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1.
Trends Neurosci ; 45(10): 718-721, 2022 10.
Article in English | MEDLINE | ID: mdl-36055893

ABSTRACT

Growing evidence implicates the bacterial populations in the nose as an important factor for personal and global health. Here, we provide a brief overview of the nasal microbiome and speculate on its potential roles in olfactory processing and neurodegeneration, with a particular focus on Parkinson's disease (PD).


Subject(s)
Microbiota , Parkinson Disease , Brain , Humans
2.
Eur J Neurol ; 29(9): 2823-2831, 2022 09.
Article in English | MEDLINE | ID: mdl-35699338

ABSTRACT

BACKGROUND AND PURPOSE: Zika virus (ZIKV) infection has been associated with Guillain-Barré syndrome (GBS). However, little is known about the consequence of ZIKV infection on olfaction in humans. METHODS: Immediately before the COVID-19 outbreak, we prospectively investigated the olfactory capacities of 19 patients with ZIKV-associated GBS from the French West Indies and compared them to nine controls from the same population, with GBS of similar severity but independent of ZIKV infection. To provide further evidence that ZIKV infection induces smell alteration, we investigated the consequences of ZIKV infection on olfactory abilities using a mouse model. RESULTS: Patients with GBS-ZIKA+ had poorer olfactory function than GBS-non-ZIKA, even 1-2 years after the acute phase. The proportion of patients with hyposmia was significantly higher in the GBS-ZIKA+ than in the GBS-non-ZIKA group (68.4% vs. 22.2%, p = 0.042). These deficits were characterized by lower threshold and identification scores and were independent from GBS severity. Additionally, ZIKV infection was found to impair olfaction in immunodeficient mice infected with ZIKV. High viral load was observed in their olfactory system and downstream brain structures. ZIKV promoted both cellular damage in the olfactory neuroepithelium and protracted inflammation of the olfactory bulb, likely accounting for smell alteration. CONCLUSIONS: Patients with ZIKV-related GBS had poorer long-term olfactory function than patients with GBS-non-ZIKA, and ZIKV-infected mice are hyposmic. These observations suggest that ZIKV belongs on the list of viruses affecting the olfactory system. Clinical evaluation of the olfactory system should be considered for ZIKV-infected patients.


Subject(s)
COVID-19 , Guillain-Barre Syndrome , Zika Virus Infection , Zika Virus , Animals , Humans , Mice , Smell , Zika Virus Infection/complications , Zika Virus Infection/epidemiology
3.
Eur J Pediatr ; 181(5): 1859-1869, 2022 May.
Article in English | MEDLINE | ID: mdl-35028730

ABSTRACT

Congenital cytomegalovirus (CMV) infection leads to olfactory bulb lesions in the fetus, yet little is known about its impact on olfaction after birth. Here, we have assessed in a prospective study conducted on children in two French hospitals from 2016 to 2019, infection severity and olfactory performance after congenital CMV infection. Children with congenital CMV infection aged 3 to 10 years and healthy controls (CTL) matched for age and sex to CMV children symptomatic at birth (sCMV) were enrolled. Olfactory discrimination was assessed using mono-odorants and binary mixtures. Data were analyzed for 54 children with PCR-confirmed congenital CMV infection, including 34 sCMV (median [IQR] age, 6 [5-8] years; 19 [55.9%] male), and 20 CMV asymptomatic at birth (aCMV, median [IQR] age, 4 [3-6] years; 12 [60.0%] male). sCMV were compared to 34 CTL children. Olfactory scores in CMV-infected children were independent from vestibular deficit and hearing loss. The olfactory score was efficient to discriminate between CTL and sCMV for children > 6 years (area under the receiver-operating characteristic curve (AUC, 0.85; P = 0.0006), but not for children < 7 years. For children > 6 years, the proportion of children with total olfactory score < 4 differed between sCMV and CTL groups (91.2% and 18.7%, P < 0.001), but not between aCMV and age-matched healthy control groups.   Conclusion: Congenital CMV infection is associated with reduced olfactory performance in children with infection symptoms at birth.   Clinical trial registration: NCT02782988 (registration date: May 26, 2016). What is Known: •Congenital cytomegalovirus infection leads to olfactory bulb lesions in the fetus, yet little is known about its impact on olfaction after birth. •Depending on neonatal clinical presentation, children are either categorized as having a symptomatic or asymptomatic infection at birth. What is New: •Congenital cytomegalovirus infection is associated with reduced olfactory performance in children with infection symptoms at birth.


