MedNexus
2022年 · 第04卷第03期
MedNexus
造血干细胞(HSC)可以通过造血分化成所有成熟的功能性血细胞,但也可以自我更新以补充祖细胞库。造血和HSC更新都是严格协调的过程,以防止可能导致危及生命的血液恶性肿瘤(如白血病)的失调。RNA调控网络在确保正常造血中具有重要作用。现在,最先进的高通量测序技术,包括RNA-seq、CLIP-seq、ChIP-seq、ChIRP-seq、MeRIP-seq,使我们能够全面了解RNA调节网络对造血的贡献,以及它们如何被干扰以促进恶性肿瘤。
RNA-binding proteins (RBPs) are widely involved in the transcriptional and posttranscriptional regulation of multiple biological processes. The transcriptional regulatory ability of RBPs was indicated by the identification of chromatin-enriched RBPs (Che-RBPs). One of these proteins, KH-type splicing regulatory protein (KHSRP), is a multifunctional RBP that has been implicated in mRNA decay, alternative splicing, and miRNA biogenesis and plays an essential role in myeloid differentiation by facilitating the maturation of miR-129. In this study, we revealed that KHSRP regulates monocytic differentiation by regulating gene transcription and RNA splicing. KHSRP-occupied specific genomic sites in promoter and enhancer regions to regulate the expression of several hematopoietic genes through transcriptional activation and bound to pre-mRNA intronic regions to modulate alternative splicing during monocytic differentiation. Of note, KHSRP had co-regulatory effects at both the transcriptional and posttranscriptional levels on MOGOH and ADARB1. Taken together, our analyses revealed the dual DNA- and RNA-binding activities of KHSRP and have provided a paradigm to guide the analysis of other functional Che-RBPs in different biological systems.
N6-Methyladenosine (m6A) is the most abundant modification in eukaryotic mRNA, and plays important biological functions via regulating RNA fate determination. Recent studies have shown that m6A modification plays a key role in hematologic malignancies, including acute myeloid leukemia. The current growth of epitranscriptomic research mainly benefits from technological progress in detecting RNA m6A modification in a transcriptome-wide manner. In this review, we first briefly summarize the latest advances in RNA m6A biology by focusing on writers, readers, and erasers of m6A modification, and describe the development of high-throughput methods for RNA m6A mapping. We further discuss the important roles of m6A modifiers in acute myeloid leukemia, and highlight the identification of potential inhibitors for AML treatment by targeting of m6A modifiers. Overall, this review provides a comprehensive summary of RNA m6A biology in acute myeloid leukemia.
The maintenance of the mammalian blood system depends on hematopoietic stem cells (HSCs), which are a rare class of adult stem cells with self-renewal and multilineage differentiation capacities. The homeostasis of hematopoietic stem cells is finely tuned by a variety of endogenous and exogenous regulatory factors, and disrupted balance will lead to hematological diseases including leukemia and anemia. Recently, emerging studies have illustrated the cellular and molecular mechanisms underlying the regulation of HSC homeostasis. Particularly, the rapid development of second-generation sequencing technologies has uncovered that many small noncoding RNAs (ncRNAs) are highly expressed in HSCs, including snoRNAs, miRNAs, tsRNAs, circular RNAs, etc. In this study, we will summarize the essential roles and regulatory mechanisms of these small ncRNAs in maintaining HSC homeostasis. Overall, this review provides up-to-date information in the regulation of HSC homeostasis by small ncRNAs, which sheds light into the development of therapeutic strategies against hematopoietic malignancies.
