Publications by authors named "A J Kinder"

Background: Awareness of paediatric-specific predictors of damage in Childhood-lupus is needed to inform mitigation measures.

Objectives: To ascertain how clinical and demographic variables correlate with damage accrual and identify predictors of damage.

Methods: Analysis included UK JSLE Cohort Study participants.

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Article Synopsis
  • The liver experiences aging-related decline in mitochondrial function, leading to increased risk of liver diseases, as structural changes in mitochondria and metabolism are observed.
  • The study uses advanced imaging techniques to analyze how mitochondrial structure and size alter with age in mice, while also revealing metabolic shifts in older samples.
  • Key findings include the loss of the MICOS complex and reduction of the SAM50 protein, both of which are linked to increased susceptibility to liver diseases, highlighting the role of diet and aging in these processes.
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The kidney filters nutrient waste and bodily fluids from the bloodstream, in addition to secondary functions of metabolism and hormone secretion, requiring an astonishing amount of energy to maintain its functions. In kidney cells, mitochondria produce adenosine triphosphate (ATP) and help maintain kidney function. Due to aging, the efficiency of kidney functions begins to decrease.

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It has long been debated how humans estimate the numerosity of sets of elements and what role continuous visual properties play in this process. The dot comparison task, in which the more numerous of two dot arrays must be selected, is a dominant method to investigate this phenomenon. It has been shown that the visual properties of the two dot patterns strongly influence the comparison.

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Age-related atrophy of skeletal muscle, is characterized by loss of mass, strength, endurance, and oxidative capacity during aging. Notably, bioenergetics and protein turnover studies have shown that mitochondria mediate this decline in function. Although exercise has been the only therapy to mitigate sarcopenia, the mechanisms that govern how exercise serves to promote healthy muscle aging are unclear.

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