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1.
J Neurophysiol ; 128(5): 1365-1373, 2022 11 01.
Artículo en Inglés | MEDLINE | ID: mdl-36259670

RESUMEN

The mammalian cochlea contains three rows of outer hair cells (OHCs) that amplify the basilar membrane traveling wave with high gain and exquisite tuning. The pattern of OHC loss caused by typical methods of producing hearing loss in animal models (noise, ototoxic exposure, or aging) is variable and not consistent along the length of the cochlea. Thus, it is difficult to use these approaches to understand how forces from multiple OHCs summate to create normal cochlear amplification. Here, we selectively removed the third row of OHCs and Deiters' cells in adult mice and measured cochlear amplification. In the mature cochlear epithelia, expression of the Wnt target gene Lgr5 is restricted to the third row of Deiters' cells, the supporting cells directly underneath the OHCs. Diphtheria toxin administration to Lgr5DTR-EGFP/+ mice selectively ablated the third row of Deiters' cells and the third row of OHCs. Basilar membrane vibration in vivo demonstrated disproportionately lower reduction in cochlear amplification by about 13.5 dB. On a linear scale, this means that the 33% reduction in OHC number led to a 79% reduction in gain. Thus, these experimental data describe the impact of reducing the force of cochlear amplification by a specific amount. Furthermore, these data argue that because OHC forces progressively and sequentially amplify the traveling wave as it travels to its peak, the loss of even a relatively small number of OHCs, when evenly distributed longitudinally, will cause a substantial reduction in cochlear amplification.NEW & NOTEWORTHY Normal cochlear physiology involves force production from three rows of outer hair cells to amplify and tune the traveling wave. Here, we used a genetic approach to target and ablate the third row of outer hair cells in the mouse cochlea and found it reduced cochlear amplification by 79%. This means that the loss of even a relatively small number of OHCs, when evenly distributed, causes a substantial reduction in cochlear amplification.


Asunto(s)
Células Ciliadas Vestibulares , Pérdida Auditiva , Ratones , Animales , Células Ciliadas Auditivas Externas/fisiología , Cóclea/metabolismo , Ruido , Mamíferos
2.
Hum Mol Genet ; 29(5): 705-715, 2020 03 27.
Artículo en Inglés | MEDLINE | ID: mdl-31600777

RESUMEN

Bosch-Boonstra-Schaaf optic atrophy syndrome (BBSOAS) has been identified as an autosomal-dominant disorder characterized by a complex neurological phenotype, with high prevalence of intellectual disability and optic nerve atrophy/hypoplasia. The syndrome is caused by loss-of-function mutations in NR2F1, which encodes a highly conserved nuclear receptor that serves as a transcriptional regulator. Previous investigations to understand the protein's role in neurodevelopment have mostly used mouse models with constitutive and tissue-specific homozygous knockout of Nr2f1. In order to represent the human disease more accurately, which is caused by heterozygous NR2F1 mutations, we investigated a heterozygous knockout mouse model and found that this model recapitulates some of the neurological phenotypes of BBSOAS, including altered learning/memory, hearing defects, neonatal hypotonia and decreased hippocampal volume. The mice showed altered fear memory, and further electrophysiological investigation in hippocampal slices revealed significantly reduced long-term potentiation and long-term depression. These results suggest that a deficit or alteration in hippocampal synaptic plasticity may contribute to the intellectual disability frequently seen in BBSOAS. RNA-sequencing (RNA-Seq) analysis revealed significant differential gene expression in the adult Nr2f1+/- hippocampus, including the up-regulation of multiple matrix metalloproteases, which are known to be critical for the development and the plasticity of the nervous system. Taken together, our studies highlight the important role of Nr2f1 in neurodevelopment. The discovery of impaired hippocampal synaptic plasticity in the heterozygous mouse model sheds light on the pathophysiology of altered memory and cognitive function in BBSOAS.


Asunto(s)
Factor de Transcripción COUP I/fisiología , Depresión/patología , Hipocampo/patología , Trastornos de la Memoria/patología , Plasticidad Neuronal , Atrofias Ópticas Hereditarias/patología , Animales , Conducta Animal , Depresión/etiología , Depresión/metabolismo , Femenino , Hipocampo/metabolismo , Masculino , Trastornos de la Memoria/etiología , Trastornos de la Memoria/metabolismo , Ratones , Ratones Endogámicos C57BL , Ratones Noqueados , Atrofias Ópticas Hereditarias/etiología , Atrofias Ópticas Hereditarias/metabolismo
3.
J Neuroinflammation ; 19(1): 224, 2022 Sep 12.
Artículo en Inglés | MEDLINE | ID: mdl-36096817

