• 제목/요약/키워드: ERK5

검색결과 375건 처리시간 0.026초

Korean Red Ginseng water extract inhibits cadmium-induced lung injury via suppressing MAPK/ERK1/2/AP-1 pathway

  • Mitra, Ankita;Rahmawati, Laily;Lee, Hwa Pyoung;Kim, Seung A.;Han, Chang-Kyun;Hyun, Sun Hee;Cho, Jae Youl
    • Journal of Ginseng Research
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    • 제46권5호
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    • pp.690-699
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    • 2022
  • Background: Few studies reported the therapeutic effect of Korean Red Ginseng (KRG) in lung inflammatory diseases. However, the anti-inflammatory role and underlying molecular in cadmium-induced lung injury have been poorly understood, directly linked to chronic lung diseases (CLDs): chronic obstructive pulmonary disease (COPD), cancer etc. Therefore, in this study we aim to investigate the therapeutic activities of water extract of KRG (KRG-WE) in mouse cadmium-induced lung injury model. Method: The anti-inflammatory roles and underlying mechanisms of KRG-WE were evaluated in vitro under cadmium-stimulated lung epithelial cells (A549) and HEK293T cell line and in vivo in cadmium-induced lung injury mouse model using semi-quantitative polymerase chain reaction (RT-PCR), quantitative real-time PCR (qPCR), luciferase assay, immunoblotting, and FACS. Results: KRG-WE strongly ameliorated the symptoms of CdSO4-induced lung injury in mice according to total cell number in bronchoalveolar lavage fluid (BALF) and severity scores as well as cytokine levels. KRG-WE significantly suppressed the upregulation of inflammatory signaling comprising mitogen-activated protein kinases (MAPK) and their upstream enzymes. In in vitro study, KRG-WE suppressed expression of interleukin (IL)-6, matrix metalloproteinase (MMP)-2, and IL-8 while promoting recovery in CdSO4-treated A549 cells. Similarly, KRG-WE reduced phosphorylation of MAPK and c-Jun/c-Fos in cadmium-exposed A549 cells. Conclusion: KRG-WE was found to attenuate symptoms of cadmium-induced lung injury and reduce the expression of inflammatory genes by suppression of MAPK/AP-1-mediated pathway.

Modulation of Autophagy is a Potential Strategy for Enhancing the Anti-Tumor Effect of Mebendazole in Glioblastoma Cells

  • Jo, Seong Bin;Sung, So Jung;Choi, Hong Seok;Park, Jae-Sung;Hong, Yong-Kil;Joe, Young Ae
    • Biomolecules & Therapeutics
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    • 제30권6호
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    • pp.616-624
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    • 2022
  • Mebendazole (MBZ), a microtubule depolymerizing drug commonly used for the treatment of helminthic infections, has been suggested as a repositioning candidate for the treatment of brain tumors. However, the efficacy of MBZ needs further study to improve the beneficial effect on the survival of those patients. In this study, we explored a novel strategy to improve MBZ efficacy using a drug combination. When glioblastoma cells were treated with MBZ, cell proliferation was dose-dependently inhibited with an IC50 of less than 1 µM. MBZ treatment also inhibited glioblastoma cell migration with an IC50 of less than 3 µM in the Boyden chamber migration assay. MBZ induced G2-M cell cycle arrest in U87 and U373 cells within 24 h. Then, at 72 h of treatment, it mainly caused cell death in U87 cells with an increased sub-G1 fraction, whereas polyploidy was seen in U373 cells. However, MBZ treatment did not affect ERK1/2 activation stimulated by growth factors. The marked induction of autophagy by MBZ was observed, without any increased expression of autophagy-related genes ATG5/7 and Beclin 1. Co-treatment with MBZ and the autophagy inhibitor chloroquine (CQ) markedly enhanced the anti-proliferative effects of MBZ in the cells. Triple combination treatment with temozolomide (TMZ) (another autophagy inducer) further enhanced the anti-proliferative effect of MBZ and CQ. The combination of MBZ and CQ also showed an enhanced effect in TMZ-resistant glioblastoma cells. Therefore, we suggest that the modulation of protective autophagy could be an efficient strategy for enhancing the anti-tumor efficacy of MBZ in glioblastoma cells.

