Publications by authors named "Jin-lian Zhou"

Background: Currently, there is limited research on the impact of abdominal infection on intestinal damage under microgravity conditions. Cordyceps polysaccharide (CPS), the main active ingredient of Cordyceps, has demonstrated various pharmacological effects, including anti-inflammatory, antioxidant, and immunomodulatory properties. Moxifloxacin (MXF) is a fourth-generation quinolone antibiotic that is believed to have a dual regulatory effect on immune system activation and suppression.

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Gut serves as the largest interface between humans and the environment, playing a crucial role in nutrient absorption and protection against harmful substances. The intestinal barrier acts as the initial defense mechanism against non-specific infections, with its integrity directly impacting the homeostasis and health of the human body. The primary factor attributed to the impairment of the intestinal barrier in previous studies has always centered on the gastrointestinal tract itself.

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Conventional two-dimensional (2D) cell culture techniques may undergo modifications in the future, as life scientists have widely acknowledged the ability of three-dimensional (3D) in vitro culture systems to accurately simulate in vivo biology. In recent years, researchers have discovered that microgravity devices can address many challenges associated with 3D cell culture. Stem cells, being pluripotent cells, are regarded as a promising resource for regenerative medicine.

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Microgravity is a primary challenge that need to overcome, when human travel to space. Our study provided evidence that Kupffer cells (KCs) are sensitive to simulated microgravity (SMG), and no similar research report has been found in the literature. Using transcriptome sequencing technology, it was showed that 631 genes were upregulated and 801 genes were downregulated in KCs after treatment under SMG for 3 days.

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Exposure to microgravity can adversely affect the fitness of astronauts. The integrity of the skin plays a crucial role in protecting against mechanical forces and infections, fluid imbalance, and thermal dysregulation. In brief, the skin wound may cause unknown challenges to the implementation of space missions.

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Hepatic macrophages are a complex population of cells that play an important role in the normal functioning of the liver and in liver diseases. Autophagy, as a maintainer of cellular homeostasis, is closely connected to many liver diseases. And its roles are not always beneficial, but manifesting as a double-edged sword.

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Microgravity is an ecological factor that affects the environment of the body. In this study, quantitative isobaric labeling (tandem mass tag) method was used to study the changes in human gastric mucosal cells under simulated microgravity for the first time. Comparative proteomic analysis identified 394 (202 upregulated and 192 downregulated) and 542 (286 upregulated and 256 downregulated) proteins differentially regulated by simulated microgravity after 3 and 7 days, respectively.

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Background: Weightlessness is a component of the complex space environment. It exerts adverse effects on the human body, and may pose unknown challenges to the implementation of space missions. The regular function of the digestive system is an important checkpoint for astronauts to conduct missions.

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The incidence of stomach diseases is very high, which has a significant impact on human health. Damaged gastric mucosa is more vulnerable to injury, leading to bleeding and perforation, which eventually aggravates the primary disease. Therefore, the protection of gastric mucosa is crucial.

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Hemerocallis citrina Baroni, also called yellow flower vegetable (huang hua cai in Chinese), is belonging to the family Xanthorrhoeaceae and is widely planted in China, the Korea Peninsula and Japan for ornamental purposes and vegetable value. In addition, they could also be used as a traditional Chinese medicinal and modern medicinal plant (Du et al. 2014).

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Scientific knowledge contribution to online knowledge-sharing platforms has long been regarded as instrumental behavior based on utilitarian considerations. Employing cognitive evaluation theory, this study examines scientific expert users' behavioral metrics to understand the factors responsible for users continuing to contribute their scientific knowledge for an extended period or a very short span. We found that expert users' intrinsic motivations, which has received little attention in recent studies, constitute an important indicator of sustained online scientific knowledge contribution.

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The understanding into the pathogenesis and treatment of gastric cancer has improved in recent years; however, a number of limitations have delayed the development of effective treatment. Cancer cells can undergo glycolysis and inhibit oxidative phosphorylation in the presence of oxygen (Warburg effect). Previous studies have demonstrated that a rotary cell culture system (RCCS) can induce glycolytic metabolism.