RESUMEN

BACKGROUND: Chronic suppurative otitis media (CSOM) is the most common cause of permanent hearing loss in children in the developing world. A large component of the permanent hearing loss is sensory in nature and our understanding of the mechanism of this has so far been limited to post-mortem human specimens or acute infection models that are not representative of human CSOM. In this report, we assess cochlear injury in a validated Pseudomonas aeruginosa (PA) CSOM mouse model. METHODS: We generated persisters (PCs) and inoculated them into the mouse middle ear cavity. We tracked infection with IVIS and detected PA using RT-PCR. We assessed cochlear damage and innate immunity by Immunohistochemistry. Finally, we evaluated cytokines with multiplex assay and quantitative real-time PCR. RESULTS: We observed outer hair cell (OHC) loss predominantly in the basal turn of the cochlear at 14 days after bacterial inoculation. Macrophages, not neutrophils are the major immune cells in the cochlea in CSOM displaying increased numbers and a distribution correlated with the observed cochlear injury. The progression of the morphological changes suggests a transition from monocytes into tissue macrophages following infection. We also show that PA do not enter the cochlea and live bacteria are required for cochlear injury. We characterized cytokine activity in the CSOM cochlea. CONCLUSIONS: Taken together, this data shows a critical role for macrophages in CSOM-mediated sensorineural hearing loss (SNHL).


Asunto(s)
Pérdida Auditiva Sensorineural , Otitis Media Supurativa , Animales , Niño , Enfermedad Crónica , Pérdida Auditiva Sensorineural/etiología , Humanos , Macrófagos , Ratones , Otitis Media Supurativa/complicaciones , Otitis Media Supurativa/microbiología
4.
Proc Natl Acad Sci U S A ; 115(21): E4853-E4860, 2018 05 22.
Artículo en Inglés | MEDLINE | ID: mdl-29735658

RESUMEN

Traumatic noise causes hearing loss by damaging sensory hair cells and their auditory synapses. There are no treatments. Here, we investigated mice exposed to a blast wave approximating a roadside bomb. In vivo cochlear imaging revealed an increase in the volume of endolymph, the fluid within scala media, termed endolymphatic hydrops. Endolymphatic hydrops, hair cell loss, and cochlear synaptopathy were initiated by trauma to the mechanosensitive hair cell stereocilia and were K+-dependent. Increasing the osmolality of the adjacent perilymph treated endolymphatic hydrops and prevented synaptopathy, but did not prevent hair cell loss. Conversely, inducing endolymphatic hydrops in control mice by lowering perilymph osmolality caused cochlear synaptopathy that was glutamate-dependent, but did not cause hair cell loss. Thus, endolymphatic hydrops is a surrogate marker for synaptic bouton swelling after hair cells release excitotoxic levels of glutamate. Because osmotic stabilization prevents neural damage, it is a potential treatment to reduce hearing loss after noise exposure.


Asunto(s)
Cóclea/fisiopatología , Enfermedades Cocleares/prevención & control , Hidropesía Endolinfática/fisiopatología , Células Ciliadas Auditivas/patología , Pérdida Auditiva Provocada por Ruido/prevención & control , Ruido/efectos adversos , Ósmosis , Animales , Umbral Auditivo , Enfermedades Cocleares/fisiopatología , Pérdida Auditiva Provocada por Ruido/fisiopatología , Ratones
5.
Analyst ; 144(22): 6721-6728, 2019 Nov 21.
Artículo en Inglés | MEDLINE | ID: mdl-31612878

RESUMEN

The tympanic membrane (TM) is a dynamic structure that separates the middle ear from the external auditory canal. It is also integral for the transmission of sound waves. In this study, we demonstrate the feasibility of using Raman spectroscopy to identify early chemical changes resulting from inflammation in the TM that can serve as an indicator of acute otitis media. Bacterial lipopolysaccharide (LPS) was injected trans-tympanicaly in a murine model. Presence of inflammatory response was assessed with binocular microscopy, confirmed with histopathology and immunofluorescence staining. Successful discrimination suggesting spectral differences among the control and LPS treated groups was achieved using principal component analysis. Raman imaging revealed major differences in collagen distribution and nucleic acid content. Image segmentation analysis on the trichrome stained tissue sections was performed to corroborate the Raman spectra. The spectral co-localization study suggests changes in the expression of collagen IV specific signals in LPS treated samples. The overall findings of the study support prospective application of RS in the diagnosis and therapeutic monitoring of otitis media.


Asunto(s)
Otitis Media/diagnóstico , Membrana Timpánica/metabolismo , Animales , Femenino , Inflamación/inducido químicamente , Inflamación/diagnóstico , Lipopolisacáridos/farmacología , Ratones Endogámicos C57BL , Otitis Media/inducido químicamente , Prueba de Estudio Conceptual , Espectrometría Raman/métodos
6.
J Neurophysiol ; 120(6): 2847-2857, 2018 12 01.
Artículo en Inglés | MEDLINE | ID: mdl-30281386

