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Akihiro Shindo

Publications and source records attributed to Akihiro Shindo.

2 recordsLinked to original sources

AKAP12 Regulates Perivascular OPC Accumulation in the Corpus Callosum During Cerebral Hypoperfusion.

Oligodendrocyte precursor cells (OPCs) have been reported to interact with cerebral microvessels, but the extent and spatiotemporal regulation of this relationship across maturation and hypoperfusion-induced stress remain incompletely defined. Here, we quantified OPC-vessel relationships in the mouse corpus callosum using PDGFR-α/OLIG2/CD31 immunohistochemistry and distance-based spatial analysis, classifying OPCs within 10 μm of CD31+ vessels as perivascular OPCs. We show that while total OPC density decreases from development to adulthood, the proportion of perivascular OPCs increases in the mature brain. Under cerebral hypoperfusion induced by bilateral common carotid artery stenosis (BCAS), OPC density and the enrichment of perivascular OPCs were increased by Day 7 and remained elevated through Days 14-28. Proliferative OPCs (Ki67-positive OPCs) were preferentially observed within the vessel-proximal domain, indicating that the perivascular compartment functions as a stress-responsive proliferative niche. To identify regulators of this response, we focused on A-kinase anchoring protein 12 (AKAP12), a scaffolding protein expressed in vascular cells. In middle-aged Akap12 global knockout mice subjected to BCAS, hypoperfusion-induced OPC increase was preserved, but perivascular accumulation was reduced. This defect was accompanied by increased IgG leakage without a corresponding reduction in vascular area density, suggesting that AKAP12 supports the integrity of the perivascular microenvironment required for OPC niche remodeling. Together, these findings reveal the perivascular niche as a hypoperfusion-responsive compartment for OPC activation and suggest that AKAP12-dependent vascular barrier integrity contributes to the maintenance of this oligovascular niche.

Animals↗

Decrease in rat internal anal pressure with the use of a topical ointment containing a killed E. coli culture suspension.

OBJECTIVES: The present study aimed to clarify the mechanisms of a topical ointment containing an Escherichia coli culture suspension and hydrocortisone (Posterisan forte, BCS+HC) in lowering internal anal pressure in conscious rats. MATERIALS AND METHODS: Internal anal pressure was measured using a water-filled balloon system for consecutive 10-min periods. The changes in pressure were evaluated by the number of peaks above 20 mmH2O between 1 and 8 min of recording. RESULTS: Topical intra-anal application of BCS+HC ointment (160 mg/kg) significantly decreased the internal anal pressure at 3 h after the application. Thereafter, this effect reached a maximum decrease at 4 h and lasted until 6 h. BCS+HC ointment (40, 80, and 160 mg/kg) lowered the internal anal pressure at 4-5 h in a dose-dependent manner. The maximum decrease ratios of the ointment and corresponding hydrocortisone-free ointment (Posterisan, BCS) were 32.6+/-12.7 and 25.7+/-9.0%, respectively, revealing significant pressure-lowering effects compared with a placebo (P<0.05). In contrast, the same ointment containing hydrocortisone alone and other ointments containing steroids or local anesthetics had no effects. DISCUSSION: Treatment with 1 mg/kg NG-nitro-L-arginine methyl ester HCl (L-NAME), a non-selective nitric oxide synthase inhibitor, significantly suppressed the effect of BCS+HC ointment (160 mg/kg) in lowering the internal anal pressure. Furthermore, BCS+HC ointment (160 mg/kg) significantly lowered capsaicin-induced high internal anal pressure compared to a placebo. CONCLUSION: These findings suggest that BCS+HC and BCS ointments containing an E. coli culture suspension significantly lowered the internal anal pressure due to endogenous nitric oxide production in conscious rats.

Administration, Topical↗