Subject(s)
Cytomegalovirus Infections , Child , Child, Preschool , Cytomegalovirus Infections/complications , Cytomegalovirus Infections/congenital , Female , Humans , Infant, Newborn , Male , Prospective Studies
4.
J Biol Chem ; 298(1): 101290, 2022 01.
Article in English | MEDLINE | ID: mdl-34678315

ABSTRACT

The current COVID-19 pandemic illustrates the importance of obtaining reliable methods for the rapid detection of SARS-CoV-2. A highly specific and sensitive diagnostic test able to differentiate the SARS-CoV-2 virus from common human coronaviruses is therefore needed. Coronavirus nucleoprotein (N) localizes to the cytoplasm and the nucleolus and is required for viral RNA synthesis. N is the most abundant coronavirus protein, so it is of utmost importance to develop specific antibodies for its detection. In this study, we developed a sandwich immunoassay to recognize the SARS-CoV-2 N protein. We immunized one alpaca with recombinant SARS-CoV-2 N and constructed a large single variable domain on heavy chain (VHH) antibody library. After phage display selection, seven VHHs recognizing the full N protein were identified by ELISA. These VHHs did not recognize the nucleoproteins of the four common human coronaviruses. Hydrogen Deuterium eXchange-Mass Spectrometry (HDX-MS) analysis also showed that these VHHs mainly targeted conformational epitopes in either the C-terminal or the N-terminal domains. All VHHs were able to recognize SARS-CoV-2 in infected cells or on infected hamster tissues. Moreover, the VHHs could detect the SARS variants B.1.17/alpha, B.1.351/beta, and P1/gamma. We propose that this sandwich immunoassay could be applied to specifically detect the SARS-CoV-2 N in human nasal swabs.


Subject(s)
Enzyme-Linked Immunosorbent Assay/methods , Nucleocapsid Proteins/analysis , SARS-CoV-2/immunology , Single-Domain Antibodies/immunology , Animals , Cricetinae , Electrophoresis, Polyacrylamide Gel , Humans , Limit of Detection , Nucleocapsid Proteins/immunology
5.
Nat Commun ; 12(1): 4354, 2021 07 16.
Article in English | MEDLINE | ID: mdl-34272374

ABSTRACT

Understanding how SARS-CoV-2 spreads within the respiratory tract is important to define the parameters controlling the severity of COVID-19. Here we examine the functional and structural consequences of SARS-CoV-2 infection in a reconstructed human bronchial epithelium model. SARS-CoV-2 replication causes a transient decrease in epithelial barrier function and disruption of tight junctions, though viral particle crossing remains limited. Rather, SARS-CoV-2 replication leads to a rapid loss of the ciliary layer, characterized at the ultrastructural level by axoneme loss and misorientation of remaining basal bodies. Downregulation of the master regulator of ciliogenesis Foxj1 occurs prior to extensive cilia loss, implicating this transcription factor in the dedifferentiation of ciliated cells. Motile cilia function is compromised by SARS-CoV-2 infection, as measured in a mucociliary clearance assay. Epithelial defense mechanisms, including basal cell mobilization and interferon-lambda induction, ramp up only after the initiation of cilia damage. Analysis of SARS-CoV-2 infection in Syrian hamsters further demonstrates the loss of motile cilia in vivo. This study identifies cilia damage as a pathogenic mechanism that could facilitate SARS-CoV-2 spread to the deeper lung parenchyma.


Subject(s)
COVID-19/pathology , Cilia/ultrastructure , Mucociliary Clearance/physiology , SARS-CoV-2 , Animals , Axoneme , Basal Bodies , Cilia/metabolism , Cilia/pathology , Cricetinae , Cytokines , Epithelial Cells/pathology , Forkhead Transcription Factors/metabolism , Humans , Lung/pathology , Male , Mesocricetus , Respiratory Mucosa/metabolism , Respiratory Mucosa/pathology , Virus Replication
6.
EMBO Mol Med ; 13(8): e14122, 2021 08 09.
Article in English | MEDLINE | ID: mdl-34170074

ABSTRACT

The devastating pandemic due to SARS-CoV-2 and the emergence of antigenic variants that jeopardize the efficacy of current vaccines create an urgent need for a comprehensive understanding of the pathophysiology of COVID-19, including the contribution of inflammation to disease. It also warrants for the search of immunomodulatory drugs that could improve disease outcome. Here, we show that standard doses of ivermectin (IVM), an anti-parasitic drug with potential immunomodulatory activities through the cholinergic anti-inflammatory pathway, prevent clinical deterioration, reduce olfactory deficit, and limit the inflammation of the upper and lower respiratory tracts in SARS-CoV-2-infected hamsters. Whereas it has no effect on viral load in the airways of infected animals, transcriptomic analyses of infected lungs reveal that IVM dampens type I interferon responses and modulates several other inflammatory pathways. In particular, IVM dramatically reduces the Il-6/Il-10 ratio in lung tissue and promotes macrophage M2 polarization, which might account for the more favorable clinical presentation of IVM-treated animals. Altogether, this study supports the use of immunomodulatory drugs such as IVM, to improve the clinical condition of SARS-CoV-2-infected patients.


