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Unperturbed islet α-cell function examined in mouse pancreas tissue slices

机译:在小鼠胰腺组织切片中检查了无干扰的胰岛α细胞功能

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摘要

Critical investigation into α-cell biology in health and diabetes has been sparse and at times inconsistent because of the technical difficulties with employing conventional strategies of isolated islets and dispersed single cells. An acute pancreas slice preparation was developed to overcome the enzymatic and mechanical perturbations inherent in conventional islet cell isolation procedures. This preparation preserves intra-islet cellular communication and islet architecture in their in situ native state. α-Cells within tissue slices were directly assessed by patch pipette and electrophysiologically characterized. The identity of the patched cells was confirmed by biocytin dye labelling and immunocytochemistry. α-Cells in mouse pancreas slices exhibited well-described features of INa (excitable at physiological membrane potential), IKATP, small cell size, low resting membrane conductance, and inducible low and high voltage-activated ICa, the latter correlating with exocytosis determined by capacitance measurements. In contrast to previous reports, our large unbiased sampling of α-cells revealed a wide range distribution of all of these parameters, including the amount of KATP conductance, Na+ and Ca2+ current amplitudes, and capacitance changes induced by a train of depolarization pulses. The proposed pancreas slice preparation in combination with standard patch-clamping technique allowed large sampling and rapid assessment of α-cells, which revealed a wide distribution in α-cell ion channel properties. This specific feature explains the apparent inconsistency of previous reports on these α-cell ion channel properties. Our innovative approach will enable future studies into elucidating islet α-cell dysregulation occurring during diabetes.
机译:由于采用分离胰岛和分散单细胞的常规策略存在技术难度,因此对健康和糖尿病中α细胞生物学的关键研究很少,有时甚至不一致。开发了一种急性胰腺切片制剂,以克服常规胰岛细胞分离程序中固有的酶和机械扰动。该制剂将胰岛内细胞通讯和胰岛结构保持在其原位天然状态。通过贴片移液器直接评估组织切片中的α细胞并进行电生理学表征。通过生物胞嘧​​啶染料标记和免疫细胞化学证实了修补细胞的身份。小鼠胰腺切片中的α细胞表现出良好的特征,即INa(在生理膜电位下可激发),IKATP,小细胞大小,低静息膜电导以及可诱导的低电压和高电压激活的ICa,后者与胞吐作用有关电容测量。与以前的报告相比,我们对α细胞的大量无偏取样显示了所有这些参数的广泛分布,包括KATP电导,Na + 和Ca 2 +

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