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Niihori, M.

Publications and source records attributed to Niihori, M..

2 recordsLinked to original sources

Efficient Isolation and Phenotypic Characterization of Primary Rat Pulmonary Pericytes

Pericytes are essential regulators of pulmonary vascular homeostasis, but their isolation from rat lung tissue is challenging because no single marker uniquely identifies them and contaminating fibroblasts, endothelial cells, hematopoietic cells, and vascular smooth muscle cells can persist during isolation and culture. Here, we describe a rapid and efficient protocol for the isolation of primary rat pulmonary pericytes using sequential magnetic depletion of CD45-positive hematopoietic cells and CD31-positive endothelial cells, followed by positive selection for NG2-positive cells. The isolated cells were expanded in culture and characterized by immunofluorescence and functional co-culture assays. Cultured cells displayed typical pericyte morphology and expressed the pericyte-associated markers NG2, PDGFR{beta}, and 3G5, with minimal expression of CD31, CD45, PDGFR and MYH11. In endothelial cell-pericyte ECM gel co-culture assays, isolated pericytes associated with endothelial cords and were frequently observed near network branch points and junctions, further supporting their pericyte identity. This method yields an enriched population of primary pulmonary pericytes suitable for downstream applications, including cell culture and functional studies. Overall, this streamlined protocol provides a practical platform for studying pulmonary pericyte biology in rat models of health and vascular disease.

cell biology↗

Acquirement of the autonomic nervous system modulation evaluated by heart rate variability in medaka (Oryzias latipes)

Small teleosts have recently been established as models of human diseases. However, measuring heart rate by electrocardiography is highly invasive for small fish. The physiological nature and function of vertebrate autonomic nervous system (ANS) modulation of the heart has traditionally been investigated in larvae with an incompletely developed ANS or in anesthetized adults, whose ANS activity may possibly be disturbed under anesthesia. Here, we defined the frequency characteristics of heart rate variability (HRV) modulated by the ANS from observations of heart movement in high-speed movie images and changes in ANS regulation under environmental stimulation in unanesthetized adult medaka (Oryzias latipes), a small teleost. The HRV was significantly reduced by atropine (1 mM) in the 0.25 - 0.65 Hz and by propranolol (100 M) at 0.65-1.25 Hz range, suggesting that HRV in adult medaka is modulated by both the parasympathetic and sympathetic nervous systems within these frequency ranges. Such modulations of HRV by the ANS were remarkably suppressed in anesthetized adult medaka. Continuous exposure to light suppressed HRV only in the 0.25 - 0.65 Hz range, indicating parasympathetic withdrawal. The power of HRV increased along developmental processes. These results suggest that ANS modulation of the heart in adult medaka is frequency-dependent phenomenon, and that the impact of long-term environmental stimuli on ANS activities can be precisely evaluated in unanesthetized adult fish using this method.

physiology↗