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1.
Article in English | MEDLINE | ID: mdl-38838796

ABSTRACT

Organophosphorus pesticides (OPs), such as chlorpyrifos (CPF), are the most commonly used pesticides worldwide. Considering that OPs will eventually enter aquatic ecosystems due to runoff from agricultural lands, accidental leakage, and other unforeseen emergencies, monitoring water pollution of those substances is crucial for environmental protection and public health. In this study, Japanese medaka (Oryzias latipes) were exposed to CPF (0.03, 0.06, and 0.12 mg/L) for 6 h, and the time-series variations in their locomotor behavior and vocal traits were investigated. Compared with that measured before exposure, significantly changed locomotor behavior and vocal traits in Japanese medaka exposed to CPF could be observed at 4 h after exposure and thereafter, and the pattern of behavioral changes depends on the CPF concentrations. Exposure to CPF also changed the frequency-sound pressure level curve of Japanese medaka at 6 h after exposure, especially at 0.12 mg/L. Moreover, CPF exposure could significantly inhibit the acetylcholinesterase (AChE) activity in the brains and eyes of medaka, which exhibited significant correlations with the variation of locomotor behavioral and vocal traits. Considering that inhibiting the AChE activity is the primary mechanism underlying the neurobehavioral toxicity of all OPs, our finding suggested that simultaneously monitoring changes in the locomotor behavioral and vocal traits has a high potential to reflect the pollution of organophosphorus substances.


Subject(s)
Chlorpyrifos , Locomotion , Oryzias , Water Pollutants, Chemical , Animals , Oryzias/physiology , Chlorpyrifos/toxicity , Water Pollutants, Chemical/toxicity , Locomotion/drug effects , Vocalization, Animal/drug effects , Acetylcholinesterase/metabolism , Insecticides/toxicity , Pesticides/toxicity , Behavior, Animal/drug effects , Cholinesterase Inhibitors/toxicity , Brain/drug effects
2.
Eur J Neurosci ; 60(3): 4244-4253, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38816916

ABSTRACT

Studying ultrasonic vocalizations (USVs) plays a crucial role in understanding animal communication, particularly in the field of ethology and neuropharmacology. Communication is associated with social behaviour; so, USVs study is a valid assay in behavioural readout and monitoring in this context. This paper delved into an investigation of ultrasonic communication in mice treated with Cannabis sativa oil (CS mice), which has been demonstrated having a prosocial effect on behaviour of mice, versus control mice (vehicle-treated, VH mice). To conduct this study, we created a dataset by recording audio-video files and annotating the duration of time that test mice spent engaging in social activities, along with categorizing the types of emitted USVs. The analysis encompassed the frequency of individual sounds as well as more complex sequences of consecutive syllables (patterns). The primary goal was to examine the extent and nature of diversity in ultrasonic communication patterns emitted by these two groups of mice. As a result, we observed statistically significant differences for each considered pattern length between the two groups of mice. Additionally, the study extended its research by considering specific behaviours, aiming to ascertain whether dissimilarities in ultrasonic communication between CS and VH mice are more pronounced or subtle within distinct behavioural contexts. Our findings suggest that while there is variation in USV communication between the two groups of mice, the degree of this diversity may vary depending on the specific behaviour being observed.


Subject(s)
Plant Oils , Vocalization, Animal , Animals , Mice , Vocalization, Animal/drug effects , Vocalization, Animal/physiology , Male , Plant Oils/pharmacology , Cannabis , Ultrasonics , Social Behavior , Behavior, Animal/drug effects , Behavior, Animal/physiology
3.
Int J Dev Neurosci ; 84(5): 381-391, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38712612

ABSTRACT

Neuroinflammation during the neonatal period has been linked to disorders such as autism and epilepsy. In this study, we investigated the early life behavioral consequences of a single injection of lipopolysaccharide (LPS) at postnatal day 10 (PD10) in mice. To assess deficits in communication, we performed the isolation-induced ultrasonic vocalizations (USVs) test at PD12. To determine if early life immune stimulus could alter seizure susceptibility, latency to flurothyl-induced generalized seizures was measured at 4 hours (hrs), 2 days, or 5 days after LPS injections. LPS had a sex-dependent effect on USV number. LPS-treated male mice presented significantly fewer USVs than LPS-treated female mice. However, the number of calls did not significantly differ between control and LPS for either sex. In male mice, we found that downward, short, and composite calls were significantly more prevalent in the LPS treatment group, while upward, chevron, and complex calls were less prevalent than in controls (p < 0.05). Female mice that received LPS presented a significantly higher proportion of short, frequency steps, two-syllable, and composite calls in their repertoire when compared with female control mice (p < 0.05). Seizure latency was not altered by early-life inflammation at any of the time points measured. Our findings suggest that early-life immune stimulation at PD10 disrupts vocal development but does not alter the susceptibility to flurothyl-induced seizures during the neonatal period. Additionally, the effect of inflammation in the disruption of vocalization is sex-dependent.


