Blood Science
Volume 04 · Issue 02 · 2022
Blood Sci
- Sections
- Review Article
- Research Article
- Case Report
- Commentary
Leukocyte immunoglobulin-like receptor B4 (LILRB4) is an inhibitory receptor in the LILR family mainly expressed on normal and malignant human cells of myeloid origin. By binding to ligands, LILRB4 is activated and subsequently recruits adaptors to cytoplasmic immunoreceptor tyrosine inhibitory motifs to initiate different signaling cascades, thus playing an important role in physiological and pathological conditions, including autoimmune diseases, microbial infections, and cancers. In normal myeloid cells, LILRB4 regulates intrinsic cell activation and differentiation. In disease-associated or malignant myeloid cells, LILRB4 is significantly correlated with disease severity or patient survival and suppresses T cells, thereby participating in the pathogenesis of various diseases. In summary, LILRB4 functions as an immune checkpoint on myeloid cells and may be a promising therapeutic target for various human immune diseases, especially for cancer immunotherapy.
Warfarin is a commonly used oral anticoagulant. Patients with artificial valve replacement, atrial fibrillation, pulmonary embolism, deep vein thrombosis, and other diseases require long-term anticoagulant oral treatment with warfarin. As warfarin exhibits prompt action with long maintenance time, it has become a key drug for the treatment of patients at risk of developing thrombosis or thromboembolism. Warfarin is a bican coumarin anticoagulant, that exhibits competitive action against vitamin K as its mechanism of action, thereby inhibiting the synthesis of coagulation factors-predominantly the vitamin K-dependent coagulation factors II, VII, IX, and X—in hepatocytes. Long-term warfarin is known to significantly increase the risk of organ bleeding in some patients, while some patients may need to reverse the anticoagulation effect. For instance, patients scheduled for emergency or invasive surgery may require rapid anticoagulation reversal. During such medical circumstances, fresh frozen plasma (FFP) is clinically used for the reversal of excess warfarin-associated anticoagulation, as it contains all the coagulation factors that can alleviate the abnormal blood anticoagulation status in such patients. Accordingly, this article aims to perform an in-depth review of relevant literature on the reversal of warfarin with FFP, and insightful deliberation of the application and efficacy of this clinical intervention.
Highly heterogeneous acute myeloid leukemia (AML) exhibits dysregulated transcriptional programs. Transcription factor (TF) regulatory networks underlying AML subtypes have not been elucidated at single-cell resolution. Here, we comprehensively mapped malignancy-related TFs activated in different AML subtypes by analyzing single-cell RNA sequencing data from AMLs and healthy donors. We first identified six modules of regulatory networks which were prevalently dysregulated in all AML patients. AML subtypes featured with different malignant cellular composition possessed subtype-specific regulatory TFs associated with differentiation suppression or immune modulation. At last, we validated that ERF was crucial for the development of hematopoietic stem/progenitor cells by performing loss- and gain-of-function experiments in zebrafish embryos. Collectively, our work thoroughly documents an abnormal spectrum of transcriptional regulatory networks in AML and reveals subtype-specific dysregulation basis, which provides a prospective view to AML pathogenesis and potential targets for both diagnosis and therapy.
This study compares the efficacy, toxicity, hematopoietic recovery, and cost of stem-cell mobilization using intermediate-dose cyclophosphamide (IDCy) plus granulocyte colony-stimulating factor (G-CSF) compared with etoposide (VP-16) plus pegylated granulocyte colony-stimulating factor (PEG-rhG-CSF) in multiple myeloma (MM) patients. Two hundred forty-four consecutive patients undergoing mobilization with IDCy (3-3.5 g/m2) plus G-CSF (n= 155) were compared with patients receiving VP-16 plus PEG-rhG-CSF (n = 89), including oral etoposide (n = 65) and intravenous etoposide (n = 24). Compared with IDCy, VP-16 use was associated with significantly higher median peak peripheral blood CD34 + cell count (8.20 [range: 1.84-84] × 106/kg vs 4.58 [range: 0.1-27.9] × 106/kg, P= .000), and ideal CD34+ cell yield of more than 6 × 106/kg (56.8% vs 35.1%, P= .001), notably with a higher efficacy in oral VP-16 use compared with IDCy use (CD 34+ cell counts: median peak peripheral blood 5.87 vs 4.58 × 106/kg and ≥6 × 106/kg [48.4% vs 35.1%]). The median number of apheresis courses was reduced from two in the IDCy group to one in the VP-16 group (P=.000). IDCy use was associated with significantly more frequent episodes of neutropenia (70.2% vs 35.2%; P=.000), intravenous antibiotic use (13.2% vs 11.4%; P=.672), and hospitalization (P=.000). The recoveries of neutrophils and platelets after autologous stem-cell transplantation were significantly faster in the VP-16 group compared with the IDCy group (P= .000). Our data indicate robust stem-cell mobilization in MM patients with VP-16 delivered either orally or intravenously. When compared with intravenous VP-16, oral VP-16 mobilization was associated with significantly more convenient, lower average total costs, and especially decreased the risk of hospital visits and exposure.
