Publications by authors named "Song-jun Wang"

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  • Abnormal climate changes are causing extreme weather, which increases the risk of hypothermia in outdoor activities, leading to serious health issues like coma or death.
  • The study investigates the mechanisms of brain injury from hypothermia by analyzing gene expression changes in nerve cells and identifying specific genes related to ferroptosis (a form of cell death caused by iron accumulation).
  • Experiments show that severe hypothermia affects the metabolism of brain cells, promoting ferroptosis through multiple pathways, but using an iron death inhibitor called Ferrostatin-1 can reduce these harmful effects.
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  • This study compares amino acid metabolism in myocardial infarction (MI) and strangulation death (STR) using mouse models and various analysis techniques.
  • Researchers established controlled groups and employed liquid chromatography-mass spectrometry (LC-MS) for metabolomics profiling, and utilized multiple statistical methods to identify metabolic differences.
  • Key findings indicated that PPM1K expression was lower in the MI group, while p-mTOR and p-S6K1 levels were higher, highlighting distinct metabolic pathways activated in MI versus STR.
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The heart is the main organ of the circulatory system and requires fatty acids to maintain its activity. Stress is a contributor to aggravating cardiovascular diseases and even death, and exacerbates the abnormal lipid metabolism. The cardiac metabolism may be disturbed by stress.

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  • The study aimed to differentiate between myocardial infarction (MI) and mechanical asphyxia (MA) using fatty acid metabolism and lipid alterations as key indicators.
  • Mouse models for both conditions were created, and a variety of metabolic profiling techniques including LC-MS and PCA were used to identify changes in metabolite profiles.
  • Significant findings included altered levels of specific metabolites and proteins implicated in lipid metabolism, suggesting that certain fatty acids and ceramides could serve as biomarkers to help distinguish between MI and MA.
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  • - A 34-year-old woman developed severe myocarditis just 8 days after receiving the ZF2001 COVID-19 vaccine, prompting further examination of her condition.
  • - Autopsy revealed serious inflammation in the heart, characterized by lymphocyte and monocyte infiltration, as well as damage to heart muscle cells.
  • - The report emphasizes the link between the RBD-subunit vaccine and potential myocarditis complications, discussing the implications of this association on patient health.
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Objective: To observe cardiac ultrastructure and the expression of heat shock protein 70 (HSP70) and hypoxia inducible factor-lα (HIF-lα) in electric shock death rats and to explore the application of these indexes as the basis of medical identification in electric shock death.

Methods: Seventy-two SD rats were randomly divided into electric shock death group, postmortem electric shock group and the control group. The changes of myocardial ultrastructure were observed by transmission electron microscope, and the expressions of myocardial HSP70 and HIF-1α were observed by immunohistochemical technology.

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The samples were pretreated by controlling PH in the process of Pechini, and after sintering and grind, the nano Eu-doped tungstate with different granularity was obtained in the result. The structure was characterized by XRD, and the diffuse scattering spectra and the crystal microstructure were characterized by HRTEM and spectrometer. It was found from high efficient decomposition of rhodamine that the nano-materials obtained have good catalytic effect of light.

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The simultaneous determination of trace elements in ultrafine agaric was carried out by inductively coupled plasma atomic emission spectrometry (ICP-AES). The experiments were done using wet acid digestion sample preparation. The samples were dissolved at 120 degrees C constant temperature.

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A model MDS-2002A microwave digestion sample preparation system with auto control pressure in obturation was developed for the determination of microelements in clearing-up plant's ash and environment soil sample by ICP-AES. The authors discussed sample preparation result influenced by mixed acid system, scale of mixed acid dispensation, proportion between solid and liquid and time of microwave clearing. Excellent project was A2B1C2, work procedure 2 in microwave process.

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Considering the complex matrix of the sample, the animal fur is carried on to the sample pretreatment method studies specially. The microwave closed system has its unique merit: The microwave radiation has the very strong penetrability and the rapid in-depth heating function. After absorbing microwave the sample and the molecules of reactant may carry on the reaction in short time.

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Objective: To investigate changes of LDH and HBDH activity in rabbit serum after non-thermal low voltage electrical injury and to provide diagnostic criteria for non-thermal low voltage electrical injury.

Methods: Forty New Zealand rabbits were randomly distributed into control group and electrical injury group (EI-groups; designated 7 time points: 0 h, 2 h, 4 h, 12 h, 1 d, 2 d, 3 d), 5 rabbits per each group. EI-groups were treated with the method of non-thermal low voltage electrical injury established in our laboratory.

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Determination of trace elements in natural grapestone was studied by inductively coupled plasma atomic emission spectrometry (ICP-AES). Comparison was made between dry incineration and acid clearing up in terms of interference of organic component in natural grapestone. By analyzing the plant standard substance GBW 07603(National Standard Substance), the data show that HNO3-HClO4 disposed samples are better than dry incinerated ones.

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In this article, through the condition experiment of simultaneous determination of rare earth and trace elements in wolfsbane by inductively coupled plasma mass spectrometry (ICP-MS), the methods of low temperature ashing and nitric acid-overoxidation hydrogen (HNO3-H2O2) were compared. It was proved that the sample disposed with low temperature ashing for microelements and the sample disposed with acid digestion for rare earth satisfied the request for the method of determination. The accuracy is between 1.

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Determination of rare earth and trace elements in teeth enamel was studied by inductively coupled plasma mass spectroscopy. The sample was completely dissolved by HNO3-H2O2. The range of precision is 0.

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In this paper, several trace elements in the forest frog samples were investigated by inductively coupled plasma atomic emission spectrometry (ICP-AES). During the experiment 5.00 mL HNO3 and 0.

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