• Title/Summary/Keyword: mucin secretion

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Effects of Four Oriental Medicines on Secretion and Gene Expression of Mucin in Airway Epithelial Cells (가미청폐탕, 가감정기탕, 가미사물탕, 가미이중탕이 호흡기 뮤신의 분비 및 뮤신 유전자의 발현에 미치는 영향)

  • Lee, Hyun Sook;Min, Sang Yeon;Kim, Jang Hyun
    • The Journal of Pediatrics of Korean Medicine
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    • v.31 no.2
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    • pp.1-13
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    • 2017
  • Objectives In this study, the author intended to investigate whether Gami-cheongpetang (GCP), Gagam-jeongkitang (GJG), Gami-samooltang (GSM) and Gami-ijoongtang (GIJ) significantly affect in vivo (animal model) and in vitro (cultured cells) mucin secretion and MUC5AC gene expression in airway epithelial cells. Methods For in vivo experiment, the author induced hypersecretion of airway mucin in rats by introducing SO2 for 3 weeks. Enzyme-linked immunosorbent assay (ELISA) was used to assess the effects of orally-administered GCP, GJG, GSM and GIJ in vivo mucin secretion from tracheal goblet cells of rats after 1 week. Also, the effects of the agents on TNF- or EGF-induced MUC5AC gene expression in human airway epithelial cells (NCI-H292) were investigated. Possible cytotoxicities of the agents were assessed by examining the rate of survival and proliferation of NCI-H292 cells. Results (1) GCP and GJG significantly inhibited hypersecretion of in vivo mucin, although GSM and GIJ did not affect hypersecretion of in vivo mucin; (2) GCP and GJG significantly increased in vitro mucin secretion from cultured HTSE cells. However, GSM and GIJ did not affect in vitro mucin secretion from HTSE cells; (3) GCP and GJG significantly inhibited the expression levels of EGF-induced MUC5AC gene in NCI-H292 cells. However, GSM and GIJ increased the expression levels of EGF-induced MUC 5AC gene in NCI-H292 cells; (4) GCP, GJG, GSM and GIJ did not significantly inhibit the survival and proliferation of NCI-H292 cells. Conclusions These results suggest that GCP, GJG, GSM and GIJ can not only affect the secretion of mucin but also affect the expression of mucin gene. The author suggests that the effects of GCP, GJG, GSM and GIJ with their components should be further investigated by using animal experimental models that simulate the diverse pathophysiology of pulmonary diseases.

Effects of Short-term Treatment of Daidzein, Puerarin, Genistein and Tumerone on Mucin Secretion from Cultured Airway Epithelial Cells

  • Heo, Ho-Jin;Lee, Hyun-Jae;Kim, Cheol-Su;Choi, Jae-Sue;Lee, Jung-Joon;Kim, Young-Sik;Kang, Sam-Sik;Kim, Yun-Hee;Park, Yang-Chun;Seok, Jeong-Ho;Lee, Choong-Jae
    • Biomolecules & Therapeutics
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    • v.14 no.3
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    • pp.178-182
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    • 2006
  • In this study, we investigated whether daidzein, puerarin, genistein and (+)-ar-tumerone affect mucin secretion from cultured airway epithelial cells and compared with the inhibitory action of poly-L-lysine (PLL) and the stimulatory action of adenosine triphosphate (ATP) on mucin secretion. 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: daidzein, puerarin, genistein and (+)-ar-tumerone did not affect mucin secretion at the highest concentrations $(10^{-3}M)$, during 30 min of treatment period. Basically, this finding suggests that daidzein, puerarin and genistein - 3 components derived from Puerariae Radix - and (+)-ar-tumerone derived from Curcumae Rhizoma might not function as a mucoregulator in various inflammatory respiratory diseases showing mucus hypersecretion, although further studies are needed.

Effect of Intestinal Function Enhancer (KTG075) on Mucin 2 Secretion (장기능개선제-신소재(KTG075)의 대장관 내 mucin 2 분비에 미치는 영향)

  • Lee, You-Hui;Baik, Soon-Ok;Kim, Hyun-Kyung;Ryu, Myung-Hyun
    • Korean Journal of Food Science and Technology
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    • v.36 no.6
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    • pp.991-994
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    • 2004
  • Effects of formulation KTG075 from edible plants on intestinal function, particularly on Mucin 2 secretion, were examined by loperamide-induced constipation method using Sprague Dawley rats (SD rats, male). Crypt epithelial cells containing more mucus and mucus layer stained with alcian blue were significantly thicker in KTG075 group than control group. When Biogenex AM358 of antibody against Mucin 2 was used, crypt epithelial cells secreted more Mucin 2 in KTG075 group than control group. The Mucus layer at fecal surface was thinner and less mucus was recovered from mucosal surface in constipated rats than in KTG075 group. Mucus production of crypt epithelial cells and mucus contents at fecal and mucosal surfaces were reduced by loperamide-induced constipation. These results indicate formula KTG075 accelerates evacuation and activates intestines.

