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1.
Cell ; 187(4): 814-830.e23, 2024 Feb 15.
Article in English | MEDLINE | ID: mdl-38364788

ABSTRACT

Myelin, the insulating sheath that surrounds neuronal axons, is produced by oligodendrocytes in the central nervous system (CNS). This evolutionary innovation, which first appears in jawed vertebrates, enabled rapid transmission of nerve impulses, more complex brains, and greater morphological diversity. Here, we report that RNA-level expression of RNLTR12-int, a retrotransposon of retroviral origin, is essential for myelination. We show that RNLTR12-int-encoded RNA binds to the transcription factor SOX10 to regulate transcription of myelin basic protein (Mbp, the major constituent of myelin) in rodents. RNLTR12-int-like sequences (which we name RetroMyelin) are found in all jawed vertebrates, and we further demonstrate their function in regulating myelination in two different vertebrate classes (zebrafish and frogs). Our study therefore suggests that retroviral endogenization played a prominent role in the emergence of vertebrate myelin.


Subject(s)
Myelin Sheath , Retroelements , Animals , Gene Expression , Myelin Sheath/metabolism , Oligodendroglia/metabolism , Retroelements/genetics , RNA/metabolism , Zebrafish/genetics , Anura
2.
Otol Neurotol ; 44(7): 627-635, 2023 Aug 01.
Article in English | MEDLINE | ID: mdl-37317518

ABSTRACT

OBJECTIVE: The objective of this study is to determine the rate of postoperative meningitis after cochlear implantation in those with inner ear malformations (IEMs) via meta-analysis. DATA SOURCES: Medline, EMBASE, and the Cochrane Library. METHODS: This study was reported following the preferred reporting items for systematic reviews and meta-analyses (PRISMA) checklist. Proportion meta-analysis was conducted through an inverse variance random-effect model based on arcsin transformation and presented as forest plots. Quality assessment of the included studies was performed through the National Institutes of Health Quality Assessment Tool. RESULTS: Overall, 38 of 2966 studies met the inclusion criteria and were included in the analysis. There were 10 cases of meningitis after cochlear implantation in 1300 malformed ears. The overall rate of meningitis after cochlear implantation in IEMs was 0.12% (95% confidence interval, 0.006-0.380%; I2 = 0%). Cases occurred in incomplete partition (n = 5), Mondini deformity (n = 2), common cavity (n = 2), and enlarged internal auditory canal (n = 1). Six of 10 cases of postoperative meningitis occurred with an intraoperative cerebrospinal fluid leak. CONCLUSION: In those with IEMs, the risk of meningitis after cochlear implantation is very low.


Subject(s)
Cochlear Implantation , Cochlear Implants , Ear, Inner , Meningitis , Humans , Cochlear Implantation/adverse effects , Cochlear Implants/adverse effects , Ear, Inner/surgery , Treatment Outcome , Retrospective Studies , Meningitis/epidemiology , Meningitis/etiology
3.
Aging Cell ; 22(5): e13830, 2023 05.
Article in English | MEDLINE | ID: mdl-37013265

ABSTRACT

Ageing is the greatest risk factor of late-onset neurodegenerative diseases. In the realm of sporadic tauopathies, modelling the process of biological ageing in experimental animals forms the foundation of searching for the molecular origin of pathogenic tau and developing potential therapeutic interventions. Although prior research into transgenic tau models offers valuable lessons for studying how tau mutations and overexpression can drive tau pathologies, the underlying mechanisms by which ageing leads to abnormal tau accumulation remains poorly understood. Mutations associated with human progeroid syndromes have been proposed to be able to mimic an aged environment in animal models. Here, we summarise recent attempts in modelling ageing in relation to tauopathies using animal models that carry mutations associated with human progeroid syndromes, or genetic elements unrelated to human progeroid syndromes, or have exceptional natural lifespans, or a remarkable resistance to ageing-related disorders.


Subject(s)
Cockayne Syndrome , Tauopathies , Animals , Humans , Aged , tau Proteins/genetics , Tauopathies/genetics , Tauopathies/pathology , Aging/genetics , Disease Models, Animal , Longevity
4.
Otolaryngol Head Neck Surg ; 169(3): 467-481, 2023 09.
Article in English | MEDLINE | ID: mdl-36864717

ABSTRACT

OBJECTIVE: This study aims to estimate the rate of postoperative meningitis (both immediate and long-term) in patients following cochlear implants (CIs). It aims to do so through a systematic review and meta-analysis of published studies tracking complications after CIs. DATA SOURCES: MEDLINE, Embase, and Cochrane Library. REVIEW METHODS: This review was performed in line with Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines. Studies tracking complications following CIs in patients were included. Exclusion criteria included non-English language studies and case series reporting <10 patients. Bias risk was evaluated using the Newcastle-Ottawa Scale. Meta-analysis was performed through DerSimonian and Laird random-effects models. RESULTS: A total of 116/1931 studies met the inclusion criteria and were included in the meta-analysis. Overall, there were 112 cases of meningitis in 58,940 patients after CIs. Meta-analysis estimated an overall rate of postoperative meningitis of 0.07% (95% confidence interval [CIs], 0.03%-0.1%; I2 = 55%). Subgroup meta-analysis showed this rate had 95% CIs crossing 0% in implanted patients who received the pneumococcal vaccine, antibiotic prophylaxis, those with postoperative acute otitis media (AOM), and those implanted less than 5 years. CONCLUSION: Meningitis is a rare complication following CIs. Our estimated rates of meningitis after CIs appear lower than prior estimates based on epidemiological studies in the early 2000s. However, the rate still appears higher than the baseline rate in the general population. The risk was very low in implanted patients who received the pneumococcal vaccine, antibiotic prophylaxis, received unilateral or bilateral implantations, developed AOM, those implanted with a round window or cochleostomy techniques, and those under 5 years.


Subject(s)
Cochlear Implantation , Cochlear Implants , Meningitis , Otitis Media , Humans , Cochlear Implantation/adverse effects , Cochlear Implants/adverse effects , Meningitis/epidemiology , Meningitis/etiology , Pneumococcal Vaccines
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