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Stansfield, Kirstie H.
Worley, Paul F.
Thompson, Richard E.
Guilarte, Tomás R.
Neal, April P.
Stansfield, Kirstie H.
Worley, Paul F.
Thompson, Richard E.
Guilarte, Tomás R.
author Neal, April P.
Stansfield, Kirstie H.
Worley, Paul F.
Thompson, Richard E.
Guilarte, Tomás R.
spellingShingle Neal, April P.
Stansfield, Kirstie H.
Worley, Paul F.
Thompson, Richard E.
Guilarte, Tomás R.
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Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
Toxicology
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spelling Neal, April P. Stansfield, Kirstie H. Worley, Paul F. Thompson, Richard E. Guilarte, Tomás R. 1096-6080 1096-0929 Oxford University Press (OUP) Toxicology http://dx.doi.org/10.1093/toxsci/kfq111 Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling Toxicological Sciences
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title Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_unstemmed Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_full Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_fullStr Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_full_unstemmed Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_short Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_sort lead exposure during synaptogenesis alters vesicular proteins and impairs vesicular release: potential role of nmda receptor–dependent bdnf signaling
topic Toxicology
url http://dx.doi.org/10.1093/toxsci/kfq111
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author Neal, April P., Stansfield, Kirstie H., Worley, Paul F., Thompson, Richard E., Guilarte, Tomás R.
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spelling Neal, April P. Stansfield, Kirstie H. Worley, Paul F. Thompson, Richard E. Guilarte, Tomás R. 1096-6080 1096-0929 Oxford University Press (OUP) Toxicology http://dx.doi.org/10.1093/toxsci/kfq111 Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling Toxicological Sciences
spellingShingle Neal, April P., Stansfield, Kirstie H., Worley, Paul F., Thompson, Richard E., Guilarte, Tomás R., Toxicological Sciences, Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling, Toxicology
title Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_full Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_fullStr Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_full_unstemmed Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_short Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
title_sort lead exposure during synaptogenesis alters vesicular proteins and impairs vesicular release: potential role of nmda receptor–dependent bdnf signaling
title_unstemmed Lead Exposure during Synaptogenesis Alters Vesicular Proteins and Impairs Vesicular Release: Potential Role of NMDA Receptor–Dependent BDNF Signaling
topic Toxicology
url http://dx.doi.org/10.1093/toxsci/kfq111