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1.
Perforin gene (PRF1) mutations appear to occur in about 30% of patients with haemophagocytic lymphohistiocytosis (HLH). We tested perforin expression and gene mutations in 14 HLH patients and six patients with Epstein-Barr virus-associated HLH (EBV-HLH) in Japan. Five of the 14 HLH patients had perforin abnormalities. The presence of PRF1 genetic abnormality correlated well with the lack of perforin expression as determined by flow cytometry. Sequencing showed that four patients had a compound heterozygous mutation while the fifth patient had a homozygous mutation. Three of the mutations we detected were novel. In contrast, none of the six EBV-HLH patients showed perforin abnormalities. Our data, combined with the PRF1 mutations in three previously reported Japanese patients, suggest that the 1090-1091delCT and 207delC mutations of the perforin gene are frequently present in Japanese HLH patients (62.5% and 37.5% respectively). Examination of the geographical origins of the ancestors in the perforin-mutant HLH patients revealed that they mostly came from the Western part of Japan, suggesting that the present-day cases may largely derive from a common ancestor.  相似文献   

2.
Mutations in the perforin gene have been described in some patients with hemophagocytic lymphohistiocytosis (HLH), but the role of perforin defects in the pathogenesis of HLH remains unclear. Four-color flow cytometric analysis was used to establish normal patterns of perforin expression for control subjects of all ages, and patterns of perforin staining in cytotoxic lymphocytes (natural killer [NK] cells, CD8(+) T cells, CD56(+) T cells) from patients with HLH and their family members were studied. Eleven unrelated HLH patients and 19 family members were analyzed prospectively. Four of the 7 patients with primary HLH showed lack of intracellular perforin in all cytotoxic cell types. All 4 patients showed mutations in the perforin gene. Their parents, obligate carriers of perforin mutations, had abnormal perforin-staining patterns. Analysis of cytotoxic cells from the other 3 patients with primary HLH and remaining family members had normal percentages of perforin-positive cytotoxic cells. On the other hand, the 4 patients with Epstein-Barr virus-associated HLH typically had depressed numbers of NK cells but markedly increased proportions of CD8(+) T cells with perforin expression. Four-color flow cytometry provides diagnostic information that, in conjunction with evidence of reduced NK function, may speed the identification of life-threatening HLH in some families and direct further genetic studies of the syndrome.  相似文献   

3.
Hemophagocytic lymphohistiocytosis (HLH) is characterized by fever and hepatosplenomegaly associated with pancytopenia, hypertriglyceridemia and hypofibrinogenemia. Increased levels of cytokines and impaired natural killer activity are biological markers of HLH. HLH can be classified into two distinct forms, including primary HLH, also referred to as familial hemophagocytic lymphohistiocytosis (FHL), and secondary HLH. Although FHL is an autosomal recessive disorder typically occurring in infancy, it is important to clarify that the disease may also occur in older patients. It is now considered that FHL is a disorder of T-cell function; moreover, clonal proliferation of T lymphocytes is observed in a few FHL patients, and cytotoxicity of these T lymphocytes for target cells is usually impaired. In 1999, perforin gene (PRF1) mutation was identified as a cause of 20-30% of FHL (FHL2) cases. In Japan, two specific mutations of PRF1 were also detected. Furthermore, in 2003, MUNC13-4 mutations were identified in some non-FHL2 patients (FHL3). Identification of other genes responsible for remaining cases is a major concern. Hematopoietic stem cell transplantation (HSCT) has been established as the only accepted curative therapy for FHL. Thus, appropriate diagnosis and prompt treatment with HSCT are necessary for FHL patients. Genetic analysis for PRF1 and MUNC13-4 and functional assay of cytotoxic T lymphocytes are recommended to be performed in each patient. In those patients displaying impaired cytotoxic function but lacking genetic defects, samples should be employed for identification of unknown genes. In the near future, an entire pathogenesis should be clarified in order to establish appropriate therapies including immunotherapy, HSCT and gene therapy.  相似文献   