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Simulated microgravity can significantly affect various cell types and multiple systems of the human body, such as cardiovascular system, skeletal muscle system, and immune system, and is known to cause anemia and loss of electrolyte and fluids. Epidermal stem cells (EpSCs) were cultured in a rotary cell culture system (RCCS) bioreactor to simulate microgravity. The metabolites of EpSCs were identified by liquid chromatography-mass spectrometry (LC-MS).

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With the rapid development of modern medical technology and the deterioration of living environments, cancer, the most important disease that threatens human health, has attracted increasing concerns. Although remarkable achievements have been made in tumor research during the past several decades, a series of problems such as tumor metastasis and drug resistance still need to be solved. Recently, relevant physiological changes during space exploration have attracted much attention.

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Human epidermal growth factor receptor-2 positive breast cancer (HER2 BC) is characterized by a high rate of metastasis and drug resistance. The advent of targeted therapy drugs greatly improves the prognosis of HER2 BC patients. However, drug resistance or severe side effects have limited the application of targeted therapy drugs.

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Perivascular epithelioid cell tumors (PEComas) are a rare type of mesenchymal neoplasms characterized by a proliferation of perivascular cells with an epithelioid phenotype and expression of myo-melanocytic markers. The majority of PEComas seem to be benign and usually their prognosis is good. Malignant cases are extremely rare, exhibiting a malignant course with local recurrences and distant metastases.

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Objective: To study the changes of anti-Streptococcus pneumonia (SP) status in rats with simulated weightlessness, and therefore to provide theoretical basis for the aerospace medicine.

Methods: Thirty-two healthy male Wistar rats were randomly allocated into 4 groups: group A, the tail-suspension and SP group; group B, the tail-suspension without SP group; group C, the unsuspended but SP group; group D, the unsuspended and no SP group, with 8 rats in each. The tail-suspension method, i.

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Purpose: This research aimed to construct three-dimensional (3D) visible models of the superior mediastinum for anatomic study and surgical approaches to the superior mediastinum.

Method: Sectional images of the superior mediastinum were acquired through the Chinese Visible Human Female (VCHF) database. One hundred eighty images of the superior mediastinum were imported into Photoshop CS and the images were converted into a JPEG format.

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Objective: To establish the three-dimensional (3D) visible models of the anatomical structures of the anterior approach to the upper thoracic spine (UTS) for anatomic study and preoperative planning of the UTS.

Methods: Sectional images from the superior margin of the first thoracic vertebral body to the inferior margin of the fifth thoracic vertebral body were acquired through the Chinese Visible Human Female (VCHF) database which was collected by the Third Military Medical University. These images were imported into Photoshop CS, cut automatically and converted into a JPEG format.

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Objective: To evaluate the effect and safety of experimental bronchoscopic lung volume reduction (BLVR) using an one-way valve designed independently.

Methods: The animal study was carried out from June to December 2008. Totally 36 valves were implanted in the target bronchi of 12 healthy male goats.

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Our previous study showed that cysteine sulfinate decarboxylase (CSD) is expressed in the testis, epididymis, and ductus deferens. However, the expression of CSD and taurine concentration in the male accessory sex glands remain unknown. Therefore, we conducted immunohistochemical analysis, semi-quantitative reverse transcription polymerase chain reaction (RT-PCR), and western blotting in order to examine CSD expression in the seminal vesicle; bulbourethral gland; and prostate gland, including the dorsolateral prostate, ventral prostate, and anterior prostate.

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Objective: To explore the anatomical structures, and depth and direction of needling at Jingming (BL 1), so as to provide anatomical basis for its clinical application.

Methods: Forty-eight adult orbital specimens were observed by dissection.

Results: When a needle was vertically inserted into Jingming (BL 1), the needle tip will past through the skin, subcutaneous tissue, medial palpebral ligament, medialis rectus and orbital adipose body.

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