Subject(s)
Animals, Newborn , Lipopolysaccharides , Seizures , Sex Characteristics , Vocalization, Animal , Animals , Female , Vocalization, Animal/drug effects , Vocalization, Animal/physiology , Mice , Male , Lipopolysaccharides/pharmacology , Lipopolysaccharides/toxicity , Seizures/chemically induced , Flurothyl/toxicity , Disease Susceptibility/chemically induced , Convulsants/toxicity , Disease Models, Animal
4.
Neuropharmacology ; 253: 109963, 2024 Aug 01.
Article in English | MEDLINE | ID: mdl-38657945

ABSTRACT

Valproic acid (VPA) is an effective and commonly prescribed drug for epilepsy and bipolar disorder. However, children born from mothers treated with VPA during pregnancy exhibit an increased incidence of autism spectrum disorder (ASD). Although VPA may impair brain development at the cellular level, the mechanism of VPA-induced ASD has not been completely addressed. A previous study has found that VPA treatment strongly reduces δ-catenin mRNA levels in cultured human neurons. δ-catenin is important for the control of glutamatergic synapses and is strongly associated with ASD. VPA inhibits dendritic morphogenesis in developing neurons, an effect that is also found in neurons lacking δ-catenin expression. We thus hypothesize that prenatal exposure to VPA significantly reduces δ-catenin levels in the brain, which impairs glutamatergic synapses to cause ASD. Here, we found that prenatal exposure to VPA markedly reduced δ-catenin levels in the brain of mouse pups. VPA treatment also impaired dendritic branching in developing mouse cortical neurons, which was partially reversed by elevating δ-catenin expression. Prenatal VPA exposure significantly reduced synaptic α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor levels and postsynaptic density 95 (PSD95) in the brain of mouse pups, indicating dysfunctions in glutamatergic synaptic transmission. VPA exposure also significantly altered ultrasonic vocalization (USV) in newly born pups when they were isolated from their nest. Moreover, VPA-exposed pups show impaired hypothalamic response to isolation, which is required to produce animals' USVs following isolation from the nest. Therefore, these results suggest that VPA-induced ASD pathology can be mediated by the loss of δ-catenin functions.


Subject(s)
Animals, Newborn , Prenatal Exposure Delayed Effects , Valproic Acid , Vocalization, Animal , Animals , Valproic Acid/pharmacology , Valproic Acid/toxicity , Pregnancy , Prenatal Exposure Delayed Effects/chemically induced , Prenatal Exposure Delayed Effects/metabolism , Female , Vocalization, Animal/drug effects , Vocalization, Animal/physiology , Mice , Synapses/drug effects , Synapses/metabolism , Catenins/metabolism , Male , Mice, Inbred C57BL , Neurons/drug effects , Neurons/metabolism , Receptors, AMPA/metabolism , Brain/drug effects , Brain/metabolism , Autism Spectrum Disorder/chemically induced , Autism Spectrum Disorder/metabolism
5.
Int J Neuropsychopharmacol ; 27(5)2024 May 01.
Article in English | MEDLINE | ID: mdl-38546531

ABSTRACT

BACKGROUND: The proliferation of novel psychoactive substances (NPS) in the drug market raises concerns about uncertainty on their pharmacological profile and the health hazard linked to their use. Within the category of synthetic stimulant NPS, the phenethylamine 2-Cl-4,5-methylenedioxymethamphetamine (2-Cl-4,5-MDMA) has been linked to severe intoxication requiring hospitalization. Thereby, the characterization of its pharmacological profile is urgently warranted. METHODS: By in vivo brain microdialysis in adolescent and adult male rats we investigated the effects of 2-Cl-4,5-MDMA on dopamine (DA) and serotonin (5-HT) neurotransmission in two brain areas critical for the motivational and rewarding properties of drugs, the nucleus accumbens (NAc) shell and the medial prefrontal cortex (mPFC). Moreover, we evaluated the locomotor and stereotyped activity induced by 2-Cl-4,5-MDMA and the emission of 50-kHz ultrasonic vocalizations (USVs) to characterize its affective properties. RESULTS: 2-Cl-4,5-MDMA increased dialysate DA and 5-HT in a dose-, brain area-, and age-dependent manner. Notably, 2-Cl-4,5-MDMA more markedly increased dialysate DA in the NAc shell and mPFC of adult than adolescent rats, while the opposite was observed on dialysate 5-HT in the NAc shell, with adolescent rats being more responsive. Furthermore, 2-Cl-4,5-MDMA stimulated locomotion and stereotyped activity in both adolescent and adult rats, although to a greater extent in adolescents. Finally, 2-Cl-4,5-MDMA did not stimulate the emission of 50-kHz USVs. CONCLUSIONS: This is the first pharmacological characterization of 2-Cl-4,5-MDMA demonstrating that its neurochemical and behavioral effects may differ between adolescence and adulthood. These preclinical data could help understanding the central effects of 2-Cl-4,5-MDMA by increasing awareness on possible health damage in users.