Subject(s)
COVID-19 , Ivermectin , Animals , Humans , Lung , Pandemics , SARS-CoV-2
7.
Sci Transl Med ; 13(596)2021 06 02.
Article in English | MEDLINE | ID: mdl-33941622

ABSTRACT

Whereas recent investigations have revealed viral, inflammatory, and vascular factors involved in severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) lung pathogenesis, the pathophysiology of neurological disorders in coronavirus disease 2019 (COVID-19) remains poorly understood. Olfactory and taste dysfunction are common in COVID-19, especially in mildly symptomatic patients. Here, we conducted a virologic, molecular, and cellular study of the olfactory neuroepithelium of seven patients with COVID-19 presenting with acute loss of smell. We report evidence that the olfactory neuroepithelium is a major site of SARS-CoV2 infection with multiple cell types, including olfactory sensory neurons, support cells, and immune cells, becoming infected. SARS-CoV-2 replication in the olfactory neuroepithelium was associated with local inflammation. Furthermore, we showed that SARS-CoV-2 induced acute anosmia and ageusia in golden Syrian hamsters, lasting as long as the virus remained in the olfactory epithelium and the olfactory bulb. Last, olfactory mucosa sampling from patients showing long-term persistence of COVID-19-associated anosmia revealed the presence of virus transcripts and of SARS-CoV-2-infected cells, together with protracted inflammation. SARS-CoV-2 persistence and associated inflammation in the olfactory neuroepithelium may account for prolonged or relapsing symptoms of COVID-19, such as loss of smell, which should be considered for optimal medical management of this disease.


Subject(s)
Anosmia/virology , Brain/virology , COVID-19 , Olfactory Mucosa/pathology , Animals , COVID-19/pathology , Cricetinae , Humans , Inflammation , Olfactory Mucosa/virology , RNA, Viral , SARS-CoV-2
9.
Psychol Med ; : 1-9, 2020 Oct 22.
Article in English | MEDLINE | ID: mdl-33087184

ABSTRACT

BACKGROUND: It is unclear whether olfactory deficits improve after remission in depressed patients. Therefore, we aimed to assess in drug-free patients the olfactory performance of patients with major depressive episodes (MDE) and its change after antidepressant treatment. METHODS: In the DEP-ARREST-CLIN study, 69 drug-free patients with a current MDE in the context of major depressive disorder (MDD) were assessed for their olfactory performances and depression severity, before and after 1 (M1) and 3 (M3) months of venlafaxine antidepressant treatment. They were compared to 32 age- and sex-matched healthy controls (HCs). Olfaction was assessed with a psychophysical test, the Sniffin' Sticks test (Threshold: T score; Discrimination: D score; Identification: I score; total score: T + D + I = TDI score) and Pleasantness (pleasantness score: p score; neutral score: N score; unpleasantness score: U score). RESULTS: As compared to HCs, depressed patients had lower TDI olfactory scores [mean (s.d.) 30.0(4.5) v. 33.3(4.2), p < 0.001], T scores [5.6(2.6) v. 7.4(2.6), p < 0.01], p scores [7.5(3.0) v. 9.8(2.8), p < 0.001)] and higher N scores [3.5(2.6) v. 2.1(1.8), p < 0.01]. T, p and N scores at baseline were independent from depression and anhedonia severity. After venlafaxine treatment, significant increases of T scores [M1: 7.0(2.6) and M3: 6.8(3.1), p < 0.01] and p scores [M1: 8.1(3.0) and M3: 8.4(3.3), p < 0.05] were evidenced, in remitters only (T: p < 0.01; P: p < 0.01). Olfaction improvement was mediated by depression improvement. CONCLUSIONS: The olfactory signature of MDE is restored after venlafaxine treatment. This olfaction improvement is mediated by depression improvement.