Hemorrhagic cystitis (HC) is a common complication of allogeneic hematopoietic stem cell transplantation (HSCT). The incidence is about 7% to 68%, and some patients have to suffer a long period of frequent, urgent, and painful urination, which brings great pain. This study aimed to analyze risk factors of HC and its effect on patient survival. We collected the medical records of 859 patients who underwent HSCT at our hospital between August 2016 and August 2020. Patients with and without HC were matched using propensity score matching at a 1:1 ratio based on sex, age, and diagnosis, and logistic regression analyses were used to identify factors associated with HC. We used Kaplan-Meier curves to analyze the survival rates of patients in the HC and non-HC groups. We also analyzed the relationship between BK viral load and the occurrence of HC using receiver operating characteristic curve (ROC) analysis. After propensity score matching, there were 131 patients each in the HC and non-HC groups. In the HC group, 89 patients (67.9%) had mild HC (stage II°) and 43 (32.1%) had severe HC (stage III-IV). The median interval between stem cell transplantation and HC development was 31 (3-244) days. Univariate analysis indicated that donor age, hematopoietic stem cell source, HLA, acute graft-versus-host disease, busulfan, anti-thymocyte globulin (ATG), total body irradiation, cytomegalovirus (CMV) (urine), and BK polyomavirus (BKV) (urine) were significantly associated with HC. ATG, CMV (urine), and BKV (urine) were independent risk factors for HC based on the multivariate analysis. The Kaplan-Meier survival analysis showed no significant difference between the HC and non-HC groups (P= .14). The 1- and 2-year survival rates in the HC group were 78.4% and 69.6%, respectively, and the corresponding rates in the non-HC group were 84.4% and 80.7%, respectively. ROC analysis indicated that a urine BKV load of 1 × 107 copies/mL was able to stratify the risk of HC. In conclusion, when the BKV load is >1 × 107, we need to be aware of the potential for the development of HC.
Purpureocillium lilacinum (P lilacinum) is a rare pathogenic fungus, which mainly involves immunocompromised individuals. Here, we report a case of complicated multiple-organ infections involving skin, lungs, and spleen in a 63-year-old female with Evans’ syndrome after 9 months of glucocorticoid treatment. Microbial examinations of skin biopsy and blood samples revealed P lilacinum infections. Posaconazole was effective in this patient. During anti-fungi treatment, she developed varicella-zoster virus infection and was diagnosed through next-generation sequencing examination. In conclusion, P lilacinum may affect different organ systems and is susceptible to posaconazole treatment. The molecular-based methods like microbial cell-free DNA sequencing could provide accurate and timely identification of a wide range of infections.
Acute promyelocytic leukemia (APL) is mostly due to the chromosome translocation t (15; 17) (q22; q12), leading to the formation of PML-RARA fusion protein. Some patients carried rare translocation involving RARA gene, who were called variant APL caused by RAR family (RARA, RARB, and RARG) and partner genes. STAT5b-RARA was a rare type of molecular genetic abnormality with unfavorable prognosis which have been reported in only 18 cases in variant APL. Knowledge of STAT5b-RARA (+) APL treatment is still limited.
We presented a 38-year-old female variant APL case, who was STAT5b-RARA positive detected by reverse transcription polymerase chain reaction. The patient failed to respond after four-drug combined induction chemotherapy: idarubicin, cytarabine, all trans retinoic acid, and arsenic trioxide (As2O3). Then, the patient was re-induced with azacytidine, but still failed to achieve complete remission (CR). Next, she was treated with Venetoclax combining with homoharringtonine and cytarabine as the salvage therapy and achieved CR. Later, the patient received hematopoietic stem cell transplantation after 4 cycles of consolidation therapy.
Venetoclax combining with homoharringtonine and cytarabine has been used as the salvage therapy in the STAT5b-RARA positive APL successfully.
在人类癌症中,肿瘤抑制因子和癌基因的畸变共同促进肿瘤的起始和进展。
造血干细胞(HSC)生态位的细胞和分子成分仍然没有很好地定义。血管生成素样蛋白(Angptls)是一组分泌型糖蛋白,据报道其发挥各种作用,包括调节HSC活性。
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