Subject(s)
Dopamine , Nucleus Accumbens , Prefrontal Cortex , Serotonin , Animals , Male , Nucleus Accumbens/drug effects , Nucleus Accumbens/metabolism , Dopamine/metabolism , Serotonin/metabolism , Prefrontal Cortex/drug effects , Prefrontal Cortex/metabolism , Rats , Locomotion/drug effects , Microdialysis , Age Factors , Behavior, Animal/drug effects , Stereotyped Behavior/drug effects , Vocalization, Animal/drug effects , N-Methyl-3,4-methylenedioxyamphetamine/pharmacology , N-Methyl-3,4-methylenedioxyamphetamine/administration & dosage , Rats, Wistar , Hallucinogens/pharmacology
6.
Horm Behav ; 161: 105502, 2024 May.
Article in English | MEDLINE | ID: mdl-38382227

ABSTRACT

How diverse animal communication signals have arisen is a question that has fascinated many. Xenopus frogs have been a model system used for three decades to reveal insights into the neuroendocrine mechanisms and evolution of vocal diversity. Due to the ease of studying central nervous system control of the laryngeal muscles in vitro, Xenopus has helped us understand how variation in vocal communication signals between sexes and between species is produced at the molecular, cellular, and systems levels. Yet, it is becoming easier to make similar advances in non-model organisms. In this paper, we summarize our research on a group of frog species that have evolved a novel hind limb signal known as 'foot flagging.' We have previously shown that foot flagging is androgen dependent and that the evolution of foot flagging in multiple unrelated species is accompanied by the evolution of higher androgen hormone sensitivity in the leg muscles. Here, we present new preliminary data that compare patterns of androgen receptor expression and neuronal cell density in the lumbar spinal cord - the neuromotor system that controls the hind limb - between foot-flagging and non-foot-flagging frog species. We then relate our work to prior findings in Xenopus, highlighting which patterns of hormone sensitivity and neuroanatomical structure are shared between the neuromotor systems underlying Xenopus vocalizations and foot-flagging frogs' limb movement and which appear to be species-specific. Overall, we aim to illustrate the power of drawing inspiration from experiments in model organisms, in which the mechanistic details have been worked out, and then applying these ideas to a non-model species to reveal new details, further complexities, and fresh hypotheses.


Subject(s)
Androgens , Animal Communication , Biological Evolution , Animals , Androgens/pharmacology , Vocalization, Animal/physiology , Vocalization, Animal/drug effects , Male , Anura/physiology , Female , Xenopus/physiology , Hindlimb/physiology , Receptors, Androgen/metabolism , Receptors, Androgen/physiology , Spinal Cord/drug effects , Spinal Cord/physiology , Spinal Cord/metabolism
7.
Physiol Behav ; 263: 114131, 2023 05 01.
Article in English | MEDLINE | ID: mdl-36796532

ABSTRACT

Across vertebrates, the midbrain periaqueductal gray (PAG) plays a critical role in social and vocal behavior. Dopaminergic neurotransmission also modulates these behaviors, and dopaminergic innervation of the PAG has been well documented. Nonetheless, the potential role of dopamine in shaping vocal production at the level of the PAG is not well understood. Here, we tested the hypothesis that dopamine modulates vocal production in the PAG, using a well-characterized vertebrate model system for the study of vocal communication, the plainfin midshipman fish, Porichthys notatus. We found that focal dopamine injections to the midshipman PAG rapidly and reversibly inhibited vocal production triggered by stimulation of known vocal-motor structures in the preoptic area / anterior hypothalamus. While dopamine inhibited vocal-motor output, it did not alter behaviorally-relevant parameters of this output, such as vocalization duration and frequency. Dopamine-induced inhibition of vocal production was prevented by the combined blockade of D1- and D2-like receptors but was unaffected by isolated blockade of either D1-receptors or D2-receptors. Our results suggest dopamine neuromodulation in the midshipman PAG may inhibit natural vocal behavior, in courtship and/or agonistic social contexts.


Subject(s)
Dopamine , Motor Activity , Periaqueductal Gray , Vocalization, Animal , Dopamine/pharmacology , Animals , Periaqueductal Gray/drug effects , Vocalization, Animal/drug effects , Motor Activity/drug effects , Batrachoidiformes
8.
Behav Brain Res ; 418: 113642, 2022 02 10.
Article in English | MEDLINE | ID: mdl-34755639

ABSTRACT

Vocal deficits and anxiety are common, co-occurring, and interacting signs of Parkinson Disease (PD) that have a devastating impact on quality of life. Both manifest early in the disease process. Unlike hallmark motor signs of PD, neither respond adequately to dopamine replacement therapies, suggesting that their disease-specific mechanisms are at least partially extra-dopaminergic. Because noradrenergic dysfunction is also a defining feature of PD, especially early in the disease progression, drug therapies targeting norepinephrine are being trialed for treatment of motor and non-motor impairments in PD. Research assessing the effects of noradrenergic manipulation on anxiety and vocal impairment in PD, however, is sparse. In this pre-clinical study, we quantified the influence of pharmacologic manipulation of norepinephrine on vocal impairment and anxiety in Pink1-/- rats, a translational model of PD that demonstrates both vocal deficits and anxiety. Ultrasonic vocalization acoustics, anxiety behavior, and limb motor activity were tested twice for each rat: after injection of saline and after one of three drugs. We hypothesized that norepinephrine reuptake inhibitors (atomoxetine and reboxetine) and a ß receptor antagonist (propranolol) would decrease vocal impairment and anxiety compared to saline, without affecting spontaneous motor activity. Our results demonstrated that atomoxetine and reboxetine decreased anxiety behavior. Atomoxetine also modulated ultrasonic vocalization acoustics, including an increase in vocal intensity, which is almost always reduced in animal models and patients with PD. Propranolol did not affect anxiety or vocalization. Drug condition did not influence spontaneous motor activity. These studies demonstrate relationships among vocal impairment, anxiety, and noradrenergic systems in the Pink1-/- rat model of PD.