10.
Neurology ; 92(21): e2406-e2420, 2019 05 21.
Article in English | MEDLINE | ID: mdl-31028126

ABSTRACT

OBJECTIVE: To characterize the full spectrum, relative frequency, and prognosis of the neurologic manifestations in Zika virus (ZIKV) postnatal infection. METHODS: We conducted an observational study in consecutive ZIKV-infected patients presenting with neurologic manifestations during the French West Indies 2016 outbreak. RESULTS: Eighty-seven patients, including 6 children, were enrolled. Ninety-five percent of all cases required hospitalization. Guillain-Barré syndrome was the most frequent manifestation (46.0%) followed by encephalitis or encephalomyelitis (20.7%), isolated single or multiple cranial nerve palsies (9.2%), other peripheral manifestations (6.9%), and stroke (1.1%). Fourteen patients (16.1%), including one child, developed a mixed disorder involving both the central and peripheral nervous system. Mechanical ventilation was required in 21 cases, all of whom had ZIKV RNA in at least one biological fluid. Two adult patients died due to neuroZika. Clinical follow-up (median 14 months; interquartile range, 13-17 months) was available for 76 patients. Residual disability (modified Rankin Scale score ≥2) was identified in 19 (25.0%) patients; in 6 cases (7.9%), disability was severe (modified Rankin Scale score ≥4). Among patients with ZIKV RNA detected in one biological fluid, the risk of residual disability or death was higher (odds ratio 9.19; confidence interval 1.12-75.22; p = 0.039). CONCLUSIONS: NeuroZika spectrum represents a heterogeneous group of clinical neurologic manifestations. During an outbreak, clinicians should consider neuroZika in patients presenting with cranial nerve palsies and a mixed neurologic disorder. Long-term sequelae are frequent in NeuroZika. ZIKV reverse-transcription PCR status at admission can inform prognosis and should therefore be taken into consideration in the management of hospitalized patients.


Subject(s)
Cranial Nerve Diseases/therapy , Encephalitis, Viral/therapy , Encephalomyelitis/therapy , Guillain-Barre Syndrome/physiopathology , Zika Virus Infection/therapy , Adolescent , Adult , Aged , Child , Child, Preschool , Cranial Nerve Diseases/metabolism , Cranial Nerve Diseases/physiopathology , Encephalitis, Viral/metabolism , Encephalitis, Viral/physiopathology , Encephalomyelitis/metabolism , Encephalomyelitis/physiopathology , Female , Hospitalization , Humans , Infant , Male , Middle Aged , Prognosis , RNA, Viral/blood , RNA, Viral/cerebrospinal fluid , RNA, Viral/urine , Respiration, Artificial , Treatment Outcome , West Indies , Zika Virus Infection/metabolism , Zika Virus Infection/physiopathology
11.
Bio Protoc ; 9(4): e3170, 2019 Feb 20.
Article in English | MEDLINE | ID: mdl-33654976

ABSTRACT

Olfaction is the first sensory modality to develop during fetal life in mammals, and plays a key role in the various behaviors of neonates such as feeding and social interaction. Odorant cues (i.e., mother or predator scents) can trigger potentiation or inhibition of ultrasonic vocalizations (USV) emitted by pups following their isolation. Here, we report how USV are inhibited by olfactory cues using a sono-olfactometer that has been designed to quantify precisely olfaction in pups congenitally infected by cytomegalovirus. This olfactory-driven behavioral test assesses the USV emitted in presence of unfamiliar odorants such as citral scent or adult male mouse scent. We measure the number of USV emitted as an index of odorant detection during the three periods of the 5-min isolation time of the pup into the sono-olfactometer: first period without any odorant, second period with odorant exposure and last period with exhaust odorant. This protocol can be easily used to reveal olfactory deficits in pups with altered olfactory system due to toxic lesions or infectious diseases.

12.
J Neurosci ; 38(49): 10424-10437, 2018 12 05.
Article in English | MEDLINE | ID: mdl-30341181

ABSTRACT

In developed countries, cytomegalovirus (CMV)-infected newborns are at high risk of developing sensorineural handicaps such as hearing loss, requiring extensive follow-up. However, early prognostic tools for auditory damage in children are not yet available. In the fetus, CMV infection leads to early olfactory bulb (OB) damage, suggesting that olfaction might represent a valuable prognosis for neurological outcome of this viral infection. Here, we demonstrate that in utero CMV inoculation causes fetal infection and growth retardation in mice of both sexes. It disrupts OB normal development, leading to disproportionate OB cell layers and rapid major olfactory deficits. Olfaction is impaired as early as day 6 after birth in both sexes, long before the emergence of auditory deficits. Olfactometry in males reveals a long-lasting alteration in olfactory perception and discrimination, particularly in binary mixtures of monomolecular odorants. Although sensory inputs to the OB remain unchanged, hallmarks of autophagy are increased in the OB of 3-postnatal week-old mice, leading to local neuroinflammation and loss of neurons expressing tyrosine hydroxylase and calbindin. At the cellular level, we found CMV-infected cells and an increased number of apoptotic cells scattered throughout the OB layers, whereas cell proliferation in the neurogenic subventricular zone was decreased. These cellular observations were long-lasting, persisting up to 16 weeks after birth in both males and females and thus providing a mechanism supporting olfactory loss. Despite obvious differences in neurogenesis between human and mouse, these findings offer new strategies aimed at early detection of neurological dysfunctions caused by congenital infections.SIGNIFICANCE STATEMENT In developed countries, congenital cytomegalovirus (CMV)-infected newborns are at high risk of developing sensory handicaps such as hearing loss, thus requiring prolonged follow-up. In this study, we describe for the first time the functional impact of congenital CMV infection on the olfactory system and its associated sense of smell. We demonstrate that a mouse model of congenital CMV infection shows defects in olfactory bulb (OB) normal development and pronounced olfactory deficits affecting acuity and discrimination of odorants. These major olfactory deficits occur long before the emergence of auditory deficits through the upregulation of OB autophagy inducing local neuroinflammation and altered neuron content. Our findings provide new opportunities for designing olfactory means to monitor the possible neurological outcome during congenital CMV infection.


