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level decrease » levels decreased (Expand Search), level increased (Expand Search), teer decrease (Expand Search)
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16361
Image 1_Huoxiang Zhengqi dropping pills alleviate exertional heat stroke–induced multiple organ injury through sustaining intestinal homeostasis via regulating MAPK/NF-κB pathway a...
Published 2025“…Additionally, HXZQD positively regulated gut microbiota, increasing the proportion of beneficial Lactococcus and decreasing harmful Streptococcus. …”
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16362
Data Sheet 1_Huoxiang Zhengqi dropping pills alleviate exertional heat stroke–induced multiple organ injury through sustaining intestinal homeostasis via regulating MAPK/NF-κB path...
Published 2025“…Additionally, HXZQD positively regulated gut microbiota, increasing the proportion of beneficial Lactococcus and decreasing harmful Streptococcus. …”
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16363
The T-type voltage-gated Ca<sup>2+</sup> channel Ca<sub>V</sub>3.1 involves in the disruption of respiratory epithelial barrier induced by <i>Pasteurella multocida</i> toxin
Published 2025“…In this study, we showed that inoculation of recombinantly expressed PMT increased the permeability of the respiratory epithelial barrier in mouse and respiratory cell models. …”
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16364
Data Sheet 6_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16365
Data Sheet 9_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16366
Data Sheet 11_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip...
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16367
Data Sheet 3_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.pdf
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16368
Data Sheet 8_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16369
Data Sheet 5_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16370
Data Sheet 15_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.pdf...
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16371
Data Sheet 10_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip...
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16372
Data Sheet 13_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip...
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16373
Data Sheet 4_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16374
Data Sheet 7_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16375
Data Sheet 14_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.pdf...
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16376
Data Sheet 2_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.pdf
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16377
Data Sheet 12_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.zip...
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16378
Data Sheet 1_Congrong Shujing Granules ameliorates mitochondrial associated membranes to against MPP+-induced neurological damage in the cellular model of Parkinson’s disease.pdf
Published 2025“…The serum effectively mitigated damage within the MAMs region and reduced both the mitochondrial-Ca<sup>2+</sup> fluorescence intensity and the expression of the IP<sub>3</sub>R-VDAC-MCU complex in MPP<sup>+</sup>-induced neuronal cells. Additionally, it significantly decreased the levels of ROS, the decline in MMP, and apoptosis rates in these cells.…”
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16379
Data_Sheet_1_Effect of synbiotic supplementation on obesity and gut microbiota in obese adults: a double-blind randomized controlled trial.docx
Published 2024“…</p>Results<p>Synbiotics supplementation significantly decreased body fat percentage, waist, and serum low-density lipoprotein cholesterol (LDL-C), increased peptide YY, cholecystokinin, oxyntomodulin, GSH (glutathione peroxidase) in individuals with obesity. …”
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16380
Supplementary file 3_Intracerebroventricular calycosin attenuates cerebral ischemia-reperfusion injury in rats via HMGB1-dependent pyroptosis inhibition.jpeg
Published 2025“…</p>Results and Discussion<p>Calycosin significantly reduced neurological impairments and brain infarction in a dose-dependent manner, alleviated neuronal damage and decreased the expression of pyroptosis-related markers, including NLRP3, GSDMD, HMGB1, IL-1β, IL-18, and caspase-1. …”