Subject(s)
Anxiety , Norepinephrine/pharmacology , Parkinson Disease/physiopathology , Vocalization, Animal/drug effects , Adrenergic Uptake Inhibitors/pharmacology , Animals , Atomoxetine Hydrochloride/pharmacology , Disease Models, Animal , Humans , Male , Protein Kinases/genetics , Rats , Rats, Long-Evans , Reboxetine/pharmacology
9.
Addict Biol ; 27(1): e13084, 2022 01.
Article in English | MEDLINE | ID: mdl-34378829

ABSTRACT

Rats express a positive emotional state by emitting 50-kHz ultrasonic vocalization (USV) calls in response to drug exposure. This study demonstrated the linking of glutamate receptors in the nucleus accumbens (NAc) to vocal expression of 50-kHz USV calls after repeated cocaine administration in freely moving rats. Repeated systemic injections of cocaine (20 mg/kg/day, i.p.) for seven consecutive days increased the number of 50-kHz USV calls. Intra-NAc core infusion of the broad-glutamate receptor antagonist, γDGG (50 nmol/side), decreased the repeated cocaine-induced increase in the number of 50-kHz USV calls. Intra-NAc core infusion of the N-methyl-D-aspartate (NMDA) receptor antagonist, MK801 (2 nmol/side), but not α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid or kainic acid receptor antagonist, CNQX disodium salt (2 nmol/side), decreased the number of 50-kHz USV calls that had been elevated by repeated exposure to cocaine. Intra-NAc core infusion of the group I metabotropic glutamate receptor subtype 5 (mGluR5), MPEP (0.5 nmol/side), MTEP (15 nmol/side) and inositol-1,4,5-trisphosphate receptor blocker, xestospongin C (0.004 nmol/side) decreased the cocaine-induced increase in the number of USV calls. These data suggest that the NMDA receptor- and mGluR5-dependent increase in intracellular Ca2+ concentrations in the NAc core is linked to a positive emotional state after repeated exposure to cocaine in rats.


Subject(s)
Cocaine/pharmacology , Nucleus Accumbens/drug effects , Receptors, N-Methyl-D-Aspartate/metabolism , Vocalization, Animal/drug effects , Animals , Cocaine-Related Disorders/metabolism , Dopamine Uptake Inhibitors/pharmacology , Excitatory Amino Acid Antagonists/pharmacology , Male , Rats , Receptor, Metabotropic Glutamate 5/metabolism
10.
Neuropharmacology ; 199: 108797, 2021 11 01.
Article in English | MEDLINE | ID: mdl-34547331

ABSTRACT

There is strong evidence that ethanol entails aversive effects that can act as a deterrent to overconsumption. We have found that in doses that support the development of a conditioned taste aversion ethanol increases the activity of tyrosine hydroxylase (TH) positive neurons in the locus coeruleus (LC), a primary source of norepinephrine (NE). Using cre-inducible AAV8-ChR2 viruses in TH-ires-cre mice we found that the LC provides NE projections that innervate the rostromedial tegmental nucleus (RMTg), a brain region that has been implicated in the aversive properties of drugs. Because the neurocircuitry underlying the aversive effects of ethanol is poorly understood, we characterized the role of the LC to RMTg circuit in modulating aversive unconditioned responses and binge-like ethanol intake. Here, both male and female TH-ires-cre mice were cannulated in the RMTg and injected in the LC with rAVV viruses that encode for a Gq-expressing designer receptor exclusively activated by designer drugs (DREADDs) virus, or its control virus, to directly control the activity of NE neurons. A Latin Square paradigm was used to analyze both 20% ethanol and 3% sucrose consumption using the "drinking-in-the-dark" (DID) paradigm. Chemogenetic activation of the LC to RMTg pathway significantly blunted the binge-ethanol drinking, with no effect on the sucrose consumption, increased the emission of mid-frequency vocalizations and induced malaise-like behaviors in mice. The present findings indicate an important involvement of the LC to RMTg pathway in reducing ethanol consumption, and characterize unconditioned aversive reactions induced by activation of this noradrenergic pathway.