4.
Perforin mutations have been demonstrated in a proportion of patients diagnosed with the familial form of hemophagocytic lymphohistiocytosis (HLH). In the present study, we evaluated whether some patients with lymphoma sharing clinical characteristics with HLH might harbor mutations of the perforin gene. We analyzed 29 patients and found that 4 patients, who developed either Hodgkin or non-Hodgkin lymphoma, had biallelic mutations of the perforin gene. One of these 4 patients, a 19-year-old female with T-cell lymphoma, had a brother carrying the same mutations who developed HLH. In 2 of the 4 patients with biallelic mutations of the perforin gene, we evaluated perforin expression by flow cytometry and natural killer (NK) activity and both were found to be absent. Moreover, we documented the presence of monoallelic mutations of the perforin gene in 4 more patients. One of these 4 latter patients also carried a mutation of the Fas gene. These data indicate that perforin deficiency, either alone or in combination with other mutations of genes involved in lymphocyte survival or functional activity, may be present in patients with lymphoma. These findings suggest that perforin also plays a key role in the mechanisms of immune surveillance that prevent tumor growth and/or development.  相似文献   

5.
Liu HX  Tong CR  Wang H  Zhu J  Wang F  Cai P  Teng W  Yang JF  Zhang YL  Lu DP 《中华内科杂志》2011,50(2):132-135
目的 提高对家族性噬血性淋巴组织细胞增多症(FHL)的诊疗水平.方法 报告1例人类疱疹病毒7型(HHV7)阳性FHL2型患者的临床、病因及遗传学特征;人类疱疹病毒(HHV1~HHV8)DNA筛查采用PCR方法 ;NK细胞穿孔素(PRF1)蛋白表达采用流式细胞术检测;PRF1基因突变采用PCR技术和DNA序列分析鉴定;PRF1蛋白构象通过ExPASy和I-TASSER网站在线分析系统进行生物信息学分析;对患者亲属34例进行遗传家系分析.结果 该患者HHV7病毒DNA为350拷贝/106外周血有核细胞;PRF1阳性的NK细胞比例和PRF1表达显著降低;患者PRF1基因存在c.503G>A/p.S168N和c.1177T>C/p.C393R突变,其S168N突变遗传自父系,C393R突变遗传自母系.抗病毒、地塞米松、VP16及联合化疗对患者疗效短暂,经人类白细胞抗原10/10相合的非血缘异基因造血干细胞移植治疗后已健康存活9个月.结论 应加强对FHL患者免疫功能及其相关分子遗传学的研究;异基因造血干细胞移植是FHL治疗的根本措施.
Abstract:
Objective To analyze the etiological factor and genetic feature of a familial hemophagocytic lymphohistiocytosis patient with PRF1 mutation (FHL2) with human herpesvirus 7 (HHV7)infection and its family constellation. Methods Clinical characteristics, laboratory examinations of a FHL2 case with HHV7 infection were reported. HHV1-HHV8 virus DNA was screened by PCR; NK cell function was analyzed by flow cytometry; PRF1 gene mutations were analyzed by PCR and direct sequencing, structure of mutant PRF1 proteins were analyzed using ExPasy and I-TASSER server and genetics pedigree were analyzed. Results The patient's HHV7 viral was detected positive with DNA copy number of 350/106 peripheral nucleated cells. Flow cytometry analysis showed decrease both in proportion of perforin positive NK cells and perforin protein expression. Genetic testing showed PRF1 biallelic heterozygote mutations (c. 503G > A/p. S168N and c. 1177T > C/p. C393R) and pedigree analysis showed they were inherited. The patient was then treated with antivirus therapy, dexamethasone and VP16 therapy, but only achieved partial response. The patient was then followed by human leukocyte antigen 10/10 allele identical nonconsanguinity allogeneic hematopoietic stem cell transplantations (allo-HSCT) and soon the successful implantation of donor hematopoietic cells and persistent recovery was achieved. The patient was now surviving without recurrence for 9 months after allo-HSCT. Conclusions FHL is prone to be misdiagnosed as lymphoma. Genetic analysis of related gene mutation and herpes simplex virus detection will help in early and accurate diagnosis. Allo-HSCT is a fundamental treatment of FHL.  相似文献   

