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74 result(s) for "Hu, Ying-Fan"
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Towards a better understanding of Fagopyrum dibotrys: a systematic review
Fagopyrum dibotrys ( F. dibotrys ) (D.Don) H.Hara is a well-known edible herbal medicine in Asian countries. It has been widely used for the treatment of lung diseases, swelling, etc., and is also an important part of many Chinese medicine prescriptions. At present, more than 100 compounds have been isolated and identified from F. dibotrys , and these compounds can be primarily divided into flavonoids, phenols, terpenes, steroids, and fatty acids. Flavonoids and phenolic compounds are considered to be the main active ingredients of F. dibotrys . Previous pharmacological studies have shown that F. dibotrys possesses anti-inflammatory, anti-cancer, anti-oxidant, anti-bacterial, and anti-diabetic activities. Additional studies on functional genes have led to a better understanding of the metabolic pathways and regulatory factors related with the flavonoid active ingredients in F. dibotrys . In this paper, we systemically reviewed the research advances on the phytochemistry and pharmacology of F. dibotrys , as well as the functional genes related to the synthesis of active ingredients, aiming to promote the development and utilization of F. dibotrys .
Semi-Mechanism-Based Pharmacodynamic Model for the Anti-Inflammatory Effect of Baicalein in LPS-Stimulated RAW264.7 Macrophages
Monitoring of the inhibition of TNF-α, IL-6, iNOS, and NO is used to effectively evaluate anti-inflammatory drugs. Baicalein was found to have good anti-inflammatory activities, but its detailed cellular pharmacodynamic events have not been expatiated by any other study. The inflammatory mediators, including TNF-α, IL-6, iNOS, and NO production in RAW264.7 macrophage induced by LPS, were measured. It was found that these data showed a sequential pattern on time and based on these points a cellular pharmacodynamic model was developed and tested. TNF-α and IL-6 were quantified by ELISA, NO was detected by Griess and iNOS expression was measured by Western blot. The pharmacodynamic model was developed using a NLME modeling program Monolix® 2016R1.The results showed that baicalein quickly suppressed release of TNF-α in a concentration-dependent manner, and consequently causing the diminution of IL-6 and iNOS/NO. The pharmacodynamic model simulation successfully described the experimental data, supporting the hypothesis that IL-6 and iNOS /NO release after LPS stimulation is mediated by TNF-α rather than LPS directly. The pharmacodynamic model allowed a well understanding of the cellular pharmacodynamic mechanism of baicalein in the treatment of inflammatory diseases.
Orientation in social networks
Stanley Milgram’s small world experiment presents “six degrees of separation” of our world. One phenomenon of the experiment still puzzling us is that how individuals operating with the social network information with their characteristics can be very adept at finding the short chains. The previous works on this issue focus whether on the methods of navigation in a given network structure, or on the effects of additional information to the searching process. In this paper, the authors emphasize that the growth and shape of network architecture is tightly related to the individuals’ attributes. The authors introduce a method to reconstruct nodes’ intimacy degree based on local interaction. Then we provide an intimacy based approach for orientation in networks. The authors find that the basic reason of efficient search in social networks is that the degree of “intimacy” of each pair of nodes decays with the length of their shortest path exponentially. Meanwhile, the model can explain the hubs limitation which was observed in real-world experiment.
Effect of Pd doping on the acetone-sensing properties of NdFeO_3
The acetone-sensing properties of the undoped and Pd doped perovskite-type oxides NdFeO3 were investigated from room temperature to 400°C. The perovskite-type NdFeO3 was synthesized by a sol-gel method, and the dopants Pd with the content from 1wt% to 5wt% were implanted into NdFeO3 nanoparticles by thermal diffusion. X-ray diffraction (XRD) and scanning electron microscopy (SEM) techniques show that NdFeO3 is an orthorhombic structure with the average particle size of about 40 nm. A giant acetone-sensing response of 675.7 is observed when the Pd content in NdFeO3 powders is about 3wt%. The response and recovery time of the sensor to the 5×10–4 acetone gas are 16 and 1 s, respectively. At the same time, it performs a good selectivity to acetone gas and may be a new promising material candidate for the acetone-sensor development.