Subject(s)
Behavior, Animal/physiology , Binge Drinking/physiopathology , Binge Drinking/therapy , Locus Coeruleus/physiology , Norepinephrine/physiology , Ventral Tegmental Area/physiology , Animals , Avoidance Learning/drug effects , Avoidance Learning/physiology , Disease Models, Animal , Female , Male , Mice , Mice, Transgenic , Signal Transduction/physiology , Vocalization, Animal/drug effects , Vocalization, Animal/physiology
11.
Behav Brain Res ; 414: 113513, 2021 09 24.
Article in English | MEDLINE | ID: mdl-34358575

ABSTRACT

Male Japanese quail produce high-frequency crow vocalizations to attract females during the breeding season. The nucleus of intercollicularis (ICo) is the midbrain vocal center in birds and electrical stimulation of the ICo produces calls that include crowing. Noradrenaline plays a significant role in sexual behavior but the contribution of noradrenaline in the control of courtship vocalizations in quail has not been well established. Using dose-dependent intracerebroventricular injection of clonidine, an α2-adrenergic receptor-specific agonist, crowing vocalization was immediately suppressed. At the same time as crow suppression by clonidine there was a reduction of immediate early gene, zenk mRNA, in the ICo; no zenk mRNA expression was detected in the dorsomedial division of the nucleus. Using histochemistry, we determined that the ICo receives noradrenergic innervation and expresses α2A-adrenergic receptor mRNA. Taken together, these data suggest that noradrenaline regulates courtship vocalization in quail, possibly via the α2A-adrenergic receptor expressed on ICo neurons.


Subject(s)
Adrenergic alpha-2 Receptor Agonists/pharmacology , Courtship , Mesencephalon/metabolism , Norepinephrine/physiology , Receptors, Adrenergic, alpha-2/physiology , Sexual Behavior, Animal/physiology , Vocalization, Animal/physiology , Adrenergic alpha-2 Receptor Agonists/administration & dosage , Animals , Clonidine/pharmacology , Coturnix , Male , Mesencephalon/drug effects , Sexual Behavior, Animal/drug effects , Vocalization, Animal/drug effects
12.
Neurosci Lett ; 758: 135985, 2021 07 27.
Article in English | MEDLINE | ID: mdl-34048819

ABSTRACT

Autism spectrum disorder (ASD) is a neurodevelopmental disorder characterised by communication disability with no curative treatment. Maternal separation-induced ultrasonic vocalisation (USV) was widely used to assess communication disability between pups and dams. Particularly, USV calls in many genetically modified ASD model mice were altered. Previously, we demonstrated that mice pups exposed to valproic acid in utero (VPA pups) showed decreased number of USV calls on postnatal day 11 and were rescued by subcutaneous injection of oxytocin. However, the qualitative change of USV calls by oxytocin has not been evaluated in VPA pups. In the present study, we examined the duration of oxytocin effect and analysed the altered pattern of USV calls using VPA pups. The oxytocin administration increased the total number of USV calls and the effect persisted up to 120 min in VPA pups. The pattern analysis revealed that the increase in the number of complex calls also persisted up to 120 min. These results suggested that oxytocin had a prolonged effect on USV calls, mainly on complex calls, in VPA pup, showing that oxytocin could recover their social modality to respond to maternal separation.


Subject(s)
Autism Spectrum Disorder/drug therapy , Oxytocin/administration & dosage , Social Interaction/drug effects , Valproic Acid/toxicity , Vocalization, Animal/drug effects , Animals , Autism Spectrum Disorder/etiology , Autism Spectrum Disorder/physiopathology , Communication , Disease Models, Animal , Female , Humans , Male , Maternal Deprivation , Maternal Exposure/adverse effects , Mice , Pregnancy , Ultrasonic Waves , Valproic Acid/administration & dosage , Vocalization, Animal/physiology
13.
Behav Brain Res ; 410: 113317, 2021 07 23.
Article in English | MEDLINE | ID: mdl-33910029

ABSTRACT

Epilepsy is one of the most common neurological disorders, with individuals having an increased susceptibility of seizures in the first few years of life, making children at risk of developing a multitude of cognitive and behavioral comorbidities throughout development. The present study examined the role of PI3K/Akt/mTOR pathway activity and neuroinflammatory signaling in the development of autistic-like behavior following seizures in the neonatal period. Male and female C57BL/6J mice were administered 3 flurothyl seizures on postnatal (PD) 10, followed by administration of minocycline, the mTOR inhibitor rapamycin, or a combined treatment of both therapeutics. On PD12, isolation-induced ultrasonic vocalizations (USVs) of mice were examined to determine the impact of seizures and treatment on communicative behaviors, a component of the autistic-like phenotype. Seizures on PD10 increased the quantity of USVs in female mice and reduced the amount of complex call types emitted in males compared to controls. Inhibition of mTOR with rapamycin significantly reduced the quantity and duration of USVs in both sexes. Changes in USVs were associated with increases in mTOR and astrocyte levels in male mice, however, three PD10 seizures did not result in enhanced proinflammatory cytokine expression in either sex. Beyond inhibition of mTOR activity by rapamycin, both therapeutics did not demonstrate beneficial effects. These findings emphasize the importance of differences that may exist across preclinical seizure models, as three flurothyl seizures did not induce as drastic of changes in mTOR activity or inflammation as observed in other rodent models.