AT9283, 1-Cyclopropyl-3-(3-(5-(Morpholinomethyl)-1H-Benzo[d] Imidazole-2-yl)-1H-Pyrazol-4-yl) Urea, Inhibits Syk to Suppress Mast Cell-Mediated Allergic Response

  • Kim, Su Jeong;Choi, Min Yeong;Min, Keun Young;Jo, Min Geun;Kim, Jie Min;Kim, Hyung Sik;Kim, Young Mi
    • Biomolecules & Therapeutics
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    • 제30권6호
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    • pp.520-528
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    • 2022
  • Mast cells are an effector cell that plays a pivotal role in type I hypersensitive immune responses. Mast cells exist in connective tissues, such as skin and mucosal tissue, and contain granules which contain bioactive substances such as histamine and heparin in cells. The granules of mast cells are secreted by antigen stimulation to cause the type I allergic hypersensitivity. In addition, stimulated by antigen, mast cells synthesize and secrete various eicosanoids and cytokines. While AT9283 is known to have anticancer effects, the therapeutic effect of AT9283 on allergic disorders is completely unknown. In this study, it was found that AT9283 reversibly inhibited antigen-IgE binding-induced degranulation in mast cells (IC50, approx. 0.58 μM) and suppressed the secretion of the inflammatory cytokines IL-4 (IC50, approx. 0.09 μM) and TNF-α (IC50, approx. 0.19 μM). For a mechanism of mast cell inhibition, while not inhibiting Syk phosphorylation, AT9283 suppressed the activation of LAT, a downstream substrate protein of Syk, in a dose-dependent manner. As expected, AT9283 also inhibited the activation of PLCγ1 and Akt, downstream signaling molecules of Syk/LAT, and MAP kinases such as JNK, Erk1/2, and P38. In an in vitro protein tyrosine kinase assay, AT9283 directly inhibited Syk activity. Next, AT9283 dose-dependently inhibited passive cutaneous anaphylaxis (PCA), an IgE-mediated allergic acute response, in mice (ED50, approx. 34 mg/kg, p.o.). These findings suggest that AT9283 has potential to use as a new drug for alleviating the symptoms of IgE-mediated allergic disorders.

Picropodophyllotoxin Inhibits Cell Growth and Induces Apoptosis in Gefitinib-Resistant Non-Small Lung Cancer Cells by Dual-Targeting EGFR and MET

  • Jin-Young, Lee;Bok Yun, Kang;Sang-Jin, Jung;Ah-Won, Kwak;Seung-On, Lee;Jin Woo, Park;Sang Hoon, Joo;Goo, Yoon;Mee-Hyun, Lee;Jung-Hyun, Shim
    • Biomolecules & Therapeutics
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    • 제31권2호
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    • pp.200-209
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    • 2023
  • Patients with non-small-cell lung cancer (NSCLC) with epidermal growth factor receptor (EGFR) amplification or sensitive mutations initially respond to the tyrosine kinase inhibitor gefitinib, however, the treatment becomes less effective over time by resistance mechanism including mesenchymal-epithelial transition (MET) overexpression. A therapeutic strategy targeting MET and EGFR may be a means to overcoming resistance to gefitinib. In the present study, we found that picropodophyllotoxin (PPT), derived from the roots of Podophyllum hexandrum, inhibited both EGFR and MET in NSCLC cells. The antitumor efficacy of PPT in gefitinib-resistant NSCLC cells (HCC827GR), was confirmed by suppression of cell proliferation and anchorage-independent colony growth. In the targeting of EGFR and MET, PPT bound with EGFR and MET, ex vivo, and blocked both kinases activity. The binding sites between PPT and EGFR or MET in the computational docking model were predicted at Gly772/Met769 and Arg1086/Tyr1230 of each ATP-binding pocket, respectively. PPT treatment of HCC827GR cells increased the number of annexin V-positive and subG1 cells. PPT also caused G2/M cell-cycle arrest together with related protein regulation. The inhibition of EGFR and MET by PPT treatment led to decreases in the phosphorylation of the downstream-proteins, AKT and ERK. In addition, PPT induced reactive oxygen species (ROS) production and GRP78, CHOP, DR5, and DR4 expression, mitochondrial dysfunction, and regulated involving signal-proteins. Taken together, PPT alleviated gefitinib-resistant NSCLC cell growth and induced apoptosis by reducing EGFR and MET activity. Therefore, our results suggest that PPT can be a promising therapeutic agent for gefitinib-resistant NSCLC.