6.
Familial haemophagocytic lymphohistiocytosis (FHL), an inherited form of haemophagocytic lymphohistiocytosis (HLH) syndrome, is characterized by the overwhelming activation of T lymphocytes and macrophages invariably leading to death in the absence of treatment. FHL is a heterogeneous autosomal recessive disorder, with one known causative gene which codes for perforin, a cytotoxic effector protein. In this study, we have characterized the genotype and phenotype of 14 unrelated families with perforin deficiency. Four new missense mutations of the perforin gene were identified. In every case, perforin gene mutations led to undetectable intracellular perforin expression within cytotoxic cells, while some residual T-cell cytotoxic activity could be associated with certain missense mutations. Clinical and biological analyses did not differentiate between patients with nonsense or missense mutations, although age at diagnosis, which tended to be similar within members of the same family, was delayed in patients from two families belonging to the second group. In one case, consequences of perforin deficiency, diagnosed at birth, could be assessed prior to onset of clinical manifestations. No evidence for T-cell activation could be shown, suggesting that an exogenous event is required to trigger the disease manifestation. Control assessment of perforin expression and cytotoxic assays by lymphocytes from young children led to the conclusion that perforin content of natural killer cells could be a reliable diagnostic test at any age. Altogether, these data enabled a better characterization of perforin deficiency and its consequences, and defined reliable diagnostic tools.  相似文献   

7.
Familial hemophagocytic lymphohistiocytosis (FHL) is an inherited, fatal disorder of infancy. We report here a 17-day-old female infant who presented with high fever, hepatosplenomegaly, hypertriglyceridemia, hypofibrinogenemia, thrombocytopenia, and liver failure. Leukocytosis was detected with circulating "atypical" lymphoid cells. Flow cytometric studies revealed expanded subpopulations of CD8+ T cells with unusual immunophenotypic features, including a subset that lacked CD5 expression. A liver biopsy showed hemophagocytic lymphohistiocytosis with exuberant infiltrates of CD8+ T cells that lacked perforin. Mutational studies revealed a 666C-->A (H222Q) missense mutation in the perforin gene. T-cell receptor studies on flow-sorted T-cell subpopulations revealed no evidence of monoclonality. Analysis of T-cell receptor excision circle levels indicated long proliferative history in the aberrant CD8+ T-cell subsets. This case provides an instructive example of uncontrolled reactive proliferation of CD8+ T cells in FHL, resulting in atypical morphology and unusual immunophenotypic features that might suggest malignancy in other clinical settings.  相似文献   

8.
A 4-month-old girl with clinical features of hemophagocytic lymphohistiocytosis (HLH) was successfully treated with immunochemotherapy but died at the age of 1 year and 3 months, before hematopoietic stem cell transplantation could be performed. Her family history showed death during infancy of the eldest sister, suggesting a diagnosis of familial HLH (FHL). Direct sequencing of the DNA extracted from the patient's spleen tissue obtained at autopsy revealed a novel perforin gene mutation: a homozygous 1289G insertion (Asp430 frameshift and termination at amino acid residue 457), which has not previously been reported in FHL patients.  相似文献   