Subject(s)
Epilepsy , Immunologic Factors/pharmacology , MTOR Inhibitors/pharmacology , Minocycline/pharmacology , Seizures , Sirolimus/pharmacology , Vocalization, Animal/drug effects , Animals , Convulsants/pharmacology , Disease Models, Animal , Epilepsy/chemically induced , Epilepsy/immunology , Epilepsy/metabolism , Epilepsy/physiopathology , Female , Flurothyl/pharmacology , Male , Mice , Mice, Inbred C57BL , Seizures/chemically induced , Seizures/immunology , Seizures/metabolism , Seizures/physiopathology , Sex Factors
14.
PLoS One ; 16(4): e0244033, 2021.
Article in English | MEDLINE | ID: mdl-33886559

ABSTRACT

Maternal-offspring communication and care are essential for offspring survival. Oxytocin (OXT) is known for its role in initiation of maternal care, but whether OXT can rapidly influence maternal behavior or ultrasonic vocalizations (USVs; above 50 kHz) has not been examined. To test for rapid effects of OXT, California mouse mothers were administered an acute intranasal (IN) dose of OXT (0.8 IU/kg) or saline followed by a separation test with three phases: habituation with pups in a new testing chamber, separation via a wire mesh, and finally reunion with pups. We measured maternal care, maternal USVs, and pup USVs. In mothers, we primarily observed simple sweep USVs, a short downward sweeping call around 50 kHz, and in pups we only observed pup whines, a long call with multiple harmonics ranging from 20 kHz to 50 kHz. We found that IN OXT rapidly and selectively enhanced the normal increase in maternal simple sweep USVs when mothers had physical access to pups (habituation and reunion), but not when mothers were physically separated from pups. Frequency of mothers' and pups' USVs were correlated upon reunion, but IN OXT did not influence this correlation. Finally, mothers given IN OXT showed more efficient pup retrieval/carrying and greater total maternal care upon reunion. Behavioral changes were specific to maternal behaviors (e.g. retrievals) as mothers given IN OXT did not differ from controls in stress-related behaviors (e.g. freezing). Overall, these findings highlight the rapid effects and context-dependent effect a single treatment with IN OXT has on both maternal USV production and offspring care.


Subject(s)
Maternal Behavior/drug effects , Oxytocics/pharmacology , Oxytocin/pharmacology , Administration, Intranasal , Animals , Animals, Newborn , Female , Male , Mice , Oxytocics/administration & dosage , Oxytocin/administration & dosage , Postpartum Period , Vocalization, Animal/drug effects
15.
Behav Brain Res ; 405: 113211, 2021 05 07.
Article in English | MEDLINE | ID: mdl-33652069

ABSTRACT

Tactile stimulation such as rhythmic stroking elicits 50-kHz ultrasonic vocalizations (USVs) in rats that are thought to reflect positive affective states. Dopaminergic neurotransmission in the nucleus accumbens (NAc) is required for tactile reward-induced 50-kHz USVs; however, it is still unknown whether the accumbal dopaminergic system differentially modulates 50-kHz USV call subtypes induced by rhythmic stroking. We therefore examined both total and categorized 50-kHz USV rate, peak frequency, and duration under dopamine (DA) receptor antagonism in the NAc shell. Bilateral injection of the D1 receptor antagonist SCH 23390 (500 ng/side) plus the D2/D3 receptor antagonist raclopride (25 µg/side) significantly reduced the number of predominantly flat calls with harmonics during stimulation and the number of frequency-modulated (FM) calls after stimulation. In contrast, there were no substantial changes in total and categorized 50-kHz USVs mean peak frequencies and call durations. Therefore, emission of different subtypes of 50-kHz USVs may be differently regulated by dopaminergic transmission. The 50-kHz harmonics and FM USVs induced by rhythmic stroking may be useful behavioral markers for tactile reward in rats.


Subject(s)
Dopamine Antagonists/pharmacology , Dopamine/metabolism , Handling, Psychological , Nucleus Accumbens/drug effects , Nucleus Accumbens/metabolism , Touch Perception , Vocalization, Animal/drug effects , Vocalization, Animal/physiology , Animals , Benzazepines/pharmacology , Dopamine D2 Receptor Antagonists , Male , Raclopride/pharmacology , Rats , Rats, Wistar , Receptors, Dopamine D1/antagonists & inhibitors , Receptors, Dopamine D3/antagonists & inhibitors , Reward , Touch Perception/physiology
16.
Neurosci Lett ; 749: 135733, 2021 04 01.
Article in English | MEDLINE | ID: mdl-33592304

ABSTRACT

The emission of ultrasonic vocalizations (USVs) is thought to communicate the behavioral and emotional states elicited in rodents by social and non-social stimuli. On this basis, studies of psychopharmacology in rats are increasingly utilizing USVs as a behavioral marker to evaluate the effects of drugs on the emotional state. Conversely, very limited information is available as to whether psychoactive drugs influence USV emissions in mice. To provide new insights in this respect, we evaluated the emission of USVs in C57BL/6J mice subjected to repeated treatment with the dopaminergic psychostimulant of abuse amphetamine. Mice were first allowed to perform social contacts in dyads, and 2 days later they received amphetamine (1-4 mg/kg, i.p.) in a test cage (× 5 administrations) on alternate days. Seven days after treatment discontinuation, mice were re-exposed to the test cage to evaluate whether the presentation of drug-paired environmental cues elicited calling behavior, and thereafter received an amphetamine challenge. An additional group of animals received the dopamine receptor agonist apomorphine (1-4 mg/kg, i.p.), to further clarify the role of dopamine transmission in calling behavior of mice. C57BL/6J mice emitted USVs during social contacts, but did not significantly vocalize after amphetamine administration, in response to amphetamine-paired environmental cues, and after apomorphine administration. These results indicate that C57BL/6J mice may respond differently to social and pharmacological stimuli in terms of USV emissions, and may lay the foundation for future studies aimed at clarifying whether USVs may be a useful behavioral marker in studies of psychopharmacology in mice.


