Showing posts with label Phytosterols. Show all posts
Showing posts with label Phytosterols. Show all posts

Monday, 6 March 2023

Single-Cell Transcriptomics Reveals the Difference of Aortic Atherosclerosis Response to Phytosterols and Oxidation Products of Sterols

 Mol. Nut. Food Res. 2023, 2200811


Scope
Phytosterols (PS) and sterol oxidation products are key dietary factors influencing atherosclerosis besides cholesterol, although the mechanisms remain elusive. Recently, single-cell RNA sequencing (scRNA-seq) has revealed the heterogeneity of multiple cell types associated with complex pathogenesis in atherosclerosis development.

Methods and results
Here, we performed scRNA-seq to investigate the alterations in the aortic cells from ApoE−/− mice induced by diet-derived PS or two sterol oxidation products, phytosterols oxidation products (POPs) and cholesterol oxidation products (COPs). We identified four fibroblast subpopulations with different functions, and immunofluorescence demonstrated their spatial heterogeneity, providing evidence that suggested the transformation of smooth muscle cells (SMCs) and fibroblasts in atherosclerosis. The composition and gene expression profiles of aortic cells changed broadly in response to PS/COPs/POPs exposure. Notably, PS exhibited an atheroprotective effect where different gene expressions were mainly found in B cells. Exposure to COPs accelerated atherosclerosis and resulted in marked alternations in myofibroblast subpopulations and T cells, while POPs only altered fibroblast subpopulations and B cells.

Conclusion
Our data elucidates the effects of dietary PS/COPs/POPs on aortic cells during atherosclerosis development, especially on the newly identified fibroblast subpopulations.


Wednesday, 5 January 2022

Coffee silverskin: Characterization of B-vitamins, macronutrients, minerals and phytosterols

 Food Chem. 372, 131188, 2022


The present study assessed the nutritional composition of coffee silverskin (CSS) obtained from arabica roasted coffee. Following validated analytical methods, CSS resulted to be a high source of proteins (14.2 g/100 g) and dietary fibers (51.5 g/100 g). Moreover, the mineral analysis revealed high contents of calcium (1.1 g/100 g) and potassium (1.0 g/100 g). To date, this study provided the widest mineral profile of CSS with 30 minerals targeted including 23 microminerals with high levels of iron (238.0 mg/kg), manganese (46.7 mg/kg), copper (37.9 mg/kg), and zinc (31.9 mg/kg). Moreover, vitamins B2 (0.18–0.2 mg/kg) and B3 (2.5–3.1 mg/kg) were studied and reported for the first time in CSS. β-sitosterol (77.1 mg/kg), campesterol, stigmasterol, and Δ5-avenasterol, were also observed from the phytosterol analysis of CSS with a total level of 98.4 mg/kg. This rich nutritional profile highlights the potential values of CSS for innovative reuses in bioactive ingredients development.