Ogawa Miho, Tsuji Takashi
Organ Technologies Inc., Tokyo, 101-0048, Japan.
RIKEN Center for Developmental Biology, Kobe, Hyogo, 650-0047, Japan.
Odontology. 2015 Sep;103(3):248-57. doi: 10.1007/s10266-015-0210-9. Epub 2015 Jul 15.
Oral health is maintained by the coordinated function of many organs including the teeth and salivary glands. Dysfunction of these organs causes many problems, such as dental caries, swallowing dysfunction and periodontal disease. Regenerative therapy for salivary gland tissue repair and whole-salivary gland replacement is currently considered a novel therapeutic concept that may have potential for the full recovery of salivary gland function. Salivary gland tissue stem cells are thought to be candidate cell sources for salivary gland tissue repair therapies. In addition, whole-salivary gland replacement therapy may become a novel next-generation organ regenerative therapy. Almost all organs arise from reciprocal epithelial and mesenchymal interactions of the germ layers. We developed a novel bioengineering method, an organ germ method that can reproduce organogenesis through the epithelial-mesenchymal interaction. A bioengineered salivary gland germ can regenerate a structurally correct salivary gland in vitro, and bioengineered salivary glands successfully secrete saliva into the oral cavity from ducts in the recipient through the reestablishment of the afferent-efferent neural network. The bioengineered salivary gland can also improve the symptoms of xerostomia, such as bacterial infection and swallowing dysfunction. In this review, we describe recent findings and technological developments of salivary gland regenerative therapy.
口腔健康由包括牙齿和唾液腺在内的许多器官的协同功能维持。这些器官的功能障碍会引发许多问题,如龋齿、吞咽功能障碍和牙周疾病。唾液腺组织修复和全唾液腺置换的再生疗法目前被认为是一种新型治疗理念,可能具有使唾液腺功能完全恢复的潜力。唾液腺组织干细胞被认为是唾液腺组织修复疗法的候选细胞来源。此外,全唾液腺置换疗法可能成为一种新型的下一代器官再生疗法。几乎所有器官都起源于胚层的上皮和间充质相互作用。我们开发了一种新型生物工程方法——器官胚法,它可以通过上皮-间充质相互作用重现器官发生过程。生物工程唾液腺胚在体外能够再生出结构正确的唾液腺,并且通过重建传入-传出神经网络,生物工程唾液腺能够成功地从受体的导管向口腔分泌唾液。生物工程唾液腺还可以改善口干症的症状,如细菌感染和吞咽功能障碍。在这篇综述中,我们描述了唾液腺再生疗法的最新研究发现和技术进展。