myelocytic
简明释义
英[ˌmaɪəʊləʊˈsɪtɪk]美[ˌmaɪəloʊˈsɪtɪk]
adj. 髓细胞的
英英释义
Relating to or derived from myelocytes, which are immature cells found in the bone marrow that develop into granulocytes. | 与骨髓中未成熟细胞(髓母细胞)相关或来源于这些细胞,这些细胞发育成粒细胞。 |
单词用法
骨髓细胞分化 | |
骨髓细胞谱系 | |
急性骨髓细胞白血病 | |
慢性骨髓细胞白血病 |
同义词
骨髓的 | 骨髓性白血病 | ||
造血的 | 造血干细胞 |
反义词
淋巴细胞的 | Lymphocytic leukemia is a type of cancer that affects the lymphocytes. | 淋巴细胞白血病是一种影响淋巴细胞的癌症。 | |
红细胞的 | 红细胞寄生虫可以引起如疟疾等疾病。 |
例句
1.Objective To study the mechanism of traditional Chinese medicine compound of Qudu Huayu Formula on Chronic Myelocytic Leukemia (CML).
目的了解祛毒化瘀中药复方治疗慢性粒细胞白血病的作用机制。
2.Chronic myelocytic leukemia (CML) is the malignant clone disease which occurs in a haematopoietic stem cell.
慢性粒细胞白血病CML是造血干细胞的恶性克隆增生性疾病。
3.Objective Study on the clinical and experimental characters of the chronic myelocytic leukemia(CML)of children.
目的:探讨儿童慢性髓细胞性白血病(CML)临床及实验室特征。
4.ObjectiveTo study the expression of telomerase activity in patients with acute myelocytic leukemia (AML) and its clinical significance.
目的研究急性髓细胞白血病(aml)的端粒酶活性表达情况,探讨端粒酶活性检测对AML的临床意义。
5.Fourier transform infrared spectroscopy (FTIR) was applied to the study of normal and malignant tissues of human myelocytic leukemia (HL-60) xenografted in nude mice.
应用傅里叶变换红外光谱法对人体粒细胞白血病(H L - 60)裸鼠异种移植模型癌变及癌旁正常组织粉末样品进行了分析研究。
6.Objective To measure the serum level of interleukin-18(IL-18) in patients with chronic myelocytic leukemia (CML).
目的:检测慢性粒细胞白血病(CML)患者血清IL-18水平。
7.Conclusions B-ALL with myelocytic antigens may have a poor prognosis.
结论伴髓系抗原表达B - ALL疗效及预后较差。
8.Conversely, it has been shown to be an effective cancer therapeutic agent in myelocytic leukemia patients, and has been indicated as a potential colorectal cancer therapeutic (4-5).
相反,它已被证明是粒细胞白血病的一种有效的治疗药物,在大肠癌治疗中也有潜在疗效(4 - 5)。
9.Objective:To explore the expression and significance of the WT1 gene and proteins in patients with acute myelocytic leukemia(AML).
目的:探讨WT1基因及其蛋白产物在急性髓细胞白血病(AML)细胞的表达及临床意义。
10.The patient was diagnosed with myelocytic 骨髓细胞的 leukemia after a series of blood tests.
经过一系列血液检测,患者被诊断为患有myelocytic 骨髓细胞的白血病。
11.Doctors are studying the effects of myelocytic 骨髓细胞的 differentiation in cancer treatment.
医生们正在研究myelocytic 骨髓细胞的分化在癌症治疗中的影响。
12.A high level of myelocytic 骨髓细胞的 cells can indicate a serious health issue.
高水平的myelocytic 骨髓细胞的细胞可能表明严重的健康问题。
13.Research shows that myelocytic 骨髓细胞的 disorders can lead to various complications.
研究表明,myelocytic 骨髓细胞的疾病可能导致各种并发症。
14.The treatment plan included targeting myelocytic 骨髓细胞的 pathways to improve patient outcomes.
