bioRxiv Science⌕ Search

Biology subjects

Zhao, Y.-x.

Publications and source records attributed to Zhao, Y.-x..

2 recordsLinked to original sources

Attenuating amyloid-beta pathology in mice with in situ programmed astrocytes

Astrocytes are abundant cells in the central nervous system that provide trophic support for neurons and clear detrimental factors, such as A{beta} oligomers (A{beta}Os). However, in the brains of Alzheimers disease (AD) patients, astrocytes lose these physiological functions. Here, we genetically engineered astrocytes with an anti-A{beta}O chimeric antigen receptor (CAR), constructed by replacing the antigen-binding domain of MerTK with an A{beta}O-specific single-chain variable fragment, to direct their phagocytic activity against A{beta}Os. CAR-engineered astrocytes (CAR-As) showed significantly enhanced phagocytosis of A{beta}Os due to effective activation of Rac1, Cdc42 and RhoA and markedly decreased release of pro-inflammatory cytokines due to inhibition of the NF-{kappa}B and cytokine receptor signalling pathways. Consistently, in situ CAR-As markedly ameliorated the cognitive deficits of APP/PS1 transgenic mice possibly by clearing A{beta}Os and creating a non-inflammatory microenvironment for neuronal survival and the restoration of microglia to a healthy phenotype. Our present study is the first to introduce a CAR-A-based therapy, validate its feasibility and effectiveness, and highlight its potential application for the treatment of AD and other brain disorders.

neuroscience↗

Slicing the genome of star-fruit (Averrhoa carambola L.)

The Averrhoa carambola is commonly known as star fruit because of its peculiar shape and its fruit is a rich source of minerals and vitamins. It is also used in traditional medicines in countries like India, China, the Philippines, and Brazil for treating various ailments such as fever, diarrhea, vomiting, and skin disease. Here we present the first draft genome of the Oxalidaceae family with an assembled genome size of 470.51 Mb. In total, 24,726 protein-coding genes were identified and 16,490 genes were annotated using various well-known databases. The phylogenomic analysis confirmed the evolutionary position of the Oxalidaceae family. Based on the gene functional annotations, we also discovered the enzymes possibly involved in the important nutritional pathways in star fruit genome. Overall, being the first sequenced genome in the Oxalidaceae family, the data provides an essential resource for the nutritional, medicinal, and cultivational studies for this economically important star-fruit plant.

genomics↗