RESUMEN

There is indirect evidence that the mammalian cochlea in the low-frequency apical and the more commonly studied high-frequency basal regions function in fundamentally different ways. Here, we directly tested this hypothesis by measuring sound-induced vibrations of the organ of Corti (OoC) at three turns of the gerbil cochlea using volumetric optical coherence tomography vibrometry (VOCTV), an approach that permits noninvasive imaging through the bone. In the apical turn, there was little frequency selectivity, and the displacement-vs.-frequency curves had low-pass filter characteristics with a corner frequency of ~0.5-0.9 kHz. The vibratory magnitudes increased compressively with increasing stimulus intensity at all frequencies. In the middle turn, responses were similar except for a slight peak in the response at ~2.5 kHz. The gain was ~50 dB at the peak and 30-40 dB at lower frequencies. In the basal turn, responses were sharply tuned and compressively nonlinear, consistent with observations in the literature. These data demonstrated that there is a transition of the mechanical response of the OoC along the length of the cochlea such that frequency tuning is sharper in the base than in the apex. Because the responses are fundamentally different, it is not appropriate to simply frequency shift vibratory data measured at one cochlear location to predict the cochlear responses at other locations. Furthermore, this means that the number of hair cells stimulated by sound is larger for low-frequency stimuli and smaller for high-frequency stimuli for the same intensity level. Thus the mechanisms of central processing of sounds must vary with frequency. NEW & NOTEWORTHY A volumetric optical coherence tomography and vibrometry system was used to probe cochlear mechanics within the intact gerbil cochlea. We found a gradual transition of the mechanical response of the organ of Corti along the length of the cochlea such that tuning at the base is dramatically sharper than that at the apex. These data help to explain discrepancies in the literature regarding how the cochlea processes low-frequency sounds.


Asunto(s)
Órgano Espiral/fisiología , Vibración , Animales , Femenino , Gerbillinae , Masculino , Órgano Espiral/diagnóstico por imagen , Tomografía de Coherencia Óptica
7.
J Neurosci ; 36(31): 8160-73, 2016 08 03.
Artículo en Inglés | MEDLINE | ID: mdl-27488636

RESUMEN

UNLABELLED: The exquisite sensitivity and frequency discrimination of mammalian hearing underlie the ability to understand complex speech in noise. This requires force generation by cochlear outer hair cells (OHCs) to amplify the basilar membrane traveling wave; however, it is unclear how amplification is achieved with sharp frequency tuning. Here we investigated the origin of tuning by measuring sound-induced 2-D vibrations within the mouse organ of Corti in vivo Our goal was to determine the transfer function relating the radial shear between the structures that deflect the OHC bundle, the tectorial membrane and reticular lamina, to the transverse motion of the basilar membrane. We found that, after normalizing their responses to the vibration of the basilar membrane, the radial vibrations of the tectorial membrane and reticular lamina were tuned. The radial tuning peaked at a higher frequency than transverse basilar membrane tuning in the passive, postmortem condition. The radial tuning was similar in dead mice, indicating that this reflected passive, not active, mechanics. These findings were exaggerated in Tecta(C1509G/C1509G) mice, where the tectorial membrane is detached from OHC stereocilia, arguing that the tuning of radial vibrations within the hair cell epithelium is distinct from tectorial membrane tuning. Together, these results reveal a passive, frequency-dependent contribution to cochlear filtering that is independent of basilar membrane filtering. These data argue that passive mechanics within the organ of Corti sharpen frequency selectivity by defining which OHCs enhance the vibration of the basilar membrane, thereby tuning the gain of cochlear amplification. SIGNIFICANCE STATEMENT: Outer hair cells amplify the traveling wave within the mammalian cochlea. The resultant gain and frequency sharpening are necessary for speech discrimination, particularly in the presence of background noise. Here we measured the 2-D motion of the organ of Corti in mice and found that the structures that stimulate the outer hair cell stereocilia, the tectorial membrane and reticular lamina, were sharply tuned in the radial direction. Radial tuning was similar in dead mice and in mice lacking a tectorial membrane. This suggests that radial tuning comes from passive mechanics within the hair cell epithelium, and that these mechanics, at least in part, may tune the gain of cochlear amplification.


Asunto(s)
Estimulación Acústica/métodos , Mecanotransducción Celular/fisiología , Modelos Neurológicos , Órgano Espiral/fisiología , Percepción de la Altura Tonal/fisiología , Membrana Tectoria/fisiología , Animales , Simulación por Computador , Femenino , Masculino , Ratones , Ratones Endogámicos C57BL , Presión , Resistencia al Corte/fisiología , Vibración
8.
Development ; 140(6): 1196-206, 2013 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-23444352

RESUMEN

Permanent hearing loss is caused by the irreversible damage of cochlear sensory hair cells and nonsensory supporting cells. In the postnatal cochlea, the sensory epithelium is terminally differentiated, whereas tympanic border cells (TBCs) beneath the sensory epithelium are proliferative. The functions of TBCs are poorly characterized. Using an Axin2(lacZ) Wnt reporter mouse, we found transient but robust Wnt signaling and proliferation in TBCs during the first 3 postnatal weeks, when the number of TBCs decreases. In vivo lineage tracing shows that a subset of hair cells and supporting cells is derived postnatally from Axin2-expressing TBCs. In cochlear explants, Wnt agonists stimulated the proliferation of TBCs, whereas Wnt inhibitors suppressed it. In addition, purified Axin2(lacZ) cells were clonogenic and self-renewing in culture in a Wnt-dependent manner, and were able to differentiate into hair cell-like and supporting cell-like cells. Taken together, our data indicate that Axin2-positive TBCs are Wnt responsive and can act as precursors to sensory epithelial cells in the postnatal cochlea.


