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1.
J Invest Dermatol ; 141(4S): 993-1006.e15, 2021 04.
Artigo em Inglês | MEDLINE | ID: mdl-33333126

RESUMO

During aging, skin accumulates senescent cells. The transient presence of senescent cells, followed by their clearance by the immune system, is important in tissue repair and homeostasis. The persistence of senescent cells that evade clearance contributes to the age-related deterioration of the skin. The senescence-associated secretory phenotype of these cells contains immunomodulatory molecules that facilitate clearance but also promote chronic damage. Here, we investigated the epilipidome-the oxidative modifications of phospholipids-of senescent dermal fibroblasts, because these molecules are among the bioactive lipids that were recently identified as senescence-associated secretory phenotype factors. Using replicative- and stress- induced senescence protocols, we identified lysophosphatidylcholines as universally elevated in senescent fibroblasts, whereas other oxidized lipids displayed a pattern that was characteristic for the used senescence protocol. When we tested the lysophosphatidylcholines for senescence-associated secretory phenotype activity, we found that they elicit chemokine release in nonsenescent fibroblasts but also interfere with toll-like receptor 2 and 6/CD36 signaling and phagocytic capacity in macrophages. Using matrix-assisted laser desorption/ionization Fourier transform ion cyclotron resonance mass spectrometry imaging, we localized two lysophosphatidylcholine species in aged skin. This suggests that lysophospholipids may facilitate immune evasion and low-grade chronic inflammation in skin aging.


Assuntos
Senescência Celular/imunologia , Derme/patologia , Fibroblastos/patologia , Lisofosfatidilcolinas/metabolismo , Envelhecimento da Pele/imunologia , Idoso , Células Cultivadas , Quimiocinas/metabolismo , Derme/citologia , Derme/imunologia , Feminino , Fibroblastos/imunologia , Fibroblastos/metabolismo , Humanos , Inflamação/imunologia , Inflamação/patologia , Macrófagos/imunologia , Macrófagos/metabolismo , Pessoa de Meia-Idade , Oxirredução , Fagocitose/imunologia , Cultura Primária de Células
2.
NPJ Aging Mech Dis ; 4: 4, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29675264

RESUMO

There is increasing evidence that senescent cells are a driving force behind many age-related pathologies and that their selective elimination increases the life- and healthspan of mice. Senescent cells negatively affect their surrounding tissue by losing their cell specific functionality and by secreting a pro-tumorigenic and pro-inflammatory mixture of growth hormones, chemokines, cytokines and proteases, termed the senescence-associated secretory phenotype (SASP). Here we identified an extract from the plant Solidago virgaurea subsp. alpestris, which exhibited weak senolytic activity, delayed the acquisition of a senescent phenotype and induced a papillary phenotype with improved functionality in human dermal fibroblasts. When administered to stress-induced premature senescent fibroblasts, this extract changed their global mRNA expression profile and particularly reduced the expression of various SASP components, thereby ameliorating the negative influence on nearby cells. Thus, the investigated plant extract represents a promising possibility to block age-related loss of tissue functionality.

3.
Aging Cell ; 12(3): 446-58, 2013 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-23496142

RESUMO

Cellular senescence of normal human cells has by now far exceeded its initial role as a model system for aging research. Many reports show the accumulation of senescent cells in vivo, their effect on their microenvironment and its double-edged role as tumour suppressor and promoter. Importantly, removal of senescent cells delays the onset of age-associated diseases in mouse model systems. To characterize the role of miRNAs in cellular senescence of endothelial cells, we performed miRNA arrays from HUVECs of five different donors. Twelve miRNAs, comprising hsa-miR-23a, hsa-miR-23b, hsa-miR-24, hsa-miR-27a, hsa-miR-29a, hsa-miR-31, hsa-miR-100, hsa-miR-193a, hsa-miR-221, hsa-miR-222 and hsa-let-7i are consistently up-regulated in replicatively senescent cells. Surprisingly, also miR-21 was found up-regulated by replicative and stress-induced senescence, despite being described as oncogenic. Transfection of early passage endothelial cells with miR-21 resulted in lower angiogenesis, and less cell proliferation mirrored by up-regulation of p21(CIP1) and down-regulation of CDK2. These two cell-cycle regulators are indirectly regulated by miR-21 via its validated direct targets NFIB (Nuclear factor 1 B-type), a transcriptional inhibitor of p21(CIP) (1) , and CDC25A, which regulates CDK2 activity by dephosphorylation. Knock-down of either NFIB or CDC25A shows a phenocopy of over-expressing miR-21 in regard to cell-cycle arrest. Finally, miR-21 over-epxression reduces the replicative lifespan, while stable knock-down by sponges extends the replicative lifespan of endothelial cells. Therefore, we propose that miR-21 is the first miRNA that upon its knock-down extends the replicative lifespan of normal human cells.


Assuntos
Proliferação de Células , Senescência Celular/genética , Quinase 2 Dependente de Ciclina/metabolismo , Inibidor de Quinase Dependente de Ciclina p21/metabolismo , MicroRNAs/genética , MicroRNAs/metabolismo , Apoptose , Células Cultivadas , Quinase 2 Dependente de Ciclina/biossíntese , Inibidor de Quinase Dependente de Ciclina p21/genética , Regulação para Baixo , Células Endoteliais da Veia Umbilical Humana/metabolismo , Humanos , Fatores de Transcrição NFI/genética , Fatores de Transcrição NFI/metabolismo , Neovascularização Fisiológica/genética , Interferência de RNA , RNA Interferente Pequeno , Transfecção , Regulação para Cima , Fosfatases cdc25/genética
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