• 제목/요약/키워드: Organ specific induction

검색결과 12건 처리시간 0.019초

원형탈모증(alopecia areata)의 최신 이해와 치료 (Advance Understanding and New Treatment of Alopecia Areata)

  • 강경화
    • 생명과학회지
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    • 제26권11호
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    • pp.1345-1354
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    • 2016
  • 원형탈모증은 흔하게 발병하고 두피와 전신에 모발의 탈락을 일으키는 모낭조직 특이 자가면역질환이다. 모낭은 자체적으로 면역체계와 내분비 환경을 가지고 각 모발주기 단계에 따라 다른 면역 상태를 나타내는 특이한 기관이다. 성장기 모낭의 면역특권의 파괴는 모낭상피 MHC class I 발현과 자가반응성 CD8+T세포에 대한 자가항원 발현을 유도하는 자가면역의 공격을 일으키고 원형탈모증을 유발한다. 임상적 실험적 연구에 의하면, 심리적 스트레스도 모낭 면역/호르몬 체계에 영향을 미쳐 원형탈모증의 유도에 관여할 수 있다고 지적한다. 원형탈모증의 핵심적인 병리기전은 면역특권 수호자(ACTH, ${\alpha}-MSH$$TGF-{\beta}$ 등), 자연살해세포그룹 2D-양성(NKG2D+) 세포(NK 세포와 CD8+T 세포 등)와 스트레스 호르몬(CRH와 substance P)과 관련되어 있다. 효과적인 치료법은 여전히 요구되고 있다. 앞으로 치료목표 중의 하나는 스트레스를 포함한 모낭 면역특권을 개선하는 것일 것이다. 최근 연구는 건선, 아토피피부염, 류마티스 관절염 같은 다른 자가면역질환에서 사용되는 JAK억제제와 면역조절제, Tregs, 혈소판풍부혈장요법, 스타틴과 프로스타글란딘 유사제가 원형탈모증에 효과적이라고 보고하였다. 본 논문은 모낭주위 내분비/면역과 관련된 발병기전에 대한 새로운 이해와 원형탈모증의 새로운 치료법에 대해 고찰하였다.

주조직적합항원이 불일치하는 마우스 동종 조혈모세포이식에서 IL-2로 유도된 CD4+CD25+ T세포를 이용한 이식편대숙주병의 억제 (Inhibition of Graft Versus Host Disease Using CD4+CD25+ T Cells Induced with Interleukin-2 in Mismatched Allogeneic Murine Hematopoietic Stem Cell Transplantation)

  • 현재호;정대철;정낙균;박수정;민우성;김태규;최병옥;김원일;한치화;김학기
    • IMMUNE NETWORK
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    • 제3권4호
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    • pp.287-294
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    • 2003
  • Background: In kidney transplantation, donor specific transfusion may induce tolerance as a result of some immune regulatory cells against the graft. In organ transplantation, the immune state arises from a relationship between the immunocompromised graft and the immunocompetent host. However, a reverse immunological situation exists between the graft and the host in hematopoietic stem cell transplantation (HSCT). In addition, early IL-2 injections after an allogeneic murine HSCT have been shown to prevent lethal graft versus host disease (GVHD) due to CD4+ cells. We investigated the induction of the regulatory CD4+CD25+ cells after a transfusion of irradiated recipient cells with IL-2 into a donor. Methods: The splenocytes (SP) were obtained from 6 week-old BALB/c mice ($H-2^d$) and irradiated as a single cell suspension. The donor mice (C3H/He, $H-2^k$) received $5{\times}10^6$ irradiated SP, and 5,000 IU IL-2 injected intraperitoneally on the day prior to HSCT. The CD4+CD25+ cell populations in SP treated C3H/He were analyzed. In order to determine the in vivo effect of CD4+CD25+ cells, the lethally irradiated BALB/c were transplanted with $1{\times}10^7$ donor BM and $5{\times}10^6$ CD4+CD25+ cells. The other recipient mice received either $1{\times}10^7$ donor BM with $5{\times}10^6$ CD4+ CD25- cells or the untreated SP. The survival and GVHD was assessed daily by a clinical scoring system. Results: In the MLR assay, BALB/c SP was used as a stimulator with C3H/He SP, as a responder, with or without treatment. The inhibition of proliferation was $30.0{\pm}13%$ compared to the control. In addition, the MLR with either the CD4+CD25+ or CD4+CD25- cells, which were isolated by MidiMacs, from the C3H/He SP treated with the recipient SP and IL-2 was evaluated. The donor SP treated with the recipient cells and IL-2 contained more CD4+CD25+ cells ($5.4{\pm}1.5%$) than the untreated mice SP ($1.4{\pm}0.3%$)(P<0.01). There was a profound inhibition in the CD4+CD25+ cells ($61.1{\pm}6.1%$), but a marked proliferation in the CD4+CD25- cells ($129.8{\pm}65.2%$). Mice in the CD4+CD25+ group showed low GVHD scores and a slow progression from the post-HSCT day 4 to day 9, but those in the control and CD4+CD25- groups had a high score and rapid progression (P<0.001). The probability of survival was 83.3% in the CD4+CD25+ group until post-HSC day 35 and all mice in the control and CD4+CD25- groups died on post-HSCT day 8 or 9 (P=0.0105). Conclusion: Donor graft engineering with irradiated recipient SP and IL-2 (recipient specific transfusion) can induce abundant regulatory CD4+CD25+ cells to prevent GVHD.