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Xing Zhu

Publications and source records attributed to Xing Zhu.

3 recordsLinked to original sources

A single-cell study of transcription and RNA splicing in MDD and ALC.

Major depressive disorder (MDD) and problematic alcohol use (ALC) commonly co-occur, yet the extent, genomic distribution, and biological context of their shared genetic architecture remain incompletely understood. Here, we integrated genome-wide and local genetic architecture analyses with tissue, spatial, single-cell, and multi-omics analyses to characterize the shared genetic basis of MDD and ALC. Across methods, the two phenotypes showed a consistent positive genetic correlation (rg = 0.380-0.582). MiXeR estimated that they shared approximately 5479 variants with non-zero additive genetic effects, with the shared component accounting for a larger proportion of the polygenic architecture of ALC than of MDD. Local analyses further indicated that shared genetic covariance was concentrated in a limited number of genomic segments. At the tissue and cellular levels, genetic signals were primarily associated with central nervous system tissues and neuronal lineages, with additional support for oligodendrocyte-related populations; the two phenotypes also differed in the distribution and within-cell-type heterogeneity of disease-relevance scores. Multi-omics integration prioritized MED19 and ACO2 as candidate genes and highlighted processes related to mitochondrial energy metabolism and synaptic function. These findings refine the genomic, tissue, and cellular context of the shared genetic architecture of MDD and ALC and provide prioritized genomic regions, cell types, and candidate genes for validation in independent populations and functional studies.

Major Depressive Disorder↗

Discrete polarization absorption property of carbon nanotubes studied by using scanning near-field optical microscope.

By using scanning near-field optical microscopy (SNOM), we have observed the polarization phenomena of carbon nanotubes (CNTs), which were synthesized by pyrolysis of a metal phthalocyanine method. Using SNOM, an area of about 100 nm in the thin part of the honeycomblike aligned CNT can be investigated, where the CNTs are nearly parallel or cross aligned with only a few layers. Transmission intensity of the light absorption with constant height scan identified the thickness of the nanotube layers. By changing the linear polarization of the incident light, the dependence of transmission versus polarization angle was recorded. The observed different polarization cannot be explained by using the model of optical absorption of continuum medium. We have proposed a model of discrete polarization absorption, which can be used to identify the number of layers of CNTs and their relative orientations. The combination of SNOM technique and our model can be used for optical polarization of carbon nanotubes of discrete medium.

Journal Article↗