• 제목/요약/키워드: Hematopoietic stem cells transplantation

검색결과 49건 처리시간 0.027초

Immune reconstitution after allogeneic hematopoietic stem cell transplantation in children: a single institution study of 59 patients

  • Kim, Hyun O;Oh, Hyun Jin;Lee, Jae Wook;Jang, Pil-Sang;Chung, Nack-Gyun;Cho, Bin;Kim, Hack-Ki
    • Clinical and Experimental Pediatrics
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    • 제56권1호
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    • pp.26-31
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    • 2013
  • Purpose: Lymphocyte subset recovery is an important factor that determines the success of hematopoietic stem cell transplantation (HSCT). Temporal differences in the recovery of lymphocyte subsets and the factors influencing this recovery are important variables that affect a patient's posttransplant immune reconstitution, and therefore require investigation. Methods: The time taken to achieve lymphocyte subset recovery and the factors influencing this recovery were investigated in 59 children who had undergone HSCT at the Department of Pediatrics, The Catholic University of Korea Seoul St. Mary's Hospital, and who had an uneventful follow-up period of at least 1 year. Analyses were carried out at 3 and 12 months post-transplant. An additional study was performed 1 month post-transplant to evaluate natural killer (NK) cell recovery. The impact of pre- and post-transplant variables, including diagnosis of Epstein-Barr virus (EBV) DNAemia posttransplant, on lymphocyte recovery was evaluated. Results: The lymphocyte subsets recovered in the following order: NK cells, cytotoxic T cells, B cells, and helper T cells. At 1 month post-transplant, acute graft-versus-host disease was found to contribute significantly to the delay of $CD16^+/56^+$ cell recovery. Younger patients showed delayed recovery of both $CD3^+/CD8^+$ and $CD19^+$ cells. EBV DNAemia had a deleterious impact on the recovery of both $CD3^+$ and $CD3^+/CD4^+$ lymphocytes at 1 year post-transplant. Conclusion: In our pediatric allogeneic HSCT cohort, helper T cells were the last subset to recover. Younger age and EBV DNAemia had a negative impact on the post-transplant recovery of T cells and B cells.

소아 조혈모세포 이식 후 거대세포 바이러스 항원혈증 발생 : 위험인자와 임상 경과 (CMV antigenemia following pediatric hematopoietic stem cell transplantation : risk factors and outcomes)

  • 조은영;박영실;이대형;박지경;최상림;김선영;장필상;이동건;정낙균;김종현;정대철;조빈;허재균;강진한;김학기
    • Clinical and Experimental Pediatrics
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    • 제49권2호
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    • pp.173-180
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    • 2006
  • 목 적 : CMV 감염은 여전히 조혈모세포 이식 후 가장 중요한 감염 중 하나로 이환율과 사망률의 주요 원인이다. 조혈모세포 이식 후 CMV 감염 발생에 대한 위험인자의 분석 및 CMV pp65 항원혈증에 입각한 선제치료의 효과와 질환의 경과를 평가하고자 본 연구를 시행하였다. 방 법 : 1998년 10월부터 2003년 12월까지 가톨릭대학교 성모병원 소아과에서 이식을 시행받은 환아를 대상으로 하였다. pp66항원을 이용한 항원혈증검사를 토대로 혈연간 이식 환아의 경우 CMV 항원 양성세포가 5개 이상 발견된 경우, 비혈연간 이식 환아의 경우는 CMV 항원 양성세포가 하나라도 발견된 경우 ganciclovir 선제치료를 시작하였다. 결 과 : CMV 항원혈증은 대상 환아 213명 중 88명(41.3%)에서 관찰되었고, 각각 비혈연간 골수이식(62.5%), 비혈연간 제대혈이식(36.8%), HLA-일치 혈연간 이식(25.3%)이었다. 이식유형에 따른 CMV 항원혈증 발생확률은 비혈연간 골수이식($62.5{\pm}5.4%$)이 비혈연간 제대혈이식($36.8{\pm}7.8%$) 또는 HLA-일치 혈연간 이식($25.3{\pm}4.5%$)보다 통계적으로 유의하게 높았다. 단변량 분석에 의하면 비혈연간 이식, 이식 시 환자 연령(5세 이상), 이식 전 환자의 CMV-IgG, 전처치로 전신방사선조사의 사용 및 2도 이상의 급성 이식편대 숙주병의 발생이 CMV 항원혈증 발생의 위험인자이었다. 다변량분석에 의하면 비혈연간 이식, 이식전 환자의 CMV-IgG 양성상태 및 2도 이상의 급성 이식편대 숙주병의 발생이 독립적인 위험인자이었다. 이식환자 213명 중 7례(3.3%)에서 CMV 질환이 발생하였다(고항원혈증에서 6례 발생). 결 론 : 소아 조혈모세포 이식에 있어서 CMV 감염의 위험인자는 이식 전 환자의 CMV 혈청학적 상태, 조혈모세포 공급원, 급성 이식편대 숙주병이었으며, CMV 항원혈증에 입각한 ganciclovir 선제치료는 CMV 질환의 발생을 예방하는데 효과적이었다.