Immune Enhancement Effects of Neutral Lipids, Glycolipids, Phospholipids from Halocynthia aurantium Tunic on RAW264.7 Macrophages

  • A-yeong Jang;Weerawan Rod-in;Il-shik Shin;Woo Jung Park
    • Journal of Microbiology and Biotechnology
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    • 제34권2호
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    • pp.476-483
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    • 2024
  • Fractionated lipids of Halocynthia aurantium (Pyuridae) have been demonstrated to possess anti-inflammatory properties. However, their modulatory properties have not been reported yet. Thus, the objective of this study was to determine immune enhancing effects of fractionated lipids from H. aurantium tunic on macrophage cells. The tunic of H. aurantium was used to isolate total lipids, which were then subsequently separated into neutral lipids, glycolipids, and phospholipids. RAW264.7 cells were stimulated with different concentrations (0.5, 1.0, 2.0, and 4.0%) of each fractionated lipid. Cytotoxicity, production of NO, expression levels of immune-associated genes, and signaling pathways were then determined. Neutral lipids and glycolipids significantly stimulated NO and PGE2 production and expression levels of IL-1β, IL-6, TNF-α, and COX-2 in a dose-dependent manner, while phospholipids ineffectively induced NO production and mRNA expression. Furthermore, it was found that both neutral lipids and glycolipids increased NF-κB p-65, p38, ERK1/2, and JNK phosphorylation, suggesting that these lipids might enhance immunity by activating NF-κB and MAPK signaling pathways. In addition, H. aurantium lipids-induced TNF-α expression was decreased by blocking MAPK or NF-κB signaling pathways. Phagocytic activity of RAW 264.7 cells was also significantly enhanced by neutral lipids and glycolipids. These results suggest that neutral lipids and glycolipids from H. aurantium tunic have potential as immune-enhancing materials.

신경세포에서 신경성장인자(nerve growth factor)의 조절에 미치는 천문동(Asparagus cochinchinensis) 열수추출물의 영향 (Effects of an Aqueous Extract of Asparagus cochinchinensis on the Regulation of Nerve Growth Factor in Neuronal Cells)

