Nicotinic acetylcholine (ACh) receptors (nAChRs) are included among the targets of a variety of local anesthetics, although the molecular mechanisms of blockade are still poorly understood. Some local anesthetics, such as lidocaine, act on nAChRs by different means through their ability to present as both charged and uncharged molecules. Thus, we explored the mechanisms of nAChR blockade by tetracaine, which at physiological pH is almost exclusively present as a positively charged local anesthetic. The nAChRs from Torpedo electroplaques were transplanted to Xenopus oocytes and the currents elicited by ACh (IAChs), either alone or co-applied with tetracaine, were recorded. Tetracaine reversibly blocked IACh, with an IC50 (i.e., the concentra...
Local anesthetics (LAs) are considered to act primarily by inhibiting voltage-gated Na+ channels. Ho...
This study employs voltage-clamp techniques to survey the action of several local anesthetics on the...
The binding site for an open-channel blocker, QX-222, at mouse muscle nicotinic acetylcholine recept...
<p>Nicotinic acetylcholine (ACh) receptors (nAChRs) are included among the targets of a variety of l...
Nicotinic acetylcholine (ACh) receptors (nAChRs) are included among the targets of a variety of loca...
Most local anesthetics (LAs) are amine compounds bearing one or several phenolic rings. Many of them...
To identify the molecular determinants responsible for lidocaine blockade of muscle-type nAChRs, we ...
Lidocaine bears in its structure both an aromatic ring and a terminal amine, which can be protonated...
Two distinct types of local anesthetics (LAs) have previously been found to block batrachotoxin (BTX...
Lidocaine is a commonly used local anaesthetic that, besides blocking voltage-dependent Na+ channels...
Local anesthetics inhibit the ion channel activity of nicotinic acetylcholine receptors in a noncomp...
Tetracaine is a tertiary amine local anaesthetic which inhibits ryanodine receptors (RyRs), the calc...
Inhibition of neuronal nicotinic receptors can be regulated by the presence of specific amino acids ...
Transient receptor potential vanilloid subtype 1 (TRPV1) chan-nels are essential nociceptive integra...
Transient receptor potential subfamily V, member 1 (TRPV1) channels are important integrators of nox...
Local anesthetics (LAs) are considered to act primarily by inhibiting voltage-gated Na+ channels. Ho...
This study employs voltage-clamp techniques to survey the action of several local anesthetics on the...
The binding site for an open-channel blocker, QX-222, at mouse muscle nicotinic acetylcholine recept...
<p>Nicotinic acetylcholine (ACh) receptors (nAChRs) are included among the targets of a variety of l...
Nicotinic acetylcholine (ACh) receptors (nAChRs) are included among the targets of a variety of loca...
Most local anesthetics (LAs) are amine compounds bearing one or several phenolic rings. Many of them...
To identify the molecular determinants responsible for lidocaine blockade of muscle-type nAChRs, we ...
Lidocaine bears in its structure both an aromatic ring and a terminal amine, which can be protonated...
Two distinct types of local anesthetics (LAs) have previously been found to block batrachotoxin (BTX...
Lidocaine is a commonly used local anaesthetic that, besides blocking voltage-dependent Na+ channels...
Local anesthetics inhibit the ion channel activity of nicotinic acetylcholine receptors in a noncomp...
Tetracaine is a tertiary amine local anaesthetic which inhibits ryanodine receptors (RyRs), the calc...
Inhibition of neuronal nicotinic receptors can be regulated by the presence of specific amino acids ...
Transient receptor potential vanilloid subtype 1 (TRPV1) chan-nels are essential nociceptive integra...
Transient receptor potential subfamily V, member 1 (TRPV1) channels are important integrators of nox...
Local anesthetics (LAs) are considered to act primarily by inhibiting voltage-gated Na+ channels. Ho...
This study employs voltage-clamp techniques to survey the action of several local anesthetics on the...
The binding site for an open-channel blocker, QX-222, at mouse muscle nicotinic acetylcholine recept...