Mostrando 101 - 120 Resultados de 140 Para Buscar '(A) Senile Animal', tiempo de consulta: 0.27s Limitar resultados
  1. 101
    “…Neuropathological lesions of AD are neurofibrillary tangles (NFTs), and senile plaques comprise the accumulated amyloid-beta (Aβ), loaded with metal ions including Cu, Fe, or Zn. …”
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  2. 102
    “…Mastication stimuli are known to relieve senile dementia in human and animal studies. However, few studies have focused on its effect on weaning-stage animals and the underlying molecular processes. …”
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  3. 103
    por Ménard, Caroline, Quirion, Rémi
    Publicado 2012
    “…Normal aging is generally characterized by a slow decline of cognitive abilities albeit with marked individual differences. …”
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  4. 104
    “…Conclusion: These data suggest that miR-138-5p as a mechanoresponsive miRNA accounts for the mechanosensitivity of the bone anabolic response and that inhibition of miR-138-5p in osteoblasts may be a novel bone anabolic sensitization strategy for ameliorating disuse or senile osteoporosis.…”
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  5. 105
  6. 106
    “…Alzheimer’s disease (AD) is a chronic neurodegenerative disease, with the characteristics of neurofibrillary tangle (NFT) and senile plaque (SP) formation. …”
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  7. 107
    “…Animal models of AD deposit senile plaques and exhibit structural and functional deficits in neurons and neural networks. …”
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  8. 108
    “…The Emory cataract (Em) mouse mutant has long been proposed as an animal model for age-related or senile cataract in humans—a leading cause of visual impairment. …”
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  9. 109
    “…In order to further study this relationship, we have induced hypoinsulinemic diabetes to APPswe/PS1dE9 (APP/PS1) mice, a classical model of AD. APP/PS1 mice received streptozotocin (STZ) ip at 18 weeks of age, when AD pathology is not yet established in this animal model. …”
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  10. 110
    “…Immunohistochemical studies have revealed that cystatin C (CysC) co-localizes with amyloid-β (Αβ) in amyloid-laden vascular walls and in the senile plaque cores of amyloid. In vitro and in vivo animal studies suggest that CysC protects against neurodegeneration by inhibition of cysteine proteases, inhibition of Αβ aggregation, induction of autophagy and induction of cell division. …”
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  11. 111
    “…Furthermore, rhHAPLN1 significantly increased sirtuins levels (i.e., SIRT1/2/6) without TGF-β1 and inhibited acetylated p300 levels that were increased by TGF-β1. rhHAPLN1 is crucial in regulating cellular senescence, including p53, p21, and p16, and inflammation markers such as p-NF-κB and Nrf2. Both senile emphysema mouse model induced via intraperitoneal rhHAPLN1 injections and porcine pancreatic elastase (PPE)-induced COPD mouse model generated via rhHAPLN1-containing aerosols inhalations showed a significantly potent efficacy in reducing alveolar spaces enlargement. …”
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  12. 112
    “…BACKGROUND: Gut microbiota (GM) dysbiosis is closely related to bone loss and the occurrence of osteoporosis in animals and human. However, little is known about the effect and the mechanisms of fecal microbiota transplantation (FMT) on bone in the treatment of senile osteoporosis. …”
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  13. 113
    “…Exposure of APP mice to fluoride elevated the number of senile plaques and level of Aβ42, Iba-1, and BACE1, while reducing the level of ADAM10 in their brains. …”
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  14. 114
    “…RESULTS: The C-terminal sortilin antibody, which labeled senile plaques in the AD human cerebral sections, did not display extracellular immunolabeling in the transgenic mouse or aged monkey brain sections with Aβ deposition. …”
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  15. 115
  16. 116
    “…Although it is established that the composition of the human intestinal microbiota changes with age, transition of the intestinal microbiota of animals with age has not been well studied. In the present study, we collected fresh fecal samples from dogs of 5 different age groups (pre-weanling, weanling, young, aged, senile) and analyzed the compositions of their intestinal microbiota with a culture-based method. …”
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  17. 117
    “…BACKGROUND: Parkinson’s disease (PD) is the second most common neurodegenerative disorder affecting the senile population with manifestation of motor disability and cognitive impairment. …”
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  18. 118
    “…Furthermore, oligomeric Aβ has also been shown to induce synapse loss and cognitive impairment in animals. …”
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  19. 119
    “…Our study demonstrated that CIN could ameliorate tau phosphorylation by down-regulating the activity of GSK-3β and reducing Aβ production by inhibiting the activity of BACE-1 both in vivo and in vitro. …”
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  20. 120
    “…Within captive population, the GEE model identified ‘age’ (senile, adult and subadult) as risk a factor potentially associated with HEV exposure in the Iberian lynx. …”
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