9.
Mutations in the perforin gene cause familial hemophagocytic lymphohistiocytosis (FHL). The first symptoms of FHL are usually intractable fever, hepatosplenomegaly, and pancytopenia. Most FHL patients subsequently develop central nervous system (CNS) manifestations due to infiltration of tissues by activated lymphocytes and macrophages. We report 2 FHL patients with an atypical phenotype characterized by isolated severe neurologic symptoms mimicking chronic encephalitis and leading to an early death. Functional and molecular analyses revealed the same novel missense mutation in the perforin gene in both patients; this mutation affected the calcium-binding domain of the protein. This missense mutation did not affect perforin maturation or expression in cytotoxic cells but impaired in vitro cytotoxic activity. Diagnosis was delayed in both patients because of the initial neurologic expression and the normal expression of perforin in circulating lymphocytes. This emphasizes the importance of early diagnosis of this atypical form of FHL, as CNS involvement causes severe, irreversible encephalopathy. This observation also raises the question of the role of some mutations in the neurologic expression of FHL.  相似文献   

10.
Familial hemophagocytic lymphohistiocytosis (familial HLH or FHL) is a potentially fatal autosomal recessive disorder. Our previous study demonstrated that UNC13D mutations (FHL3) account for ~90 % of FHL in Korea with recurrent splicing mutation c.754-1G>C (IVS9-1G>C). Notably, half of the FHL3 patients had a monoallelic mutation of UNC13D. Deep intronic mutations in UNC13D were recently reported in patients of European descent. In this study, we performed targeted mutation analyses for deep intronic mutations and investigated on the founder effect in FHL3 in Korean patients. The study patients were 72 children with HLH including those with FHL3 previously reported to have a monoallelic UNC13D mutation. All patients were recruited from the Korean Registry of Hemophagocytic Lymphohistiocytosis. In addition to conventional sequencing of FHL2-4, targeted tests for c.118-308C>T and large intronic rearrangement mutations of UNC13D were performed. Haplotype analysis was performed for founder effects using polymorphic markers in the FHL3 locus. FHL mutations were detected in 20 patients (28 %). Seventeen patients had UNC13D mutations (FHL3, 85 %) and three had PRF1 mutations (FHL2, 15 %). UNC13D:c.118-308C>T was detected in ten patients, accounting for 38 % of all mutant alleles of UNC13D, followed by c.754-1G>C (26 %). Haplotype analyses revealed significantly shared haplotypes in both c.118-308C>T and c.754-1G>C, indicating the presence of founder effects. The deep intronic mutation UNC13D:c.118-308C>T accounts for the majority of previously missing mutations and is the most frequent mutation in FHL3 in Korea. Founder effects of two recurrent intronic mutations of UNC13D explain the unusual predominance of FHL3 in Korea.  相似文献   

11.
Since the discovery of perforin gene mutations in familial hemophagocytic lymphohistiocytosis (FHL) type 2, heterogeneous features in FHL2 patients have been identified in a report of Feldmann et al. as the beginning. This study was conducted to determine the impact of characteristic gene mutations on late-onset (age > or = 7 years) hemophagocytic lymphohistiocytosis episodes. We analyzed perforin gene mutations in three late-onset cases from our registry in Japan and an additional 10 cases from the literature. Of the 13 cases with onset ages of a median of 10 (range 7-49) years, nine had homozygous and four had compound heterozygous missense mutations of the perforin gene. None had homozygous nonsense mutations. Our data suggest that nonsense perforin gene mutations yield early onset and missense mutations late onset in FHL2 cases.  相似文献   

12.
Mutations of the perforin (PRF1) and MUNC13-4 genes distinguish 2 forms of familial hemophagocytic lymphohistiocytosis (FHL2 and FHL3, respectively), but the clinical and biologic correlates of these genotypes remain in question. We studied the presenting features and cytotoxic T lymphocyte/natural killer (CTL/NK) cell functions of 35 patients for their relationship to distinct FHL subtypes. FHL2 (n = 11) had an earlier onset than either FHL3 (n = 8) or the non-FHL2/FHL3 subtype lacking a PRF1 or MUNC13-4 mutation (n = 16). Deficient NK cell activity persisted after chemotherapy in all cases of FHL2, whereas some patients with FHL3 or the non-FHL2/FHL3 subtype showed partial recovery of this activity during remission. Alloantigen-specific CTL-mediated cytotoxicity was deficient in FHL2 patients with PRF1 nonsense mutations, was very low in FHL3 patients, but was only moderately reduced in FHL2 patients with PRF1 missense mutations. These findings correlated well with Western blot analyses showing an absence of perforin in FHL2 cases with PRF1 nonsense mutations and of MUNC13-4 in FHL3 cases, whereas in FHL2 cases with PRF1 missense mutations, mature perforin was present in low amounts. These results suggest an association between the type of genetic mutation in FHL cases and the magnitude of CTL cytolytic activity and age at onset.  相似文献   