治疗计划包括针对myelocytic 骨髓细胞的通路以改善患者的预后。
作文
In the field of medicine, particularly in hematology, the term myelocytic refers to a type of white blood cell that is derived from myeloid lineage. Understanding the significance of myelocytic cells is crucial for diagnosing and treating various blood disorders, including leukemias. These cells play a vital role in the body's immune response, helping to fight off infections and diseases. The study of myelocytic cells has advanced significantly over the years, leading to improved treatment options for patients suffering from conditions like acute myeloid leukemia (AML). Acute myeloid leukemia is characterized by the rapid proliferation of myelocytic cells in the bone marrow, which can lead to a decrease in normal blood cell production. This results in symptoms such as fatigue, increased susceptibility to infections, and easy bruising or bleeding. Researchers have identified various genetic mutations that can cause these myelocytic cells to become cancerous, leading to ongoing efforts to develop targeted therapies that can effectively combat the disease. The importance of understanding myelocytic cells extends beyond just leukemia. Conditions such as myelodysplastic syndromes (MDS) and myeloproliferative neoplasms (MPN) also involve myelocytic cells. MDS is a group of disorders caused by poorly formed or dysfunctional blood cells, while MPN involves an overproduction of myelocytic cells, leading to various complications. Both conditions highlight the need for comprehensive research into the development and function of myelocytic cells. Moreover, the advancements in technology, such as flow cytometry and genetic sequencing, have allowed scientists to investigate myelocytic cells at a molecular level. This has led to a better understanding of how these cells differentiate and mature, as well as how they contribute to the overall health of the immune system. By studying the pathways involved in the development of myelocytic cells, researchers hope to uncover new therapeutic targets that could lead to more effective treatments for blood cancers and other related disorders. In conclusion, the term myelocytic encompasses a critical aspect of hematological science. As we continue to explore the complexities of these cells, it becomes increasingly clear that they hold the key to unlocking new strategies for combating blood-related diseases. The ongoing research into myelocytic cells not only enhances our understanding of the human body but also paves the way for innovative treatments that could save countless lives in the future.
在医学领域,特别是血液学中,术语myelocytic指的是一种源自髓系谱系的白血球。理解myelocytic细胞的重要性对于诊断和治疗各种血液疾病,包括白血病,是至关重要的。这些细胞在身体的免疫反应中发挥着重要作用,帮助抵御感染和疾病。近年来,对myelocytic细胞的研究取得了显著进展,导致改善了患有急性髓性白血病(AML)患者的治疗选择。 急性髓性白血病的特征是myelocytic细胞在骨髓中的快速增殖,这可能导致正常血细胞生成的减少。这会导致疲劳、感染易感性增加以及容易出现淤血或出血等症状。研究人员已确定多种可能导致这些myelocytic细胞癌变的遗传突变,这促使人们不断努力开发能够有效对抗该疾病的靶向治疗。 理解myelocytic细胞的重要性不仅限于白血病。像骨髓增生异常综合征(MDS)和骨髓增殖性肿瘤(MPN)等疾病也涉及到myelocytic细胞。MDS是一组由形成不良或功能失常的血细胞引起的疾病,而MPN则涉及myelocytic细胞的过度生产,导致各种并发症。这两种情况突显了对myelocytic细胞的发育和功能进行全面研究的必要性。 此外,技术的进步,如流式细胞术和基因测序,使科学家能够在分子水平上研究myelocytic细胞。这使我们更好地理解这些细胞如何分化和成熟,以及它们如何促进免疫系统的整体健康。通过研究涉及myelocytic细胞发育的途径,研究人员希望发现新的治疗靶点,从而为血癌和其他相关疾病提供更有效的治疗。 总之,术语myelocytic涵盖了血液学科学的一个关键方面。随着我们继续探索这些细胞的复杂性,越来越明显的是,它们掌握着解锁新策略以对抗血液相关疾病的关键。对myelocytic细胞的持续研究不仅增强了我们对人体的理解,而且为未来可能拯救无数生命的创新治疗铺平了道路。
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