Effects of Morus alba L. and Natural Products Including Morusin on In Vivo Secretion and In Vitro Production of Airway MUC5AC Mucin

  • Lee, Hyun Jae;Ryu, Jiho;Park, Su Hyun;Woo, Eun-Rhan;Kim, A Ryun;Lee, Sang Kook;Kim, Yeong Shik;Kim, Ju-Ock;Hong, Jang-Hee;Lee, Choong Jae
    • Tuberculosis and Respiratory Diseases
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    • v.77 no.2
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    • pp.65-72
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    • 2014
  • Background: It is valuable to find the potential activity of regulating the excessive mucin secretion by the compounds derived from various medicinal plants. We investigated whether aqueous extract of the root bark of Morus alba L. (AMA), kuwanon E, kuwanon G, mulberrofuran G, and morusin significantly affect the secretion and production of airway mucin using in vivo and in vitro experimental models. Methods: Effect of AMA was examined on hypersecretion of airway mucin in sulfur dioxide-induced acute bronchitis in rats. Confluent NCI-H292 cells were pretreated with ethanolic extract, kuwanon E, kuwanon G, mulberrofuran G, or morusin for 30 minutes and then stimulated with phorbol 12-myristate 13-acetate (PMA) for 24 hours. The MUC5AC mucin secretion and production were measured by enzyme-linked immunosorbent assay. Results: AMA stimulated the secretion of airway mucin in sulfur dioxide-induced bronchitis rat model; aqueous extract, ethanolic extract, kuwanon E, kuwanon G, mulberrofuran G and morusin inhibited the production of MUC5AC mucin induced by PMA from NCI-H292 cells, respectively. Conclusion: These results suggest that extract of the root bark and the natural products derived from Morus alba L. can regulate the secretion and production of airway mucin and, at least in part, explains the folk use of extract of Morus alba L. as mucoregulators in diverse inflammatory pulmonary diseases.

The Effect of Daecheongryong-tang and prescription A on airway mucin secretion (Mucin 분비에 미치는 대청룡탕(大靑龍湯) 및 <석실비록(石室秘錄)> 급치법방(急治法方)에 대한 연구)

  • Park, Wan-Yeol;Suh, Woon-Gyo
    • The Journal of Internal Korean Medicine
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    • v.27 no.1
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    • pp.92-101
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    • 2006
  • Objectives : This study was done with intend to investigate whether two oriental medical prescriptions, daecheongryong-tang (DCRT) and prescription A (P-A) significantly affect mucin release from cultured hamster tracheal surface epithelial (HTSE) cells. Methods : Confluent HTSE cells were metabolically radiolabeled with $^3H$-glucosamine for 24 hrs and chased for 30 min in the presence of DCRT or P-A to assess the effect of each agent on $^3H$-mucin release. Possible cytotoxicities of each agent were assessed by measuring lactate dehydrogenase (LDH) release. Also, the effects of DCRT and P-A on contractility of isolated tracheal smooth muscle were investigated. Results were as follows : 1. DCRT significantly inhibited mucin release from cultured HTSE cells, with significant cytotoxicity. 2. P-A significantly increased mucin release from cultured HTSE cells, with significant cytotoxicity. 3. DCRT inhibited Ach-induced contraction of isolated tracheal smooth muscle. 4. P-A also inhibited Ach-induced contraction of isolated tracheal smooth muscle. Conclusion: Results suggest that DCRT and P-A have regulating effects on mucin secretion from goblet cells. Further investigation is needed, because of the value in finding novel agents to this purpose, and these oriental medical prescriptions have potential for this role.

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Studies on the Effect of Selected Oriental Herbal Medicines on Inhibitory Activity of Airway Mucus Secretion (정천화담탕(定喘化痰湯) 등 수종 방제의 호흡기 객담분비 조절 효능에 관한 실험적 연구)

  • Kim, Joon-Myoung;Lee, Chung-Jae;Park, Yang-Chun
    • The Journal of Internal Korean Medicine
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    • v.27 no.1
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    • pp.126-137
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    • 2006
  • In the present study, the author intended to investigate whether three oriental medical prescriptions named Jeongcheonhwadam-tang(JHT), Haengso-tang(HST), Socheungryong-tang(SCRT) significantly affect mucin release from cultured hamster tracheal surface epithelial (HTSE) cells. The results were as follows: (1) JHT significantly inhibited mucin release from cultured HTSE cells, without significant cytotoxicity : (2) HST significantly inhibited mucin release from cultured HTSE cells, without significant cytotoxicity : (3) SCRT significantly inhibited mucin release from cultured HTSE cells, without significant cytotoxicity : (4) JHT, HST chiefly inhibited the 'mucin' release and did not significantly affect the release of the other releasable glycoproteins with less molecular weight than mucin. These results suggest that the three herbal prescriptions specifically inhibit the release of mucin: (5) JHT significantly inhibited the expression levels of MUC SAC mRNA. This result suggests that JHT affects the synthesis of mucin at gene level in cultured HTSE cells. All agents showed no significant cytotoxicity. In view of these results, further investigation of the effects of JHT and HST are likely to be instrumental in yielding novel agents from oriental medical prescriptions which have inhibitory effects or expectorative effects on airway mucus secretion.