Subject(s)
Amphetamine/pharmacology , Central Nervous System Stimulants/pharmacology , Ultrasonics , Vocalization, Animal/drug effects , Animals , Apomorphine/pharmacology , Cues , Dopamine Agonists/pharmacology , Mice, Inbred C57BL , Psychotropic Drugs/pharmacology
17.
Behav Brain Res ; 404: 113156, 2021 04 23.
Article in English | MEDLINE | ID: mdl-33571573

ABSTRACT

Rates of perinatal maternal antibiotic use have increased in recent years linked to prophylactic antibiotic use following Caesarean section delivery. This antibiotic use is necessary and beneficial in the short-term; however, long-term consequences on brain and behaviour have not been studied in detail. Here, we endeavoured to determine whether maternal administration of antibiotics during a critical window of development in early life has lasting effects on brain and behaviour in offspring mice. To this end we studied two different antibiotic preparations (single administration of Phenoxymethylpenicillin at 31 mg/kg/day; and a cocktail consisting of, ampicillin 1 mg/mL; vancomycin 0.5 mg/mL; metronidazole 1 mg/mL; ciprofloxacin 0.2 mg/mL and imipenem 0.25 mg/mL). It was observed that early life exposure to maternal antibiotics led to persistent alterations in anxiety, sociability and cognitive behaviours. These effects in general were greater in animals treated with the broad-spectrum antibiotic cocktail compared to a single antibiotic with the exception of deficits in social recognition which were more robustly observed in Penicillin V exposed animals. Given the prevalence of maternal antibiotic use, our findings have potentially significant translational relevance, particularly considering the implications on infant health during this critical period and into later life.


Subject(s)
Anti-Bacterial Agents/adverse effects , Prenatal Exposure Delayed Effects/chemically induced , Ampicillin/administration & dosage , Ampicillin/adverse effects , Animals , Anti-Bacterial Agents/administration & dosage , Anxiety/chemically induced , Ciprofloxacin/administration & dosage , Ciprofloxacin/adverse effects , Cognition/drug effects , Female , Homing Behavior/drug effects , Imipenem/administration & dosage , Imipenem/adverse effects , Male , Metronidazole/administration & dosage , Metronidazole/adverse effects , Mice , Mice, Inbred C57BL , Penicillin V/administration & dosage , Penicillin V/adverse effects , Pregnancy , Social Behavior , Vancomycin/administration & dosage , Vancomycin/adverse effects , Vocalization, Animal/drug effects
18.
Ecotoxicol Environ Saf ; 210: 111850, 2021 Mar 01.
Article in English | MEDLINE | ID: mdl-33421715

ABSTRACT

Lead (Pb) is a pervasive global contaminant that interferes with sensitive windows for neurological development and causes oxidative damage to tissues. The effects of moderate and high exposure to Pb have been well-studied in birds, but whether low-level early-life exposure to Pb influences adult phenotype remains unclear. Female songbirds use a male's song and coloration to discriminate between high- and low-quality males. Therefore, if early-life exposure to Pb disrupts song learning ability or shifts the allocation of antioxidant pigments away from colorful secondary sexual traits, male birds exposed to Pb may be less attractive to females. We exposed developing zebra finches (Taeniopygia guttata) to Pb-contaminated drinking water (100 or 1000 parts per billion [ppb]) after hatching (days 0-100). Once male finches reached adulthood (120-150 days post hatch), we measured song learning ability, coloration of bill and cheek patches, and volume of song nuclei in the brain. We also measured female preference for Pb-exposed males relative to control males. Finally, we measured motoric and spatial cognitive performance in male and female finches to assess whether cognitive traits differed in their sensitivity to Pb exposure. Male zebra finches exposed to 1000 ppb Pb had impaired song learning ability, reduced volume of song nuclei, bills with less redness and received less attention from females. Additionally, Pb exposure impaired motoric performance in both male and female finches but did not affect performance in a spatial cognitive task. Adult finches exposed to Pb-contaminated water had higher blood-Pb levels, though in all cases blood-Pb levels were below 7.0 µg dL-1. This study suggests that low-level exposure to Pb contributes to cognitive deficits that persist into adulthood and may indirectly influence fitness by altering secondary sexual traits and reducing male attractiveness.