Asunto(s)
Cóclea/crecimiento & desarrollo , Cóclea/fisiología , Oído Medio/citología , Células Madre/fisiología , Vía de Señalización Wnt/fisiología , Animales , Animales Recién Nacidos , Proteína Axina/genética , Proteína Axina/metabolismo , Diferenciación Celular/genética , Diferenciación Celular/fisiología , Proliferación Celular , Células Cultivadas , Pollos , Cóclea/citología , Oído Medio/metabolismo , Células Ciliadas Auditivas/citología , Células Ciliadas Auditivas/metabolismo , Células Ciliadas Auditivas/fisiología , Ratones , Ratones Transgénicos , Modelos Biológicos , Células Madre/citología , Células Madre/metabolismo , Vía de Señalización Wnt/genética
9.
J Neurophysiol ; 113(10): 3531-42, 2015 Jun 01.
Artículo en Inglés | MEDLINE | ID: mdl-25810486

RESUMEN

Prestin is a membrane protein necessary for outer hair cell (OHC) electromotility and normal hearing. Its regulatory mechanisms are unknown. Several mouse models of hearing loss demonstrate increased prestin, inspiring us to investigate how hearing loss might feedback onto OHCs. To test whether centrally mediated feedback regulates prestin, we developed a novel model of inner hair cell loss. Injection of diphtheria toxin (DT) into adult CBA mice produced significant loss of inner hair cells without affecting OHCs. Thus, DT-injected mice were deaf because they had no afferent auditory input despite OHCs continuing to receive normal auditory mechanical stimulation and having normal function. Patch-clamp experiments demonstrated no change in OHC prestin, indicating that loss of information transfer centrally did not alter prestin expression. To test whether local mechanical feedback regulates prestin, we used Tecta(C1509G) mice, where the tectorial membrane is malformed and only some OHCs are stimulated. OHCs connected to the tectorial membrane had normal prestin levels, whereas OHCs not connected to the tectorial membrane had elevated prestin levels, supporting an activity-dependent model. To test whether the endocochlear potential was necessary for prestin regulation, we studied Tecta(C1509G) mice at different developmental ages. OHCs not connected to the tectorial membrane had lower than normal prestin levels before the onset of the endocochlear potential and higher than normal prestin levels after the onset of the endocochlear potential. Taken together, these data indicate that OHC prestin levels are regulated through local feedback that requires mechanoelectrical transduction currents. This adaptation may serve to compensate for variations in the local mechanical environment.


Asunto(s)
Regulación de la Expresión Génica/fisiología , Células Ciliadas Auditivas Externas/metabolismo , Proteínas Motoras Moleculares/metabolismo , Envejecimiento , Animales , Animales Recién Nacidos , Muerte Celular/efectos de los fármacos , Toxina Diftérica/farmacología , Capacidad Eléctrica , Potenciales Evocados Auditivos del Tronco Encefálico/efectos de los fármacos , Potenciales Evocados Auditivos del Tronco Encefálico/genética , Proteínas de la Matriz Extracelular/genética , Proteínas Ligadas a GPI/genética , Regulación de la Expresión Génica/efectos de los fármacos , Regulación de la Expresión Génica/genética , Células Ciliadas Auditivas Externas/efectos de los fármacos , Células Ciliadas Auditivas Externas/ultraestructura , Potenciales de la Membrana/efectos de los fármacos , Potenciales de la Membrana/genética , Ratones , Ratones Endogámicos CBA , Ratones Transgénicos/genética , Microscopía Electrónica de Rastreo , Mutación/genética , Emisiones Otoacústicas Espontáneas/genética , Técnicas de Placa-Clamp
10.
Proc Natl Acad Sci U S A ; 109(21): 8167-72, 2012 May 22.
Artículo en Inglés | MEDLINE | ID: mdl-22562792

RESUMEN

Inner ear hair cells are specialized sensory cells essential for auditory function. Previous studies have shown that the sensory epithelium is postmitotic, but it harbors cells that can behave as progenitor cells in vitro, including the ability to form new hair cells. Lgr5, a Wnt target gene, marks distinct supporting cell types in the neonatal cochlea. Here, we tested the hypothesis that Lgr5(+) cells are Wnt-responsive sensory precursor cells. In contrast to their quiescent in vivo behavior, Lgr5(+) cells isolated by flow cytometry from neonatal Lgr5(EGFP-CreERT2/+) mice proliferated and formed clonal colonies. After 10 d in culture, new sensory cells formed and displayed specific hair cell markers (myo7a, calretinin, parvalbumin, myo6) and stereocilia-like structures expressing F-actin and espin. In comparison with other supporting cells, Lgr5(+) cells were enriched precursors to myo7a(+) cells, most of which formed without mitotic division. Treatment with Wnt agonists increased proliferation and colony-formation capacity. Conversely, small-molecule inhibitors of Wnt signaling suppressed proliferation without compromising the myo7a(+) cells formed by direct differentiation. In vivo lineage tracing supported the idea that Lgr5(+) cells give rise to myo7a(+) hair cells in the neonatal Lgr5(EGFP-CreERT2/+) cochlea. In addition, overexpression of ß-catenin initiated proliferation and led to transient expansion of Lgr5(+) cells within the cochlear sensory epithelium. These results suggest that Lgr5 marks sensory precursors and that Wnt signaling can promote their proliferation and provide mechanistic insights into Wnt-responsive progenitor cells during sensory organ development.


