1.Current status of international discourse of China aid project of schistosomiasis control in Zanzibar
Li-Ying ZHOU ; En-Pei LUO ; Kun YANG
Chinese Journal of Schistosomiasis Control 2019;31(5):532-534
Since the Eighteenth National Congress of the Communist Party of China, China has constantly innovated and developed its diplomatic concept, and proposed the important idea of the Community of Shared Future for Mankind (CSFM), which contributes a discourse system with Chinese characteristics to the world. It is indicated that discourse builds its subject and governs the subject’s discourse practices, and the discourse subject strengthens and reiterates discourse rules in discourse practices. China aid project of schistosomiasis control in Zanzibar is a discourse subject of the CSFM discourse system. This paper analyzes the discourse status, discourse practices and the reiteration of discourse rules of China aid project of schistosomiasis control in Zanzibar.
2.Exosomal long non-coding RNAs: biological properties and therapeutic potential in cancer treatment.
Jie LUO ; Yan XIONG ; Pei-Fen FU ; En-Chun LI ; Lei QU ; Xiao FAN ; Zhi-Jian CAI ; Ai-Fu LIN
Journal of Zhejiang University. Science. B 2019;20(6):488-495
Exosomes and long non-coding RNAs (lncRNAs) are emerging as important elements contributing to a more comprehensive understanding of cancer development and progression. The discovery of lncRNAs in exosomes further indicates their bona fide biological functional roles in cancer development and drug resistance. In this review, we describe the biogenesis of exosomes and summarize the function of exosomal lncRNAs in the field of cancer research. These findings strikingly advance current knowledge of exosomal lncRNAs and suggest that they may be promising diagnostic biomarkers and therapeutic targets for cancer.
Exosomes
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physiology
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Humans
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Neoplasms
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diagnosis
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genetics
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therapy
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RNA, Long Noncoding
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physiology
3.Influence of Hedgehog signaling pathway activation on calvarial defect healing in type I diabetic mice
WU Yingzhang ; LIU Linan ; LIU Shibo ; HU Pei ; LUO En
Journal of Prevention and Treatment for Stomatological Diseases 2025;33(7):542-553
Objective:
This study aimed to elucidate the mechanisms underlying the impaired bone healing capacity in type 1 diabetes (T1DM) by investigating the role of the Hedgehog (Hh) signaling pathway in the impaired healing of cranial defects caused by T1DM.
Methods:
This study was approved by the experimental animal ethics committee of our hospital. A cranial defect model was established using Akita transgenic mice with spontaneous type I diabetes. The impact of T1DM on osteogenic differentiation and the Hh signaling pathway during cranial defect healing was explored by MicroCT scanning and immunohistochemical (IHC) analysis of osteocalcin (Ocn), Indian Hedgehog (Ihh), Patched1 (Ptch1), and zinc finger protein GLI1 (Gli1). Subsequently, the Hh signaling pathway was activated using smoothened agonist (SAG) (10 mg/kg, gavage), and its potential to improve cranial defect healing in T1DM was assessed by MicroCT and IHC staining. Finally, the ability of SAG (1 000 nmol/L) to counteract the inhibitory effects of a high-glucose environment (25 mol/L) on osteogenic differentiation of mouse bone marrow mesenchymal stem cells (BMSCs) was investigated through in vitro experiments. Detection methods included Alkaline Phosphatase and Alizarin Red staining, as well as quantitative real-time PCR (qPCR) analysis of the osteogenesis-related genes Alp, Spp1, Bglap, and Sp7.
Results:
Akita mice exhibited early, stable, and significant spontaneous T1DM characteristics. On postoperative day 21, the newly formed bone in the cranial defect area of Akita mice showed significant decreases in the bone volume-to-tissue volume ratio, volumetric bone mineral density, and Ocn expression (P < 0.05), with significant downregulation of Ihh, Ptch1, and Gli1 (P < 0.05). Activation of the Hh signaling pathway by SAG significantly mitigated the negative impact of T1DM on cranial defect healing in Akita mice (P < 0.05). Moreover, after SAG treatment, the inhibitory effects of the high-glucose environment on the alkaline phosphatase activity and in vitro mineralization capacity of BMSCs were significantly alleviated (P < 0.05), and the expression levels of osteogenic differentiation-related genes were significantly upregulated (P < 0.05).
Conclusion
T1DM inhibits cranial defect healing in Akita mice by suppressing the expression of the Hh signaling pathway, whereas activation of the Hh signaling pathway promotes osteogenesis and ameliorates the inhibitory effects of T1DM on bone healing.