1.OCT-based quantitative measurement of Bruch's membrane opening indicators and its clinical application progress
Xin YAN ; Yijun YAO ; Meng TIAN ; Fan YANG ; Zixing LU ; Fanqi SUN ; Bei TIAN
International Eye Science 2026;26(9):1544-1550
Bruch's membrane opening(BMO)is the true anatomical border of the optic nerve head and provides higher anatomical accuracy, structural stability and measurement repeatability than traditional assessments based on the clinically visible optic disc margin. Optical coherence tomography(OCT)serves as a key technical tool for quantitative assessment of BMO-associated structural parameters. With the development of spectral-domain OCT(SD-OCT)and swept-source OCT(SS-OCT), parameters such as BMO-minimum rim width(BMO-MRW), BMO-minimum rim area(BMO-MRA), BMO area, offset, tilt, and torsion have emerged as important imaging biomarkers for evaluating optic nerve head morphology and for assisting in the diagnosis, staging, and longitudinal monitoring of glaucoma, myopia, and pathological myopia. Traditionally, the acquisition of these parameters has relied heavily on manual segmentation, which is limited by low efficiency, strong subjectivity, and considerable inter-observer variability. In recent years, artificial intelligence has been increasingly applied to OCT image segmentation, quality control, cross-device calibration, and automated quantitative analysis, thereby improving efficiency, objectivity, and reproducibility, particularly in eyes with complex optic disc morphology. This review summarizes recent advances in the BMO-related terminology standardization, imaging and quantitative methodologies, quality control,artificial intelligence-assisted analysis, as well as clinical evidence of its application in glaucoma, myopia and pathological myopia. Particular emphasis is placed on their potential value in the differential diagnosis and follow-up evaluation of highly myopic eyes with glaucoma, aiming to provide a reference for the standardized clinical application and future translational use of BMO-related parameters.
2.CFTR suppressing hyperhomocysteinemia-induced hepatocyte damage in ApoE-/-mice
Yun JIAO ; Anning YANG ; Yue SUN ; Fanqi KONG ; Xiaoling YANG ; Minghao ZHANG ; Shaoju JING ; Yideng JIANG
The Journal of Practical Medicine 2016;32(10):1574-1577
Objective To investigate the function of CFTR in ApoE-/- mice with HHcy-induced hepato-cellular injury. Methods Thirty six 5-week old ApoE-/- mice were divided into three groups , including the ApoE-/- group, the HHcy group and the intervention group, (n = 12). Twelve normal C57BL/6J mice were fed with regular mouse diet as the normal control (SPF grade). HL-7702 human liver cells were intervened by Hcy (100 μmol/L) and 100 μmol/L Hcy + folic acid (100 μmol/L Hcy + F). The changes of Hcy, ALT and AST in the serum and the expression of CFTR mRNA and protein in liver and liver cells were detected. The concen-trations of ALT and AST in the liver cell intervened by VX-770 agonist and CFTR(inh)-172 inhibitor were mea-sured by ELISA. Results Compared with the control group , the levels of Hcy , ALT and AST were higher and the levels of CFTR mRNA and protein were lower in the Meth group (P < 0. 05 ) , while the reverse result in the Meth + F group (P < 0.05). Compared with the control group, the levels of CFTR mRNA and protein were de-creased and the levels of ALT and AST were increased in the 100 μmol/L Hcy group (P < 0.05). Compared with the 100 μmol/L Hcy group , the levels of CFTR mRNA and protein were increased and the levels of ALT and AST were decreased in the 100 μmol/L Hcy + F group (P < 0.05). Stimulated with VX-770 can reduce the concentrations of ALT and AST and the vice versa in the CFTR (inh)-17 group the concentration was increased in liver cells. Conclusion CFTR plays an important role in the regulation of hepatocellular injury by HHcy.

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