• 제목/요약/키워드: HTSE

검색결과 53건 처리시간 0.019초

Glycyrrhizin and Morroniside Stimulate Mucin Secretion from Cultured Airway Epithelial Cells

  • Heo, Ho-Jin;Lee, Hyun-Jae;Kim, Cheol-Su;Son, Kun-Ho;Kim, Young-Choong;Kim, Young-Sik;Kang, Sam-Sik;Park, Yang-Chun;Kim, Yun-Hee;Seo, Un-Kyo;Seok, Jeong-Ho;Lee, Choong-Jae
    • The Korean Journal of Physiology and Pharmacology
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    • 제10권6호
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    • pp.317-321
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    • 2006
  • In this study, we investigated whether glycyrrhizin, prunetin and morroniside affect mucin secretion from cultured airway epithelial cells and compared the possible activities of these agents with the inhibitory action on mucin secretion by poly-L-lysine (PLL) and the stimulatory action by adenosine triphosphate (ATP). Confluent primary hamster tracheal surface epithelial (HTSE) cells were metabolically radiolabeled using $^{3}H-glucosamine$ for 24 h and chased for 30 min in the presence of varying concentrations of each agent to assess the effects on $^{3}H-mucin$ secretion. The results were as follows: 1) glycyrrhizin and morroniside increased basal mucin secretion from airway; 2) prunetin did not affect basal mucin secretion; 3) glycyrrhizin did not inhibit ATP-induced mucin secretion. We conclude that glycyrrhizin and morroniside can increase basal mucin secretion, by directly acting on airway mucin-secreting cells and suggest that two compounds be further investigated for the possible use as mild expectorants during the treatment of inflammatory airway diseases.

Phellopterin Suppresses Airway Mucin Secretion induced by Adenosine Triphosphate

  • Heo, Ho-Jin;Kim, Cheol-Su;Lee, Hyun-Jae;Kim, Jin-Woong;Kim, Young-Sik;Kang, Sam-Sik;Seo, Un-Kyo;Kim, Yun-Hee;Park, Yang-Chun;Seok, JeongHo;Lee, Choong-Jae
    • Biomolecules & Therapeutics
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    • 제14권4호
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    • pp.202-206
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    • 2006
  • Angelicae Dahiricae Radix has been used for controlling inflammatory respiratory diseases in oriental medicine and their components, phellopterin, isoimperatorin and byakangelicol were reported to have various biological effects. In this study, we investigated whether phellopterin, isoimperatorin and byakangelicol affect adenosine triphosphate(ATP)-induced mucin secretion from cultured airway epithelial cells. Confluent primary hamster tracheal surface epithelial(HTSE) cells were metabolically radiolabeled using $^3H$-glucosamine for 24 h and chased for 30 min in the presence of varying concentrations of each agent to assess the effects on $^3H$-mucin secretion. The results were as follows: 1) phellopterin significantly inhibited ATP-induced mucin secretion; 2) However, isoimperatorin and byakangelicol did not affect ATP-induced mucin secretion, significantly. This result suggests that phellopterin can regulate 'mucin secretion induced by ATP'-a phenomenon simulating mucus overproduction from inflamed airway epithelial cells-by directly acting on airway mucin-secreting cells. Therefore, phellopterin should further be investigated for the possible use as mucoregulators in the treatment of inflammatory airway diseases.

Effect of Imperatorin on Adenosine Triphosphate-stimulated Mucin Secretion from Airway Epithelial Cells

  • Heo, Ho-Jin;Kim, Cheol-Su;Lee, Hyun-Jae;Shin, Seung-Won;Kim, Young-Sik;Kang, Sam-Sik;Park, Yang-Chun;Kim, Yun-Hee;Seo, Un-Kyo;Seok, Jeong-Ho;Lee, Choong-Jae
    • Biomolecules & Therapeutics
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    • 제14권4호
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    • pp.235-239
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    • 2006
  • Angelicae Koreanae Radix has been used for controlling inflammatory respiratory diseases in folk medicine and their components, imperatorin, marmesinin and oxypeucedanin were reported to have diverse biological effects. In this study, we investigated whether imperatorin, marmesinin and oxypeucedanin affect adenosine triphosphate(ATP)-induced mucin secretion from cultured airway epithelial cells. Confluent primary hamster tracheal surface epithelial(HTSE) cells were metabolically radiolabeled using $^3H$-glucosamine for 24 h and chased for 30 min in the presence of varying concentrations of each agent to assess the effects on $^3H$-mucin secretion. The results were as follows: 1) imperatorin significantly inhibited ATP-induced mucin secretion; 2) However, marmesinin and oxypeucedanin did not affect ATP-induced mucin secretion, significantly. We conclude that imperatorin might inhibit ATP-induced mucin secretion by directly acting on airway mucin-secreting cells. Therefore, imperatorin should further be investigated for the possible use as mucoregulators in the treatment of inflammatory airway diseases.