Literature DB >> 28849442

Taurine Recovery of Learning Deficits Induced by Developmental Pb2+ Exposure.

Lorenz S Neuwirth1,2,3,4,5,6, Nicholas P Volpe7,8, Chuyon Corwin7,8,9, Simon Ng10, Navita Madan10, Alyssa M Ferraro10, Yevgeniy Furman10, Abdeslem El Idrissi7,8,9.   

Abstract

Lead (Pb2+) is a historically well-documented environmental neurotoxin that produces developmental cognitive learning and memory impairments. These early neurodevelopmental impairments cause increased brain excitability via disruption of Ca2+ mediated signaling during critical periods of synaptogenesis inducing competition with Ica2+ through NMDARs resulting in altered brain development and functioning across the lifespan. Interestingly, Pb2+ has been shown to decrease GABA transport and uptake, decrease spontaneous and depolarization-evoked GABA neurotransmission and lower the expression of glutamic acid decarboxylase (GAD); thereby, limiting excitatory GABAergic influences that regulate early developmental brain excitability and reducing inhibition across mature GABAergic networks. Taurine has been shown to regulate brain excitability in the mature brain through GABAAR mediated inhibition, thereby attenuating improper brain excitability. Mechanistically, taurine is developmentally a potent neuromodulator that acts as a GABAAR agonist and more recently has been reported as a partial agonist for NMDARs through glycine sites. We investigated the effects of developmental Pb2+ exposure on the rat's mature inhibitory cognitive control abilities pharmacologically through anxiety and emotional learning-related behaviors and whether taurine could recover Pb2+ induced neurodevelopmental behavioral deficits later in life. Results showed that Pb2+ increased anxiety symptoms in the open field and hole board test, increased sensitivity to context fear training with cognitive deficits in both acquisition and extinction learning while producing learning deficits and inabilities in acquiring inhibitory learned associations through the acoustic startle response and pre-pulse inhibition (ASR-PPI) test. Interestingly, taurine recovered Pb2+ developmentally induced behavioral deficits in the open field and hole board test evidenced by decreased freezing and increased exploration behaviors and facilitated inhibitory dependent ASR-PPI learning to levels higher than controls. In contrast, Baclofen, a GABABR agonist, dose dependently showed no interaction with Pb2+ effects on ASR-PPI learning. Thus, taurine may work as an important neuromodulator at both GABAARs and NMDARs glycine sites, thereby increasing inhibition, enhancing Ca2+-mediated signaling, and decreasing the altered brain excitability, which impedes learning and memory from early Pb2+ exposure. Taken together our data suggests that GABAAR dependent inhibitory learning is altered by early Pb2+ exposure and taurine was able to recover these Pb2+ induced deficits through neuromodulation of GABAARs and potentially NMDARs later in life. These findings may pave the way for further exploration of taurine as a pharmacotherapy for neurodevelopmental lead poisoning in both animal and clinical models.

Entities:  

Keywords:  Behavior; GABA; Lead (Pb2+); Neurodevelopment; Recovery; Taurine

Mesh:

Substances:

Year:  2017        PMID: 28849442     DOI: 10.1007/978-94-024-1079-2_4

Source DB:  PubMed          Journal:  Adv Exp Med Biol        ISSN: 0065-2598            Impact factor:   2.622


  7 in total

Review 1.  Resurgent lead poisoning and renewed public attention towards environmental social justice issues: A review of current efforts and call to revitalize primary and secondary lead poisoning prevention for pregnant women, lactating mothers, and children within the U.S.

Authors:  Lorenz S Neuwirth
Journal:  Int J Occup Environ Health       Date:  2018-08-23

2.  Developmental Lead Exposure in Rats Causes Sex-Dependent Changes in Neurobiological and Anxiety-Like Behaviors that Are Improved by Taurine Co-treatment.

Authors:  George B Cruz; Michelle A Vasquez; Ericka Cabañas; Jewel N Joseph; Jourvonn C Skeen; Kirsten P Lynch; Isra Ahmed; Eric B Khairi; Jalen R Bonitto; Evan G Clarke; Samantha Rubi; Nimra Hameed; Sukhpreet Kaur; Neena Mathew; Teddy F Dacius; Tokunbo J Jose; Gabriella Handford; Samuel Wolfe; Alex Feher; Kyle Tidwell; Jon Tobin; Enero Ugalde; Samantha Fee; Allison Choe; Katherine Gillenwater; Bilal Hindi; Shawna Pilout; Nick R Natale; Nick Domahoski; Molly H Kent; Joanna C Jacob; Kelly G Lambert; Lorenz S Neuwirth
Journal:  Adv Exp Med Biol       Date:  2022       Impact factor: 3.650

3.  In Vivo Sex-Dependent Effects of Perinatal Pb2+ Exposure on Pilocarpine-Induced Seizure Susceptibility and Taurine Neuropharmacology.

Authors:  Michelle A Vasquez; George B Cruz; Ericka Cabañas; Jewel N Joseph; Mohammad Mian; Sai Karthik V Madhira; Chelsea A Akintunde; Evan G Clarke; Jourvonn C Skeen; Jalen R Bonitto; Eric B Khairi; Kirsten P Lynch; Narmin H Mekawy; Abdeslem El Idrissi; Youngjoo Kim; Bright U Emenike; Lorenz S Neuwirth
Journal:  Adv Exp Med Biol       Date:  2022       Impact factor: 3.650

4.  Taurine-Derived Compounds Produce Anxiolytic Effects in Rats Following Developmental Lead Exposure.

Authors:  Lorenz S Neuwirth; Bright U Emenike; George B Cruz; Ericka Cabañas; Michelle A Vasquez; Jewel N Joseph; Zaid Ayaz; Mohammed Mian; Mohamed M Ali; Evan G Clarke; Eddy D Barrera; Nimra Hameed; Samantha Rubi; Teddy F Dacius; Jourvonn C Skeen; Jalen R Bonitto; Eric B Khairi; Asma Iqbal; Isra Ahmed; Tokunbo J Jose; Kirsten P Lynch; Amber Alivira; Neena Mathew; Sukhpreet Kaur; Sidrah Masood; Bettina Tranquilee; Veni Thiruverkadu
Journal:  Adv Exp Med Biol       Date:  2022       Impact factor: 3.650

5.  Influences of Taurine Pharmacodynamics and Sex on Active Avoidance Learning and Memory.

Authors:  Wei Zhu; George B Cruz; Zaid Ayaz; Jewel N Joseph; Akil Boby; Patrick Cadet; Lorenz S Neuwirth
Journal:  Adv Exp Med Biol       Date:  2022       Impact factor: 3.650

6.  Under or Absent Reporting of Light Stimuli in Testing of Anxiety-Like Behaviors in Rodents: The Need for Standardization.

Authors:  Lorenz S Neuwirth; Michael T Verrengia; Zachary I Harikinish-Murrary; Jessica E Orens; Oscar E Lopez
Journal:  Front Mol Neurosci       Date:  2022-08-17       Impact factor: 6.261

7.  Taurine ameliorates volatile organic compounds-induced cognitive impairment in young rats via suppressing oxidative stress, regulating neurotransmitter and activating NMDA receptor.

Authors:  Yongchao Gao; Chao Sun; Ting Gao; Zhiyong Liu; Zhao Yang; Hui Deng; Peng Fan; Junhong Gao
Journal:  Front Vet Sci       Date:  2022-09-16
  7 in total

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