  • 이현아;김지은;송성화;성지은;정민기;김동섭;손홍주;이충열;이희섭;황대연
    • 생명과학회지
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    • 제26권5호
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    • pp.509-518
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    • 2016
  • 천문동(Asparagus cochinchinensis)은 북아시아 지역에서 열병, 감기, 신장질환, 유방암, 염증질환, 뇌질환 등의 치료에 오랫동안 사용되어온 약용식물(medicinal plant)이다. 비록, 천문동의 항염증(ani-inflammatory) 효능에 대한 일부 연구들이 수행되었지만, 신경세포에서 항염증작용과 신경성장인자(nerve growth factor, NGF)의 연관성에 대한 연구는 수행된바 없다. 따라서, 본 연구에서는 신경세포에서 신경성장인자의 분비와 작용기전에 대한 천문동 열수추출물(aqueous extract from A. cochinchinensis, AEAC)의 영향을 연구하였다. AEAC로 처리된 B35세포의 배양액에 NGF단백질의 농도는 대조물질(vehicle) 처리군에 비하여 유의적으로 증가하였으며, 특별한 독성은 관찰되지 않았다. 또한, NGF mRNA의 발현도 단백질의 농도변화와 유사한 양상을 나타내었다. 더불어, B35세포로부터 분비된 NGF의 생리활성을 확인하기 위해, AEAC-조정배지(conditioned medium)를 미분화된 PC12세포에 처리한 후 이들 세포의 신경염성 성장(neuritic outgrowth)을 관찰하였다. PC12세포의 수상돌기 길이(dendritic length)는 vehicle처리군에 비하여 AEAC-조정배지처리군에서 유의적으로 증가하였다. 또한, High affinity NGF 수용체의 하위신호전달에 포함된 p-TrkA와 p-ERK의 발현은 AEAC-조정배지처리군에서 높았지만, low affinity NGF 수용체의 하위신호전달에서는 낮은 수준으로 관찰되었다. 이러한 결과는 AEAC가 신경세포에서 NGF발현과 분비의 조절에 기여하기 때문에 신경퇴행성질환(neurodegenerative disease) 치료제로서 우수한 후보물질임을 제시하고 있다.

단핵구세포주의 활성에 미치는 Zerumbone의 영향 (Enhancing the Effects of Zerumbone on THP-1 Cell Activation)

  • 이민호;김사현;유성률;이평재;문철
    • 대한임상검사과학회지
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    • 제49권1호
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    • pp.1-7
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    • 2017
  • Zerumbone은 야생 생강의 일종인 Zingiber zerumbet Smith의 정유(essential oil)에 포함되어 있는 주요성분으로, 다양한 연구를 통해 혈액종양을 포함한 암, 염증질환, 활성산소 감소 등에 이용할 가능성이 꾸준히 제기되어왔다. 또한 면역세포들의 증식과 세포주기진행, 사이토카인의 생성 발현에도 효과를 나타낸다고 알려져 있다. 이외에도 간보호, 통증완화, 항동맥경화, 항미생물 등 다양한 생물학적 기능이 보고되었다. 본 연구에서는 zerumbone이 단구의 활성과 기능에 어떠한 영향을 미치는지 알아보고자 하였다. 우선, 단구세포주 THP-1세포의 활성이 zerumbone에 의해 증가되는 것을 확인하였다. LPS 처리 후 가장 강한 THP-1 증식 증가는 $5{\mu}M$의 zerumbone 처리 시 나타났으며, 세포 단독 증식 증가는 $10{\mu}M$의 zerumbone 처리 시 가장 증가하였다. 반면에 $50{\mu}M$ 의 zerumbone 처리 시에는 LPS 존재 여부와 관계없이 급격한 증식 감소가 관찰되었다. LPS의 처리에 의해 유도되는 신호전달 단백질 Erk의 인산화도 zerumbone에 의해 증가되었다. 가장 강한 인산화 증가는 증식 감소가 나타난 $50{\mu}M$의 zerumbone을 처리했을 때 관찰되었다. 전사인자 $NF-{\kappa}B$의 활성은 zerumbone 단독 처리 시에는 큰 변화가 없었지만, LPS 와 동시에 처리했을 경우 증가하는 것으로 관찰되었다. 나아가, $NF-{\kappa}B$에 의해 발현이 조절되는 염증 사이토카인 $TNF-{\alpha}$, IL-8의 전사도 zerumbone 에 의해 증가되는 것을 확인하였다. 이와 같은 결과를 통해 zerumbone이 단핵구의 증식과 활성을 강화시킬 수 있음을 확인하였다. 나아가, zerumbone이 LPS 를 보유한 세균 감염 시 단핵구 활성 증가를 통하여 효과적인 탐식과 면역반응을 강화시켜 효과적인 세균 처리에 도움을 줄 수 있을 것으로 여겨진다.

