Gigaseal Formation in Patch Clamping
Details
This book presents an investigation of gigaseal formation using micro/nanotechnology. The aims of the book are twofold. First, it explains the mechanisms of gigaseal formation using the latest discoveries. Second, it provides practical techniques for frequent formation of high resistance seals. The formation of a high-resistance electrical seal, also known as a gigaseal, between a cell membrane and a glass micropipette tip is essential in patch-clamp experiments. Even though four decades have passed since the introduction of the patch-clamping technique by Neher and Sakmann, gigaseal formation remains an obstacle in developing the high-throughput ion channel screening systems required by the pharmaceutical industry. Here the authors share their latest methods for achieving gigaseal formation and describe techniques that are highly desirable at both research and industrial levels. Nanotechnology has been found to be a powerful tool for studying and modifying glass micropipettes and in tackling the problem of gigaseal formation.
Explains the mechanisms of gigaseal formation to the latest level of discoveries Provides practical techniques, which enable frequent formation of high resistance seals Shares authors´ recent practice in acquiring gigaseal formation using micropipettes Includes supplementary material: sn.pub/extras
Inhalt
Chapter 1 Introduction.- Chapter 2 Development of patch clamping.- Chapter 3 Gigaseal formation.- Chapter 4 Effect of roughness on gigaseal formation.- Chapter 5 Effect of hydrophilicIty on gigaseal formation.- Chapter 6 Effect of tip size on gigaseal formation.- Chapter 7 Study of glass micropipettes from tip formation to characterization.- References.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783642391279
- Auflage 2014
- Sprache Englisch
- Genre Allgemeines & Lexika
- Lesemotiv Verstehen
- Größe H235mm x B155mm x T7mm
- Jahr 2013
- EAN 9783642391279
- Format Kartonierter Einband
- ISBN 3642391273
- Veröffentlichung 07.08.2013
- Titel Gigaseal Formation in Patch Clamping
- Autor Kyle Jiang , Majid Malboubi
- Untertitel With Applications of Nanotechnology
- Gewicht 178g
- Herausgeber Springer Berlin Heidelberg
- Anzahl Seiten 108