Department of Biomedical Engineering, Texas A&M University, College Station, Texas, United States of America.
Department of Biochemistry & Biophysics, Texas A&M University, College Station, Texas, United States of America.
PLoS One. 2022 Apr 7;17(4):e0266441. doi: 10.1371/journal.pone.0266441. eCollection 2022.
Malaria is often most endemic in remote regions where diagnostic microscopy services are unavailable. In such regions, the use of rapid diagnostic tests fails to quantify parasitemia measurements which reflect the concentration of Plasmodium parasites in the bloodstream. Thus, novel diagnostic and monitoring technologies capable of providing such information could improve the quality of treatment, monitoring, and eradication efforts. A low-cost, portable microscope for gathering quantitative parasitemia data from fluorescently stained thin blood smears is presented. The system employs bimodal imaging using components optimized for cost savings, system robustness, and optical performance. The microscope is novel for its use of monochromatic visible illumination paired with a long working distance singlet aspheric objective lens that can image both traditionally mounted and cartridge-based blood smears. Eight dilutions of red blood cells containing laboratory cultured wild-type P. falciparum were used to create thin smears which were stained with SYBR Green-1 fluorescent dye. Two subsequent images are captured for each field-of-view, with brightfield images providing cell counts and fluorescence images providing parasite localization data. Results indicate the successful resolution of sub-micron sized parasites, and parasitemia measurements from the prototype microscope display linear correlation with measurements from a benchtop microscope with a limit of detection of 0.18 parasites per 100 red blood cells.
疟疾在缺乏诊断显微镜服务的偏远地区最为流行。在这些地区,快速诊断测试无法量化寄生虫血症测量值,而寄生虫血症测量值反映了血液中疟原虫的浓度。因此,能够提供此类信息的新型诊断和监测技术可以提高治疗、监测和根除工作的质量。本文提出了一种低成本、便携式显微镜,用于从荧光染色的薄血涂片收集定量寄生虫血症数据。该系统采用双模态成像,使用经过成本优化、系统稳健性和光学性能优化的组件。该显微镜的新颖之处在于它使用单色可见光照明,并结合了长工作距离的单分散非球面物镜,可对传统安装和盒式载玻片的血涂片进行成像。使用含有实验室培养的野生型疟原虫 falciparum 的红细胞进行了 8 个稀释度的实验,以创建用 SYBR Green-1 荧光染料染色的薄涂片。每个视场捕获两个后续图像,明场图像提供细胞计数,荧光图像提供寄生虫定位数据。结果表明,成功地解析了亚微米大小的寄生虫,并且原型显微镜的寄生虫血症测量值与具有 0.18 个寄生虫/100 个红细胞的检测限的台式显微镜的测量值呈线性相关。