Subject(s)
Cytomegalovirus Infections/physiopathology , Hearing Disorders/physiopathology , Olfaction Disorders/physiopathology , Prenatal Exposure Delayed Effects/physiopathology , Smell/physiology , Animals , Animals, Newborn , Congenital Abnormalities/etiology , Congenital Abnormalities/pathology , Congenital Abnormalities/physiopathology , Cytomegalovirus Infections/complications , Female , Hearing Disorders/etiology , Hearing Disorders/virology , Male , Mice , Olfaction Disorders/etiology , Olfaction Disorders/virology , Pregnancy , Prenatal Exposure Delayed Effects/etiology , Prenatal Exposure Delayed Effects/virology
13.
Brain Behav Immun ; 60: 38-43, 2017 Feb.
Article in English | MEDLINE | ID: mdl-27640898

ABSTRACT

The olfactory bulb (OB) is a highly plastic structure that can change organizational networks depending on environmental inputs in adult mammals. Particularly, in rodents, adult neurogenesis underlies plastic changes in the OB circuitry by continuously adding new interneurons to the network. We addressed the question of whether microglia, the immune cells of the brain, were involved in pruning OB neurons. Using lentiviral labeling of neurons in neonatal or adult mice and confocal analysis, we showed that microglia engulfed parts of neonatal-born and adult-born neurons in the healthy OB. We demonstrated that OB deafferentation by Dichlobenil administration induced sensory deprivation. It also increased phagocytosis of adult-born, but not neonatal-born neurons, by activated microglia. Conversely, intranasal lipopolysaccharide administration induced activation of microglia but changed neither adult neurogenesis nor olfaction. Our data reveal that steady-state microglia eliminate adult-born neurons and their synapses in both healthy and sensory deprived OBs, thereby adapting neuronal connections to the sensory experience.


Subject(s)
Microglia/cytology , Neurons/cytology , Olfactory Bulb/cytology , Phagocytosis/physiology , Sensory Deprivation/physiology , Animals , Male , Mice, Inbred C57BL , Neurogenesis/physiology , Neuronal Plasticity/physiology , Smell/physiology , Synapses/metabolism
14.
Psychopharmacology (Berl) ; 234(4): 575-587, 2017 Feb.
Article in English | MEDLINE | ID: mdl-28025742

ABSTRACT

RATIONALE: The receptor protein tyrosine phosphatase PTPRG has been genetically associated with psychiatric disorders and is a ligand for members of the contactin family, which are themselves linked to autism spectrum disorders. OBJECTIVE: Based on our finding of a phosphatase-null de novo mutation in PTPRG associated with a case of sporadic schizophrenia, we used PTPRG knockout (KO) mice to model the effect of a loss-of-function mutation. We compared the results with loss-of-function in its close paralogue PTPRZ, previously associated with schizophrenia. We tested PTPRG -/- , PTPRZ -/- , and wild-type male mice for effects on social behavior, forced swim test, and anxiety, as well as on regional brain neurochemistry. RESULTS: The most notable behavioral consequences of PTPRG gene inactivation were reduced immobilization in the forced swim test, suggestive of some negative symptoms of schizophrenia. By contrast, PTPRZ -/- mice demonstrated marked social alteration with increased aggressivity, reminiscent of some positive symptoms of schizophrenia. Both knockouts showed elevated dopamine levels in prefrontal cortex, hippocampus, and most particularly amygdala, but not striatum, accompanied by reduced dopamine beta hydroxylase activity only in amygdala. In addition, PTPRG KO elicited a distinct increase in hippocampal serotonin level not observed in PTPRZ KO. CONCLUSION: PTPRG and PTPRZ gene loss therefore induces distinct patterns of behavioral change and region-specific alterations in neurotransmitters, highlighting their usefulness as models for neuropsychiatric disorder mechanisms and making these receptors attractive targets for therapy.