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Effect of Wood Vinegar Produced from Morus alba on Hypersecretion of Airway Mucus (상지(桑枝) 목초액이 호흡기 객담 과다분비에 미치는 영향)

  • Kim, Ho;Jung, Hye-Mi;Kim, Sol-Li;Seo, Un-Kyo
    • The Journal of Internal Korean Medicine
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    • v.31 no.3
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    • pp.650-666
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    • 2010
  • Objectives : In this study, the author tried to investigate whether wood vinegar produced from Morus alba (MA) significantly affects the increase in airway epithelial mucosubstances and hyperplasia of tracheal goblet cells of rats, and in vitro airway mucin secretion and PMA- or EGF- or TNF-alpha-induced MUC5AC mucin production / gene expression from human airway epithelial cells. Materials and Methods : For the in vivo experiment, the author induced hypersecretion of airway mucus and goblet cell hyperplasia by exposure of rats to SO2 over 3 weeks. Effect of orally-administered MA over 2 weeks on increase in airway epithelial mucosubstances from tracheal goblet cells of rats and hyperplasia of goblet cells were assessed using histopathological analysis after staining the epithelial tissue with alcian blue. For the in vitro experiment, confluent RTSE cells were chased for 30 min in the presence of MA to assess the effect of MA on mucin secretion by enzyme-linked immunosorbent assay (ELISA). Also, effects of MA on PMA- or EGF- or TNF-alpha-induced MUC5AC mucin production and gene expression from human airway epithelial cells (NCI-H292) were investigated. Confluent NCI-H292 cells were pretreated for 30 min in the presence of MA and treated with PMA (10 ng/ml), EGF (25 ng/ml) or TNF-alpha (0.2 nm) for 24 hrs, to assess both effects of MA on PMA- or EGF- or TNF-alpha-induced MUC5AC mucin production by enzyme-linked immunosorbent assay (ELISA) and gene expression by reverse transcription-polymerase chain reaction (RT-PCR). Possible cytotoxicities of MA in vitro were assessed by examining LDH release from RTSE cells and the rate of survival and proliferation of NCI-H292 cells. In vivo liver and kidney toxicities of MA were evaluated by measuring serum GOT/GPT activities and serum BUN/creatinine concentrations of rats after administering MA orally. Results : 1. MA decreased the amount of intraepithelial mucosubstances of rats exposed to sulfur dioxide inhalationally. 2. MA decreased in vitro mucin secretion from cultured RTSE cells. 3. MA significantly inhibited PMA-, EGF-, and TNF-alpha-induced MUC5AC mucin productions and the expression levels of MUC5AC mRNA from NCI-H292 cells. 4. MA did not show either in vitro or in vivo hepatic or renal toxicities. Conclusion : The results from this study suggests that MA can regulate the secretion, production and gene expression of airway mucin observed in diverse respiratory diseases accompanied by mucus hypersecretion and does not show in vivo toxicity to liver and kidney functions after oral administration. Effects of MA should be further studied using animal experimental models that simulate the diverse pathophysiology of respiratory diseases via future research.

Effect of Butanol Fraction of Panax ginseng Head on Gastric Lesion and Ulcer

  • Jeong, Choon-Sik
    • Archives of Pharmacal Research
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    • v.25 no.1
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    • pp.61-66
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    • 2002
  • From our previous result that Panax ginseng head extract had inhibition of gastric damages, the extract was fractionated. Among the hexane, chloroform, butanol and water fractions, butanol fraction Showed the most potent inhibition of HCl.ethanol-induced gastric lesion, aspirin-induced gastric ulcer, acetic acid-induced ulcer and Shay ulcer. Butanol fraction showed significant increase in mucin secretion, and inhibited malondialdehyde (MDA) and $H^{+}/K^{+}ATPase$ activity in the stomach. This results indicate that the effectiveness of the fraction on gastric damages might be related to inhibition of acid secretion, increment of mucin secretion and antioxidant property.