Asunto(s)
Cóclea/citología , Cóclea/crecimiento & desarrollo , Células Ciliadas Auditivas Internas/metabolismo , Células Madre/metabolismo , Vía de Señalización Wnt/fisiología , Animales , Animales Recién Nacidos , Biomarcadores/metabolismo , División Celular/fisiología , Linaje de la Célula/fisiología , Citometría de Flujo , Proteínas Fluorescentes Verdes/genética , Células Ciliadas Auditivas Internas/citología , Ratones , Ratones Endogámicos C57BL , Ratones Transgénicos , Receptores Acoplados a Proteínas G/genética , Receptores Acoplados a Proteínas G/metabolismo , Regeneración/fisiología , Células Madre/citología
11.
Otol Neurotol ; 44(6): 605-610, 2023 07 01.
Artículo en Inglés | MEDLINE | ID: mdl-37315234

RESUMEN

OBJECTIVE: Our objective was to determine whether the receptor CX3CR1 is necessary for the recruitment of macrophages to the cochlea in chronic suppurative otitis media (CSOM) and if its deletion can prevent hair cell loss in CSOM. BACKGROUND: CSOM is a neglected disease that afflicts 330 million people worldwide and is the most common cause of permanent hearing loss among children in the developing world. It is characterized by a chronically discharging infected middle ear. We have previously demonstrated that CSOM causes macrophage associated sensory hearing loss. The receptor CX3CR1 is expressed on macrophages, which have been shown to be increased at the time point of outer hair cell (OHC) loss in CSOM. METHODS: In this report, we examine the influence of CX3CR1 deletion (CX3CR1-/-) in a validated model of Pseudomonas aeruginosa (PA) CSOM. RESULTS: The data show no difference in OHC loss between the CX3CR1-/- CSOM group and CX3CR1+/+ CSOM group (p = 0.28). We observed partial OHC loss in the cochlear basal turn, no OHC loss in the middle and apical turns in both CX3CR1-/- and CX3CR1+/+ CSOM mice at 14 days after bacterial inoculation. No inner hair cell (IHC) loss was found in all cochlear turns in all groups. We also counted F4/80 labeled macrophages in the spiral ganglion, spiral ligament, stria vascularis and spiral limbus of the basal, middle, and apical turn in cryosections. We did not find a significant difference in the total number of cochlear macrophages between CX3CR1-/- mice and CX3CR1+/+ mice (p = 0.97). CONCLUSION: The data did not support a role for CX3CR1 macrophage associated HC loss in CSOM.


Asunto(s)
Receptor 1 de Quimiocinas CX3C , Sordera , Otitis Media Supurativa , Animales , Ratones , Cóclea , Células Ciliadas Auditivas Externas , Macrófagos , Otitis Media Supurativa/genética , Receptor 1 de Quimiocinas CX3C/genética
12.
Int J Pediatr Otorhinolaryngol ; 156: 111070, 2022 May.
Artículo en Inglés | MEDLINE | ID: mdl-35228098

RESUMEN

OBJECTIVE: Eustachian tube dysfunction is believed to be involved in the pathogenesis of many middle ear diseases including chronic suppurative otitis media. We aimed to describe a simple and reliable animal model of Eustachian Tube obstruction to further research into middle ear disorders. STUDY DESIGN: Prospective cohort study in animals. SETTING: University laboratory. SUBJECTS AND METHODS: 30 mice C57Bl/6J (n = 15) and CBA/CaJ (n = 15) aged 6-8 weeks received transtympanic Eustachian tube occlusion on left ear trough an acute tympanic membrane perforation using thermoplastic latex used in dental procedures (gutta percha). Control mice (n = 6) received tympanic membrane perforation only. At two and four weeks, the mice were observed for signs of Eustachian tube dysfunction and compared to control ears. ET dysfunction was defined as presence of effusion in the middle ear. RESULTS: 100% (n = 30) of the treated ears had otoscopic signs of Eustachian tube dysfunction at two weeks and the endpoint time of four weeks, compared to 0% in control mice (0/6). Temporary head tilt lasting up to 2 days were observed in 3 mice (10%). No other potential adverse events were recorded. No bacterial growth was determined in the middle ear fluid. CONCLUSION: We describe a technically easy and reliable method for Eustachian tube occlusion in mice with an excellent success rate and minimal morbidity.