Subject(s)
Amygdala/metabolism , Dopamine/metabolism , Hippocampus/metabolism , Receptor-Like Protein Tyrosine Phosphatases, Class 5/metabolism , Serotonin/metabolism , Social Behavior , Animals , Corpus Striatum/metabolism , Male , Mice , Mice, Knockout , Receptor-Like Protein Tyrosine Phosphatases, Class 5/genetics , Schizophrenia/metabolism , Swimming
15.
J Neurosci ; 36(2): 518-31, 2016 Jan 13.
Article in English | MEDLINE | ID: mdl-26758842

ABSTRACT

Numerous clinical reports underscore the frequency of olfactory impairments in patients suffering from major depressive disorders (MDDs), yet the underlying physiopathological mechanisms remain poorly understood. We hypothesized that one key link between olfactory deficits and MDD lies in hypercortisolemia, a cardinal symptom of MDD. Corticosterone (CORT) is known to negatively correlate with hippocampal neurogenesis, yet its effects on olfactory neurogenesis and olfaction remain unknown. Here we used a rodent model of anxiety/depression-like states, which is based on chronic CORT administration and studied the effects of the antidepressant fluoxetine (FLX) on behavior, olfaction, and adult neurogenesis in the dentate gyrus (DG), olfactory bulb (OB), and the olfactory epithelium (OE). Chronic CORT had no effect on cell proliferation in the OE or on olfactory sensory neurons projecting to the OB, but induced pronounced deficits in olfactory acuity, fine discrimination of odorants and olfactory memory. These alterations were accompanied by a significant decrease in the number of adult-born neurons in both the DG and OB. Remarkably, FLX not only reversed depression-like states as expected, but also improved olfactory acuity, memory, and restored impaired adult neurogenesis. However, fine olfactory discrimination was not restored. Morphological analysis of adult-born neurons in both the DG and the OB showed that dendritic complexity was not significantly affected by CORT, but was increased by FLX. These findings demonstrate an essential role for glucocorticoids in triggering olfactory impairments in MDD and highlight a novel therapeutic effect of FLX. SIGNIFICANCE STATEMENT: Increasing clinical reports show that major depression is characterized by pronounced olfactory deficits, yet the underlying mechanisms remain unknown. In this work, we used an endocrine model of depression to study whether hypothalamic-pituitary-adrenal axis perturbation could be sufficient to provoke olfactory impairments. We found that chronic corticosterone not only induces marked deficits in olfactory acuity, fine discrimination and olfactory memory, but also significantly decreases bulbar and hippocampal neurogenesis. Importantly, the antidepressant fluoxetine restores both adult neurogenesis and depressive states, and improves most olfactory functions. Our data reveal that impairment of hypothalamic-pituitary-adrenal axis during depression can lead to olfactory deficits and that the neurogenic effects of selective serotonin reuptake inhibitor antidepressants can successfully restore certain olfactory functions.


Subject(s)
Anxiety/complications , Depression/complications , Neurogenesis/physiology , Olfaction Disorders/etiology , Olfaction Disorders/pathology , Animals , Anti-Inflammatory Agents/toxicity , Antidepressive Agents, Second-Generation/therapeutic use , Anxiety/chemically induced , Anxiety/drug therapy , Cell Proliferation/drug effects , Corticosterone/toxicity , Depression/chemically induced , Depression/drug therapy , Disease Models, Animal , Exploratory Behavior/drug effects , Feeding Behavior/drug effects , Fluoxetine/therapeutic use , Grooming/drug effects , Male , Mice , Mice, Inbred C57BL , Neurogenesis/drug effects , Olfactory Mucosa/metabolism , Olfactory Mucosa/pathology , Olfactory Receptor Neurons/drug effects , Olfactory Receptor Neurons/pathology , Reaction Time/drug effects
16.
J Neurosci ; 34(43): 14430-42, 2014 Oct 22.
Article in English | MEDLINE | ID: mdl-25339754

