侵袭性真菌病( invasive fungal disease,IFD)是异基因造血干细胞移植( allogeneic hematopoietic stem cell transplanta-tion,allo-HSCT)术后常见并发症,最常见致病菌为念珠菌和曲霉菌.近些年来,中枢神经系统真菌感染( fungal infec-tions of the central nervous system,FIs -CNS)发病率逐渐增加,治疗难度大,死亡率高.现将我院收治的1 例急性髓系白血病患者allo-HSCT合并FIs-CNS诊治过程报道如下,分析疾病及死亡原因,并进行相关文献复习.
Objective:To investigate the relationship between the levels of serum cytokines and chemokines and the prognosis of patients with acute B-ALL after receiving chimeric antigen receptor (CAR)-T cell immunotherapy and acute graft-versus-host disease (aGVHD) in patients after bridging allogeneic hematopoietic stem cell transplantation (allo-HSCT).Methods:According to the case-control principle, Forty-two patients with B-ALL who received CD19-CAR-T cell immunotherapy bridged to allo-HSCT at Heibei Yanda Ludaopei Hospital from September 18, 2019 to May 9, 2022 were enrolled. Mann-Whitney U test was used to compare the changes of aGVHD-related cytokines and chemokine levels between CAR-T cell immunotherapy and bridging transplantation in different patients at the same time. Their plasma levels of cytokines and chemokines related to aGVHD were monitored at the day before CAR-T therapy and after CAR-T treatment at day 4, 7,14,21,28. The receiver operating characteristic curve was drawn to evaluate the predictive value of cytokines and chemokines in predicting the occurrence and the death of aGVHD patients. Kaplan-Meier method and Log-rank tests were used for Overall survival (OS) analysis. Results:Twenty-four of total 42 patients had aGVHD, of which 11 patients died and 31 patients survived. There was no significant difference in cytokines and chemokines between the aGVHD group and the non-aGVHD group on the day before CAR-T cell treatment. According to statistical analysis, the serum Elafin levels of aGVHD group was higher than that of non-aGVHD group at the 21st day [4 482 (2 811, 6 061) ng/L vs 2 466 (1 948, 3 375) ng/L, Z=3.145, P=0.001] and the 28st day [4 391 (2 808, 5594) ng/L vs 2 463 (1 658, 2 830) ng/L, Z=2.038, P=0.048] separately. At the 14th day, serum cytokines and chemokines levels between the two group were as follows,MIP-1 α [21.02 (12.36, 30.35) ng/L vs 5.56 (3.64, 10.79) ng/L], sCD25 [422.47 (257.99, 1 233.78) IU/ml vs 216.11 (133.75,457.39) IU/ml], Elafin [4 101 (2 393, 5 006) ng/L vs 2 155 (1 781, 3 033) ng/L], IL-6 [119.08 (23.97, 183.43) ng/L vs 8.39 (2.91, 17.42) ng/L] and IL-8 [13.56 (12.50, 24.52) ng/L vs 2.83 (1.73,6.87) ng/L] were at higher levels ( Z=2.653, P=0.007; Z=2.176, P=0. 030; Z=2.058, P=0.041; Z=3.329, P<0.001; Z=3.162, P=0.001). The KM survival curve showed that the cumulative survival rates of patients with higher serum levels of MIP-1α, sCD25, Elafin, IL-6 and IL-8 were lower than those with low levels at day 14, and the difference was statistically significant (χ 2=12.353, 4.890, 6.551, 10.563, 20.755, P<0.05). Conclusion:The outcomes of patients treated with CAR-T cell therapy bridged to allo-HSCT was correlated with serum MIP-1α, sCD25, Elafin, IL-6 and IL-8 levels after receiving CAR-T therapy. High concentrations of MIP-1α, sCD25, Elafin, IL-6 and IL-8 suggest poor prognosis and can be used as biomarkers to suggest appropriate clinical selection of therapy.