Asunto(s)
Trompa Auditiva , Otitis Media con Derrame , Otitis Media Supurativa , Otitis Media , Perforación de la Membrana Timpánica , Animales , Modelos Animales de Enfermedad , Humanos , Ratones , Ratones Endogámicos CBA , Otitis Media/complicaciones , Otitis Media con Derrame/complicaciones , Otitis Media Supurativa/complicaciones , Estudios Prospectivos , Perforación de la Membrana Timpánica/cirugía
13.
ACS Appl Bio Mater ; 5(10): 4849-4859, 2022 10 17.
Artículo en Inglés | MEDLINE | ID: mdl-36179346

RESUMEN

We present a topical drug delivery mechanism through the ear canal to the middle and inner ear using liposomal nanoparticles without disrupting the integrity of the tympanic membrane. The current delivery method provides a noninvasive and safer alternative to transtympanic membrane injections, ear tubes followed by ear drops administration, and systemic drug formulations. We investigate the capability of liposomal NPs, particularly transfersomes (TLipo), used as drug delivery vesicles to penetrate the tympanic membrane (TM) and round window membrane (RWM) with high affinity, specificity, and retention time. The TLipo is applied to the ear canal and found to pass through the tympanic membrane quickly in 3 h post drug administration. They are identified in the middle ear cavity 6 h and in the inner ear 24 h after drug administration. We performed cytotoxicity in vitro and ototoxicity in vivo studies. Cell viability shows no significant difference between the applied TLipo concentration and control. Furthermore, auditory brainstem response (ABR) reveals no hearing loss in 1 week and 1 month post-administration. Immunohistochemistry results demonstrate no evidence of hair cell loss in the cochlea at 1 month following TLipo administration. Together, the data suggested that TLipo can be used as a vehicle for topical drug delivery to the middle ear and inner ear.


Asunto(s)
Enfermedades del Oído , Oído Interno , Enfermedades del Laberinto , Cóclea , Sistemas de Liberación de Medicamentos , Enfermedades del Oído/tratamiento farmacológico , Humanos , Ventana Redonda/fisiología
14.
Nanoscale ; 14(28): 10016-10032, 2022 Jul 21.
Artículo en Inglés | MEDLINE | ID: mdl-35796201

RESUMEN

Persister cells are responsible for relapses of infections common in cystic fibrosis and chronic suppurative otitis media (CSOM). Yet, there are no Food and Drug Administration (FDA) approved antibiotics to eradicate persister cells. Frustratingly, the global preclinical bacterial pipeline does not contain antibacterial agents targeting persister cells. Therefore, we report a nontraditional antimicrobial chemotherapy strategy based on gold nanoclusters adjuvant to eradicate persister cells by existing antibiotics belonging to that different class. Compared to killing with antibiotics alone, combining antibiotics and AuNC@CPP sterilizes persister cells and biofilms. Enhanced killing of up to 4 orders of magnitude in a validated mouse model of CSOM with Pseudomonas aeruginosa infection was observed when combining antibiotics and AuNC@CPP, informing a potential approach to improve the treatment of CSOM. We established that the mechanism of action of AuNC@CPP is due to disruption of the proton gradient and membrane hyperpolarization. The method presented here could compensate for the lack of new antibiotics to combat persister cells. This method could also benefit the current effort to slow resistance development because AuNC@CPP abolished the emergence of drug-resistant strains induced by antibiotics.


Asunto(s)
Antibacterianos , Pseudomonas aeruginosa , Animales , Antibacterianos/farmacología , Biopelículas , Oro/farmacología , Ratones , Pruebas de Sensibilidad Microbiana
15.
Otol Neurotol ; 43(10): e1121-e1128, 2022 12 01.
Artículo en Inglés | MEDLINE | ID: mdl-36240734

RESUMEN

HYPOTHESIS: Commercially available povidone-iodine solution can eliminate biofilms and persister cells rapidly in in vivo achievable concentrations without inducing ototoxicity. BACKGROUND: Chronic suppurative otitis media (CSOM) is a substantial global problem. Current treatment options often induce a temporary remission without leading to a permanent cessation of symptoms secondary to the treatments' inability to eliminate persister cells. Povidone-iodine has been shown to be able to clear biofilm and planktonic cells in in vitro assays, but there are reports of ototoxic effects limiting its clinical utility. METHODS: Bacterial and biofilm growth with quantification by spectrophotomer, murine auditory brainstem response (ABR), and distortion product otoacoustic emissions, immunohistochemistry, in vivo povidone-iodine treatment of murine CSOM, persister cell assay. RESULTS: Commercially available 10% povidone-iodine solution is able to completely eradicate multiple clinical strains of Pseudomonas aeruginosa and Staphylococcus aureus in vitro with 10 minutes of exposure. Mice that have received a transtympanic injection of 1% povidone-iodine solution did not have significantly different auditory brainstem response or distortion product otoacoustic emission results compared with the control. Mice that received a povidone-iodine scrub or 10% povidone-iodine solution had significantly worsened hearing (25- and 13-dB increase in threshold, respectively; p < 0.05). In vivo CSOM infection recurred in all mice after the completion of treatment with 10% povidone-iodine solution, and there was no improvement in the bacterial load after treatment, indicating in vivo failure of therapy. CONCLUSION: Povidone-iodine solution is effective at eliminating biofilm and persister cells in vitro at in vivo achievable concentrations but fails in vivo most likely because of kinetics of distribution in vivo. Even if drug distribution could be improved, the therapeutic window is likely to be too small given that the diluted solution does not have ototoxic potential, whereas while the scrub variant, which contains detergents, and the undiluted solution are ototoxic after a single treatment.