ABSTRACT

Subventricular zone (SVZ) neurogenesis continuously provides new GABA- and dopamine (DA)-containing interneurons for the olfactory bulb (OB) in most adult mammals. DAergic interneurons are located in the glomerular layer (GL) where they participate in the processing of sensory inputs. To examine whether adult neurogenesis might contribute to regeneration after circuit injury in mice, we induce DAergic neuronal loss by injecting 6-hydroxydopamine (6-OHDA) in the dorsal GL or in the right substantia nigra pars compacta. We found that a 6-OHDA treatment of the OB produces olfactory deficits and local inflammation and partially decreases the number of neurons expressing the enzyme tyrosine hydroxylase (TH) near the injected site. Blockade of inflammation by minocycline treatment immediately after the 6-OHDA administration rescued neither TH(+) interneuron number nor the olfactory deficits, suggesting that the olfactory impairments are most likely linked to TH(+) cell death and not to microglial activation. TH(+) interneuron number was restored 1 month later. This rescue resulted at least in part from enhanced recruitment of immature neurons targeting the lesioned GL area. Seven days after 6-OHDA lesion in the OB, we found that the integration of lentivirus-labeled adult-born neurons was biased: newly formed neurons were preferentially incorporated into glomerular circuits of the lesioned area. Behavioral rehabilitation occurs 2 months after lesion. This study establishes a new model into which loss of DAergic cells could be compensated by recruiting newly formed neurons. We propose that adult neurogenesis not only replenishes the population of DAergic bulbar neurons but that it also restores olfactory sensory processing.


Subject(s)
Dopaminergic Neurons/pathology , Dopaminergic Neurons/physiology , Neurogenesis/physiology , Olfactory Bulb/pathology , Olfactory Bulb/physiology , Smell/physiology , Age Factors , Animals , Male , Mice , Mice, Inbred C57BL
17.
Neuron ; 79(6): 1136-51, 2013 Sep 18.
Article in English | MEDLINE | ID: mdl-23993699

ABSTRACT

Neurogenesis underlies plastic changes in defined neuronal circuits in the postnatal and adult brain. Here we identify connective tissue growth factor (CTGF) as a critical factor in the mouse olfactory bulb (OB) in determining the efficiency of incorporation of postnatally born inhibitory neurons, thus gating the output of glomeruli, the first relay station of olfactory processing in the brain. In the OB, CTGF expression was restricted to prenatally born external tufted cells. CTGF enhanced the proapoptotic activity of glial-derived TGF-ß2, decreasing the survival of periglomerular inhibitory neurons. Changes in CTGF expression levels in the OB led to modifications in local neuronal circuitry and olfactory behaviors. We show that the odorant-specific recruitment of distinct glomeruli resulted in enhanced local CTGF expression levels in the activated glomeruli. Collectively our data reveal a molecular mechanism controlling the survival of defined postnatally born neurons, thus adapting neuronal integration to the sensory experiences.


Subject(s)
Connective Tissue Growth Factor/metabolism , Gene Expression Regulation/genetics , Interneurons/physiology , Olfactory Bulb/cytology , Smell/genetics , Analysis of Variance , Animals , Animals, Newborn , Bromodeoxyuridine/metabolism , Cell Line, Transformed , Cell Survival/genetics , Connective Tissue Growth Factor/genetics , Discrimination, Psychological/physiology , Female , Humans , Luminescent Proteins/genetics , Luminescent Proteins/metabolism , Lysine/analogs & derivatives , Lysine/metabolism , Male , Memory, Long-Term/physiology , Mice , Mice, Inbred C57BL , Mice, Transgenic , MicroRNAs/genetics , MicroRNAs/metabolism , Nerve Tissue Proteins/genetics , Nerve Tissue Proteins/metabolism , Odorants , Olfactory Bulb/physiology , Organ Culture Techniques , Protein Serine-Threonine Kinases/genetics , RNA, Small Interfering/genetics , RNA, Small Interfering/metabolism , Receptor, Transforming Growth Factor-beta Type II , Receptors, Odorant/genetics , Receptors, Odorant/metabolism , Receptors, Transforming Growth Factor beta/genetics , Sensory Thresholds/physiology , Synaptic Potentials/genetics , Transfection , tau Proteins/genetics
18.
J Neurosci ; 32(11): 3652-64, 2012 Mar 14.
Article in English | MEDLINE | ID: mdl-22423088

ABSTRACT

Microglia, the innate immune cells of the brain, engulf and eliminate cellular debris during brain injury and disease. Recent observations have extended their roles to the healthy brain, but the functional impact of activated microglia on neural plasticity has so far been elusive. To explore this issue, we investigated the role of microglia in the function of the adult olfactory bulb network in which both sensory afferents and local microcircuits are continuously molded by the arrival of adult-born neurons. We show here that the adult olfactory bulb hosts a large population of resident microglial cells. Deafferentation of the olfactory bulb resulted in a transient activation of microglia and a concomitant reduction of adult olfactory bulb neurogenesis. One day after sensory deafferentation, microglial cells proliferate in the olfactory bulb, and their numbers peaked at day 3, and reversed at day 7 after lesion. Similar lesions performed on immunodeficient mice demonstrate that the both innate and adaptive lymphocyte responses are dispensable for the lesion-induced microglial proliferation and activation. In contrast, when mice were treated with an antiinflammatory drug to prevent microglial activation, olfactory deafferentation did not reduce adult neurogenesis, showing that activated microglial cells per se, and not the lack of sensory experience, relates to the survival of adult-born neurons. We conclude that the status of the resident microglia in the olfactory bulb is an important factor directly regulating the survival of immature adult-born neurons.


