目的研究核因子KB受体活化因子(receptor activator of NF-KB,RANK)及核因子KB受体活化因子配体(receptoractivator of NF-KB ligand,RANKL)和骨保护素(osteoprotegrin,OPG),在不同月龄雄性大鼠股骨表达的变化,探讨αD3对老龄大鼠RANK、...目的研究核因子KB受体活化因子(receptor activator of NF-KB,RANK)及核因子KB受体活化因子配体(receptoractivator of NF-KB ligand,RANKL)和骨保护素(osteoprotegrin,OPG),在不同月龄雄性大鼠股骨表达的变化,探讨αD3对老龄大鼠RANK、RANKL、OPG表达的影响。方法将6周龄、6月龄、24月龄、24月龄+αD3组Wistar大鼠分为甲、乙、丙、丁4组,每组15只。其中丁组为24月龄+αD3组,按0.05μg/kg/d-1灌胃,隔天1次,每周3次。连续10周。取左侧股骨远中干骺端1/2,采用RT-PCR测RANKL、RANK及OPG的mRNA的表达。取右侧股骨做免疫组化。结果与6周组相比,6月和24月组RANKLmRNA分别增加6.2倍和7.3倍,(P<0.05),OPGmRNA值随月龄逐步增加(P>0.05)。24月龄+αD3组较24月龄组RANK降低(P<0.05)、RANKL/OPG比值亦降低(P>0.05)。免疫组化结果显示RANKL、OPG表达于软骨和成骨细胞胞浆和胞核。24月龄+αD3干预组OPG表达较24月组增强。结论股骨RANKL/OPG值随月龄增加,有利于骨的吸收和转换;αD3有促进骨形成降低骨吸收的作用,其机制可能与降低RANK、RANKL/OPG比值有关。RANKL、OPG表达于同一类型的细胞,二者共同调节骨的代谢。展开更多
地舒单抗(denosumab,DMAb)是最早出现的全人源核因子-κB受体活化因子配体[receptor activator of nuclear factor-κB(NF-κB)ligand,RANKL]的单克隆抗体。2020年在我国上市,应用于骨质疏松治疗领域,是抑制骨吸收类抗骨松药物中的新成...地舒单抗(denosumab,DMAb)是最早出现的全人源核因子-κB受体活化因子配体[receptor activator of nuclear factor-κB(NF-κB)ligand,RANKL]的单克隆抗体。2020年在我国上市,应用于骨质疏松治疗领域,是抑制骨吸收类抗骨松药物中的新成员。本综述的目的为归纳总结近年围绕DMAb在骨质疏松初始、序贯以及联合治疗方面的临床研究进展,为其应用提供参考。展开更多
OBJECTIVE To evaluate whether the IDO1 inhibitor 1-methyl-L-tryptophan(1-MT)combine calcium influx inhibitor carboxyamidotriazole(CAI)could further enhance the suppression of programmed death 1(PD-1)in CD8^+T cells an...OBJECTIVE To evaluate whether the IDO1 inhibitor 1-methyl-L-tryptophan(1-MT)combine calcium influx inhibitor carboxyamidotriazole(CAI)could further enhance the suppression of programmed death 1(PD-1)in CD8^+T cells and investigate the curative effect of the combined use.METHODS CD8^+T cells were isolated from normal mice spleen by negative selection using magnetic cell separation.The isolated CD8^+T cells were cultured in RPMI 1640 medium containing 10%FBS and 100 U·mL^(-1)IL-2 and activated by the addition of anti-CD3 and anti-CD28(1 g·L^(-1) each mabs).CD8^+T cells were pretreated for 48 h with drug and the fluo-3 as a marker of intracellular calcium concentration was detected by flow cytometry.The calcineurin(Ca N)levels were assayed with ELISA in CD8^+T cells after 48 h incubation with 10μm CAI.The nuclear translocations of NFAT and AHR were detected by immunofluorescent staining after 48 h of drug treatment.The expression of PD-1 in CD8^+T cells was analyzed by flow cytometry.RESULTS Intracellular fluorescent intensity was markedly debase due to CAI treatment(P<0.01).Meanwhile,the