Subject(s)
Environmental Pollutants/toxicity , Finches/physiology , Lead/toxicity , Animals , Attention , Cognition/drug effects , Female , Learning/drug effects , Male , Phenotype , Pigmentation/drug effects , Vocalization, Animal/drug effects
19.
Neuropharmacology ; 185: 108456, 2021 03 01.
Article in English | MEDLINE | ID: mdl-33444637

ABSTRACT

Recent evidence suggests that kappa opioid receptors (KOR) in limbic brain regions such as the amygdala contribute to pain conditions, but underlying mechanisms remain to be determined. The amygdala is an important player in averse-affective aspects of pain and pain modulation. The central nucleus (CeA) serves output functions through projection neurons that include corticotropin releasing factor (CRF) expressing neurons. The CeA is also rich in KOR. Here we tested the novel hypothesis that KOR activation in the CeA generates pain-like behaviors through a mechanism that involves inhibition of synaptic inhibition (disinhibition) of CRF neurons. Intra-CeA administration of a KOR agonist (U-69,593) increased vocalizations of naïve rats to noxious stimuli, and induced anxiety-like behaviors in the open field test (OFT) and avoidance in the conditioned place preference test, without affecting mechanosensory thresholds. Optogenetic silencing of CeA-CRF neurons blocked the facilitatory effects of systemically applied U-69,593 in naïve rats. Patch-clamp recordings of CRF neurons in rat brain slices found that U-69,593 decreased feedforward inhibitory transmission evoked by optogenetic stimulation of parabrachial afferents, but had no effect on monosynaptic excitatory transmission. U-69,593 decreased frequency, but not amplitude, of inhibitory synaptic currents, suggesting a presynaptic action. Multiphoton imaging of CeA-CRF neurons in rat brain slices showed that U-69,593 increased calcium signals evoked by electrical stimulation of presumed parabrachial input. This study shows for the first time that KOR activation increases activity of amygdala CRF neurons through synaptic disinhibition, resulting in averse-affective pain-like behaviors. Blocking KOR receptors may therefore represent a novel therapeutic strategy.


Subject(s)
Amygdala/metabolism , Benzeneacetamides/administration & dosage , Corticotropin-Releasing Hormone/antagonists & inhibitors , Corticotropin-Releasing Hormone/metabolism , Pain/metabolism , Pyrrolidines/administration & dosage , Receptors, Opioid, kappa/metabolism , Amygdala/drug effects , Animals , Male , Pain Measurement/drug effects , Pain Measurement/methods , Rats , Rats, Transgenic , Rats, Wistar , Stereotaxic Techniques , Vocalization, Animal/drug effects , Vocalization, Animal/physiology
20.
Neuroreport ; 32(2): 125-134, 2021 01 13.
Article in English | MEDLINE | ID: mdl-33323836

ABSTRACT

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) can damage dopaminergic neurons in the substantia nigra in many mammals with biochemical and cellular changes that are relatively similar to those observed in Parkinson's disease. Our study examined whether MPTP-treated echolocation bats can cause changes in bat echolocation system. By considering ultrasound spectrums, auditory brainstem-evoked potentials and flight trajectories of normal bats, we observed that the vocal, auditory, orientation and movement functions of MPTP-treated bats were significantly impaired, and they exhibited various symptoms resembling those in patients with Parkinson's disease. Our immunohistochemistry and western blot analyses further indicated that expression of vocal-related FOXP2 in the superior colliculus, auditory-related otoferlin in the inferior colliculus, dopamine synthesis-related aromatic l-amino acid decarboxylase in the substantia nigra and dopamine receptor in the striatum was significantly decreased. Furthermore, protein expression related to inflammation, oxidative stress and apoptosis in the substantia nigra was significantly increased in MPTP-treated bats. These results indicate that inflammation, oxidative stress and apoptosis may be instrumental in dopaminergic neurodegeneration in the substantia nigra. The vocal, auditory and orientation and movement dysfunctions of MPTP-treated bats are relatively consistent with symptoms of Parkinson's disease.


Subject(s)
1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine/pharmacology , Chiroptera , Flight, Animal/drug effects , Orientation, Spatial/drug effects , Parkinsonian Disorders/physiopathology , Vocalization, Animal/drug effects , Animals , Apoptosis/drug effects , Aromatic-L-Amino-Acid Decarboxylases/drug effects , Aromatic-L-Amino-Acid Decarboxylases/metabolism , Dopaminergic Neurons/drug effects , Dopaminergic Neurons/metabolism , Dopaminergic Neurons/pathology , Echolocation/drug effects , Evoked Potentials, Auditory, Brain Stem/drug effects , Forkhead Transcription Factors/drug effects , Forkhead Transcription Factors/metabolism , Inferior Colliculi/drug effects , Inferior Colliculi/metabolism , Inflammation , Membrane Proteins/drug effects , Membrane Proteins/metabolism , Movement/drug effects , Oxidative Stress , Parkinson Disease , Parkinsonian Disorders/metabolism , Parkinsonian Disorders/pathology , Receptors, Dopamine/drug effects , Receptors, Dopamine/metabolism , Substantia Nigra/drug effects , Substantia Nigra/metabolism , Substantia Nigra/pathology , Superior Colliculi/drug effects , Superior Colliculi/metabolism
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