在真核生物中,基因表达不仅由基因组启动子和增强子高度编排,还由添加到染色质或RNA的共价修饰高度编排。传统上,“表观遗传学”是指独立于DNA序列控制基因表达的可遗传变化的化学修饰;“表转录组学”表示RNA中的共价修饰,其在转录后基因调控中起核心作用。迄今为止,已经表征了>170个RNA化学修饰。这些修饰中的大多数最初是在高度丰富的非编码RNA物种中鉴定的,例如核糖体RNA(rRNA)、转移RNA(tRNA)和小核RNA(snRNA)。最近,高通量测序和分析化学的实质性进展使得能够精确检测和表征信使RNA(mRNA)中的化学修饰。事实上,已经记录了相当多的mRNA修饰,包括N6-甲基腺苷(m6(a);N1-甲基腺苷(m1(a);N6, 2'-O-二甲基腺苷6一个米);3-甲基胞苷(m3(C);5-甲基胞苷(m5(C);5-羟甲基胞苷5(C);N4-乙酰胞苷(ac4(C);腺苷至肌苷(A-to-I)编辑;假尿苷(Ψ);N7-甲基鸟苷(m7G)和2’-O-甲基化核苷酸(N米)(
The advent of whole-slide imaging, faster image data generation, and cheaper forms of data storage have made it easier for pathologists to manipulate digital slide images and interpret more detailed biological processes in conjunction with clinical samples. In parallel, with continuous breakthroughs in object detection, image feature extraction, image classification and image segmentation, artificial intelligence (AI) is becoming the most beneficial technology for high-throughput analysis of image data in various biomedical imaging disciplines. Integrating digital images into biological workflows, advanced algorithms, and computer vision techniques expands the biologist’s horizons beyond the microscope slide. Here, we introduce recent developments in AI applied to microscopy in hematopathology. We give an overview of its concepts and present its applications in normal or abnormal hematopoietic cells identification. We discuss how AI shows great potential to push the limits of microscopy and enhance the resolution, signal and information content of acquired data. Its shortcomings are discussed, as well as future directions for the field.
Defects in centrosomes are associated with a broad spectrum of hematological malignancies, such as leukemia and lymphoma. Centrosomes in these malignancies display both numerical and structural aberrations, including alterations in the number and size of centrioles, inappropriate post-translational modification of centrosomal proteins, and extra centrosome clustering. There is accumulating evidence that centrosome defects observed in hematological malignancies result from multiple factors, including dysregulation of the centrosome cycle and impairment of centriole biogenesis. In this review, we discuss the plausible mechanisms of centrosome defects and highlight their consequences in hematological malignancies. We also illustrate the latest therapeutic strategies against hematological malignancies by targeting centrosome anomalies.
Regulated cell death (RCD) is essential for maintaining cell homeostasis and preventing diseases. Besides classical apoptosis, several novel nonapoptotic forms of RCD including NETosis, pyroptosis, ferroptosis, and cuproptosis have been reported and are increasingly being implicated in various cancers and inflammation. Disulfiram (DSF), an aldehyde dehydrogenase inhibitor, has been used clinically for decades as an anti-alcoholic drug. New studies have shown that DSF possesses potent anti-inflammatory and anti-cancer effects by regulating these new types of RCD. Here, we summarize the mechanisms and discuss the potential application of DSF in the treatment of cancers and inflammatory diseases.
Adult T-cell lymphoblastic lymphoma (T-LBL) is a rare and aggressive subtype of non-Hodgkin’s lymphoma that differs from pediatric T-LBL and has a worse prognosis. Due to its rarity, little is known about the genetic and molecular characteristics, optimal treatment modalities, and prognostic factors of adult T-LBL. Therefore, we summarized the existing studies to comprehensively discuss the above issues in this review. Genetic mutations of NOTCH1/FBXW7, PTEN, RAS, and KMT2D, together with abnormal activation of signaling pathways, such as the JAK-STAT signaling pathway were described. We also discussed the therapeutic modalities. Once diagnosed, adult T-LBL patients should receive intensive or pediatric acute lymphoblastic leukemia regimen and central nervous system prophylaxis as soon as possible, and cranial radiation-free protocols are appropriate. Mediastinal radiotherapy improves clinical outcomes, but adverse events are of concern. Hematopoietic stem cell transplantation may be considered for adult T-LBL patients with high-risk factors or those with relapsed/refractory disease. Besides, several novel prognostic models have been constructed, such as the 5-miRNAs-based classifier, 11-gene-based classifier, and 4-CpG-based classifier, which have presented significant prognostic value in adult T-LBL.
B-cell acute lymphoblastic leukemia (B-ALL) is a malignant tumor originating from B-lineage lymphoid precursor cells. The incidence of B-ALL is about 80% in childhood acute leukemia and 20% in adults. In recent years, with standardized treatment guided by risk stratification, the long-term disease-free survival rate of children is about 80%, while that of adults is less than 40%. However, the specific pathogenesis of the newly identified B-ALL and the targeted therapy strategies have not been vigorously investigated. In this review, we highlight the recent breakthroughs in mechanistic studies and novel therapeutic options in DUX4- and MEF2D-subtype B-ALLs.
