología , Células Endoteliales/patología , Calcificación Vascular , Anciano , Anciano de 80 o más Años , Células Cultivadas , Senescencia Celular , Humanos , Calcificación Vascular/metabolismo , Calcificación Vascular/patología , Adulto Joven
4.
Mech Ageing Dev ; 152: 43-55, 2015 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-26467393

RESUMEN

Aging is conditioned by genetic and environmental factors. Hyperphosphatemia is related to some pathologies, affecting to vascular cells behavior. This work analyze whether high concentration of extracellular phosphate induces vascular smooth muscle cells senescence, exploring the intracellular mechanisms and highlighting the in vivo relevance of this phenomenon. Human aortic smooth muscle cells treated with ß-Glycerophosphate (BGP, 10mM) suffered cellular senescence by increasing p53, p21 and p16 expression and the senescence associated ß-galactosidase activity. In parallel, BGP induced ILK overexpression, dependent on the IGF-1 receptor activation, and oxidative stress. Down-regulating ILK expression prevented BGP-induced senescence and oxidative stress. Aortic rings from young rats treated with 10mM BGP for 48h, showed increased p53, p16 and ILK expression and SA-ß-gal activity. Seven/eight nephrectomized rats feeding a hyperphosphatemic diet and fifteenth- month old mice showed hyperphosphatemia and aortic ILK, p53 and p16 expression. In conclusion, we demonstrated that high extracellular concentration of phosphate induced senescence in cultured smooth muscle through the activation of IGF-1 receptor and ILK overexpression and provided solid evidences for the in vivo relevance of these results since aged animals showed high levels of serum phosphate linked to increased expression of ILK and senescence genes.


Asunto(s)
Senescencia Celular , Regulación Enzimológica de la Expresión Génica , Hiperfosfatemia/enzimología , Miocitos del Músculo Liso/enzimología , Proteínas Serina-Treonina Quinasas/biosíntesis , Regulación hacia Arriba , Animales , Células Cultivadas , Modelos Animales de Enfermedad , Humanos , Hiperfosfatemia/patología , Masculino , Ratones , Músculo Liso Vascular/enzimología , Músculo Liso Vascular/patología , Miocitos del Músculo Liso/patología , Ratas , Ratas Wistar
5.
Int J Biochem Cell Biol ; 54: 98-110, 2014 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-25043688

RESUMEN

Hyperglycemia is involved in the diabetic complication of different organs and can elevate serum osmolarity. Here, we tested whether hyperosmolarity promoted by high glucose levels induces cellular senescence in renal cells. We treated Wistar rats with streptozotocin to induce diabetes or with consecutive daily injections of mannitol to increase serum osmolarity and analyzed p53 and p16 genes in renal cortex by immunohistochemistry. Both diabetic and mannitol treated rats showed a significant increase in serum osmolarity, without significant signs of renal dysfunction, but associated with increased staining for p53 and p16 in the renal cortex. An increase in p53 and p16 expression was also found in renal cortex slices and glomeruli isolated from healthy rats, which were later treated with 30 mM glucose or mannitol. Intracellular mechanisms involved were analyzed in cultured human glomerular mesangial cells treated with 30 mM glucose or mannitol. After treatments, cells showed increased p53, p21 and p16 expression and elevated senescence-associated ß-galactosidase activity. Senescence was prevented when myo-inositol was added before treatment. High glucose or mannitol induced constitutive activation of Ras and ERK pathways which, in turn, were activated by oxidative stress. In summary, hyperosmolarity induced renal senescence, particularly in glomerular mesangial cells, increasing oxidative stress, which constitutively activated Ras-ERK 1/2 pathway. Cellular senescence could contribute to the organ dysfunction associated with diabetes.


Asunto(s)
Senescencia Celular , Diabetes Mellitus Experimental/patología , Mesangio Glomerular/patología , Glucosa/farmacología , Hiperglucemia/complicaciones , Glomérulos Renales/patología , Presión Osmótica , Animales , Western Blotting , Proliferación Celular , Células Cultivadas , Diabetes Mellitus Experimental/tratamiento farmacológico , Diabetes Mellitus Experimental/metabolismo , Mesangio Glomerular/efectos de los fármacos , Mesangio Glomerular/metabolismo , Humanos , Técnicas para Inmunoenzimas , Inmunoprecipitación , Glomérulos Renales/efectos de los fármacos , Glomérulos Renales/metabolismo , Sistema de Señalización de MAP Quinasas , Masculino , Estrés Oxidativo , Ratas , Ratas Wistar , Proteínas ras
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