Peters A M, Saverymuttu S H, Bell R N, Lavender J P
Scand J Haematol. 1985 Feb;34(2):137-45. doi: 10.1111/j.1600-0609.1985.tb02246.x.
We have studied the kinetics of autologous 111In-labelled platelets in patients with reduced platelet life span (less than 4.5 d), most of whom were thrombocytopenic, and of homologous 111In-labelled platelets in patients with severe thrombocytopenia. Intrasplenic platelet transit time (t) was calculated by compartmental and deconvolution analysis. In patients with a mean platelet life span of less than a few h, compartmental analysis may not be valid and so only deconvolution analysis was applied. There was a close correlation between values of t given by the two approaches (r = 0.88, n = 18, P less than 0.001). In some patients with severely reduced mean platelet life span (MPLS), the deconvolved splenic platelet clearance curves appeared to approach an asymptote, the relative magnitude of which was indicative of the irreversible extraction fraction by the spleen of incoming platelets. In other patients with severely reduced MPLS resulting from abnormal intra-hepatic platelet destruction, the deconvolved splenic curves resembled the normal. The intrasplenic platelet transit time showed no clear relationship with other parameters. It was concluded that platelet pooling within the spleen is normal in patients with reduced platelet life span, including idiopathic thrombocytopenic purpura, even when the predominant site of destruction is the spleen, and that platelets are not delayed in transit through the spleen in preparation for their removal from the circulation and ultimate destruction.
我们研究了血小板寿命缩短(少于4.5天)患者自体111铟标记血小板的动力学,其中大多数患者有血小板减少症,还研究了严重血小板减少症患者异体111铟标记血小板的动力学。脾内血小板通过时间(t)通过房室分析和反卷积分析计算得出。对于平均血小板寿命少于几小时的患者,房室分析可能无效,因此仅应用反卷积分析。两种方法得出的t值之间存在密切相关性(r = 0.88,n = 18,P<0.001)。在一些平均血小板寿命(MPLS)严重缩短的患者中,反卷积脾血小板清除曲线似乎接近一条渐近线,其相对大小表明脾脏对进入的血小板的不可逆提取分数。在其他因肝内血小板异常破坏导致MPLS严重缩短的患者中,反卷积脾曲线与正常曲线相似。脾内血小板通过时间与其他参数无明显关系。得出的结论是,血小板寿命缩短的患者,包括特发性血小板减少性紫癜患者,即使主要破坏部位是脾脏,脾脏内血小板聚集也是正常的,并且血小板在通过脾脏时不会延迟,以便从循环中清除并最终被破坏。