Effects of Socheongryongtang-ga-seoggo and Prescription D on Airway Mucin Secretion (소청룡탕가석고(小靑龍湯加石膏) 및 ${\ll}$석실비록${\gg}$소치법방(小治法方)이 호흡기 점액의 분비에 미치는 영향)

  • Kim, Ho;Seo, Un-Kyo
    • The Journal of Internal Korean Medicine
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    • v.27 no.4
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    • pp.895-904
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    • 2006
  • Objectives : In the present study, the author intended to investigate whether two oriental medical prescriptions named Socheongryongtang-ga-seoggo (SCTS) and Prescription D (P-D) significantly affect mucin release from cultured hamster tracheal surface epithelial (HTSE) cells. Materials and Methods : Confluent HTSE cells were metabolically radiolabeled with 3H-glucosamine for 24 hrs and chased for 30 min in the presence of SCTS or P-D to assess the effect of each agent on 3H-mucin release. Possible cytotoxicities of each agent were assessed by measuring lactate dehydrogenase (LDH) release. Also, the effects of SCTS and P-D on contractility of isolated tracheal smooth muscle were investigated. Results : SCTS did not affect mucin release from cultured HTSE cells, without cytotoxicity. However, P-D significantly increased mucin release from cultured HTSE cells. with significant cytotoxicity. SCTS inhibited Ach-induced contraction of isolated tracheal smooth muscle. P-D also inhibited Ach-induced contraction of isolated tracheal smooth muscle. Conclusions : The author suggests that the effects of SCTS and P-D with their components should be further investigated and it is valuable to find, from oriental medical prescriptions, novel agents which might regulate mucin secretion from airway goblet cells.

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Effect of Piryongbanggamgil-tang on Airway Mucin Secretion, Production, Gene Expression and Hypersecretion of Mucus (필용방감길탕이 기도 뮤신의 분비, 생성, 유전자 발현 및 점액 과다 분비에 미치는 영향)

  • Kim, Yoon Young;Min, Sang Yeon;Kim, Jang Hyun
    • The Journal of Pediatrics of Korean Medicine
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    • v.28 no.2
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    • pp.56-71
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    • 2014
  • Objectives In this study, the author tried to investigate whether piryongbang-gamgil-tang (PGGT) significantly affect in vitro airway mucin secretion, PMA- or EGF- or TNF-${\alpha}$-induced MUC5AC mucin production / gene expression from human airway epithelial cells and increase in airway epithelial mucosubstances and hyperplasia of tracheal goblet cells of rats. Materials and Methods For in vitro experiment, confluent RTSE cells were chased for 30 min in the presence of PGGT to assess the effect of PGGT on mucin secretion by enzyme-linked immunosorbent assay (ELISA). Also, effect of PGGT on PMA- or EGFor TNF-${\alpha}$-induced MUC5AC mucin production and gene expression from human airway epithelial cells (NCI-H292) were investigated. Confluent NCI-H292 cells were pretreated for 30 min in the presence of PGGT and treated with PMA (10 ng/ml) or EGF (25 ng/ml) or TNF-${\alpha}$ (0.2 nM) for 24 hrs, to assess both effect of PGGT on PMA- or EGF- or TNF-${\alpha}$-induced MUC5AC mucin production by ELISA and gene expression by reverse transcription-polymerase chain reaction (RT-PCR). For in vivo experiment, the author induced hypersecretion of airway mucus and goblet cell hyperplasia by exposure of rats to $SO_2$ during 3 weeks. Effect of orally-administered PGGT during 2 weeks on increase in airway epithelial mucosubstances from tracheal goblet cells of rats and hyperplasia of goblet cells were assesed by using histopathological analysis after staining the epithelial tissue with alcian blue. Possible cytotoxicities of PGGT in vitro were assessed by examining LDH release from RTSE cells and the rate of survival and proliferation of NCI-H292 cells. In vivo liver and kidney toxicities of PGGT were evaluated by measuring serum GOT/GPT activities and serum BUN/creatinine concentrations of rats after administering PGGT orally. Results (1) PGGT did not affect in vitro mucin secretion from cultured RTSE cells. (2) PGGT significantly inhibited PMA-, EGF-, and TNF-${\alpha}$-induced MUC5AC mucin productions and the expression levels of MUC5AC mRNA from NCI-H292 cells. (3) PGGT decreased the amount of intraepithelial mucosubstances and showed the tendency of expectorating airway mucus already produced. (4) PGGT increased LDH release from RTSE cells. However, PGGT did not show in vivo liver and kidney toxicities and cytotoxicity to NCI-H292 cells. Conclusion The result from this study suggests that PGGT can regulate the production and gene expression of airway mucin observed in diverse respiratory diseases accompanied by mucus hypersecretion and do not show in vivo toxicity to liver and kidney functions after oral administration. Effect of PGGT with their components should be further studied using animal experimental models that reflect the diverse pathophysiology of respiratory diseases through future investigations.