Relationship between demoralization of the college student with their individual- and social-oriented self
Demoralization has become increasingly prevalent among college students who have lost motivation in life and feel hopeless about their future. Many college students who demonstrate symptoms of demoralization are neglected because they might fail to typical symptoms of depression. Taiwanese college students are simultaneously influenced by bicultural-self system, such as individual- and social-oriented views of self, which vary considerably in the view of self, achievement motivation, and the value of self-realization, and may even create contradictory expectations and behavioral standard. The purpose of this study was to investigate the extent of the relationship between attitude towards demoralization, individual- and social-oriented views of self. Three-hundred fifty-six college students completed the online questionnaire, which was designed to explore their demoralization status and cultural differences. Four groups were divided into bicultural self, individual-oriented self, social-oriented self, and unintegrated self. Bicultural group demonstrated significantly lower demoralization overall scores than other groups. Moreover, the five dimensions of demoralization in college students were mostly significantly and negatively correlated with individual- and social-oriented views of self, indicating that college students’ bicultural views of self may contribute to or prevent demoralization.
Use of subsequent PET/CT in diffuse large B‐cell lymphoma patients in complete remission following primary therapy
Interim 18F‐fluorodeoxyglucose (FDG) positron emission tomography/computed tomography (I‐PET/CT) is a powerful tool for monitoring the response to therapy in diffuse large B‐cell lymphoma (DLBCL). This retrospective study aimed to determine when and how to use I‐PET/CT in DLBCL. A total of 197 patients treated with rituximab, cyclophosphamide, doxorubicin, vincristine, and prednisone (R‐CHOP) were enrolled between October 2005 and July 2011; PET/CT was performed at the time of diagnosis (PET/CT0), after 2 and 4 cycles of chemotherapy (PET/CT2 and PET/CT4, respectively), and at the end of treatment (F‐PET/CT). According to the International Harmonization Project for Response Criteria in Lymphoma, 110 patients had negative PET/CT2 scans, and 87 had positive PET/CT2 scans. The PET/CT2‐negative patients had significantly higher 3‐year progression‐free survival rate (75.8% vs. 38.2%) and 3‐year overall survival rate (93.5% vs. 55.6%) than PET/CT2‐positive patients. All PET/CT2‐negative patients remained negative at PET/CT4, but 3 were positive at F‐PET/CT. Among the 87 PET/CT2‐positive patients, 57 remained positive at F‐PET/CT, and 32 progressed during chemotherapy (15 at PET/CT4 and 17 at F‐PET/CT). Comparing PET/CT4 with PET/CT0, 7 patients exhibited progression, and 8 achieved partial remission. Comparing F‐PET/CT with PET/CT0, 10 patients exhibited progression, and 7 achieved partial remission. In conclusion, our results indicate that I‐PET/CT should be performed after 2 rather than 4 cycles of immunochemotherapy in DLBCL patients. There is a limited role for subsequent PET/CT in the detection of relapse in PET/CT2‐negative patients, but repeat PET/CT is required if the PET/CT2 findings are positive.
Neural substrates of L2-L1 transfer effects on phonological awareness in young Chinese-English bilingual children
•Examine young bilinguals with distant languages (L1: Chinese and L2: English).•The early literacy transfer between L1 and L2 in an L1-dominant environment.•Use functional near-infrared spectroscopy to study transfer on phoneme awareness.•The L2 transfer on the left dorsal neural pathways with phonological processing.•The L1 transfer on the right frontal regions with increased cognitive load. The growing trend of bilingual education between Chinese and English has contributed to a rise in the number of early bilingual children, who were exposed to L2 prior to formal language instruction of L1. The L2-L1 transfer effect in an L1-dominant environment has been well established. However, the threshold of L2 proficiency at which such transfer manifests remains unclear. This study investigated the behavioral and neural processes involved when manipulating phonemes in an auditory phonological task to uncover the transfer effect in young bilingual children. Sixty-two first graders from elementary schools in Taiwan were recruited in this study (29 Chinese monolinguals, 33 Chinese-English bilinguals). The brain activity was measured using fNIRS (functional near-infrared spectroscopy). Bilingual children showed right lateralization to process Chinese and left lateralization to process English, which supports more on the accommodation effect within the framework of the assimilation-accommodation hypothesis. Also, compared to monolinguals, bilingual children showed more bilateral frontal activation in Chinese, potentially reflecting a mixed influence from L2-L1 transfer effects and increased cognitive load of bilingual exposure. These results elucidate the developmental adjustments in the neural substrates associated with early bilingual exposure in phonological processing, offering valuable insights into the bilingual learning process.