13.
Perforin gene (PRF1) mutations have been reported in 20-30% of patients with familial hemophagocytic lymphohistiocytosis (FHL), an immune disorder of infancy and early childhood. Cytotoxic T and natural killer (NK) cell activities are remarkably reduced or absent in FHL patients. We report the first cases of familial hemophagocytic lymphohistiocytosis in an Iranian family with two siblings. Exons 2 and 3 of the PRF1 gene were analyzed by polymerase chain reaction (PCR) amplification and direct sequencing. Perforin gene mutation(s) were detected in none of the cases. The result of our study indicates that not much evidence is present concerning a correlation between perforin gene defects and familial hemophagocytic lymphohistiocytosis etiology in these cases.  相似文献   

14.
Familial hemophagocytic lymphohistiocytosis (FHL) is a life-threatening disorder of immune regulation caused by defects in lymphocyte cytotoxicity. Rapid differentiation of primary, genetic forms from secondary forms of hemophagocytic lymphohistiocytosis (HLH) is crucial for treatment decisions. We prospectively evaluated the performance of degranulation assays based on surface up-regulation of CD107a on natural killer (NK) cells and cytotoxic T lymphocytes in a cohort of 494 patients referred for evaluation for suspected HLH. Seventy-five of 77 patients (97%) with FHL3-5 and 11 of 13 patients (85%) with Griscelli syndrome type 2 or Chediak-Higashi syndrome had abnormal resting NK-cell degranulation. In contrast, NK-cell degranulation was normal in 14 of 16 patients (88%) with X-linked lymphoproliferative disease and in 8 of 14 patients (57%) with FHL2, who were identified by diminished intracellular SLAM-associated protein (SAP), X-linked inhibitor of apoptosis protein (XIAP), and perforin expression, respectively. Among 66 patients with a clinical diagnosis of secondary HLH, 13 of 59 (22%) had abnormal resting NK-cell degranulation, whereas 0 of 43 had abnormal degranulation using IL-2-activated NK cells. Active disease or immunosuppressive therapy did not impair the assay performance. Overall, resting NK-cell degranulation below 5% provided a 96% sensitivity for a genetic degranulation disorder and a specificity of 88%. Therefore, degranulation assays allow a rapid and reliable classification of patients, benefiting treatment decisions.  相似文献   

15.
Familial hemophagocytic lymphohistiocytosis (FHL) is an autosomal recessive immune disorder, characterized by fever, hepatosplenomegaly, pancytopenia, hypertriglyceridemia, hypofibrinogenemia, markedly elevated levels of inflammatory cytokines, and impaired cytotoxic activity of lymphocytes. FHL is often fatal in early infancy. Histologic features include organ infiltration by activated macrophages and lymphocytes. Four genetic loci (FHL1, 2, 3, and 4) have been identified, of which FHL2 involves mutations in the perforin gene and is present in 20-50% of patients with FHL. We herein report the first comprehensive molecular analysis of 16 unrelated cases of FHL in ethnic Omanis. Using direct DNA sequencing analysis in 11 families, seven different mutations were identified in the coding region of the perforin gene, of which five were novel. Perforin gene defects do not seem to be involved in one-third of the cases of FHL in ethnic Omanis.  相似文献   

