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Watada, H.

Publications and source records attributed to Watada, H..

2 recordsLinked to original sources

Differential associations of insulin resistance with anterior hippocampal volume in mild cognitive impairment and Alzheimer's disease

Insulin resistance is increasingly recognized as a metabolic factor associated with Alzheimers disease (AD); however, its relevance to hippocampal structural changes--a key pathological feature of AD--across disease stages is not fully understood. To address this issue, we investigated the relationship between insulin resistance, hippocampal gray matter volume, and cognitive performance using data from the Alzheimers Disease Neuroimaging Initiative (ADNI), a large-scale neuroimaging dataset. Insulin resistance was assessed using the Homeostatic Model Assessment of Insulin Resistance (HOMA-IR), and its relationship with brain structure and cognitive performance was evaluated across diagnostic groups. In the mild cognitive impairment (MCI) group, higher insulin resistance was associated with larger anterior hippocampal gray matter volume, whereas in the AD group this association was reversed in direction. Furthermore, in the MCI group, anterior hippocampal gray matter volume was also positively associated with higher Mini-Mental State Examination (MMSE) scores, and an exploratory mediation analysis suggested a significant indirect association linking HOMA-IR, anterior hippocampal volume, and cognitive performance through anterior hippocampal volume. These findings suggest that the relationship between insulin resistance and AD-related brain changes differs across diagnostic groups, highlighting the importance of considering metabolic alterations in relation to disease status.

neuroscience↗

ZIP13 regulates lipid metabolism by changing intracellular iron and zinc balance

Metabolic diseases are caused by a prolonged energy imbalance, and adipose tissue is known to be the main contributor. We previously reported that ZIP13, an Slc39a transporter whose deficiency causes Ehlers-Danlos syndrome spondylocheirodysplastic type 3 associated with lipoatrophy, inhibits the adipocyte browning pathway by modulating intracellular zinc status. The precise mechanisms of how ZIP13 regulates the homeostasis of adipose tissue remain unclear and therefore, we investigated the role of ZIP13 in mature adipocytes using adipocyte-specific Zip13-deficient mice. We herein demonstrate that these mice show accelerated lipolysis and reduced respiratory exchange ratio. In addition, abundance of iron and zinc balance were altered during differentiation in normal adipocytes, whereas iron distribution was substantially affected in Zip13-deficient adipocytes, which downregulated PDE activity and enhanced {beta}-adrenergic receptor signaling pathways. Importantly, we confirmed that ZIP13 could transport both zinc and iron, using the Xenopus oocyte transport system and in silico structural dynamics simulations, and that the defect in iron distribution perturbs proper lipolysis. Together, these results illustrate that ZIP13 acts as a key regulator for lipolysis in adipocytes via the proper use of metals, and that the ZIP13-iron axis plays an important role in regulation of lipid metabolism.

cell biology↗