• Title/Summary/Keyword: ATPase-positive dendritic cell

Search Result 8, Processing Time 0.019 seconds

The Change of ATPase-positive Dendritic Cell and the Effect of Green Tea in Mouse Skin by Ultraviolet B Irradiation (자외선 B 조사에 의한 마우스 피부 ATPase 양성 가지세포의 변화 및 녹차투여의 효과)

  • Kim Sung-Ho;Kim Se-Ra;Lee Hae-June;Lee Jin-Hee;Kim Yu-Jin;Kim Jong-Choon;Jang Jong-Sik;Jo Sung-Kee
    • Toxicological Research
    • /
    • v.20 no.4
    • /
    • pp.315-320
    • /
    • 2004
  • In this study we assessed the influences of ultraviolet (UV) light B radiation on epidermal ATPase-positive dendritic cell (DC) and the effect of green tea treatment in ICR mouse. The extent of changes following 200 mJ/$cm^2$ (0.5 mW/sec) was studied at 0, 6, 12, 18, 24, 30 or 36 hours after exposure. SBCs were decreased by 6 hours after irradiation. There was tendency to decrease from 6 hours to 24 hours and had little further change from then to 36 hours after irradiation. The mice that received 0, 50, 100, 200, 300 or 400 mJ/$cm^2$ of UVB were examined 24 hours after irradiation. The DCs were decreased as the radiation dose increases from 100 to 400 mJ/$cm^2$. The frequency of UVB (200 mJ/$cm^2$)-induced DC decrease was reduced by treatment of green tea (i.p. and topical application, p<0.01).

Morphological studies on the dendritic cells in the mammary gland I. Appearance of the ATPase-positive dendritic cells (유선조직내에 출현하는 dendritic cell의 형태학적 연구 I. ATPase-positive dendritic cell의 분포양상)

  • Ryu, Si-yun;Lee, Cha-soo
    • Korean Journal of Veterinary Research
    • /
    • v.28 no.2
    • /
    • pp.227-239
    • /
    • 1988
  • In order to investigate the morphological characteristics of dendritic cells in the mammary gland, the appearance on the clear cells(CLs) or ATPase-positive dendritic cells(APDCs) have been observed by the light microscope. The results obtained were summarized as follows: CLs were observed in the mammary tissues of the experimental animals, such as mice, rats, guinea pigs, rabbits, cats, dogs, pigs, cows and Korean native goats, and these CLs were confirmed as the ATPase-positive cells of typical dendritic appearance(APDCs), The APDCs were distributed in between the secretory epithelial cells, between the secretory epithelial cells and the myoepithelial cells, the basal area of the secretory epithelial cells, the interalveolar and interlobular connective tissues, and in between the epithelial cells of secretory duct. The APDCs were observed more frequently during the middle period of lactation than the other periods, and were irregularly or uniformly distributed according to the location. During the middle period of lactation, there were notable quantitative differences in the APDSs depending on the mammary glands of mice, rats, guinea pigs, rabbits and cats, The most prominent differences were recognized among the mice, guinea pigs and cats. The number of AP DCs per unit area was statistically fewer in the guinea pigs($209.07{\pm}51.75cells/mm^2$) than in the mice($221.00{\pm}50.94cells/mm^2$) and cats($223.56{\pm}49.68cells/mm^2$) (respectively, p<0.05, p<0.05). Among the A/J, DBA/2, C57BL/6 and NIH(GP) mice, the mean densities of APDCs was statistically significantly fewer in the DBA/2($196.65{\pm}43.47cells/mm^2$) than in the C57BL/6($248.40{\pm}41.40cells/mm^2$) and NIH(GP) ($235.98{\pm}55.89cells/mm^2$) (respectively, p<0.0000, p<0.0000), however no significant difference between the C57BL/6 and the NIH(GP) was recognized (p>0.1). Among the F344, SD and W rats, the statistical analysis were confirmed that there were significantly fewer APDCs in the F344($198.72{\pm}47.61cells/mm^2$) than in the SD($227.70{\pm}41.40cells/mm^2$) and W($223.56{\pm}49.68cells/mm^2$) (respectively, p<0.0000, p<0.0001), however no significant difference between the SD and the W was recognized(p>0.1). The mean difference between the inbred and the noninbred counts in the mice was statistically significant (p<0.0001), and the similar result was presented in the rats(p<0.0000).

  • PDF

Morphological studies on the dendritic cells in the mammary gland II. Electron microscopic observations (유선조직내에 출현하는 dendritic cell의 형태학적 연구 II. 전자현미경적 관찰)

  • Ryu, Si-yun;Lee, Cha-soo
    • Korean Journal of Veterinary Research
    • /
    • v.28 no.2
    • /
    • pp.241-249
    • /
    • 1988
  • In order to investigate the morphological characteristics of dendritic cells in the mammary gland of the mouse (C57 BL/6), rat(W), rabbit and cat, the fine structures of the dendritic cells have been observed by the electron microscope. The results obtained were summarized as follows: The dendritic cells with the well-developed processes had an irregular shape, and lacked the desmosome. The pinocytotic vesicles and tubular invaginations of the cell membrane were frequently observed, and the mitochondria with the well-developed cristae were located in the restricted region in the cytoplasm of the dendritic cells. The nuclei of dendritic cells were indented, In the mice and rats, the dendritic cells had a few Langerhans cell granules(Birbeck granules). From the above results, it is confirmed that the ATPase-positive dendritic cells in the mammary gland are the Langerhans cells.

