Donor T Cells from B Cell Deficient Mice Inhibit B Cell Development in Normal Recipients after Hematopoietic Cell Transplantation.

Blood ◽  
2007 ◽  
Vol 110 (11) ◽  
pp. 3265-3265
Author(s):  
Antonia M.S. Mueller ◽  
Jessica A. Allen ◽  
David Miklos ◽  
Judith A. Shizuru

Abstract Allogeneic hematopoietic cell transplant (HCT) recipients often exhibit B cell (BC) lymphopenia due, in part, to graft-versus-host-disease (GVHD). Here, we studied the impact of donor T cells (TC) on BC deficiency post minor antigen-mismatched HCT. Following lethal irradiation, BALB.B mice were given FACS purified hematopoietic stem cells (HSC: cKIT+Thy1.1loLin-Sca-1+) alone, with whole splenocytes (SP), CD4 or CD8 TC from minor antigen-mismatched C57BL/6 (B6) mice. Chimerism analyses were performed on day (d) 30, 60, and 90. When pure HSC were transplanted, BCs reconstituted promptly (median 33% of lymphocytes [d30]; 61% [d60]; 74% [d90]), whereas TC engraftment was retarded and did not achieve full donor chimerism. Addition of SP or CD4 TCs, or to a lesser degree CD8 TCs, delayed BC reconstitution, with extremely low percentages of BCs beyond d60. This BC suppression correlated with the degree of acute GVHD, and BC numbers increased with recovery from GVHD. Additionally, this BC suppression was in stark contrast to TC development, with TC transfer resulting in early conversion to full donor chimerism. To test if previous events in the donor sensitize TCs against BC features (e.g. minor antigens), thereby promoting anti-BC cytotoxicity post-HCT, TCs from B6 muMT mice were co-transplanted with HSC. muMT mice are devoid of mature BCs because they lack the mu chain; consequently, their TCs were not exposed to BCs prior to transfer. Remarkably, BC engraftment was completely prevented through d90. TCs regenerated faster, but the vast majority originated from spleen and not HSC. To differentiate this lack of BC engraftment from GVHD-associated, alloreactive BC lymphopenia, syngenic B6 recipients were used. Again, initially complete blockade of BC engraftment was observed, although this suppression was overcome earlier post-HCT as compared to the minor-mismatched pair (median % BC d60: ’HSC only’ recipients 52%; +CD4 17%; +CD8 48%). To clarify if this phenomenon was a purely cytotoxic reaction of muMT TC against BCs, we used WT B6 HSC +/− SP as donors and lethally or sublethally irradiated muMT mice as recipients. All groups, including sublethally irradiated animals, where host muMT TC were still present, engrafted BCs making a direct anti-BC cytotoxicity unlikely as the sole cause of the BC inhibition. FACS analysis of bone marrow was used to assess the developmental stages of BCs (Hardy fractions (Fr.) A-F) and revealed GVHD recipients with peripheral B lymphopenia have a shift of B220+ cells from more mature Fr. D-F to immature Fr. A-C stages and a lower proportion of IgM expressing BC. Recipients of the muMT TCs showed, in addition to a shift to more immature stages, a clear block in BC development with an absent switch to the expression of IgM (stage D to E)(Fig. 1). In conclusion, muMT TCs are capable of blocking BC maturation when transferred into WT mice, suggesting defective TC activity in muMT animals necessary for the co-development of both BCs and TCs. Furthermore, this study provides evidence that mature TCs are capable of interfering with BC regeneration post-HCT. Hence, our HCT combinations using WT and muMT B6 mice provide a powerful tool to study the role of TC function in the process of donor BC development post-HCT.