Asunto(s)
Antiinfecciosos Locales , Otitis Media Supurativa , Ototoxicidad , Ratones , Animales , Povidona Yodada/farmacología , Povidona Yodada/uso terapéutico , Otitis Media Supurativa/tratamiento farmacológico , Antiinfecciosos Locales/farmacología , Antiinfecciosos Locales/uso terapéutico , Recurrencia Local de Neoplasia
16.
Biophys J ; 100(10): 2530-8, 2011 May 18.
Artículo en Inglés | MEDLINE | ID: mdl-21575588

RESUMEN

The tectorial membrane (TM) is an extracellular matrix of the cochlea whose prominent role in hearing has been demonstrated through mutation studies. The C1509G mutation of the Tecta gene, which encodes for the α-tectorin protein, leads to hearing loss. The heterozygote TM only attaches to the first row of outer hair cells (OHCs), and the homozygote TM does not attach to any OHCs. Here we measured the morphology and mechanical properties of wild-type, heterozygous, and homozygous Tecta TMs. Morphological analyses conducted with second- and third-harmonic imaging, scanning electron microscopy, and immunolabeling revealed marked changes in the collagen architecture and stereocilin-labeling patterns of the mutant TMs. The mechanical properties of the mutant TM were measured by force spectroscopy. Whereas the axial Young's modulus of the low-frequency (apical) region of Tecta mutant TM samples was similar to that of wild-type TMs, it significantly decreased in the basal region to a value approaching that found at the apex. Modeling simulations suggest that a reduced TM Young's modulus is likely to reduce OHC stereociliary deflection. These findings argue that the heterozygote C1509G mutation results in a lack of attachment of the TM to the OHCs, which in turn reduces both the overall number of OHCs that are involved in mechanotransduction and the degree of mechanotransduction exhibited by the OHCs that remain attached to the TM.


Asunto(s)
Proteínas de la Matriz Extracelular/genética , Mutación/genética , Membrana Tectoria/metabolismo , Membrana Tectoria/ultraestructura , Animales , Fenómenos Biomecánicos , Módulo de Elasticidad , Colágenos Fibrilares/química , Proteínas Ligadas a GPI/genética , Genotipo , Heterocigoto , Homocigoto , Péptidos y Proteínas de Señalización Intercelular , Ratones , Ratones Mutantes , Proteínas/metabolismo , Coloración y Etiquetado
17.
Opt Express ; 19(16): 15415-28, 2011 Aug 01.
Artículo en Inglés | MEDLINE | ID: mdl-21934905

RESUMEN

Human hearing loss often occurs as a result of damage or malformations to the functional soft tissues within the cochlea, but these changes are not appreciable with current medical imaging modalities. We sought to determine whether optical coherence tomography (OCT) could assess the soft tissue structures relevant to hearing using mouse models. We imaged excised cochleae with an altered tectorial membrane and during normal development. The soft tissue structures and expected anatomical variations were visible using OCT, and quantitative measurements confirmed the ability to detect critical changes relevant to hearing.


Asunto(s)
Cóclea/patología , Diagnóstico por Imagen/métodos , Tomografía de Coherencia Óptica/métodos , Animales , Modelos Animales de Enfermedad , Diseño de Equipo , Audición/fisiología , Pérdida Auditiva Sensorineural/patología , Imagen por Resonancia Magnética/métodos , Ratones , Ratones Transgénicos , Modelos Anatómicos , Óptica y Fotónica , Órgano Espiral/patología , Tomografía Computarizada por Rayos X/métodos
18.
Otol Neurotol ; 42(9): e1263-e1272, 2021 10 01.
Artículo en Inglés | MEDLINE | ID: mdl-34149028