  • PDF

The effect of Bu-Zhong-Yi-Qi-Tang on ultraviolet B-induced skin damages in mouse (자외선 B 조사 마우스에서 피부손상에 대한 보중익기탕의 효과)

  • Kim, Joong-Sun;Lee, Hae-June;Song, Myoung-Sub;Seo, Heung-Sik;Moon, Changjong;Kim, Jong-Choon;Bae, Chun-Sik;Jo, Sung-Kee;Kim, Sung-Ho
    • Korean Journal of Veterinary Research
    • /
    • v.49 no.1
    • /
    • pp.17-22
    • /
    • 2009
  • The effect of Bu-Zhong-Yi-Qi-Tang (BZYQT) on the changes of ultraviolet (UV) light B radiation-induced apoptotic sunburn cell (SBC) and epidermal ATPase-positive dendritic cell (DC) in SKH1- hr or ICR mouse were investigated. The mice were treated with UVB (200 mJ/$cm^2$) and were sacrificed 24 h later. BZYQT (50 mg/kg of body weight) or vehicle (saline) was given i.p. at 36 and 12 h before irradiation, and 30 min after irradiation or BZYQT cream (0.2%) or cream base (vehicle) was topically treated at 24 h and 15 min before irradiation, and immediately after irradiation. The skin of SKH1-hr mouse prepared from the back of untreated mice exhibited about 0.3 SBC/cm length of epidermis, and 24 h after UV irradiation, the applied areas show an increased number of SBCs. But the frequency of UVB-induced SBC formation was reduced by intraperitoneal injection of BZYQT extract (p < 0.01). The numbers of DC in normal ICR mouse were 628.00 ${\pm}$ 51.56 or 663.20 ${\pm}$ 62.58 per $mm^2$ of ear epidermis. By 1 day after UVB treatment, the number of ATPase-positive cells/$mm^2$ were decreased by 39.0% or 27.1% in i.p. or topical application group with vehicle. Treatment of BZYQT was associated with increase of 33.9% in i.p. group (p < 0.05) or 2.7% in topical application group in the number of ATPase positive cells compared with the irradiation control group. The results presented herein that BZYQT administration could reduce the extent of skin damages produced by UVB.

The Effect of Red Ginseng on Ultraviolet B-induced Skin Damages in Mouse (자외선 B 조사 마우스에서 피부손상에 대한 홍삼의 효과)

  • Lee, Hae-June;Kim, Se-Ra;Kim, Joong-Sun;Moon, Chang-Jong;Kim, Jong-Choon;Bae, Chun-Sik;Jang, Jong-Sik;Jo, Sung-Kee;Kim, Sung-Ho
    • Journal of Ginseng Research
    • /
    • v.30 no.4
    • /
    • pp.194-198
    • /
    • 2006
  • The effects of red ginseng (RG) on the changes of ultraviolet (UV) light B radiation-induced apoptotic sun-burn cell (SBC) and epidermal ATPase-positive dendritic cell (DC) in SKH 1-hr or ICR mouse were investigated. The mice were treated with UVB ($200mJ/cm^2$) and were sacrificed 24 hours later. RG (50 mg/kg of body weight) or vehicle (saline) was given i.p. at 36 and 12 hours before irradiation, and 30 minutes after irradiation. RG cream (0.2%) or cream base (vehicle) was also topically treated at 24 hours and 15 minutes before irradiation, and immediately after irradiation. The skin of SKH 1-hr mouse prepared from the back of untreated mice exhibited about 0.3 SBC/cm length of epidermis, and 24 hours after UV irradiation, the applied areas show an increased number of SBCs. But the frequency of UVB-induced SBC formation was significantly reduced by intraperitoneal injection of RG extract. The numbers of DC in normal ICR mouse were $628.00{\pm}51.56\;or\;663.20{\pm}62.58\;per\;mm^2$ of ear epidermis. By 1 day after UVB treatment, the number of ATPase-positive $cells/mm^2$ were decreased by 39.0% or 27.1% in i.p. or topical application group with vehicle. The frequency of UVB ($200mJ/cm^2$)-induced DC decrease was reduced by treatment of RG as 31.3% in i.p. group and 22.4% in topical application group compared with the irradiation control group. The results presented herein that RG administration could reduce the extent of skill damages produced by UVB.