Attenuation of Hepatic Graft-versus-host Disease in Allogeneic Recipients of MyD88-deficient Donor Bone Marrow

  • Lim, Ji-Young;Lee, Young-Kwan;Lee, Sung-Eun;Ju, Ji-Min;Park, Gyeongsin;Choi, Eun Young;Min, Chang-Ki
    • IMMUNE NETWORK
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    • 제15권3호
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    • pp.125-134
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    • 2015
  • Acute graft-versus-host-disease (GVHD) is characterized by selective damage to the liver, the skin, and the gastrointestinal tract. Following allogeneic hematopoietic stem cell transplantation, donor bone marrow (BM) cells repopulate the immune system of the recipient. We previously demonstrated that the acute intestinal GVHD (iGVHD) mortality rate was higher in MyD88-deficient BM recipients than that in the control BM recipients. In the present study, the role of MyD88 (expressed by donor BM) in the pathophysiology of hepatic GVHD (hGVHD) was examined. Unlike iGVHD, transplantation with MyD88-deficient T-cell depleted (TCD) BM attenuated hGVHD severity and was associated with low infiltration of T cells into the liver of the recipients. Moreover, GVHD hosts, transplanted with MyD88-deficient TCD BM, exhibited markedly reduced expansion of $CD11b^+Gr-1^+$ myeloidderived suppressor cells (MDSC) in the liver. Adoptive injection of the MDSC from wild type mice, but not MyD88-deficient mice, enhanced hepatic T cell infiltration in the MyD88-deficient TCD BM recipients. Pre-treatment of BM donors with LPS increased MDSC levels in the liver of allogeneic wild type BM recipients. In conclusion, hGVHD and iGVHD may occur through various mechanisms based on the presence of MyD88 in the non-T cell compartment of the allograft.

제대혈 내피기원세포 및 간엽줄기세포의 분화에 대한 연구 (ENDOTHELIAL PROGENITOR CELLS AND MESENCHYMAL STEM CELLS FROM HUMAN CORD BLOOD)

  • 김은석;김현옥
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제31권1호
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    • pp.39-45
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    • 2005
  • Stem cell therapy using mesenchymal stem cells(MSCs) transplantation have been paid attention because of their powerful proliferation and pluripotent differentiating ability. Although umbilical cord blood (UCB) is well known to be a rich source of hematopoietic stem cells with practical and ethical advantages, the presence of mesenchymal stem cells (MSCs) in UCB has been controversial and it remains to be validated. In this study, we examine the presence of MSCs in UCB harvests and the prevalence of them is compared to that of endothelial progenitor cells. For this, CD34+ and CD34- cells were isolated and cultured under the endothelial cell growth medium and mesenchymal stem cell growth medium respectively. The present study showed that ESC-like cells could be isolated and expanded from preterm UCBs but were not acquired efficiently from full-terms. They expressed CD14-, CD34-, CD45-, CD29+, CD44+, CD105+ cell surface marker and could differentiate into adipogenic and osteogenic lineages. Our results suggest that MSCs are fewer in full-term UCB compared to endothelial progenitor cells.

Molecular Involvement and Prognostic Importance of Fms-like Tyrosine Kinase 3 in Acute Myeloid Leukemia

  • Shahab, Sadaf;Shamsi, Tahir S.;Ahmed, Nuzhat
    • Asian Pacific Journal of Cancer Prevention
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    • 제13권9호
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    • pp.4215-4220
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    • 2012
  • AML (Acute myeloid leukemia) is a form of blood cancer where growth of myeloid cells occurs in the bone marrow. The prognosis is poor in general for many reasons. One is the presence of leukaemia-specific recognition markers such as FLT3 (fms-like tyrosine kinase 3). Another name of FLT3 is stem cell tyrosine kinase-1 (STK1), which is known to take part in proliferation, differentiation and apoptosis of hematopoietic cells, usually being present on haemopoietic progenitor cells in the bone marrow. FLT3 act as an independent prognostic factor for AML. Although a vast literature is available about the association of FLT3 with AML there still is a need of a brief up to date overview which draw a clear picture about this association and their effect on overall survival.

