Morphometrics and First Ultrastructural Characterizations of Intra-Erythrocytic Stages of So-Called Haemogregarina damiettae Ramadan et al. (1996) With Special Reference to Its Cytopathological Effects on the Infected Erythrocytes.

IF 2 3区 工程技术 Q2 ANATOMY & MORPHOLOGY Microscopy Research and Technique Pub Date : 2025-01-14 DOI:10.1002/jemt.24790
Reda M Mansour
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Abstract

The current study provides the first ultrastructural observations on the intraerythrocytic stages of so-called Haemogregarina damiettae and their cytopathological effects on the infected erythrocytes (IEs) in addition to the recording of new morphometric data. The intraerythrocytic stages are attributed to the immature forms or trophozoites (Ts), and mature gamonts (Gs). Ts are typically bowling-bottle shaped with nucleus (TN) occupying its globose part, while Gs are typically banana- shaped. Ts measure 9.60-13.77 (12.53 ± 0.95) × 3.29-5.72 (4.18 ± 0.52) μm, however, Gs measure 14.05-16.13 (15.15 ± 0.60) × 3.38-4.74 (4.06 ± 0.32). Parasite shape index, nuclear/body, and nuclear/cytoplasmic ratio are calculated for both Ts and Gs. Moreover, shape index, nuclear/erythrocytic ratio, nuclear/cytoplasmic ratio are determined for both uninfected erythrocytes (UIEs) and IEs. At ultrastructural level, the parasite exhibited numerous unique features such as the presence of unsutured covering capsule (Ca), intracytoplasmic membraneous structures (ICM), and electron-dense connecting structures (CS) between the degradable cytoplasmic mass (DC) of IEs and parasite itself which are postulated to perform a feeding function. The cytopathological effects on IEs include erythrocytic shape distortion, hypertrophy, dehemoglobinization, as well as nucleus size and shape changes. Erythrocytic karyolysis is confirmed by light and electron microscopy. In addition, all IEs showed characteristics two lateral polar projections or flape-like extensions (FE) supported by microtubules-like structures. Moreover, parasitophorous vacuole membrane (PVM) form in most cases a thick internal lining (IL) of homogenous electron-lucent materials at parasite-facing side and knob-like thickenings (K) of electron-dense materials on erythrocytic cytoplasm-facing side.

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damiettae Ramadan等人(1996)红细胞内阶段的形态计量学和第一次超微结构表征,特别提到其对感染红细胞的细胞病理学影响。
本研究首次提供了所谓的damiettae的红细胞内阶段的超微结构观察及其对感染红细胞(IEs)的细胞病理学影响,并记录了新的形态计量学数据。红细胞内阶段是由未成熟的滋养体(Ts)和成熟的单体(Gs)组成的。t是典型的保龄球形,核(TN)占据其球形部分,而g是典型的香蕉形。Ts测量9.60 - -13.77(12.53±0.95)×3.29 - -5.72μm(4.18±0.52),然而,Gs测量14.05 - -16.13(15.15±0.60)×3.38 - -4.74(4.06±0.32)。计算了Ts和Gs的寄生虫形状指数、核/体和核/细胞质比。此外,形状指数,核/红细胞比,核/细胞质比均测定未感染红细胞(UIEs)和IEs。在超微结构水平上,寄生虫表现出许多独特的特征,如存在未缝合的覆盖囊(Ca)、胞浆内膜结构(ICM)和可降解的细胞质团(DC)与寄生虫本身之间的电子致密连接结构(CS),这些结构被认为具有摄食功能。IEs的细胞病理学影响包括红细胞形状扭曲、肥大、去血红蛋白化以及细胞核大小和形状的改变。光镜和电镜证实有红细胞核溶解。此外,所有IEs均表现出由微管样结构支撑的两个侧极突出或皮瓣样延伸(FE)特征。此外,寄生物液泡膜(PVM)在大多数情况下形成一个厚的内壁(IL)均质电子透光材料和旋钮状增厚(K)的电子致密材料在红细胞细胞质面。
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来源期刊
Microscopy Research and Technique
Microscopy Research and Technique 医学-解剖学与形态学
CiteScore
5.30
自引率
20.00%
发文量
233
审稿时长
4.7 months
期刊介绍: Microscopy Research and Technique (MRT) publishes articles on all aspects of advanced microscopy original architecture and methodologies with applications in the biological, clinical, chemical, and materials sciences. Original basic and applied research as well as technical papers dealing with the various subsets of microscopy are encouraged. MRT is the right form for those developing new microscopy methods or using the microscope to answer key questions in basic and applied research.
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