Up-Regulation of RANK Expression via ERK1/2 by Insulin Contributes to the Enhancement of Osteoclast Differentiation

  • Oh, Ju Hee;Lee, Na Kyung
    • Molecules and Cells
    • /
    • v.40 no.5
    • /
    • pp.371-377
    • /
    • 2017
  • Despite the importance of the receptor activator of nuclear factor (NF)-kappaB ligand (RANKL)-RANK signaling mechanisms on osteoclast differentiation, little has been studied on how RANK expression is regulated or what regulates its expression during osteoclastogenesis. We show here that insulin signaling increases RANK expression, thus enhancing osteoclast differentiation by RANKL. Insulin stimulation induced RANK gene expression in time- and dose-dependent manners and insulin receptor shRNA completely abolished RANK expression induced by insulin in bone marrow-derived monocyte/macrophage cells (BMMs). Moreover, the addition of insulin in the presence of RANKL promoted RANK expression. The ability of insulin to regulate RANK expression depends on extracellular signal-regulated kinase 1/2 (ERK1/2) since only PD98059, an ERK1/2 inhibitor, specifically inhibited its expression by insulin. However, the RANK expression by RANKL was blocked by all three mitogen-activated protein (MAP) kinases inhibitors. The activation of RANK increased differentiation of BMMs into tartrate-resistant acid phosphatase-positive ($TRAP^+$) osteoclasts as well as the expression of dendritic cell-specific transmembrane protein (DC-STAMP) and d2 isoform of vacuolar ($H^+$) ATPase (v-ATPase) Vo domain (Atp6v0d2), genes critical for osteoclastic cell-cell fusion. Collectively, these results suggest that insulin induces RANK expression via ERK1/2, which contributes to the enhancement of osteoclast differentiation.

Pathological studies on exudative epidermitis in experimentally infected pigs II. Immunohistochemistry and electron microscopy on the skin (실험적 돼지 삼출성 표피염에 관한 병리학적 연구 II. 피부의 면역조직화학적 및 전자현미경적 관찰)

  • Oh, Kyu-shil;Lee, Cha-soo
    • Korean Journal of Veterinary Research
    • /
    • v.35 no.3
    • /
    • pp.553-562
    • /
    • 1995
  • To elucidate pathologic change of skin in porcine exudative epidermitis, immunohistochemical and electron microscopical observations were carried out in the skin of the suckling pigs inoculated with Staphylococcus hyicus subsp hyicus which were isolated from natural case. In immunohistochemistry, ATPase-positive dendritic cells were more populated in epidermo-dermal junctional areas and perivascular area in dermis than in epidermal area as the disease was proceeded. These dendritic cells were identified as Langerhans cell by immunoperoxidase staining and these cells were populated granulomatous bodies. Electron microscopical study showed various retrogressive degeneration and vacuolation of epidermal cell organelles with retention of amorphorous exudates in intercellular space, and cellular seperation. Langerhans cells present in intercellular space of epidermis were populated in epidermo-dermal junctional areas, in dermis, and around granulomatous bodies. Langerhans cells contained decreased Birbeck granules in number but increased lysosome and ribosome. These cells were in contact with lymphocytes. This study was discussed relation between the various immunocytes and the formation of granulomatous bodies, and this inflammation was considered as delayed type hypersensitivity.

  • PDF

The Effect of Bamboo (Phyllostachys nigra var. henenis Strapf) Leaf Extract on Ultraviolet B-induced Skin Damages in Mouse (자외선 B 조사 마우스에서 피부손상에 대한 분죽 (Phyllostachys nigra var. henenis Strapf)잎 추출물의 효과)

  • Chae, Se-Lim;Lee, Hae-June;Moon, Chang-Jong;Kim, Jong-Choon;Bae, Chun-Sik;Kang, Seong-Soo;Jang, Jong-Sik;Jo, Sung-Kee;Kim, Sung-Ho
    • Journal of Radiation Protection and Research
    • /
    • v.32 no.2
    • /
    • pp.65-69
    • /
    • 2007
  • The effects of bamboo (Phyllostachys nigra var. henenis Strapf) leaf extract (BLE) on the changes of ultraviolet (UV) light B radiation-induced apoptotic sunburn cell (SBC) and epidermal ATPase-positive dendritic cell (DC) in SKH1-hr or ICR mouse were investigated. The mice were treated with UVB ($200mJ/cm^2$) and were sacrificed 24 hours later. BLE (50 mg/kg of body weight) or vehicle (saline) was given i.p. at 36 and 12 hours before irradiation, and 30 minutes after irradiation. BLE cream (0.2%) or cream base (vehicle) was also topically treated at 24 hours and 15 minutes before irradiation, and immediately after irradiation. The skin of SKH1-hr mouse prepared from the back of untreated mice exhibited about 0.3 SBC/cm length of epidermis, and 24 hours after UV irradiation, the applied areas show an increased number of SBCs. But the frequency of UVB-induced SBC formation was significantly reduced by intraperitoneal injection (59.0%) and topical application (31.8%) of BLE extract. The numbers of DC in normal ICR mouse were $628.00{\pm}51.56\;or\;663.20{\pm}62.58\;per\;mm^2$ of ear epidermis. By 1 day after UVB treatment, the number of ATPase-positive $cells/mm^2$ were decreased by 39.0% or 27.1% in i.p. or topical application group with vehicle. The frequency of UVB ($200mJ/cm^2$)-induced DC decrease was reduced by treatment of BLE as 25.7% in i.p. group and 3.2% in topical application group compared with the irradiation control group. The results presented herein that BLE administration could reduce the extent of skin damages produced by UVB.