Araghi Atefeh, Nassiri Seyed Mahdi, Atyabi Nahid, Rahbarghazi Reza, Mohammadi Elham
1Faculty of Veterinary Medicine, Amol University of Special Modern Technologies, Amol, Iran.
J Feline Med Surg. 2014 Apr;16(4):265-74. doi: 10.1177/1098612X13505575. Epub 2013 Sep 24.
There is a paucity of species-specific antibodies available for feline haematopoietic conditions. The purpose of this study was to broaden the panel of antibodies available for use in the immunophenotypic characterisation of feline haematopoietic cells by testing clones of anti-human monoclonal antibodies (mAbs) on normal, neoplastic and cultured feline haematopoietic progenitors to determine cross-reactivity to feline counterparts. In this study, 24 clones of anti-human mAbs were tested on normal or neoplastic feline bone marrow and peripheral blood cells. Six of these mAbs, including anti-cluster of differentiation (CD)61, anti-CD18, anti-CD14, anti-CD235a, anti-CD41 and anti-CD29, cross-reacted with normal feline bone marrow cells, whereas anti-CD33 and anti-CD117 cross-reacted with the blast cells in the bone marrow of two cats with myelodysplastic syndrome, and anti-CD71, anti-235a, anti-41 and anti-42 cross-reacted with immature erythroid cells in a cat with erythroleukaemia. In a feline immunodeficiency virus-positive cat, bone marrow cells were labelled with anti-CD33, anti-14 and anti-45. Anti-CD18, anti-CD14, anti-CD41 and anti-CD61 also reacted with the peripheral blood cells of the healthy cats. The feline haematopoietic progenitors formed colonies in the methylcellulose-based semisolid medium with significant enrichment of colony-forming unit-granulocyte, monocyte and burst-forming unit-erythroid. A panel of six anti-feline mAbs (anti-CD21-like, anti-T lymphocytes, anti-CD172a, anti-granulocyte, anti-CD45-like and anti-CD18) and eight anti-human antibodies (anti-CD71, anti-CD33, anti-CD235a, anti-CD41, anti-CD61, anti-CD117, anti-CD38 and anti-CD34) were used for the immunophenotypic characterisation of the feline bone marrow progenitors. CD45, CD33, CD235a and CD18 were expressed by the feline haematopoietic progenitor cells, with the highest expression level for CD45.
目前可用于猫造血疾病的物种特异性抗体很少。本研究的目的是通过检测抗人单克隆抗体(mAb)克隆对正常、肿瘤性和培养的猫造血祖细胞的反应,以确定其与猫对应物的交叉反应性,从而扩大可用于猫造血细胞免疫表型特征分析的抗体库。在本研究中,对24个抗人mAb克隆进行了正常或肿瘤性猫骨髓和外周血细胞检测。其中6种mAb,包括抗分化簇(CD)61、抗CD18、抗CD14、抗CD235a、抗CD41和抗CD29,与正常猫骨髓细胞发生交叉反应;而抗CD33和抗CD117与两只患有骨髓增生异常综合征猫的骨髓原始细胞发生交叉反应;抗CD71、抗235a、抗41和抗42与一只患有红白血病猫的未成熟红细胞发生交叉反应。在一只猫免疫缺陷病毒阳性猫中,骨髓细胞用抗CD33、抗14和抗45标记。抗CD18、抗CD14、抗CD41和抗CD61也与健康猫的外周血细胞发生反应。猫造血祖细胞在基于甲基纤维素的半固体培养基中形成集落,集落形成单位-粒细胞、单核细胞和爆式红系集落形成单位显著富集。一组6种抗猫mAb(抗CD21样、抗T淋巴细胞、抗CD172a、抗粒细胞、抗CD45样和抗CD18)和8种抗人抗体(抗CD71、抗CD33、抗CD235a、抗CD41、抗CD61、抗CD117、抗CD38和抗CD34)用于猫骨髓祖细胞的免疫表型特征分析。猫造血祖细胞表达CD45、CD33、CD235a和CD18,其中CD45表达水平最高。