Summary: To investigate role of Notch1-3 in hyperoxia-induced lung injury in newborn rat exposed to 85% O 2, SD rat litters born on the 22th day were randomly divided into two groups: room air group and hyperoxia gro...Summary: To investigate role of Notch1-3 in hyperoxia-induced lung injury in newborn rat exposed to 85% O 2, SD rat litters born on the 22th day were randomly divided into two groups: room air group and hyperoxia group. The animals were sacrificed 1, 4, 7, 10, 14 and 21 days after continued exposure to oxygen (n=40, oxygen>0.85) or room air (n=40). 6 rats each group were used to assess lung histological changes by HE staining and expression of Notch in lungs by immunohistochemistry. Total RNA was extracted by Trizol reagent from frozen lung tissues. Notch mRNA were measured by reverse transcription polymerase chain reaction (RT-PCR). Our results showed that 7, 14 and 21 days after O 2 exposure, hyperoxia group showed lung injury characterized by pulmonary edema, hemorrhage and lung development arrest. Positive staining for Notch1, Notch 2 in hyperoxia group was much lower than those in room air group at all time points (P<0.01, P<0.05), but compared with the controls, the hyperoxia group showed higher expression of Notch3 (P>0.05). Immunostained cells were typically airways epithelia, alveolar epithelial and inflammatory cells, and fibroblasts in hyperoxia group (P<0.01). Notch mRNA levels showed similar change as protein level (P< 0.01). It is concluded that the prolonged exposure to 85 % O 2 resulted in abnormal expression of Notch receptors, which might contribute to the pathogenesis of hyperoxia-induced lung injury in newborn rats. The decreased inhibition of Notch1 might be one of the protective reaction and major mechanisms for proliferation/differentiation of type Ⅱ alveolar epithelial cells. The up-regulation of Notch3 activity might result in the lung development arrest of the newborn rats.展开更多
Olfactory receptors are crucial for detecting odors and play a vital role in our sense of smell,influencing behaviors from food choices to emotional memories.These receptors also contribute to our perception of flavor...Olfactory receptors are crucial for detecting odors and play a vital role in our sense of smell,influencing behaviors from food choices to emotional memories.These receptors also contribute to our perception of flavor and have potential applications in medical diagnostics and environmental monitoring.The ability of the olfactory system to regenerate its sensory neurons provides a unique model to study neural regeneration,a phenomenon largely absent in the central nervous system.Insights gained from how olfactory neurons continuously replace themselves and reestablish functional connections can provide strategies to promote similar regenerative processes in the central nervous system,where damage often results in permanent deficits.Understanding the molecular and cellular mechanisms underpinning olfactory neuron regeneration could pave the way for developing therapeutic approaches to treat spinal co rd injuries and neurodegenerative diseases like Alzheimer's disease.Olfa ctory receptors are found in almost any cell of eve ry orga n/tissue of the mammalian body.This ectopic expression provides insights into the chemical structures that can activate olfactory receptors.In addition to odors,olfactory receptors in ectopic expression may respond to endogenous compounds and molecules produced by mucosal colonizing microbiota.The analysis of the function of olfactory receptors in ectopic expression provides valuable information on the signaling pathway engaged upon receptor activation and the receptor's role in proliferation and cell differentiation mechanisms.This review explo res the ectopic expression of olfa ctory receptors and the role they may play in neural regeneration within the central nervous system,with particular attention to compounds that can activate these receptors to initiate regenerative processes.Evidence suggests that olfactory receptors could serve as potential therapeutic targets for enhancing neural repair and recovery following central nervous system injuries.展开更多