The maintenance mechanism of hematopoietic stem cell dormancy: role for a subset of macrophages

  • Cheong-Whan Chae;Gun Choi;You Ji Kim;Mingug Cho;Yoo-Wook Kwon;Hyo-Soo Kim
    • BMB Reports
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    • 제56권9호
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    • pp.482-487
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    • 2023
  • Hematopoiesis is regulated by crosstalk between long-term repopulating hematopoietic stem cells (LT-HSCs) and supporting niche cells in the bone marrow (BM). Here, we describe the role of KAI1, which is mainly expressed on LT-HSCs and rarely on other hematopoietic stem-progenitor cells (HSPCs), in niche-mediated LT-HSC maintenance. KAI1 activates TGF-β1/Smad3 signal in LT-HSCs, leading to the induction of CDK inhibitors and inhibition of the cell cycle. The KAI1-binding partner DARC is expressed on macrophages and stabilizes KAI1 on LT-HSCs, promoting their quiescence. Conversely, when DARC+ BM macrophages were absent, the level of surface KAI1 on LT-HSCs decreases, leading to cell-cycle entry, proliferation, and differentiation. Thus, KAI1 acts as a functional surface marker of LT-HSCs that regulates dormancy through interaction with DARC-expressing macrophages in the BM stem cell niche. Recently, we showed very special and rare macrophages expressing α-SMA+ COX2+ & DARC+ induce not only dormancy of LT-HSC through interaction of KAI1-DARC but also protect HSCs by down-regulating ROS through COX2 signaling. In the near future, the strategy to combine KAI1-positive LT-HSCs and α-SMA/Cox2/DARC triple-positive macrophages will improve the efficacy of stem cell transplantation after the ablative chemo-therapy for hematological disorders including leukemia.

Characterization of the KG1a Cell Line for Use in a Cell Migration Based Screening Assay

  • Bernhard O. Palsson;Karl francis;Lee, Gyun-Min
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제7권3호
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    • pp.178-184
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    • 2002
  • High-throughput screening has become a popular method used to identify new “leads”for potentially therapeutic compounds. Further screening of these lead compounds is typically done with secondary assays which may utilize living, functioning cells as screening tools. A problem (or benefit) with these cell-based assays is that living cells are very sensitive to their environment. We have been interested in the process of stem cell migration and how it relates to the cellular therapy of bone marrow transplantation. In this study we describe a secondary, cell-based assay for screening the effects of various in-vitro conditions on Immature Hematopoietic Cell (IHC) migration. Our results have revealed many subtle factors, such as the cell's adhesive characteristics, or the effect of a culture's growth phase, that need to be accounted for in a screening protocol. Finally, we show that exponentially glowing KG1a cells (a human IHC cell line) were 10 times more motile than those in the lag or stationary phases. These data strongly suggest that KG1a cells secrete a chemokinetic factor during the exponential growth phase of a culture.

시험관내 배양된 제대혈 모세포에서의 신경항원 발현 (Neural Antigen Expressions in Cultured Human Umbilical Cord Blood Stem Cells in vitro)

  • 하윤;윤도흠;연동수;김현옥;이진주;조용은;최중언
    • Journal of Korean Neurosurgical Society
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    • 제30권8호
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    • pp.963-969
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    • 2001
  • Objectives : Cord blood stem cells have been widely used as donor cells for bone marrow transplantation recently. These cells can give rise to a variety of hematopoietic lineages to repopulate the blood. Recent observations reveal that some bone marrow cells and bone marrow stromal cells(MSCs) can grow to become either neurons or glial cells. It is, however, unclear whether or not there exists stems cells which can differentiate into neurons in the blood during the early stages of postnatal life. Methods : Human cord blood stem cells were prepared from human placenta after full term delivery. To induce neuronal differentiation of stem cells, ${\beta}$-mercaptoethanol was treated. To confirm the neuro-glial characteristics of differentiated stem cells, immunocytochemical stain for NeuN, neurofilament, glial fibrillary acidic protein(GFAP), microtubule associated protein2(MAP2) was performed. RT-PCR was performed for detecting nestin mRNA and MAP2 mRNA. Results : We showed in this experiment that neuro-glial markers(NeuN, neurofilament, MAP2, GFAP) were expressed and axon-like cytoplasmic processes are elaborated in the cultured human cord blood stem cells prepared from new born placenta after full term delivery. Nestin mRNA was also detected in fresh cord blood monocytes. Conclusions : These results suggest that human cord blood derived stem cells may be potential sources of neurons in early postnatal life.