16.
目的 研究难治性病毒感染或噬血细胞性淋巴组织细胞增多症(HLH)中免疫基因突变的发生率、类型及其临床特征.方法 采用基因测序方法 检测难治性病毒感染或HLH患者是否有原发性HLH相关的PRF1、UNC13D、STX11、STXBP2、SH2D1A和XIAP基因突变,并追踪其临床特点及转归.结果 共25例难治性病毒感染性疾病或HLH患者接受了基因突变筛查,其中13例检测到上述基因突变:PRF1突变6例,UNC13D突变3例,STX11、STXBP2、SH2D1A、XIAP突变各1例;其中6例起病表现为病毒相关性HLH,1例为原因不明HLH,4例为慢性活动性EB病毒(EBV)感染(CAEBV),2例为EBV相关性淋巴瘤.12例未检测出基因突变的患者中,4例为EBV相关HLH,其中1例发展为外周T细胞淋巴瘤,另8例为CAEBV.结论 原发性HLH相关免疫基因突变是难治性病毒感染或HLH的重要原因,大部分表现为HLH,部分患者以CAEBV或EBV相关淋巴瘤起病.基因检测是明确此类疾病诊断的有力证据.
Abstract:
Objective To study the type and corresponding clinical characteristics of primary hemophagocytic lymphohistocytosis (HLH) associated immune gene mutations in the refractory virus infection or HLH of unknown causes. Methods From December 2009 to July 2010, the patients with refractory virus infection or HLH of unknown causes were screened for the primary HLH associated immune genes mutations by DNA sequence analysis, including PRF1, UNC13D, STX11, STXBP2, SH2D1A and XIAP. The clinical characteristics and outcomes were followed up. Results Totally 25 patients with refractory virus infection or HLH of unknown causes were investigated for the 6 genes and 13 cases were found carrying gene mutations, composing of 6 of PRF1 mutation, 3 of UNC13D, and each one of STX11,XIAP, SH2D1A and STXBP2, respectively. Among the 13 cases with gene mutations, 5 suffered from Epstein-Barr virus associated HLH( EBV-HLH), 1 human herpes virus 7 associated HLH (HHV7-HLH),1 HLH without causes, 4 chronic activated EB virus infection (CAEBV) with 1 progressing to Hodgkin's lymphoma carrying abnormal chromosome of t ( 15; 17 ) (q22; q25 ) and hyperdiploid, 2 EBV associated lymphoma. Among the other 12 patients without gene mutation, 4 suffered from EBV-HLH with 1 progressing to peripheral T lymphoma, 8 suffered from CAEBV. Conclusions Primary HLH associated immune gene mutations are critical causes of refractory virus infection of unknown causes, most patients manifest as HLH,some cases appear in CAEBV and EBV associated lymphoma. DNA sequence analysis is helpful to early diagnosis and correct decision-making for treatment.  相似文献   

17.
Haemophagocytic lymphohistiocytosis (HLH) is a rare, fatal disorder of early infancy. Mutations of the PRF1 gene have been identified in a subset of patients. However, the distinction between the different genetically determined and environmental subtypes of the disease remains a major issue to be solved. This may result in delayed or inappropriate application of bone marrow transplantation (BMT). We propose an algorithm that uses a combination of three rapid laboratory tests, i.e. perforin expression by peripheral lymphocytes, assessment of the behaviour of the 2B4 lymphocyte receptor and natural killer (NK) cell activity, to identify the different subgroups of HLH. In 19 patients diagnosed according to current criteria, we tested perforin expression, 2B4 receptor function and NK cell activity. PRF1 mutations were found in all seven patients showing absent perforin expression. In one male with abnormal behaviour of the 2B4 receptor, SH2D1A mutation confirmed the diagnosis of X-linked lymphoproliferative disease. Four patients with normal NK cell activity had evidence of associated infections. Of the seven with impaired NK cell activity, two had a probable genetically determined subtype of HLH and five appeared as sporadic, infection-associated cases. Improving the diagnostic approach may restrict the use of BMT, the only recognized curative treatment, to HLH patients with a documented poor prognosis while patients with milder disorders may be treated less intensively. Our flow chart could also lead to better selection of patients for specific gene analysis.  相似文献   