Antecubital Fossa Perforator Flaps for Soft-Tissue Defect Repair of the Anterior Elbow: Anatomical Study and Clinical Application
Background The antecubital fossa is a main perforator cluster region located beside the anterior elbow defect, rendering it crucial to harvest the perforator pedicled flaps for the anterior elbow defects. Patients and methods A total of 30 preserved cadaveric forearms were dissected in order to describe the perforator anatomy in the antecubital fossa. For each perforator, the number, the site of origin, the diameter at its origin, and the trajectory were recorded. In addition, all the patients treated for anterior elbow defects using inferior cubital artery (ICA) perforator pedicled flaps between June 2013 and June 2018 were reviewed in this retrospective study. Results A total of 85 perforators were dissected in the antecubital fossa area from the 30 specimens. Among these, 65 perforators originated from the radial artery, 6 from the recurrent radial artery, 13 from the brachial artery, and 1 from the ulnar artery. Each forearm specimen had a constant and large ICA perforator. All perforators originated from source vessels 2–5 cm distal from the interepicondylar line and could be harvested as perforator pedicled flap for anterior elbow reconstruction. In the clinical study, 11 patients with anterior elbow defects were treated with ICA perforator pedicled flaps with satisfactory functional and aesthetic outcomes. Conclusion The antecubital fossa has a constant and dominant ICA perforator and many other perforators. The pedicled antecubital fossa perforator flaps could be harvested flexibly with a reliable blood supply for anterior elbow reconstruction.
Divergent evapotranspiration partition dynamics between shrubs and grasses in a shrub-encroached steppe ecosystem
Previous evapotranspiration (ET) partitioning studies have usually neglected competitions and interactions between antagonistic plant functional types. This study investigated whether shrubs and grasses have divergent ET partition dynamics impacted by different water-use patterns, canopy structures, and physiological properties in a shrub-encroached steppe ecosystem in Inner Mongolia, China. The soil water-use patterns of shrubs and grasses have been quantified by an isotopic tracing approach and coupled into an improved multisource energy balance model to partition ET fluxes into soil evaporation, grass transpiration, and shrub transpiration. The mean fractional contributions to total ET were 24 ± 13%, 20 ± 4%, and 56 ± 16% for shrub transpiration, grass transpiration, and soil evaporation respectively during the growing season. Difference in ecohydrological connectivity and leaf development both contributed to divergent transpiration partitioning between shrubs and grasses. Shrub-encroachment processes result in larger changes in the ET components than in total ET flux, which could be well explained by changes in canopy resistance, an ecosystem function dominated by the interaction of soil water-use patterns and ecosystem structure. The analyses presented here highlight the crucial effects of vegetation structural changes on the processes of land–atmosphere interaction and climate feedback.
Foxp1 controls brown/beige adipocyte differentiation and thermogenesis through regulating β3-AR desensitization
β-Adrenergic receptor (β-AR) signaling is a pathway controlling adaptive thermogenesis in brown or beige adipocytes. Here we investigate the biological roles of the transcription factor Foxp1 in brown/beige adipocyte differentiation and thermogenesis. Adipose-specific deletion of Foxp1 leads to an increase of brown adipose activity and browning program of white adipose tissues. The Foxp1 -deficient mice show an augmented energy expenditure and are protected from diet-induced obesity and insulin resistance. Consistently, overexpression of Foxp1 in adipocytes impairs adaptive thermogenesis and promotes diet-induced obesity. A robust change in abundance of the β3-adrenergic receptor (β3-AR) is observed in brown/beige adipocytes from both lines of mice. Molecularly, Foxp1 directly represses β3-AR transcription and regulates its desensitization behavior. Taken together, our findings reveal Foxp1 as a master transcriptional repressor of brown/beige adipocyte differentiation and thermogenesis, and provide an important clue for its targeting and treatment of obesity. Beta3-adrenergic receptor (b3-AR) signaling in response to cold activates adipose tissue thermogenesis. Here the authors identify the transcription factor FoxP1 as a direct negative regulator of b3-AR expression and show that loss of FoxP1 leads to enhanced development of thermogenic adipose tissue.