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말초혈액 조혈모세포 채혈 및 이식 후 생착에 관한 연구 (A Study of Peripheral Blood Stem Cell Collection and Bone Marrow Engraftment after Peripheral Blood Stem Cell Transplantation)

  • 손계성;권흥만;권계철
    • 대한임상검사과학회지
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    • 제38권1호
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    • pp.9-15
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    • 2006
  • Peripheral bood stem cell collection (PBSCC), including peripheral blood stem cell transplantation (PBSCT), has been utilized worldwide as a very beneficial treatment method instead of allogenic Bone Marrow Transplantation (BMT) because it has many advantages such as rapid bone marrow engraftment and hematopoietic recovery, easy and safe accessibility and lower risk of rejection compared with allogenic BMT. In order to identify most the observable parameter in PBSCC, we analyzed various hematological parameters before and after PBSCC, and evaluated the correlation between the time of bone marrow engraftment and the number of CD34+ cells. Thirteen patients, who underwent 54 PBSCCs from January, 2003 to August, 2004 at Chungnam National University Hospital due to various systemic neoplasms, were analyzed in aspects of various hematological parameters including CD34+ cells using by Flow Cytometry (FCM). PBSCC harvests are described below: Mononuclear cells (MNC) $2.3{\pm}1.4{\times}10^8/kg$ and CD34+ cells $0.63{\pm}0.35{\times}10^6/kg$ on average, respectively. There was a statistical significance in Hb and Hct before and after PBSCC, but not in WBC and platelet counts. The period to reach the hematological bone marrow engraftment was 13.4(10~21) days and 19.5(11~38) days according to the criteria of absolute neutrophile counts (ANC) ${\geq}500/uL$ and platelet counts ${\geq}50,000/{\mu}L$ in peripheral blood, respectively. There was a significant correlation between the numbers of CD34+ cell and ANC (p<0.05), and a borderline significance between MNC and ANC (p=0.051). We found that a group of patients, who were infused with CD34+ cells more than $3.5{\times}10^6/kg$, reached more rapidly the period of bone marrow engraftment in platelet counts (p=0.040). This present study suggested that Hb and Hct were the most useful parameters and should be closely monitored before and after PBSCC, that a PBSCT with the dosage of more than $3.5{\times}10^6/kg$ of CD34+ cells was needed to perform successful bone marrow engraftment, and additionally that platelet counts could be more useful in indicating bone marrow engraftment than ANC.

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Erratum to: Severe combined immunodeficiency pig as an emerging animal model for human diseases and regenerative medicines

  • Iqbal, Muhammad Arsalan;Hong, Kwonho;Kim, Jin Hoi;Choi, Youngsok
    • BMB Reports
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    • 제52권12호
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    • pp.718-727
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    • 2019
  • Severe combined immunodeficiency (SCID) is a group of inherited disorders characterized by compromised T lymphocyte differentiation related to abnormal development of other lymphocytes [i.e., B and/or natural killer (NK) cells], leading to death early in life unless treated immediately with hematopoietic stem cell transplant. Functional NK cells may impact engraftment success of life-saving procedures such as bone marrow transplantation in human SCID patients. Therefore, in animal models, a T cell-/B cell-/NK cell+ environment provides a valuable tool for understanding the function of the innate immune system and for developing targeted NK therapies against human immune diseases. In this review, we focus on underlying mechanisms of human SCID, recent progress in the development of SCID animal models, and utilization of SCID pig model in biomedical sciences. Numerous physiologies in pig are comparable to those in human such as immune system, X-linked heritability, typical T-B+NK- cellular phenotype, and anatomy. Due to analogous features of pig to those of human, studies have found that immunodeficient pig is the most appropriate model for human SCID.