키토산 기반 나노방출제어시스템의 세포주기진행 유전자 발현 증진 효과 및 기전 (Effect and mechanism of chitosan-based nano-controlled release system on the promotion of cell cycle progression gene expression)

  • 이원중;박광만;이성복;황유정;이석원
    • 대한치과보철학회지
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    • 제59권4호
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    • pp.379-394
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    • 2021
  • 목적: 이전 연구에서 치은섬유아세포 혹은 성견 구개 연조직에 trichloroacetic acid (TCA)를 적용하는 것이 세포주기진행 유전자 발현의 변화를 일으키는 것으로 밝혀졌다. 이에 따라 본 연구에서는, hydrophobically modified glycol chitosan (HGC)기반의 나노방출제어시스템을 이용한 TCA 및 상피세포성장인자(EGF)의 순차적 방출시스템에서 이 효과를 검증하기 위하여 다양한 세포주기진행 유전자들의 발현을 규명하였다. 재료 및 방법: TCA와 EGF를 담지하는 HGC기반 나노방출제어시스템을 제작하였다. 실험군은 대조군(CON); TCA-담지형 나노방출제어시스템 투여군(EXP1); TCA- 및 EGF-담지형 나노방출제어시스템 투여군(EXP2)으로 정의되었다. 24시간 및 48시간 배양 시 37개 세포주기 유전자들의 발현을 분석하였다. 영향인자로서의 유전자 및 상관관계에 대해서도 분석하였다. 결과: Cyclins (CCNDs), cell division cycles (CDCs), cyclin-dependent kinases (CDKs), E2F transcription factors (E2Fs), extracellular signal-regulated kinases (ERKs)와 같은 다수의 유전자들과 기타 다른 세포주기 유전자들의 발현이 EXP1과 EXP2에서 상향조절되었다. E2F4, E2F5, GADD45G와 같은 세포주기차단 유전자들의 발현도 상향조절되었으나, 또다른 세포주기차단 유전자인 SMAD4의 발현은 하향조절되었다. 다중회귀분석에서 CCNA2, CDK4 그리고 ANAPC4가 ERK 유전자 발현에 가장 영향력 있는 유전자로 선정되었다. 결론: HGC기반 순차적 나노방출제어시스템을 이용한 TCA 및 EGF의 적용은 다양한 세포주기진행 유전자들의 발현을 상향조절함이 밝혀졌고, 이를 토대로 한 구강연조직증대시스템 개발의 가능성이 확보되었다.

NF-κB 신호경로에서 CLK3의 새로운 음성 조절자로서의 기능 (CLK3 is a Novel Negative Regulator of NF-κB Signaling)

  • 전별은;권찬성;이지은;우예린;김상우
    • 생명과학회지
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    • 제32권11호
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    • pp.833-840
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    • 2022
  • 만성 염증은 종양의 발생 및 진행과 밀접하게 연관되어 있다. 핵인자 kappa B (NF-κB)는 5개의 전사인자로 구성되며 염증 반응에 필수적인 역할을 한다. 다양한 암에서 NF-κB의 조절장애가 보고되고 있으며 NF-κB 조절이 암 치료에 있어 핵심 표적이 된다. 본 연구에서는 CDC Like Kinase 3 (CLK3)를 NF-κB 신호전달 경로를 조절하는 새로운 키네이스임을 확인하였다. 우리는 CLK3가 정규 및 비정규 NF-κB 신호전달경로를 억제하는 것을 밝혔다. CLK3 과발현 또는 knock-down 세포주를 이용한 루시퍼레이즈 분석 결과, 이 키네이스는 TNFα와 PMA가 유도하는 정규 NF-κB 신호전달경로 활성을 억제하였다. 또한 CLK3 과발현은 잘 알려진 비정규 NF-κB 신호경로 유도제인 NF-κB-inducing kinase (NIK) 또는 CD40에 의한 NF-κB 활성을 저해하였다. 추가적으로 CLK3의 NF-κB 신호전달 저해기전을 설명하고자 TNFα 처리 후 웨스턴 블롯 분석으로 이 키네이스 영향권 내에 있는 NF-κB 신호경로 분자들을 식별하였다. 그 결과 CLK3가 TAK1, IKKα/α, p65, IκBα 및 ERK1/2-MAPK의 인산화/활성화를 저해하여 TNFα 처리로 유도된 NF-κB 및 MAPK 신호경로를 모두 억제함을 밝혔다. 앞으로의 연구는 CLK3가 정규 및 비정규 NF-κB 경로를 억제하는 기작을 밝히는데 초점을 맞출 것이다. 위 연구 결과들을 토대로 CLK3가 NF-κB 신호전달경로의 새로운 음성 조절자로써 기능함을 제시하였다.

