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International Eye Science ; (12): 1168-1172, 2022.
Artigo em Chinês | WPRIM | ID: wpr-929500

RESUMO

AIM: To observe the macular retina vascular density of patients with acute central retinal artery occlusion(CRAO)by optical coherence tomography angiography(OCTA)and to analyze the relationship with retinal circulation time of these patients on fundus fluorescein angiography(FFA).METHODS: Retrospective case analysis. A total of 43 patients(43 eyes)from January 2019 to March 2021 admitted to Shaanxi Eye Hospital with clinical diagnosis of acute CRAO(course of disease ≤7d)were included. All patients underwent FFA, OCTA, best corrected visual acuity(BCVA)examination and thrombolytic therapy. The patients with enhanced or unchanged retinal blood flow signal in the affected eye showed on OCTA before treatment compared with the contralateral healthy eye were assigned to group A, and the patients with retinal blood flow signal of the affected eye was lower than that in the contralateral healthy eye by OCTA were assigned to group B. Image J software was used for OCTA image processing to evaluate the macular retina vascular density before treatment, and FFA examination was performed to record the affected retinal circulation time before treatment.RESULTS: The retinal vascular density of patients in the affected eye and the contralateral healthy eye in group A was higher than that in group B(25.08%±4.40% vs 12.24%±3.41%, 25.72%±2.70% vs 17.89%±4.55%, all P<0.001), the filling time(FT)of retinal artery trunk to terminal in group B [96(20.50, 193.50)s] was longer than that in group A [11(5.00, 19.50)s](P<0.001). The course of disease, the retinal vascular density of contralateral healthy eye and FT were related factors of retinal vascular density of the affected eye(all P<0.05), and the influence strength order was FT, course of disease and the retinal vascular density of contralateral healthy eye, in which the course of disease and FT was negatively correlated with the retinal vascular density.CONCLUSION: OCTA retinal vascular density was correlated with FFA retinal circulation time in CRAO patients.

2.
Chinese Journal of Tissue Engineering Research ; (53): 2921-2926, 2018.
Artigo em Chinês | WPRIM | ID: wpr-698798

RESUMO

BACKGROUND: Magnetic nanoparticles have attracted tremendous attention for their diverse biomedical applications involving tumor hyperthermia, drug controlled release and magnetic resonance angiography. The interaction between biomaterials and cells is the major part in the in vitro study, and the evaluation of cellular uptake of magnetic nanoparticles is indispensable for tumor hyperthermia and drug delivery. OBJECTIVE: To review the progress of evaluation methodology of cellular uptake of magnetic nanoparticles. METHODS: The articles about magnetic nanoparticles and cellular uptake were retrieved from PubMed, SCI and Embase databases published during January 2010 to June 2017 by the first author using computer. The Mesh terms were "magnetic nanoparticles", and the key words were "cellular uptake", "internalization" or "endocytosis". The logical operator between them was "AND". RESULTS AND CONCLUSION: Qualitative quantitative assessment methods for cellular uptake of magnetic nanoparticles include Prussian blue staining, fluorescence microscopy, confocal microscopy,transmission electron microscopy. Quantitative assessment methods for cellular uptake of magnetic nanoparticles include inductively coupled plasma, magnetization measurements, colorimetry of Prussian blue staining. The development direction of the evaluation methodology is from qualitative to quantitative. As each method has its own merits and demerits, we should choose the right evaluation method based on the function and application of magnetic nanoparticles and then supply the right experimental basis for the biomedical application of magnetite nanoparticles.

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