Objective To investigate the temporal expression of Notch receptors in developing lungs of rats and to explore the regulating role of Notch in lung development. Methods We studied the expression of Notch1,2,3 isforms ...Objective To investigate the temporal expression of Notch receptors in developing lungs of rats and to explore the regulating role of Notch in lung development. Methods We studied the expression of Notch1,2,3 isforms in embryonic days 18,20,21 and postnatal days 1,4,7,14, 21 rat lungs. Six rats of each group were used to assess lung histologic changes by HE staining and expression of Notch in lungs by immunohistochemistry. Total RNA was extracted by Trizol reagent from the frozen lung tissues. mRNA levels of Notch were measured by reverse transcription polymerase chain reaction (RT-PCR). Results It is showed that Notch_ 1-3 mainly localized in the airway surface epithelium、alveolar epithelium during the psdueoglandular stage, and reached the peaks at canalicular period. The expression patterns of Notch_ 1-3 were changed with the fetal age. Conclusion These results support multiple roles for Notch1,2,and 3 receptor activation during lung development, probably not only modulating the process of branching morphogenesis but also involved in determining the cell differentiation fate in fetal alveolar epithelium.展开更多
Long-term levodopa administration can lead to the development of levodopa-induced dyskinesia.Gamma oscillations are a widely recognized hallmark of abnormal neural electrical activity in levodopa-induced dyskinesia.Cu...Long-term levodopa administration can lead to the development of levodopa-induced dyskinesia.Gamma oscillations are a widely recognized hallmark of abnormal neural electrical activity in levodopa-induced dyskinesia.Currently,studies have reported increased oscillation power in cases of levodopa-induced dyskinesia.However,little is known about how the other electrophysiological parameters of gamma oscillations are altered in levodopa-induced dyskinesia.Furthermore,the role of the dopamine D3 receptor,which is implicated in levodopa-induced dyskinesia,in movement disorder-related changes in neural oscillations is unclear.We found that the cortico-striatal functional connectivity of beta oscillations was enhanced in a model of Parkinson’s disease.Furthermore,levodopa application enhanced cortical gamma oscillations in cortico-striatal projections and cortical gamma aperiodic components,as well as bidirectional primary motor cortex(M1)↔dorsolateral striatum gamma flow.Administration of PD128907(a selective dopamine D3 receptor agonist)induced dyskinesia and excessive gamma oscillations with a bidirectional M1↔dorsolateral striatum flow.However,administration of PG01037(a selective dopamine D3 receptor antagonist)attenuated dyskinesia,suppressed gamma oscillations and cortical gamma aperiodic components,and decreased gamma causality in the M1→dorsolateral striatum direction.These findings suggest that the dopamine D3 receptor plays a role in dyskinesia-related oscillatory activity,and that it has potential as a therapeutic target for levodopa-induced dyskinesia.展开更多
目的探讨骨外膜素(Periostin)、Notch跨膜受体-1(Notch1)m RNA、维生素D(VitD)与自身免疫性甲状腺炎(AIT)淋巴细胞浸润程度、调节性T细胞/辅助性T细胞17(Treg/Th17)的相关性。方法选取2021年7月至2023年12月郑州大学第一附属医院收治的9...目的探讨骨外膜素(Periostin)、Notch跨膜受体-1(Notch1)m RNA、维生素D(VitD)与自身免疫性甲状腺炎(AIT)淋巴细胞浸润程度、调节性T细胞/辅助性T细胞17(Treg/Th17)的相关性。方法选取2021年7月至2023年12月郑州大学第一附属医院收治的92例AIT患者纳入AIT组,另选取同期50例无甲状腺疾病的健康人群纳入对照组。比较两组受检者的淋巴细胞浸润程度及抗体水平,采用Spearman、Pearson相关系数分析淋巴细胞浸润程度、Treg/Th17与甲状腺功能、抗体水平的相关性,比较两组受检者的Periostin、Notch1 m RNA、VitD及Treg/Th17,采用Pearson相关系数分析Periostin、Notch1 mRNA、VitD与淋巴细胞浸润程度及Treg/Th17的相关性。结果AIT组患者的CD3^(+)、CD3^(+)CD4^(+)、CD4^(+)CD25^(+)CD127^(-)、TgAb、TPOAb、TRAb水平及甲亢/亚临床甲亢、甲减/亚临床甲减患者占比明显高于对照组,差异均有统计学意义(P<0.05);Pearson相关系数分析结果显示,CD3^(+)(r=0.579、0.602、0.563)、CD3^(+)CD4^(+)(r=0.612、0.637、0.606)、CD~4+CD25^(+)CD127^(-)(r=0.655、0.643、0.687)与TgAb、TPOAb、TRAb呈正相关(P<0.05);AIT组患者的Periostin、Notch1 m RNA分别为(4.27±1.40)μg/L、1.73±0.56,明显高于对照组的(2.86±0.49)μg/L、1.02±0.14,VitD、Treg/Th17分别为(17.82±5.09)ng/mL、2.82±0.97,明显低于对照组的(22.30±3.76)ng/mL、12.36±2.03,差异均有统计学意义(P<0.05);Pearson相关系数分析结果显示,Periostin(r=0.792、0.811、0.737)、Notch1 mRNA(r=0.812、0.775、0.792)与CD3^(+)、CD3^(+)CD4^(+)、CD4^(+)CD25+CD127-呈正相关(P<0.05),VitD(r=-0.687、-0.753、-0.799)与之呈负相关(P<0.05),且Periostin(r=-0.823)、Notch1 m RNA(r=-0.772)与Treg/Th17呈负相关(P<0.05),VitD(r=0.745)与之呈正相关(P<0.05)。结论Periostin、Notch1 mRNA在AIT患者血清中表达上调,VitD表达下调,各指标与AIT淋巴细胞浸润程度及Treg/Th17均具有一定相关性,可为临床判断病情提供参考,并对后续临床治疗具有一定指导价值。展开更多
基金This project was supported by a grant from the National Natural Science Foundation of China (No.30471824).
