Laflamme Karina, Roberge Charles J, Grenier Guillaume, Rémy-Zolghadri Murielle, Pouliot Stéphanie, Baker Kathleen, Labbé Raymond, D'Orléans-Juste Pédro, Auger François A, Germain Lucie
Laboratoire d'Organogénése Expérimentale/LOEX, Hôpital du Saint-Sacrement du Centre Hospitalier Affililié Universitaire de Quebec and Department of Surgery, Laval University, 1050 Chemin Ste-Foy, Québec, QC G1S 4L8, Canada.
FASEB J. 2006 Jun;20(8):1245-7. doi: 10.1096/fj.05-4702fje. Epub 2006 Apr 12.
Whether the adventitia component of blood vessels directly participates in the regulation of vascular tone remains to be demonstrated. We have recently developed a human tissue-engineered blood vessel comprising the three tunicae of a native blood vessel using the self-assembly approach. To investigate the role of the adventitia in the modulation of vascular tone, this tissue-engineering method was used to produce three vascular constructs from cells explanted and proliferated from donor vessel tunicae 1) an adventitia + a media, or only 2) an adventitia, or 3) a media. The vasoconstriction responses of these 3 constructs to endothelin, the most potent vasopressor known up-to-date, as well as to nonselective and selective agonists and antagonists, were compared. The adventitia contracted to endothelin-1, -2, whereas the media and the media+adventitia contracted to all three endothelins. Endothelin-induced contraction of the adventitia was dependent on ET(A) receptors, whereas that of the media and the adventitia+media was ET(A) and ET(B) receptor-dependent. RT-PCR studies corroborated these results. SNP induced a dose-dependent relaxation of the three tissue constructs. We also demonstrated that the endothelin-converting enzyme, responsible for the formation of the active endothelin peptides, was present and functional in the adventitia. In conclusion, this is the first direct demonstration that the adventitia has the capacity to contract and relax in response to vasoactive factors. The present study suggests that the adventitia of a blood vessel could play a greater role than expected in the modulation of blood vessel tone.
血管的外膜成分是否直接参与血管张力的调节仍有待证实。我们最近利用自组装方法开发了一种包含天然血管三层膜的人体组织工程血管。为了研究外膜在调节血管张力中的作用,采用这种组织工程方法,从供体血管膜中分离并增殖的细胞制备了三种血管构建体:1)外膜 + 中膜,或仅 2)外膜,或 3)中膜。比较了这三种构建体对内皮素(目前已知最强效的血管收缩剂)以及非选择性和选择性激动剂和拮抗剂的血管收缩反应。外膜对内皮素 -1、-2 有收缩反应,而中膜和外膜 + 中膜对所有三种内皮素都有收缩反应。内皮素诱导的外膜收缩依赖于 ET(A) 受体,而中膜和外膜 + 中膜的收缩则依赖于 ET(A) 和 ET(B) 受体。RT-PCR 研究证实了这些结果。SNP 诱导了三种组织构建体的剂量依赖性舒张。我们还证明,负责活性内皮素肽形成的内皮素转化酶在外膜中存在且具有功能。总之,这是首次直接证明外膜有能力对血管活性因子做出收缩和舒张反应。本研究表明,血管外膜在调节血管张力方面可能发挥比预期更大的作用。