Takuichi Sato, S. Kenmotsu, K. Nakakura‐Ohshima, N. Takahashi, H. Ohshima
{"title":"大鼠磨牙感染牙髓对含α tcp抗菌剂的反应","authors":"Takuichi Sato, S. Kenmotsu, K. Nakakura‐Ohshima, N. Takahashi, H. Ohshima","doi":"10.1679/AOHC.73.165","DOIUrl":null,"url":null,"abstract":"molar of 14-week-old rats and maintained without any treatment for 12 - 24 h. Subsequently, the exposed pulp was covered with α TCP or α TCP containing 3Mix, followed with glass ionomer cement. A pulp abscess lacking both dendritic cells and PGP 9.5-reactive nerve fibers was induced after pulp capping with α TCP; in contrast, numerous dendritic cells accumulated along the pulp-dentin border followed by the differentiation of odontoblast-like cells and matrix deposition after the application of α TCP containing 3Mix. PGP 9.5-reactive nerve fibers were also densely distributed and surrounded the accumulated dendritic cells in the medial dental pulp beneath α TCP containing 3Mix. The findings indicate that the application of α TCP containing 3Mix to the infected pulp induces an intense accumulation of dendritic cells, suggesting that these cells play crucial roles in the differentiation of odontoblast-like cells under pathological conditions. Summary. α -tricalcium phosphate ( α TCP) with the addition of antimicrobials such as ciprofloxacin, metronidazole, and cefaclor (3Mix) has been applied to sterilize the infected dentin and pulp in vivo . Both clinical and animal experiments have shown that 3Mix is effective for sterilizing infected tissues. However, the responses of the infected dental pulp to 3Mix remain to be fully determined at the cellular level. This study aims to clarify the responses of neural elements and immune cells to antimicrobials during the healing process of infected pulp using immunohistochemistry for protein gene product (PGP) 9.5 and class II major histocompatibility complex molecules using both light and electron microscopy. An artificial pulp exposure was prepared on the maxillary","PeriodicalId":8307,"journal":{"name":"Archives of histology and cytology","volume":"73 1","pages":"165-175"},"PeriodicalIF":0.0000,"publicationDate":"2011-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1679/AOHC.73.165","citationCount":"5","resultStr":"{\"title\":\"Responses of infected dental pulp to αTCP-containing antimicrobials in rat molars\",\"authors\":\"Takuichi Sato, S. Kenmotsu, K. Nakakura‐Ohshima, N. Takahashi, H. Ohshima\",\"doi\":\"10.1679/AOHC.73.165\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"molar of 14-week-old rats and maintained without any treatment for 12 - 24 h. Subsequently, the exposed pulp was covered with α TCP or α TCP containing 3Mix, followed with glass ionomer cement. A pulp abscess lacking both dendritic cells and PGP 9.5-reactive nerve fibers was induced after pulp capping with α TCP; in contrast, numerous dendritic cells accumulated along the pulp-dentin border followed by the differentiation of odontoblast-like cells and matrix deposition after the application of α TCP containing 3Mix. PGP 9.5-reactive nerve fibers were also densely distributed and surrounded the accumulated dendritic cells in the medial dental pulp beneath α TCP containing 3Mix. The findings indicate that the application of α TCP containing 3Mix to the infected pulp induces an intense accumulation of dendritic cells, suggesting that these cells play crucial roles in the differentiation of odontoblast-like cells under pathological conditions. Summary. α -tricalcium phosphate ( α TCP) with the addition of antimicrobials such as ciprofloxacin, metronidazole, and cefaclor (3Mix) has been applied to sterilize the infected dentin and pulp in vivo . Both clinical and animal experiments have shown that 3Mix is effective for sterilizing infected tissues. However, the responses of the infected dental pulp to 3Mix remain to be fully determined at the cellular level. This study aims to clarify the responses of neural elements and immune cells to antimicrobials during the healing process of infected pulp using immunohistochemistry for protein gene product (PGP) 9.5 and class II major histocompatibility complex molecules using both light and electron microscopy. 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Responses of infected dental pulp to αTCP-containing antimicrobials in rat molars
molar of 14-week-old rats and maintained without any treatment for 12 - 24 h. Subsequently, the exposed pulp was covered with α TCP or α TCP containing 3Mix, followed with glass ionomer cement. A pulp abscess lacking both dendritic cells and PGP 9.5-reactive nerve fibers was induced after pulp capping with α TCP; in contrast, numerous dendritic cells accumulated along the pulp-dentin border followed by the differentiation of odontoblast-like cells and matrix deposition after the application of α TCP containing 3Mix. PGP 9.5-reactive nerve fibers were also densely distributed and surrounded the accumulated dendritic cells in the medial dental pulp beneath α TCP containing 3Mix. The findings indicate that the application of α TCP containing 3Mix to the infected pulp induces an intense accumulation of dendritic cells, suggesting that these cells play crucial roles in the differentiation of odontoblast-like cells under pathological conditions. Summary. α -tricalcium phosphate ( α TCP) with the addition of antimicrobials such as ciprofloxacin, metronidazole, and cefaclor (3Mix) has been applied to sterilize the infected dentin and pulp in vivo . Both clinical and animal experiments have shown that 3Mix is effective for sterilizing infected tissues. However, the responses of the infected dental pulp to 3Mix remain to be fully determined at the cellular level. This study aims to clarify the responses of neural elements and immune cells to antimicrobials during the healing process of infected pulp using immunohistochemistry for protein gene product (PGP) 9.5 and class II major histocompatibility complex molecules using both light and electron microscopy. An artificial pulp exposure was prepared on the maxillary
期刊介绍:
The Archives of Histology and Cytology provides prompt publication in English of original works on the histology and histochemistry of man and animals. The articles published are in principle restricted to studies on vertebrates, but investigations using invertebrates may be accepted when the intention and results present issues of common interest to vertebrate researchers. Pathological studies may also be accepted, if the observations and interpretations are deemed to contribute toward increasing knowledge of the normal features of the cells or tissues concerned. This journal will also publish reviews offering evaluations and critical interpretations of recent studies and theories.