2021 ◽  
Vol 2 (1) ◽  
pp. 8-21
Author(s):  
Jan Styczynski

Following primary infection, herpesviruses establish latency in infected individuals in the host cells and may reactivate upon external stimuli and during periods of immunosuppression. The objective of this paper was to the present current strategies on preventive and therapeutic management of infections with herpesviruses in recipients of hematopoietic cell transplantation. Strategies of antiviral management include prophylaxis, pre-emptive treatment and targeted treatment. Empirical therapy is not used in antiviral strategies. Prophylaxis can be done at universal (preventive strategy) and specific level. Universal prophylaxis includes non-pharmacologic methods of prevention of infection or reactivation. Risk-adapted specific prophylaxis includes use of specific antivirals or cellular therapy or other specific methods in order to prevent specific infection, in high-risk groups. Pre-emptive therapy means use of therapeutic approaches in asymptomatic infection, detected by a screening assay. Targeted therapy is used in established specific viral end-organ infections. The following sections of the paper refer to prophylaxis and treatment strategies, respectively, against CMV, EBV, HSV, VZV, HHV-6, HHV-7, and HHV-8 after allogeneic hematopoietic cell transplantation.


Blood ◽  
2019 ◽  
Vol 133 (7) ◽  
pp. 754-762 ◽  
Author(s):  
Monica S. Thakar ◽  
Larisa Broglie ◽  
Brent Logan ◽  
Andrew Artz ◽  
Nancy Bunin ◽  
...  

Abstract Despite improvements, mortality after allogeneic hematopoietic cell transplantation (HCT) for nonmalignant diseases remains a significant problem. We evaluated whether pre-HCT conditions defined by the HCT Comorbidity Index (HCT-CI) predict probability of posttransplant survival. Using the Center for International Blood and Marrow Transplant Research database, we identified 4083 patients with nonmalignant diseases transplanted between 2007 and 2014. Primary outcome was overall survival (OS) using the Kaplan-Meier method. Hazard ratios (HRs) were estimated by multivariable Cox regression models. Increasing HCT-CI scores translated to decreased 2-year OS of 82.7%, 80.3%, 74%, and 55.8% for patients with HCT-CI scores of 0, 1 to 2, 3 to 4, and ≥5, respectively, regardless of conditioning intensity. HCT-CI scores of 1 to 2 did not differ relative to scores of 0 (HR, 1.12 [95% CI, 0.93-1.34]), but HCT-CI of 3 to 4 and ≥5 posed significantly greater risks of mortality (HR, 1.33 [95% CI, 1.09-1.63]; and HR, 2.31 [95% CI, 1.79-2.96], respectively). The effect of HCT-CI differed by disease indication. Patients with acquired aplastic anemia, primary immune deficiencies, and congenital bone marrow failure syndromes with scores ≥3 had increased risk of death after HCT. However, higher HCT-CI scores among hemoglobinopathy patients did not increase mortality risk. In conclusion, this is the largest study to date reporting on patients with nonmalignant diseases demonstrating HCT-CI scores ≥3 that had inferior survival after HCT, except for patients with hemoglobinopathies. Our findings suggest that using the HCT-CI score, in addition to disease-specific factors, could be useful when developing treatment plans for nonmalignant diseases.


Pharmacy ◽  
2020 ◽  
Vol 8 (1) ◽  
pp. 3 ◽  
Author(s):  
Amber Clemmons

Recently, the required training and credentials for as well as the various roles of the hematopoietic cell transplant (HCT) pharmacist have been endorsed by the leading organizations in cellular therapy, the American Society of Transplant and Cellular Therapy and the European Society of Blood and Bone Marrow Transplantation. While these documents establish the roles a HCT pharmacist can fulfill within the multi-disciplinary team, few reports have evaluated the impact of the HCT pharmacist on clinical, financial, or quality outcomes. Further, a paucity of information has been reported on types of practice models, such as the use of collaborative practice agreements, or described effective methods to overcome the barriers to the increased utilization of HCT pharmacists. Herein, a brief summary of available information is provided to aid readers in understanding the state of the science for pharmacists practicing in this specialty with the goal to stimulate further research to justify the roles of HCT pharmacists and the correlation of such research to various outcome measures. Practitioners are encouraged to build upon this existing knowledge to create the novel integration and elevation of pharmacy practice to improve outcomes for patients, providers, and payors.


