Mechanism Of Solanum Betaceum To Prevent Memory Impairment In Cigarette Smoke-Exposed Rat
Objective: The aim of this study was conducted to evaluate the neuroprotective role of Solanum betaceum against memory impairment due to chronic cigarette smoke exposure in rat brain. Methods: Adult male albino rats were exposed to cigarette smoke for 28 days, 3 pc cigarette/day, and simultaneousl...
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International Journal of Applied Pharmaceutics
2019
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id-langga.1276782023-06-30T11:17:48Z https://repository.unair.ac.id/127678/ Mechanism Of Solanum Betaceum To Prevent Memory Impairment In Cigarette Smoke-Exposed Rat Siti Khaerunnisa Kurnia Kusumastuti Arifa Mustika Nanik Siti Aminah Suhartati R Medicine Objective: The aim of this study was conducted to evaluate the neuroprotective role of Solanum betaceum against memory impairment due to chronic cigarette smoke exposure in rat brain. Methods: Adult male albino rats were exposed to cigarette smoke for 28 days, 3 pc cigarette/day, and simultaneously administered with S. betaceum in Groups K2, K3, and K4 (100 mg/kg b.w/day, 200 mg/kg b.w/day, and 400 mg/kg b.w/day), respectively. The level of N-methyl-D-aspartate (NMDA), c-AMP response element binding (CREB) protein, brain-derived neurotrophic factor (BDNF), number of neuron and glial cells, and memory was also measured. Results: S. betaceum administration could prevent from memory impairment significantly (p<0.05) by decreased time to reach the target at Y-Maze and maintained the levels of CREB, BDNF, neuron, and glial cells (microglia, astrocytes, and oligodendrocytes) significantly (p<0.05) but did not significantly decreased NMDA levels (p>0.05). Conclusion: Exposure to cigarette smoke compromised the memory functions. The result of this study shown that administration of S.betaceum could inhibit memory impairment and inhibit the decrease of neuron cells , increase the level of BDNF and number of glia cells including microglia, astrocytes and oligodendrocytes. The mechanism of S. betaceum to prevent memory impairment through activation of CREB (the transcription factor) which further enhances the formation of BDNF (the neurotrophic factors), thus increase activation of the glia cells to protect brain cell damage, thus preventing memory impairment due to cigarette smoke exposure. International Journal of Applied Pharmaceutics 2019 Article PeerReviewed text en https://repository.unair.ac.id/127678/2/artikel%20Mechanism%20Of%20Solanum.pdf text en https://repository.unair.ac.id/127678/3/karil%20Mechanism%20Of%20Solanum.pdf text en https://repository.unair.ac.id/127678/1/Turnitine%20MECHANISM.pdf Siti Khaerunnisa and Kurnia Kusumastuti and Arifa Mustika and Nanik Siti Aminah and Suhartati (2019) Mechanism Of Solanum Betaceum To Prevent Memory Impairment In Cigarette Smoke-Exposed Rat. International Journal of Applied Pharmaceutics, 11 (s3). ISSN 0975 - 7058 https://innovareacademics.in/journals/index.php/ijap/article/view/34861#:~:text=betaceum%20to%20prevent%20memory%20impairment%20through%20activation%20of%20CREB%20(the,due%20to%20cigarette%20smoke%20exposure. https://doi.org/10.22159/ijap.2019.v11s3.M1024 |
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Objective: The aim of this study was conducted to evaluate the neuroprotective role of Solanum betaceum against memory impairment due to chronic cigarette smoke exposure in rat brain.
Methods: Adult male albino rats were exposed to cigarette smoke for 28 days, 3 pc cigarette/day, and simultaneously administered with S. betaceum in Groups K2, K3, and K4 (100 mg/kg b.w/day, 200 mg/kg b.w/day, and 400 mg/kg b.w/day), respectively. The level of N-methyl-D-aspartate (NMDA), c-AMP response element binding (CREB) protein, brain-derived neurotrophic factor (BDNF), number of neuron and glial cells, and memory was also measured.
Results: S. betaceum administration could prevent from memory impairment significantly (p<0.05) by decreased time to reach the target at Y-Maze and maintained the levels of CREB, BDNF, neuron, and glial cells (microglia, astrocytes, and oligodendrocytes) significantly (p<0.05) but did not significantly decreased NMDA levels (p>0.05).
Conclusion: Exposure to cigarette smoke compromised the memory functions. The result of this study shown that administration of S.betaceum could inhibit memory impairment and inhibit the decrease of neuron cells , increase the level of BDNF and number of glia cells including microglia, astrocytes and oligodendrocytes. The mechanism of S. betaceum to prevent memory impairment through activation of CREB (the transcription factor) which further enhances the formation of BDNF (the neurotrophic factors), thus increase activation of the glia cells to protect brain cell damage, thus preventing memory impairment due to cigarette smoke exposure. |
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Article PeerReviewed |
author |
Siti Khaerunnisa Kurnia Kusumastuti Arifa Mustika Nanik Siti Aminah Suhartati |
author_facet |
Siti Khaerunnisa Kurnia Kusumastuti Arifa Mustika Nanik Siti Aminah Suhartati |
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Siti Khaerunnisa |
title |
Mechanism Of Solanum Betaceum To Prevent Memory Impairment In Cigarette Smoke-Exposed Rat |
title_short |
Mechanism Of Solanum Betaceum To Prevent Memory Impairment In Cigarette Smoke-Exposed Rat |
title_full |
Mechanism Of Solanum Betaceum To Prevent Memory Impairment In Cigarette Smoke-Exposed Rat |
title_fullStr |
Mechanism Of Solanum Betaceum To Prevent Memory Impairment In Cigarette Smoke-Exposed Rat |
title_full_unstemmed |
Mechanism Of Solanum Betaceum To Prevent Memory Impairment In Cigarette Smoke-Exposed Rat |
title_sort |
mechanism of solanum betaceum to prevent memory impairment in cigarette smoke-exposed rat |
publisher |
International Journal of Applied Pharmaceutics |
publishDate |
2019 |
url |
https://repository.unair.ac.id/127678/2/artikel%20Mechanism%20Of%20Solanum.pdf https://repository.unair.ac.id/127678/3/karil%20Mechanism%20Of%20Solanum.pdf https://repository.unair.ac.id/127678/1/Turnitine%20MECHANISM.pdf https://repository.unair.ac.id/127678/ https://innovareacademics.in/journals/index.php/ijap/article/view/34861#:~:text=betaceum%20to%20prevent%20memory%20impairment%20through%20activation%20of%20CREB%20(the,due%20to%20cigarette%20smoke%20exposure. https://doi.org/10.22159/ijap.2019.v11s3.M1024 |
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