changes of CaN content had a resembled correlation(P<0.01).Immunofluorescence experiment showed that after combination therapy the transfer of NFAT and AHR in nuclear substantially reduced.Flow cytometry revealed that after the combination caused a significant decrease in PD-1 expression in CD8^+T cells.CONCLUSION CAI and 1-MT could inhibit markedly the expression of PD-1 in CD8^+T cells by inhibiting the nuclear translocation of NFAT and AHR,respectively and the combination of them has synergetic effect.展开更多
骨结核是一种严重危害人体健康的骨科感染性疾病,其病灶组织破坏的最大特点是骨质的吸收及破坏,其中破骨细胞是骨吸收的主要细胞。破骨细胞是由造血干细胞分化而来的多核细胞,通常是由核因子κB受体活化因子配体(receptor activator of ...骨结核是一种严重危害人体健康的骨科感染性疾病,其病灶组织破坏的最大特点是骨质的吸收及破坏,其中破骨细胞是骨吸收的主要细胞。破骨细胞是由造血干细胞分化而来的多核细胞,通常是由核因子κB受体活化因子配体(receptor activator of nuclear factor-κB ligand,RANKL)与核因子κB受体活化因子(receptor activator for nuclear factor-κB,RANK)调控产生。结核分枝杆菌可以通过RANKL信号通路激活破骨细胞生成转录因子,以增强破骨细胞对骨质的吸收。笔者通过综述RANKL信号通路的结构及破骨细胞的研究进展,以及它们在骨结核临床治疗中可能发挥的潜在作用,为该领域的研究提供新的思路。展开更多
骨质疏松症是一种随年龄增长而出现的骨质退化性疾病,其特点是骨形成能力下降和骨吸收作用增强,常导致骨折发生。近年来,骨质疏松症相关基因研究取得了较大进展,在延缓骨质疏松症疾病进展中,相继发现了降钙素基因相关肽(calcitonin gene...骨质疏松症是一种随年龄增长而出现的骨质退化性疾病,其特点是骨形成能力下降和骨吸收作用增强,常导致骨折发生。近年来,骨质疏松症相关基因研究取得了较大进展,在延缓骨质疏松症疾病进展中,相继发现了降钙素基因相关肽(calcitonin gene-related peptide,CGRP)、微小RNA(microRNA,miRNA)等基因对骨质疏松症的具体调控机制。而在促进骨质疏松症疾病发展进程中,也发现了核因子κB受体活化因子配体(receptor activator of nuclear factor-κB ligand,RANKL)、叉头蛋白F1(forkhead protein F1,Foxf1)、脂肪量和肥胖相关蛋白(fat mass and obesity-associated protein,FTO)等基因对骨质疏松症疾病的调控方式。本文就促进骨质疏松症和抑制骨质疏松症相关基因在骨质疏松症病理进程中的作用机制进行总结,以期为骨质疏松症的临床治疗提供一定的参考。展开更多
文摘目的研究核因子KB受体活化因子(receptor activator of NF-KB,RANK)及核因子KB受体活化因子配体(receptoractivator of NF-KB ligand,RANKL)和骨保护素(osteoprotegrin,OPG),在不同月龄雄性大鼠股骨表达的变化,探讨αD3对老龄大鼠RANK、RANKL、OPG表达的影响。方法将6周龄、6月龄、24月龄、24月龄+αD3组Wistar大鼠分为甲、乙、丙、丁4组,每组15只。其中丁组为24月龄+αD3组,按0.05μg/kg/d-1灌胃,隔天1次,每周3次。连续10周。取左侧股骨远中干骺端1/2,采用RT-PCR测RANKL、RANK及OPG的mRNA的表达。取右侧股骨做免疫组化。结果与6周组相比,6月和24月组RANKLmRNA分别增加6.2倍和7.3倍,(P<0.05),OPGmRNA值随月龄逐步增加(P>0.05)。24月龄+αD3组较24月龄组RANK降低(P<0.05)、RANKL/OPG比值亦降低(P>0.05)。免疫组化结果显示RANKL、OPG表达于软骨和成骨细胞胞浆和胞核。24月龄+αD3干预组OPG表达较24月组增强。结论股骨RANKL/OPG值随月龄增加,有利于骨的吸收和转换;αD3有促进骨形成降低骨吸收的作用,其机制可能与降低RANK、RANKL/OPG比值有关。RANKL、OPG表达于同一类型的细胞,二者共同调节骨的代谢。
文摘地舒单抗(denosumab,DMAb)是最早出现的全人源核因子-κB受体活化因子配体[receptor activator of nuclear factor-κB(NF-κB)ligand,RANKL]的单克隆抗体。2020年在我国上市,应用于骨质疏松治疗领域,是抑制骨吸收类抗骨松药物中的新成员。本综述的目的为归纳总结近年围绕DMAb在骨质疏松初始、序贯以及联合治疗方面的临床研究进展,为其应用提供参考。
基金supported by National Natural Science Foundation of China(81402943)CAMS Major Collaborative Innovation Project(2016-I2M-1-011)PUMC Youth Fund(3332015168)
