Instituto de Investigación en Biomedicina de Buenos Aires (IBioBA-CONICET), Partner Institute of the Max Planck Society, Buenos Aires C1425FQD, Argentina.
Instituto de Investigación en Biomedicina de Buenos Aires (IBioBA-CONICET), Partner Institute of the Max Planck Society, Buenos Aires C1425FQD, Argentina
Cold Spring Harb Protoc. 2022 Aug 1;2022(8):pdb.prot107936. doi: 10.1101/pdb.prot107936.
is widely used as a model organism in all fields of biomedical research. In neuroscience, vast amounts of information have been gained using this little fly including the identification of neuronal circuits that regulate behaviors, the unraveling of their genetic underpinnings, and the molecular mechanisms involved. With plenty of genetic tools available to manipulate and infer neuronal activity, the direct measurement of electrical properties of fly neurons has lagged behind. This is due to the intricacies of performing electrical recordings in small cells such as fly central neurons. The patch-clamp technique offers the unique possibility of directly measuring the electrical properties of neurons. This step-by-step protocol provides detailed advice for mastering this technique.
果蝇被广泛应用于生物医学研究的各个领域。在神经科学中,利用这种小果蝇获得了大量信息,包括调节行为的神经元回路的鉴定、其遗传基础的阐明以及涉及的分子机制。有大量的遗传工具可用于操纵和推断神经元活动,但对果蝇神经元的电特性的直接测量却落后了。这是由于在诸如蝇中央神经元等小细胞中进行电记录的复杂性所致。膜片钳技术提供了直接测量神经元电特性的独特可能性。本分步协议提供了掌握该技术的详细建议。