Microinjection into cultured hippocampal neurons: a straightforward approach for controlled cellular delivery of nucleic acids, peptides and antibodies.

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Microinjection into cultured hippocampal neurons: a straightforward approach for controlled cellular delivery of nucleic acids, peptides and antibodies. / Lappe-Siefke, Corinna; Maas, Christoph; Kneussel, Matthias.

in: J NEUROSCI METH, Jahrgang 175, Nr. 1, 1, 2008, S. 88-95.

Publikationen: SCORING: Beitrag in Fachzeitschrift/ZeitungSCORING: ZeitschriftenaufsatzForschungBegutachtung

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@article{b62b640fd9ff4394b3763a1d966b06ca,
title = "Microinjection into cultured hippocampal neurons: a straightforward approach for controlled cellular delivery of nucleic acids, peptides and antibodies.",
abstract = "Functional studies in neurons often require controllable simultaneous delivery of different molecules to individual cells within networks. Microinjection represents a suitable and alternative method to deliver cDNAs, oligonucleotides, siRNAs, peptides or antibodies for expression, expression knockdown or loss-of-function studies, respectively. Moreover, molecules can be systematically applied to individual neurons in a controlled manner without affecting neighbouring cells. Establishment of microinjection is often complicated and time consuming. Here we describe a simple and reliable protocol for molecular cell biologists to establish injection of various molecules (ng to microg range) to living neurons in a reasonable period of time.",
author = "Corinna Lappe-Siefke and Christoph Maas and Matthias Kneussel",
year = "2008",
language = "Deutsch",
volume = "175",
pages = "88--95",
journal = "J NEUROSCI METH",
issn = "0165-0270",
publisher = "Elsevier",
number = "1",

}

RIS

TY - JOUR

T1 - Microinjection into cultured hippocampal neurons: a straightforward approach for controlled cellular delivery of nucleic acids, peptides and antibodies.

AU - Lappe-Siefke, Corinna

AU - Maas, Christoph

AU - Kneussel, Matthias

PY - 2008

Y1 - 2008

N2 - Functional studies in neurons often require controllable simultaneous delivery of different molecules to individual cells within networks. Microinjection represents a suitable and alternative method to deliver cDNAs, oligonucleotides, siRNAs, peptides or antibodies for expression, expression knockdown or loss-of-function studies, respectively. Moreover, molecules can be systematically applied to individual neurons in a controlled manner without affecting neighbouring cells. Establishment of microinjection is often complicated and time consuming. Here we describe a simple and reliable protocol for molecular cell biologists to establish injection of various molecules (ng to microg range) to living neurons in a reasonable period of time.

AB - Functional studies in neurons often require controllable simultaneous delivery of different molecules to individual cells within networks. Microinjection represents a suitable and alternative method to deliver cDNAs, oligonucleotides, siRNAs, peptides or antibodies for expression, expression knockdown or loss-of-function studies, respectively. Moreover, molecules can be systematically applied to individual neurons in a controlled manner without affecting neighbouring cells. Establishment of microinjection is often complicated and time consuming. Here we describe a simple and reliable protocol for molecular cell biologists to establish injection of various molecules (ng to microg range) to living neurons in a reasonable period of time.

M3 - SCORING: Zeitschriftenaufsatz

VL - 175

SP - 88

EP - 95

JO - J NEUROSCI METH

JF - J NEUROSCI METH

SN - 0165-0270

IS - 1

M1 - 1

ER -