Publications by authors named "Y Yamakawa"

BH3 mimetics are small‑molecule inhibitors of the antiapoptotic Bcl‑2 family and have therapeutic efficacy against hematological malignancies. BH3 mimetic A‑1331852 suppresses colorectal cancer cell proliferation. Progressive resistance to the widely used anticancer agent fluorouracil (5‑FU) is a key reason for colorectal cancer recurrence; therefore, the present study tested if A‑1331852 can suppress the proliferation of 5‑FU‑resistant colorectal cancer cells.

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Interest in kawaii-ness is growing day by day around the world. However, the relationship between the brain and kawaii-ness remains unclear. Previous studies have revealed how adults' brains respond to infants, but there is little research into the relationship between non-infant objects that have kawaii-ness and the brain, particularly its structure.

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Background: Brain-dedicated positron emission tomography (PET) systems offer high spatial resolution and sensitivity for accurate clinical assessments. Attenuation correction (AC) is important in PET imaging, particularly in brain studies. This study assessed the reproducibility of attenuation maps (µ-maps) generated by a specialized time-of-flight (TOF) brain-dedicated PET system for imaging using different PET tracers.

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Objective: Internal carotid artery (ICA) agenesis has been classified into six types: A-F. Type F demonstrates distal reconstitution of the ICA via anastomosis with distal branches of the external carotid artery. Herein, we report the ICA agenesis of type F without rete-like collaterals, which has not been previously reported.

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Article Synopsis
  • The retina plays a crucial role in sensing light, projecting it to the suprachiasmatic nucleus, with the Cholecystokinin receptor type A (Cckar) being vital for this light reception process.
  • Research aimed to clarify how Cckar influences the expression of clock genes in retinal cells, revealing that mRNA levels vary throughout the day and that these rhythms can be altered in mice.
  • Cckar appears to modulate the responsiveness of retinal cells to light, affecting the expression cycle of core clock genes, which may help synchronize biological rhythms with light conditions.
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