目的:研究子宫内膜异位症(内异症)患者在位内膜神经生长因子(NGF)及其受体trkA、p75NTR的表达,探讨上述因子与内异症疼痛的关系。方法:选择就诊于北京协和医院并进行了腹腔镜手术的28例子宫内膜异位症患者作为研究组,非子宫内膜异位症患...目的:研究子宫内膜异位症(内异症)患者在位内膜神经生长因子(NGF)及其受体trkA、p75NTR的表达,探讨上述因子与内异症疼痛的关系。方法:选择就诊于北京协和医院并进行了腹腔镜手术的28例子宫内膜异位症患者作为研究组,非子宫内膜异位症患者10例作为对照组(B组),收集上述患者分泌期在位子宫内膜。根据患者有无痛经,分为内异症疼痛组(A1组,18例)及内异症非疼痛组(A2组,10例)。采用免疫组化比较各组病灶中NGF及其受体trkA、p75NTR的表达,并分析其与痛经的关系。结果:各组在位内膜腺上皮中NGF的表达显著高于间质(P<0.05);内异症疼痛组腺上皮NGF表达较非疼痛组明显升高(359.9±18.7 vs 201.3±34.3,P<0.05)。p75NTR主要在子宫内膜间质细胞中表达;内异症组明显高于非内异症组(58.8±21.1、22.5±16.1 vs 0,P<0.05);内异症疼痛组较非疼痛组p75NTR表达明显升高(58.8±21.1 vs 22.5±16.1,P<0.05)。trkA在非内异症组子宫内膜间质中表达明显高于腺上皮(P<0.05);在内异症组腺上皮中,trkA的表达较非内异症组明显增高(P<0.05);trkA的表达量与内异症患者疼痛无关。结论:p75NTR可能参与内异症的发病,NGF及其受体p75NTR在在位内膜中的表达与患者疼痛相关,表明其可能参与了内异症疼痛发病机制。展开更多
Sympathetic arborizations act as the essential efferent signals in regulating the metabolism of peripheral organs including white adipose tissues (WAT). However, whether these local neural structures would be of pla...Sympathetic arborizations act as the essential efferent signals in regulating the metabolism of peripheral organs including white adipose tissues (WAT). However, whether these local neural structures would be of plastic nature, and how such plasticity might participate in specific metabolic events of WAT, remains largely uncharacterized. In this study, we exploit the new vol- ume fluorescence-imaging technique to observe the significant, and also reversible, plasticity of intra-adi- pose sympathetic arborizations in mouse inguinal WAT in response to cold challenge. We demonstrate that this sympathetic plasticity depends on the cold-elicited sig- nal of nerve growth factor (NGF) and TrkA receptor. Blockage of NGF or TrkA signaling suppresses intra- adipose sympathetic plasticity, and moreover, the cold- induced beiging process of WAT. Furthermore, we show that NGF expression in WAT depends on the cate- cholamine signal in cold challenge. We therefore reveal the key physiological relevance, together with the reg- ulatory mechanism, of intra-adipose sympathetic plas- ticity in the WAT metabolism.展开更多
文摘目的:研究子宫内膜异位症(内异症)患者在位内膜神经生长因子(NGF)及其受体trkA、p75NTR的表达,探讨上述因子与内异症疼痛的关系。方法:选择就诊于北京协和医院并进行了腹腔镜手术的28例子宫内膜异位症患者作为研究组,非子宫内膜异位症患者10例作为对照组(B组),收集上述患者分泌期在位子宫内膜。根据患者有无痛经,分为内异症疼痛组(A1组,18例)及内异症非疼痛组(A2组,10例)。采用免疫组化比较各组病灶中NGF及其受体trkA、p75NTR的表达,并分析其与痛经的关系。结果:各组在位内膜腺上皮中NGF的表达显著高于间质(P<0.05);内异症疼痛组腺上皮NGF表达较非疼痛组明显升高(359.9±18.7 vs 201.3±34.3,P<0.05)。p75NTR主要在子宫内膜间质细胞中表达;内异症组明显高于非内异症组(58.8±21.1、22.5±16.1 vs 0,P<0.05);内异症疼痛组较非疼痛组p75NTR表达明显升高(58.8±21.1 vs 22.5±16.1,P<0.05)。trkA在非内异症组子宫内膜间质中表达明显高于腺上皮(P<0.05);在内异症组腺上皮中,trkA的表达较非内异症组明显增高(P<0.05);trkA的表达量与内异症患者疼痛无关。结论:p75NTR可能参与内异症的发病,NGF及其受体p75NTR在在位内膜中的表达与患者疼痛相关,表明其可能参与了内异症疼痛发病机制。
基金We thank members of the Zeng laboratory for helps and discussions. This work was supported by National Natural Science Foun- dation of China (Grant Nos. 31770936 and 91742106) to Wenwen Zeng, Beijing Natural Science Foundation (5172016) to Wenwen Zeng, Thousand-Talent Young Investigator Program to Wenwen Zeng, and National Key R&D Program of China (2017YFA0505800). The Zeng laboratory was also supported by Center for Life Sciences, Institute for Immunology, and School of Medicine at Tsinghua University.
文摘Sympathetic arborizations act as the essential efferent signals in regulating the metabolism of peripheral organs including white adipose tissues (WAT). However, whether these local neural structures would be of plastic nature, and how such plasticity might participate in specific metabolic events of WAT, remains largely uncharacterized. In this study, we exploit the new vol- ume fluorescence-imaging technique to observe the significant, and also reversible, plasticity of intra-adi- pose sympathetic arborizations in mouse inguinal WAT in response to cold challenge. We demonstrate that this sympathetic plasticity depends on the cold-elicited sig- nal of nerve growth factor (NGF) and TrkA receptor. Blockage of NGF or TrkA signaling suppresses intra- adipose sympathetic plasticity, and moreover, the cold- induced beiging process of WAT. Furthermore, we show that NGF expression in WAT depends on the cate- cholamine signal in cold challenge. We therefore reveal the key physiological relevance, together with the reg- ulatory mechanism, of intra-adipose sympathetic plas- ticity in the WAT metabolism.