To investigate the risk factors for cytomegalovirus (CMV) infection within 100 days and the relationship between early CMV infection and 1-year relapse for patients with acute leukemia following allogeneic hematopoietic stem cell transplantation (allo-HSCT).
Three hundred fifty-nine patients with acute leukemia who received allo-HSCT at our center between January 2015 and January 2020 were retrospectively reviewed.
Of 359 patients, 48.19% (173) patients experienced CMV infection within 100 days posttransplantation. In univariate and multivariate logistic analysis, haploidentical-related donor (HRD) (P < 0.001; odds ratio [OR], 5.542; 95% confidence interval [CI], 3.186-9.639), and ratio of CD3+CD8+ cells in lymphocytes <14.825% (P < 0.001; OR, 3.005; 95% CI, 1.712-5.275) were identified as 2 independent risk factors. One-year relapse rate (RR) between the CMV infection group and the non-CMV infection group was not statistically significant (18.5% vs 19.9%, P = 0.688). When we divided the total cohort into AML, ALL, and MAL subgroups, there were no significant differences as well (P = 0.138; P = 0.588; P = 0.117; respectively).
In conclusion, donor type (HRD) and the insufficient recovery of CD3+CD8+ cells were independent risk factors for CMV infection within 100 days posttransplantation in patients with acute leukemia. CMV infection within 100 days did not influence the incidence of relapse in 1 year for patients with acute leukemia.
Children with sickle cell disease (SCD) are particularly prone to pneumococcal infection and administration of Prevenar 13 pneumococcal vaccine in Nigerian children with SCD is yet to be wide spread. This call for the need to study humoral immune responses stimulated by Prevenar 13 pneumococcal vaccine in SCD children to confirm the benefit or otherwise for the use of Prevenar 13 pneumococcal vaccine.
The levels of humoral (innate and adaptive) immune factors and associated nutritionally essential trace elements were determined following Prevenar 13 pneumococcal vaccination of 23 Nigerian children with SCD. Serum innate humoral immune factors [Complement factors (C1q and C4), transferrin, ferritin, and C-reactive protein (CRP)] and adaptive humoral immune factors [IgG, IgA, IgM, and IgE] were determined using ELISA. Nutritionally essential trace elements such as iron (Fe), copper (Cu), and zinc (Zn) were measured also using an atomic absorption spectrophotometer.
The serum levels of certain innate humoral immune factors (ferritin, CRP, and C4), only one adaptive humoral immune factors (IgE), and essential trace elements (Fe, Zn, and Cu) were significantly elevated in children with SCD post Prevenar 13 pneumococcal vaccination when compared to prevaccination levels.
Vaccination of children with SCD with Prevenar 13 pneumococcal vaccine was associated with increased levels of more innate humoral immune factors than adaptive factors. This study thus supports the administration of Prevenar 13 pneumococcal vaccination to children with SCD.
红细胞生成是造血干细胞(HSC)分化、增殖并最终形成成熟红细胞的过程。
嵌合抗原受体(CAR)-T细胞疗法在中国的临床试验数量远远超过包括美国在内的其他国家。最近对临床试验的布尔搜索。政府为CAR-T细胞和白血病确定了188项研究,比较了美国的99项研究。在淋巴瘤中,中国有234项研究,美国有159项,在浆细胞骨髓瘤中,64项研究对55项。
在最近一期的血(血139, 2022),Zaiken等人
造血干细胞移植(HSCT)是血液恶性肿瘤的一种重要的、潜在的治疗选择。然而,造血重建不良和缓慢仍然是一个重要的并发症,这与异常的造血干细胞(HSC)功能相关。HSC功能特性的维持和保存由骨髓(BM)内高度特化的微环境支持,其中BM衍生的间充质干细胞(BMSCs)用作构成BM微环境的基本结构和功能基础。损伤,如化疗、放疗或炎症引起的损伤,延缓造血恢复或导致造血功能障碍或衰竭,严重影响HSCT疗效。
2022年3月27日11时37分,中国著名血液学家、血液肿瘤CAR-T治疗领域领军人物周剑锋博士因突发冠状动脉夹层破裂(自发性冠状动脉夹层继发急性心肌梗死)意外离世,享年56岁。
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