Abstract | BACKGROUND: OBJECTIVE: Organ of Corti of postnatal day 3 mouse cochlear explants were used to compare hair cells after the treatment with cisplatin alone or with berberine chloride (BC) followed by CP. METHODS: We investigated the potential of the anti-oxidative effect of BC against the cisplatin-induced ototoxicity. We observed a reduced aberrant bundle of stereocilia in hair cells in CP with BC pre-treated group. Caspase-3 immunofluorescence and TUNEL assay supported the hypothesis that BC attenuates the apoptotic signals induced by CP. Reactive oxygen species level in the mitochondria were investigated by MitoSOX Red staining and the mitochondrial membrane potentials were compared by JC-1 assay. RESULTS: BC decreased ROS generation with preserved mitochondrial membrane potentials in mitochondria as well as reduced DNA fragmentation in hair cells. In summary, our data indicate that BC might act as antioxidant against CP by reducing the stress in mitochondria resulting in cell survival. CONCLUSION: Our result suggests the therapeutic potential of BC for prevention of the detrimental effect of CP-induced ototoxicity.
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Authors | Jong-Heun Kim, Jeong-In Baek, In-Kyu Lee, Un-Kyung Kim, Ye-Ri Kim, Kyu-Yup Lee |
Journal | Genes & genomics
(Genes Genomics)
Vol. 44
Issue 1
Pg. 1-7
(01 2022)
ISSN: 2092-9293 [Electronic] Korea (South) |
PMID | 34800260
(Publication Type: Journal Article, Research Support, Non-U.S. Gov't)
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Copyright | © 2021. The Author(s). |
Chemical References |
- Antineoplastic Agents
- Chlorides
- Protective Agents
- Reactive Oxygen Species
- Berberine
- Caspase 3
- Cisplatin
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Topics |
- Animals
- Antineoplastic Agents
(adverse effects)
- Apoptosis
(drug effects)
- Berberine
(chemistry, pharmacology)
- Caspase 3
(metabolism)
- Cells, Cultured
- Chlorides
(chemistry, pharmacology)
- Cisplatin
(adverse effects)
- Cochlea
(cytology, drug effects, metabolism)
- Hair Cells, Auditory
(drug effects, metabolism)
- In Situ Nick-End Labeling
- Membrane Potential, Mitochondrial
(drug effects)
- Mice
- Organ of Corti
(cytology, drug effects, metabolism)
- Ototoxicity
(etiology, metabolism, prevention & control)
- Protective Agents
(pharmacology)
- Reactive Oxygen Species
(metabolism)
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