RESUMEN

OBJECTIVE: Chronic suppurative otitis media (CSOM) is characterized by a chronically draining middle ear. CSOM is typically treated with multiple courses of antibiotics or antiseptics which are successful in achieving quiescence; however, the disease is prone to relapse. Understanding why these treatment failures occur is essential. STUDY DESIGN: The minimum inhibitory concentration (MIC), minimal biofilm eradication concentration, and the inhibitory zone were determined for ototopicals and ofloxacin for the laboratory strains and CSOM-derived isolates. The percentage of persister cells and bacterial biofilm formation were measured. Disease eradication was tested in a validated in-vivo model of CSOM after treatment with ofloxacin. SETTING: Microbiology Laboratory. METHODS: Basic science experiments were performed to measure the effectiveness of a number of compounds against CSOM bacteria in a number of distinct settings. RESULTS: The minimal biofilm eradication concentration is higher than is physiologically achievable with commercial preparations, except for povo-iodine. Clincial isolates of CSOM have equivalent biofilm-forming ability but increased proportions of persister cells. Ofloxacin can convert to inactive disease temporarily but fails to eradicate disease in an in-vivo model. CONCLUSIONS: Higher percentages of persister cells in clinical CSOM isolates are associated with resistance to ototopicals. Current ototopicals, except povo-iodine, have limited clinical effectiveness; however, it is unknown what the maximum achievable concentration is and there are ototoxicity concerns. Fluoroquinolones, while successful in producing inactive disease in the short term, have the potential to encourage antimicrobial resistance and disease recalcitrance and do not achieve a permanent remission. Given these limitations, clinicians should consider surgery earlier or use of clinically safe concentrations of povo-iodine earlier into the treatment algorithm.


Asunto(s)
Antiinfecciosos Locales , Otitis Media Supurativa , Antibacterianos/uso terapéutico , Biopelículas , Enfermedad Crónica , Humanos , Ofloxacino/farmacología , Otitis Media Supurativa/tratamiento farmacológico
19.
J Neurosci ; 29(36): 11123-33, 2009 Sep 09.
Artículo en Inglés | MEDLINE | ID: mdl-19741118

RESUMEN

Atoh1 is a basic helix-loop-helix transcription factor necessary for the specification of inner ear hair cells and central auditory system neurons derived from the rhombic lip. We used the Cre-loxP system and two Cre-driver lines (Egr2(Cre) and Hoxb1(Cre)) to delete Atoh1 from different regions of the cochlear nucleus (CN) and accessory auditory nuclei (AAN). Adult Atoh1-conditional knock-out mice (Atoh1(CKO)) are behaviorally deaf, have diminished auditory brainstem evoked responses, and have disrupted CN and AAN morphology and connectivity. In addition, Egr2; Atoh1(CKO) mice lose spiral ganglion neurons in the cochlea and AAN neurons during the first 3 d of life, revealing a novel critical period in the development of these neurons. These new mouse models of predominantly central deafness illuminate the importance of the CN for support of a subset of peripheral and central auditory neurons.


Asunto(s)
Factores de Transcripción con Motivo Hélice-Asa-Hélice Básico/fisiología , Tronco Encefálico/fisiología , Audición/fisiología , Neuronas/fisiología , Ganglio Espiral de la Cóclea/fisiología , Estimulación Acústica/métodos , Animales , Animales Recién Nacidos , Factores de Transcripción con Motivo Hélice-Asa-Hélice Básico/deficiencia , Factores de Transcripción con Motivo Hélice-Asa-Hélice Básico/genética , Tronco Encefálico/patología , Supervivencia Celular/fisiología , Núcleo Coclear/patología , Núcleo Coclear/fisiología , Femenino , Audición/genética , Ratones , Ratones Congénicos , Ratones Endogámicos C57BL , Ratones Noqueados , Ratones Transgénicos , Neuronas/patología , Embarazo , Ganglio Espiral de la Cóclea/patología
20.
Sci Rep ; 10(1): 17327, 2020 10 15.
Artículo en Inglés | MEDLINE | ID: mdl-33060741

RESUMEN

Oral mucositis refers to lesions of the oral mucosa observed in patients with cancer being treated with radiation with or without chemotherapy, and can significantly affect quality of life. There is a large unmet medical need to prevent oral mucositis that can occur with radiation either alone or in combination with chemotherapy. We investigated the efficacy of locally administered heparin-binding epidermal growth factor-like growth factor (HB-EGF), a potent epithelial proliferation and migration stimulator of the oral mucosa as a potential therapy to prevent radiation induced oral mucositis. Using a single dose (20 Gy) of radiation to the oral cavity of female C57BL/6 J mice, we evaluated the efficacy of HB-EGF treatment (5 µl of 10 µg/ml) solution. The results show that HB-EGF delivered post radiation, significantly increased the area of epithelial thickness on the tongue (dorsal tongue (42,106 vs 53,493 µm2, p < 0.01), ventral tongue (30,793 vs 39,095 µm2, *p < 0.05)) compared to vehicle control, enhanced new epithelial cell division, and increased the quality and quantity of desmosomes in the oral mucosa measured in the tongue and buccal mucosa. This data provides the proof of concept that local administration of HB-EGF has the potential to be developed as a topical treatment to mitigate oral mucositis following radiation.


Asunto(s)
Factor de Crecimiento Similar a EGF de Unión a Heparina/administración & dosificación , Radioterapia/efectos adversos , Estomatitis/prevención & control , Administración Tópica , Animales , Ratones , Ratones Endogámicos C57BL , Estomatitis/etiología , Lengua/efectos de la radiación
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