Subject(s)
Microglia/physiology , Neurogenesis/physiology , Olfactory Bulb/cytology , Olfactory Bulb/growth & development , Age Factors , Animals , Cell Survival/physiology , Male , Mice , Mice, Inbred C57BL , Mice, Knockout , Smell/physiology , Time Factors
19.
J Clin Invest ; 121(12): 4722-34, 2011 Dec.
Article in English | MEDLINE | ID: mdl-22056384

ABSTRACT

Neural stem cells (NSCs) persist in defined brain niches, including the subventricular zone (SVZ), throughout adulthood and generate new neurons destined to support specific neurological functions. Whether brain diseases such as multiple sclerosis (MS) are associated with changes in adult NSCs and whether this might contribute to the development and/or persistence of neurological deficits remains poorly investigated. We examined SVZ function in mice in which we targeted an MS-like pathology to the forebrain. In these mice, which we refer to herein as targeted EAE (tEAE) mice, there was a reduction in the number of neuroblasts compared with control mice. Altered expression of the transcription factors Olig2 and Dlx2 in the tEAE SVZ niche was associated with amplification of pro-oligodendrogenic transit-amplifying cells and decreased neuroblast generation, which resulted in persistent reduction in olfactory bulb neurogenesis. Altered SVZ neurogenesis led to impaired long-term olfactory memory, mimicking the olfactory dysfunction observed in MS patients. Importantly, we also found that neurogenesis was reduced in the SVZ of MS patients compared with controls. Thus, our findings suggest that neuroinflammation induces functional alteration of adult NSCs that may contribute to olfactory dysfunction in MS patients.


Subject(s)
Adult Stem Cells/physiology , Disease Models, Animal , Encephalomyelitis, Autoimmune, Experimental/physiopathology , Lateral Ventricles/physiopathology , Multiple Sclerosis , Neural Stem Cells/pathology , Olfaction Disorders/etiology , Olfactory Bulb/pathology , Stem Cell Niche/physiology , Animals , Astrocytes/pathology , Basic Helix-Loop-Helix Transcription Factors/biosynthesis , Basic Helix-Loop-Helix Transcription Factors/deficiency , Basic Helix-Loop-Helix Transcription Factors/genetics , Cell Lineage , Corpus Callosum/pathology , Encephalomyelitis, Autoimmune, Experimental/complications , Encephalomyelitis, Autoimmune, Experimental/pathology , Gene Expression Regulation , Homeodomain Proteins/biosynthesis , Homeodomain Proteins/genetics , Humans , Interneurons/pathology , Memory, Long-Term/physiology , Mice , Nerve Tissue Proteins/biosynthesis , Nerve Tissue Proteins/deficiency , Nerve Tissue Proteins/genetics , Neurogenesis/genetics , Olfaction Disorders/pathology , Oligodendrocyte Transcription Factor 2 , Oligodendroglia/pathology , Transcription Factors/biosynthesis , Transcription Factors/deficiency , Transcription Factors/genetics
20.
Trends Neurosci ; 34(1): 20-30, 2011 Jan.
Article in English | MEDLINE | ID: mdl-20980064

ABSTRACT

In mammals, new neurons are recruited into restricted brain areas throughout life. Adult-born neurons produced in the subventricular zone of the lateral ventricle migrate rostrally towards the olfactory bulb. Although thousands of neurons reach this central structure every day, the functional impact of their integration into mature circuits remains a matter of debate. Recent investigations have revealed no striking sensory deficits per se when adult bulbar neurogenesis is challenged. However, some cognitive functions, such as perceptual learning and olfactory memory, are clearly impaired. In this review we highlight the role of network activity in shaping ongoing neurogenesis and, in turn, how the integration of adult-born neurons refines pre-existing network function, and consequently olfactory behavior.


Subject(s)
Neurogenesis/physiology , Smell/physiology , Animals , Learning/physiology , Nerve Net/anatomy & histology , Nerve Net/physiology , Neurons/cytology , Neurons/physiology , Odorants , Olfactory Bulb/cytology , Olfactory Bulb/physiology
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