文摘OBJECTIVE To evaluate whether the IDO1 inhibitor 1-methyl-L-tryptophan(1-MT)combine calcium influx inhibitor carboxyamidotriazole(CAI)could further enhance the suppression of programmed death 1(PD-1)in CD8^+T cells and investigate the curative effect of the combined use.METHODS CD8^+T cells were isolated from normal mice spleen by negative selection using magnetic cell separation.The isolated CD8^+T cells were cultured in RPMI 1640 medium containing 10%FBS and 100 U·mL^(-1)IL-2 and activated by the addition of anti-CD3 and anti-CD28(1 g·L^(-1) each mabs).CD8^+T cells were pretreated for 48 h with drug and the fluo-3 as a marker of intracellular calcium concentration was detected by flow cytometry.The calcineurin(Ca N)levels were assayed with ELISA in CD8^+T cells after 48 h incubation with 10μm CAI.The nuclear translocations of NFAT and AHR were detected by immunofluorescent staining after 48 h of drug treatment.The expression of PD-1 in CD8^+T cells was analyzed by flow cytometry.RESULTS Intracellular fluorescent intensity was markedly debase due to CAI treatment(P<0.01).Meanwhile,the changes of CaN content had a resembled correlation(P<0.01).Immunofluorescence experiment showed that after combination therapy the transfer of NFAT and AHR in nuclear substantially reduced.Flow cytometry revealed that after the combination caused a significant decrease in PD-1 expression in CD8^+T cells.CONCLUSION CAI and 1-MT could inhibit markedly the expression of PD-1 in CD8^+T cells by inhibiting the nuclear translocation of NFAT and AHR,respectively and the combination of them has synergetic effect.
文摘骨结核是一种严重危害人体健康的骨科感染性疾病,其病灶组织破坏的最大特点是骨质的吸收及破坏,其中破骨细胞是骨吸收的主要细胞。破骨细胞是由造血干细胞分化而来的多核细胞,通常是由核因子κB受体活化因子配体(receptor activator of nuclear factor-κB ligand,RANKL)与核因子κB受体活化因子(receptor activator for nuclear factor-κB,RANK)调控产生。结核分枝杆菌可以通过RANKL信号通路激活破骨细胞生成转录因子,以增强破骨细胞对骨质的吸收。笔者通过综述RANKL信号通路的结构及破骨细胞的研究进展,以及它们在骨结核临床治疗中可能发挥的潜在作用,为该领域的研究提供新的思路。
文摘骨质疏松症是一种随年龄增长而出现的骨质退化性疾病,其特点是骨形成能力下降和骨吸收作用增强,常导致骨折发生。近年来,骨质疏松症相关基因研究取得了较大进展,在延缓骨质疏松症疾病进展中,相继发现了降钙素基因相关肽(calcitonin gene-related peptide,CGRP)、微小RNA(microRNA,miRNA)等基因对骨质疏松症的具体调控机制。而在促进骨质疏松症疾病发展进程中,也发现了核因子κB受体活化因子配体(receptor activator of nuclear factor-κB ligand,RANKL)、叉头蛋白F1(forkhead protein F1,Foxf1)、脂肪量和肥胖相关蛋白(fat mass and obesity-associated protein,FTO)等基因对骨质疏松症疾病的调控方式。本文就促进骨质疏松症和抑制骨质疏松症相关基因在骨质疏松症病理进程中的作用机制进行总结,以期为骨质疏松症的临床治疗提供一定的参考。