文摘Summary: To investigate role of Notch1-3 in hyperoxia-induced lung injury in newborn rat exposed to 85% O 2, SD rat litters born on the 22th day were randomly divided into two groups: room air group and hyperoxia group. The animals were sacrificed 1, 4, 7, 10, 14 and 21 days after continued exposure to oxygen (n=40, oxygen>0.85) or room air (n=40). 6 rats each group were used to assess lung histological changes by HE staining and expression of Notch in lungs by immunohistochemistry. Total RNA was extracted by Trizol reagent from frozen lung tissues. Notch mRNA were measured by reverse transcription polymerase chain reaction (RT-PCR). Our results showed that 7, 14 and 21 days after O 2 exposure, hyperoxia group showed lung injury characterized by pulmonary edema, hemorrhage and lung development arrest. Positive staining for Notch1, Notch 2 in hyperoxia group was much lower than those in room air group at all time points (P<0.01, P<0.05), but compared with the controls, the hyperoxia group showed higher expression of Notch3 (P>0.05). Immunostained cells were typically airways epithelia, alveolar epithelial and inflammatory cells, and fibroblasts in hyperoxia group (P<0.01). Notch mRNA levels showed similar change as protein level (P< 0.01). It is concluded that the prolonged exposure to 85 % O 2 resulted in abnormal expression of Notch receptors, which might contribute to the pathogenesis of hyperoxia-induced lung injury in newborn rats. The decreased inhibition of Notch1 might be one of the protective reaction and major mechanisms for proliferation/differentiation of type Ⅱ alveolar epithelial cells. The up-regulation of Notch3 activity might result in the lung development arrest of the newborn rats.
文摘Olfactory receptors are crucial for detecting odors and play a vital role in our sense of smell,influencing behaviors from food choices to emotional memories.These receptors also contribute to our perception of flavor and have potential applications in medical diagnostics and environmental monitoring.The ability of the olfactory system to regenerate its sensory neurons provides a unique model to study neural regeneration,a phenomenon largely absent in the central nervous system.Insights gained from how olfactory neurons continuously replace themselves and reestablish functional connections can provide strategies to promote similar regenerative processes in the central nervous system,where damage often results in permanent deficits.Understanding the molecular and cellular mechanisms underpinning olfactory neuron regeneration could pave the way for developing therapeutic approaches to treat spinal co rd injuries and neurodegenerative diseases like Alzheimer's disease.Olfa ctory receptors are found in almost any cell of eve ry orga n/tissue of the mammalian body.This ectopic expression provides insights into the chemical structures that can activate olfactory receptors.In addition to odors,olfactory receptors in ectopic expression may respond to endogenous compounds and molecules produced by mucosal colonizing microbiota.The analysis of the function of olfactory receptors in ectopic expression provides valuable information on the signaling pathway engaged upon receptor activation and the receptor's role in proliferation and cell differentiation mechanisms.This review explo res the ectopic expression of olfa ctory receptors and the role they may play in neural regeneration within the central nervous system,with particular attention to compounds that can activate these receptors to initiate regenerative processes.Evidence suggests that olfactory receptors could serve as potential therapeutic targets for enhancing neural repair and recovery following central nervous system injuries.
文摘Objective To investigate the temporal expression of Notch receptors in developing lungs of rats and to explore the regulating role of Notch in lung development. Methods We studied the expression of Notch1,2,3 isforms in embryonic days 18,20,21 and postnatal days 1,4,7,14, 21 rat lungs. Six rats of each group were used to assess lung histologic changes by HE staining and expression of Notch in lungs by immunohistochemistry. Total RNA was extracted by Trizol reagent from the frozen lung tissues. mRNA levels of Notch were measured by reverse transcription polymerase chain reaction (RT-PCR). Results It is showed that Notch_ 1-3 mainly localized in the airway surface epithelium、alveolar epithelium during the psdueoglandular stage, and reached the peaks at canalicular period. The expression patterns of Notch_ 1-3 were changed with the fetal age. Conclusion These results support multiple roles for Notch1,2,and 3 receptor activation during lung development, probably not only modulating the process of branching morphogenesis but also involved in determining the cell differentiation fate in fetal alveolar epithelium.