Author(s):  
Chikara Ogimi ◽  
Emily T Martin ◽  
Hu Xie ◽  
Angela P Campbell ◽  
Alpana Waghmare ◽  
...  

Abstract Background Limited data exist regarding the impact of human bocavirus (BoV) in hematopoietic cell transplant (HCT) recipients. Methods In a longitudinal surveillance study among allogeneic HCT recipients, pre-HCT and weekly post-HCT nasal washes and symptom surveys were collected through day 100, then at least every 3 months through 1 year post-HCT at the Fred Hutchinson Cancer Research Center (2005–2010). Samples were tested by multiplex semiquantitative polymerase chain reaction (PCR) for 12 viruses. Plasma samples from BoV + subjects were analyzed by PCR. Separately, we conducted a retrospective review of HCT recipients with BoV detected in lower respiratory tract specimens. Results Among 51 children and 420 adults in the prospective cohort, 21 distinct BoV respiratory tract infections (RTIs) were observed by 1 year post-HCT in 19 patients. Younger age and exposure to children were risk factors for BoV acquisition. Univariable models among patients with BoV RTI showed higher peak viral load in nasal samples (P = .04) and presence of respiratory copathogens (P = .03) were associated with presence of respiratory symptoms, but BoV plasma detection was not. Only watery eyes and rhinorrhea were associated with BoV RTI in adjusted models. With additional chart review, we identified 6 HCT recipients with BoV detected in lower respiratory tract specimens (incidence rate of 0.4% [9/2509] per sample tested). Although all cases presented with hypoxemia, 4 had respiratory copathogens or concomitant conditions that contributed to respiratory compromise. Conclusions BoV RTI is infrequent in transplant recipients and associated with mild symptoms. Our studies did not demonstrate convincing evidence that BoV is a serious respiratory pathogen.


2020 ◽  
Vol 64 (12) ◽  
Author(s):  
Takuto Takahashi ◽  
Angela R. Smith ◽  
Pamala A. Jacobson ◽  
James Fisher ◽  
Nathan T. Rubin ◽  
...  

ABSTRACT Voriconazole (VCZ) is an antifungal agent with wide inter- and intrapatient pharmacokinetic (PK) variability and narrow therapeutic index. Although obesity was associated with higher VCZ trough concentrations in adults, the impact of obesity had yet to be studied in children. We characterized the PK of VCZ in obese patients by accounting for age and CYP2C19 phenotype. We conducted intensive PK studies of VCZ and VCZ N-oxide metabolite in 44 hematopoietic stem cell transplantation (HSCT) recipients aged 2 to 21 years who received prophylactic intravenous VCZ every 12 hours (q12h). Blood samples were collected at 5 and 30 minutes; at 1, 3, 6, and 9 hours after infusion completion; and immediately before the next infusion start. We estimated PK parameters with noncompartmental analysis and evaluated for an association with obesity by multiple linear regression analysis. The 44 participants included 9 (20%) with obesity. CYP2C19 metabolism phenotypes were identified as normal in 22 (50%), poor/intermediate in 13 (30%), and rapid/ultrarapid in 9 patients (21%). Obesity status significantly affects the VCZ minimum concentration of drug in serum (Cmin) (higher by 1.4 mg/liter; 95% confidence interval [CI], 0.0 to 2.8; P = 0.047) and VCZ metabolism ratio (VCZRATIO) (higher by 0.4; 95% CI, 0.0 to 0.7; P = 0.03), while no association was observed with VCZ area under the curve (AUC) (P = 0.09) after adjusting for clinical factors. A younger age and a CYP2C19 phenotype were associated with lower VCZ AUC. Obesity was associated with decreased metabolism of VCZ to its inactive N-oxide metabolite and, concurrently, increased VCZ Cmin, which is deemed clinically meaningful. Future research should aim to further characterize its effects and determine a proper dosing regimen for the obese.


2016 ◽  
Vol 22 (8) ◽  
pp. 1460-1466 ◽  
Author(s):  
Wael Saber ◽  
Mei-Jie Zhang ◽  
Patricia Steinert ◽  
Min Chen ◽  
Mary M. Horowitz

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