연교(連翹) n-BuOH 분획물의 아토피 피부염 억제 효과 (The Effects of Forsythiae Fructus n-BuOH Fraction on Atopic Dermatitis)

  • 이진화;한재경;김윤희
    • 대한한방소아과학회지
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    • 제30권3호
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    • pp.1-30
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    • 2016
  • Objectives Previous studies have found out that Forsythiae Fructus (FF) extracts have anti-atopic activities by in vitro experiment. In order to understand more about FF extracts' benefit, we subdivided FF extracts depending on systematic fractionation method by using Methylene chloride (MC), Ethyl acetate (EtOAc), n-BuOH and n-hexane (n-Hx). This study is designed to examine the effect of FF fractions on the PMA- ionomycin-induced activation of RBL-2H3 mast cell lines in vitro and on the DNCB-induced activation of NC/Nga mice in vivo. Methods For this study, we examined IL-4, IL-13 production by ELISA analysis, IL-4, IL-13, IL-31, IL-31RA and TNF-${\alpha}$ mRNA expression by real-time PCR and manifestations of AP-1 and MAPKs transcription factors by western blotting in vitro. Through in vitro experiment, we selected FF n-BuOH fraction that seems the best effective in atopic dermatitis then induced it on NC/Nga mice by DNCB. We measured mice's WBC, eosinophil and neutrophil in heart blood, IL-4, IL-5, IFN-${\gamma}$ in the spleenocyte culture supernatant, the absolute cell numbers of CD4+, CD8+, B220+CD23+, CD3+CD69+ and Gr-1+CD11b+ in the PBMCs, ALN and dorsal skin, IL-5, IL-13, IL-31, IL-31RA in the dorsal skin by real-time PCR and the distribution of immune cells by H&E on dorsal skin and ANL and toluidine blue staining on dorsal skin. Results FF n-BuOH fraction suppressed IL-4, IL-13 production and mRNA expression of IL-4, IL-13, IL-31, IL-31RA and TNF-${\alpha}$. Results from the western blot analysis showed that FF n-BuOH fraction reduced the activation of the mast cell specific transduction factors involved in AP-1 by suppressing JNK and ERK phosphorylation. In the gross, atopic dermatitis induced by DNCB in NC/Nga mice were improved by oral administration of FF n-BuOH fraction. Oral FF n-BuOH fraction also decreased the level of IgE in mice's serum and the level of IL-4 and IL-5 in the spleenocyte culture supernatant, cell numbers of CD8+, B220+CD23+ in the PBMCs, CD4+ in the ALN and CD4+, Gr-1+CD11b+ in the dorsal skin and suppressed mRNA expression of IL-5, IL-13, IL-31, IL-31RA in the dorsal skin. Histological examination showed that infiltration levels of immune cells in atopic dermatitis induced NC/Nga mice were improved by FF n-BuOH fraction. Conclusions FF n-BuOH fraction can reduce pruritus by suppressing IL-31, IL-31RA secretion and modulate molecular mediators and immune cells associated with atopic dermatitis induced in NC/Nga mice which may have played a significant role in recovering atopic dermatitis symptoms.