18.
Familial hemophagocytic lymphohistiocytosis (FHL) is typically an early onset, fatal disease characterized by a sepsislike illness with cytopenia, hepatosplenomegaly, and deficient lymphocyte cytotoxicity. Disease-causing mutations have been identified in genes encoding perforin (PRF1/FHL2), Munc13-4 (UNC13D/FHL3), and syntaxin-11 (STX11/FHL4). In contrast to mutations leading to loss of perforin and Munc13-4 function, it is unclear how syntaxin-11 loss-of-function mutations contribute to disease. We show here that freshly isolated, resting natural killer (NK) cells and CD8(+) T cells express syntaxin-11. In infants, NK cells are the predominant perforin-containing cell type. NK cells from FHL4 patients fail to degranulate when encountering susceptible target cells. Unexpectedly, IL-2 stimulation partially restores degranulation and cytotoxicity by NK cells, which could explain the less severe disease progression observed in FHL4 patients, compared with FHL2 and FHL3 patients. Since the effector T-cell compartment is still immature in infants, our data suggest that the observed defect in NK-cell degranulation may contribute to the pathophysiology of FHL, that evaluation of NK-cell degranulation in suspected FHL patients may facilitate diagnosis, and that these new insights may offer novel therapeutic possibilities.  相似文献   

19.
目的 探讨原发性噬血细胞综合征(HLH)合并中枢神经系统病变诊断要点以及异基因造血干细胞移植(Allo-HSCT)治疗情况。 方法:对1例根据HLH-2004诊断标准确诊的原发性HLH合并中枢神经系统病变的病例临床特点进行分析,完善基因测序、免疫学指标检测和家系调查,进行Allo-HSCT。 结果:确诊11岁男性病例1例,表现为反复发热、全血细胞减少,脾大、骨髓中可见噬血现象,NK细胞活性下降(10.39%)。基因检测和家系调查显示患者携带分别来自父系和母系的PRF1基因的复杂杂合改变,两位胞姐各自携带不同突变位点;全家成员穿孔素蛋白表达量均有不同程度下降。病程中出现癫痫,头颅核磁共振提 示多发病变。确诊原发性HLH合并中枢神经系统病变。给予HLH-2004方案治疗后,接受胞姐HLA 5/10相合Allo-HSCT。目前移植后14个月,一般情况良好。 结论 对于合并中枢神经系统病变的原发性HLH,尽早进行Allo-HSCT是获得长期生存及治愈的唯一方法。  相似文献   

20.
OBJECTIVE: To investigate the role of the cytolytic action mediated by perforin in the course of rheumatoid arthritis (RA), we studied the immunophenotypic characteristics of lymphocytes containing perforin in peripheral blood (systemic level), in synovial fluid (SF), and in the synovial membrane (local level) in patients during the acute or chronic phase of RA. Cells from patients with osteoarthritis were used as controls. METHODS: Flow cytometry was used for simultaneous detection of intracellular (perforin) and cell surface antigens. Mean fluorescence intensity (MFI) was a measure of the mean perforin content per cell. Immunocytochemical staining was used to visualize perforin in the cytoplasmic compartment of cells. RESULTS: In acute RA highly significant changes in perforin expression were found in all compartments (peripheral blood, SF, and synovial membrane): (1) increase of percentage of total perforin positive cells; (2) increase of both subsets of cytolytic cells, T (CD8+P+) and NK (CD56+P+) cells; (3) increase in the frequency of perforin positive cells in CD8+ and CD56+ cell populations; and (4) the highest content of perforin/cell (MFI values) in all compartments, except in the synovial membrane. CONCLUSION: Perforin positive cells may participate in the acute phase of RA by maintaining and perpetuating inflammation and contributing to tissue destruction.  相似文献   

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