目的:探讨PCT在ATG使用期间对细菌感染特异性的预测价值,以及在此期间指导抗生素使用的临床意义.方法:采取回顾性分析的方法,收集我院2018年8月1日至2020年12月31日所有使用ATG的患者共279例.将其分为A、B两组,A组用药前PCT高于正常值(19例),B组用药前PCT值正常(260例).两组患者均应用了抗生素.统计并比较使用ATG前3天、用药后第1天至第9天两组患者的PCT检测值.结果:B组患者使用ATG前后PCT检测值具有显著性差异(P<0.05);ATG使用后即使3天内无其他明确感染指征,当日起即可引起PCT检测值迅速升高,第2天达到峰值,随后缓慢回落,截止用药后第9天,PCT检测值仍未恢复正常.A组患者因用药前已有细菌感染,存在其他感染指征,故使用ATG后PCT检测值亦始终高于正常水平.结论:应用ATG会导致PCT检测值升高,故在此期间不可将该指标的升高作为细菌感染的特应性指标及使用抗生素的依据.对于ATG使用前无明确细菌感染指征的患者,如无其他明确的感染依据及指征,无需使用抗生素,特别是不提倡升级使用特殊级抗生素或盲目增加抗生素的联合使用.
Objective:To investigate the significance of multicolor flow cytometry (MFC) monitoring of minimal residual disease (MRD) in the course of allogeneic hematopoietic stem cell transplantation (allo-HSCT) after CD19-chimeric antigen receptor(CAR)-T cell immunotherapy for patients with refractory, relapsed B-cell acute lymphoblastic leukemia (r/r B-ALL).Methods:37 patients with r/r B-ALL admitted to Hebei Yanda Lu Daopei Hospital from January to July 2019, aged 15 (6, 19) years old, including 24 males and 13 females, were treated with CD19-CAR-T cell immunotherapy bridging allo-HSCT. MFC with cytoplasmic CD79a antibody to set up B-cell gates was used to monitor patients′ bone marrow (BM), cerebrospinal fluid (CSF), and tissue samples on day 0 (prior to the CAR-T cell immunotherapy), day 15, day 28 post CAR-T cell immunotherapy, and post transplantation.The MRD values of these samples were analyzed to evaluate the residual tumor cells and metastasis. The killing effect of the CAR-T cells was evaluated by the recovery of CD19+B cells before transplantation and the period between the timepoint when CD19+B cells was recovered and the timepoint when CAR-T cells were infused. Peripheral blood CAR-T cells were counted at different time points. Statistic analysis was performed by Kaplan-Meie assay and Log-rank test to analyze the difference of univariate cumulative survival.Results:(1)Among the 37 patients, 8 died and 29 survived. 5 patients relapsed after transplantation, of which 4 relapsed patients died and 1 survived. (2)MFC MRD negative remission rate of the death group was lower than that of the survival group at the following time points: post-CAR-T therapy and prior to transplantation (5/8 vs. 28/29, χ 2=7.540, P=0.006); day 15 of the CAR-T cell reinfusion (3/8 vs. 24/29, χ 2=6.512, P=0.011); day 28 of the reinfusion (3/8 vs. 276/29, χ 2=10.065, P=0.002). The probability of extramedullary MFC MRD positive tumor infiltration in the death group was higher than that in the survival group(7/8 vs. 14/29, χ 2=3.931, P=0.047). After CAR-T cell immunotherapy, the recovery period of CD19-positive cells in the death group, or the time for CAR-T cells to kill CD19-positive cells, was shorter than that in the survival group [42.00 days(30.00,49.00) vs. 55.00 days(41.50,73.50), Z=0.022, P=0.020]. Conclusion:The positive results of MRD by MFC at the following timepoints may predict unfavorable outcomes, such as post-CAR-T therapy and prior to transplantation, day 15 and 28 of the CAR-T cell immunotherapy, which may provide some guidance for clinical management.
