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18541
Image 11_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18542
Image 12_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18543
Image 10_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18544
Image 7_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18545
Image 6_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18546
Image 1_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18547
Image 13_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18548
Data Sheet 1_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.pdf
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18549
Image 8_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18550
Image 2_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18551
Image 3_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18552
Image 9_Inflammation mediated brain damage and cytokine expression in a maternally derived murine model for preterm hypoxic-ischemic encephalopathy.tiff
Published 2025“…MAP2 expression was significantly decreased (p < 0.05) between 1.5–6.0 mm of the brain compared to Saline-Hypoxia and Naïve animals. …”
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18553
Table 1_Effects of perinatal nutrition supplementation and early weaning on serum biochemistry, metabolomics, and reproduction in yaks.docx
Published 2024“…Lipid transportation molecules apolipoprotein B100 and very low-density lipoprotein of SF and SW yaks were significantly increased along with the decreased lipid mobilization products non-esterified fatty acid and β-hydroxybutyric acid when compared to GF yaks at −15 and 30 d. …”
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18554
Table 1_Engineered miR-214 enriched Schwann cell-derived extracellular vesicles amplify therapeutic efficacy for peripheral neuropathy in T2D mice.docx
Published 2025“…Compared to naïve-EVs, 214-EVs significantly improved motor and sensory nerve conduction velocity of the sciatic nerve and thermal latency, which were associated with increased intraepidermal nerve fiber density, axonal diameter, and myelin thickness in the sciatic nerve. …”
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18555
Table 1_TSG-6 promotes healing of critical-sized bone defects in mice.xlsx
Published 2025“…Silencing Tnfaip6 significantly impaired osteogenic differentiation, as indicated by reduced alkaline phosphatase activity and downregulation of key osteogenic marker genes. …”
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18556
Figures of manuscript "Fluvoxamine exerts anti-influenza(H1N1) effects through inhibiting apoptosis pathway"
Published 2025“…This study evaluated the anti-influenza effects of fluvoxamine using H1N1-infected BALB/c mice and found that compared to the H1N1 infection group, the survival rate of mice in the fluvoxamine intervention group increased by 30% (50% <i>vs</i> 20%), with a decreased trend in body weight loss and improved lung tissue lesions. …”
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18557
Table 2_TSG-6 promotes healing of critical-sized bone defects in mice.xlsx
Published 2025“…Silencing Tnfaip6 significantly impaired osteogenic differentiation, as indicated by reduced alkaline phosphatase activity and downregulation of key osteogenic marker genes. …”
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18558
Data Sheet 1_TSG-6 promotes healing of critical-sized bone defects in mice.pdf
Published 2025“…Silencing Tnfaip6 significantly impaired osteogenic differentiation, as indicated by reduced alkaline phosphatase activity and downregulation of key osteogenic marker genes. …”
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18559
Table 3_TSG-6 promotes healing of critical-sized bone defects in mice.xlsx
Published 2025“…Silencing Tnfaip6 significantly impaired osteogenic differentiation, as indicated by reduced alkaline phosphatase activity and downregulation of key osteogenic marker genes. …”
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18560
Data Sheet 2_TSG-6 promotes healing of critical-sized bone defects in mice.pdf
Published 2025“…Silencing Tnfaip6 significantly impaired osteogenic differentiation, as indicated by reduced alkaline phosphatase activity and downregulation of key osteogenic marker genes. …”