基金supported by the National Natural Science Foundation of China,No.82071254(to WZ).
文摘Long-term levodopa administration can lead to the development of levodopa-induced dyskinesia.Gamma oscillations are a widely recognized hallmark of abnormal neural electrical activity in levodopa-induced dyskinesia.Currently,studies have reported increased oscillation power in cases of levodopa-induced dyskinesia.However,little is known about how the other electrophysiological parameters of gamma oscillations are altered in levodopa-induced dyskinesia.Furthermore,the role of the dopamine D3 receptor,which is implicated in levodopa-induced dyskinesia,in movement disorder-related changes in neural oscillations is unclear.We found that the cortico-striatal functional connectivity of beta oscillations was enhanced in a model of Parkinson’s disease.Furthermore,levodopa application enhanced cortical gamma oscillations in cortico-striatal projections and cortical gamma aperiodic components,as well as bidirectional primary motor cortex(M1)↔dorsolateral striatum gamma flow.Administration of PD128907(a selective dopamine D3 receptor agonist)induced dyskinesia and excessive gamma oscillations with a bidirectional M1↔dorsolateral striatum flow.However,administration of PG01037(a selective dopamine D3 receptor antagonist)attenuated dyskinesia,suppressed gamma oscillations and cortical gamma aperiodic components,and decreased gamma causality in the M1→dorsolateral striatum direction.These findings suggest that the dopamine D3 receptor plays a role in dyskinesia-related oscillatory activity,and that it has potential as a therapeutic target for levodopa-induced dyskinesia.
文摘目的探讨骨外膜素(Periostin)、Notch跨膜受体-1(Notch1)m RNA、维生素D(VitD)与自身免疫性甲状腺炎(AIT)淋巴细胞浸润程度、调节性T细胞/辅助性T细胞17(Treg/Th17)的相关性。方法选取2021年7月至2023年12月郑州大学第一附属医院收治的92例AIT患者纳入AIT组,另选取同期50例无甲状腺疾病的健康人群纳入对照组。比较两组受检者的淋巴细胞浸润程度及抗体水平,采用Spearman、Pearson相关系数分析淋巴细胞浸润程度、Treg/Th17与甲状腺功能、抗体水平的相关性,比较两组受检者的Periostin、Notch1 m RNA、VitD及Treg/Th17,采用Pearson相关系数分析Periostin、Notch1 mRNA、VitD与淋巴细胞浸润程度及Treg/Th17的相关性。结果AIT组患者的CD3^(+)、CD3^(+)CD4^(+)、CD4^(+)CD25^(+)CD127^(-)、TgAb、TPOAb、TRAb水平及甲亢/亚临床甲亢、甲减/亚临床甲减患者占比明显高于对照组,差异均有统计学意义(P<0.05);Pearson相关系数分析结果显示,CD3^(+)(r=0.579、0.602、0.563)、CD3^(+)CD4^(+)(r=0.612、0.637、0.606)、CD~4+CD25^(+)CD127^(-)(r=0.655、0.643、0.687)与TgAb、TPOAb、TRAb呈正相关(P<0.05);AIT组患者的Periostin、Notch1 m RNA分别为(4.27±1.40)μg/L、1.73±0.56,明显高于对照组的(2.86±0.49)μg/L、1.02±0.14,VitD、Treg/Th17分别为(17.82±5.09)ng/mL、2.82±0.97,明显低于对照组的(22.30±3.76)ng/mL、12.36±2.03,差异均有统计学意义(P<0.05);Pearson相关系数分析结果显示,Periostin(r=0.792、0.811、0.737)、Notch1 mRNA(r=0.812、0.775、0.792)与CD3^(+)、CD3^(+)CD4^(+)、CD4^(+)CD25+CD127-呈正相关(P<0.05),VitD(r=-0.687、-0.753、-0.799)与之呈负相关(P<0.05),且Periostin(r=-0.823)、Notch1 m RNA(r=-0.772)与Treg/Th17呈负相关(P<0.05),VitD(r=0.745)与之呈正相关(P<0.05)。结论Periostin、Notch1 mRNA在AIT患者血清中表达上调,VitD表达下调,各指标与AIT淋巴细胞浸润程度及Treg/Th17均具有一定相关性,可为临床判断病情提供参考,并对后续临床治疗具有一定指导价值。