Objective:To study the performance of immune reconstitution in patients with chimeric antigen receptor (CAR)-T cell immunotherapy bridging allogeneic hematopoietic stem cell transplantation (allo-HSCT).Methods:A total of 61 patients with acute B lymphocytic leukemia (B-ALL) who received CAR-T cell bridging allo-HSCT in Beijing Lu Daopei Hospital from August 2018 to December 2021 were enrolled, and the clinical medical records of the above patients were retrospectively analyzed. The average age was 14 (7, 30) years old, including 39 males and 22 females. 32 patients were treated with CAR-T cell immunotherapy(CAR-T Group) and 29 didn't with CAR-T cell immunotherapy(non-CAR-T group). The follow-up period was 561 (235,784) days. Multicolor flow cytometry was used to detect the peripheral blood lymphocyte subsets, i.e. total lymphocytes, T lymphocytes, helper T cells, cytotoxic T cells, B lymphocytes, NK cells, and Treg cell counts before transplantation and 1, 2, 3, 6, 8, 10, and 12 months after transplantation, to evaluate the immune reconstitution performance post allo-HSCT.Results:Serum globulin before transplantation: The IgA level in the CAR-T group was 0.18 (0.06, 0.49) g/L, which was lower than that of 1.03 (0.63, 1.56) g/L in the non-CAR-T group ( U=103.5, P<0.001). The IgG level in the CAR-T group was 5.54 (4.04, 7.09) g/L, lower than that of 6.78 (5.27, 9.26) g/L in the non-CAR-T group, ( U=1 298.5, P=0.017), and the IgM level in the CAR-T group was 0.18 (0.05, 0.30) g/L, lower than that of 0.40 (0.26, 0.71) g/L in the non-CAR-T group ( U=166.0, P<0.001). In the CAR-T group before transplantation, the absolute count of total lymphocyte in peripheral blood was 833.00 (335.00, 1 727.50) /μl, lower than that of 1 052.00 (545.75, 1 812.50) /μl in the non-CAR-T group ( U=404.0, P<0.001). The absolute count of T lymphocyte in the CAR-T group before transplantation was 686.00 (233.00, 1 307.00)/μl, lower than that of 860.00 (391.00, 1 419.75) /μl in the non-CAR-T group ( U=406.0, P<0.001). The absolute count of helper T lymphocytes in the CAR-T group was 146.00 (40.50, 327.50) /μl, lower than that of 162.50 (66.00, 384.75) /μl in the non-CAR-T group ( U=494.0, P=0.002). The absolute count of cytotoxic T lymphocytes in the CAR-T group was 343.00 (56.50, 924.00) /μl, lower than that of 478.00 (143.50, 992.25) /μl in the non-CAR-T group ( U=483.5, P=0.001). The absolute count of B lymphocytes in CAR-T group was 22.00 (6.00, 186.00) /μl, lower than that of 33.00 (8.00, 220.00) /μl in the non-CAR-T group ( U=498.0, P=0.002). And when two groups of patients were monitored after transplantation, there was no statistical difference in absolute cell counts of each immune cell subpopulation( P>0.05). Comparing the clinical features of the two groups, the pre-transplant history of the CAR-T group was 981.00 (368.50, 1 514.75) d, longer than that of 323.00 (167.50, 450.50) d in the non-CAR-T group ( U=263.0, P=0.004). The dose of rabbit anti-human thymic immunoglobulin (ATG) in the pretreatment protocol of patients in the CAR-T group was 5.00 (5.00, 7.50) mg/Kg, lower than that of 7.00 (5.00, 7.50) mg/kg in the non-CAR-T group ( U=288.5, P=0.018). The infusion dose of CD34 +cells in the CAR-T group was 5.91 (4.23, 6.02) ×10 6/kg, higher than that of 4.51 (4.00, 5.93)×10 6/kg in the non-CAR-T group ( U=291.0, P=0.012). The duration of the application of cyclosporine after transplantation in the CAR-T group was 167.00 (119.25, 299.50) d, which was shorter than that of 197.00 (102.50, 450.50) d in the non-CAR-T group ( U=421.0, P=0.001). Conclusions:For patients in CAR-T group with low immune function before transplantation, it may be possible to make them comparable to non-CAR-T group in immune reconstitution state by reducing the dose of pretreatment ATG, increasing the counts of CD34 + cells infusion in the graft, and discontinuing cyclosporine as soon as possible after transplantation.