Single Cell Omics

Single-cell and spatial omics offer a powerful combination for exploring the complexities of biology at both the cellular and tissue levels, paving the way for new discoveries and innovations in biomedical research.

Single-cell omics refers to a set of advanced technologies and methodologies that allow researchers to study biological molecules at the single-cell level. This approach encompasses various techniques, including genomics, transcriptomics, epigenomics, proteomics, and metabolomics, all applied with single-cell resolution. It enables researchers to explore cellular diversity and dynamics with unprecedented precision. As these technologies continue to advance, single-cell omics will play a crucial role in personalized medicine and in deepening our understanding of complex biological systems. Novogene offers comprehensive services in single-cell gene expression, single-cell immune profiling, and long-read single-cell transcriptome analysis.

Spatial omics allows researchers to map gene expression within the spatial architecture of tissues, preserving the context of cellular organization. Unlike conventional RNA sequencing that aggregates data from bulk tissue samples, spatial transcriptomics retains the spatial distribution of gene expression, enabling a detailed exploration of cellular interactions and tissue heterogeneity. This technology reveals critical insights into the spatial arrangement and functional states of cells within their native microenvironments, which is essential for understanding developmental biology, pathology, and therapeutic responses. Novogene’s spatial omics services provide comprehensive solutions, from spatial gene expression profiling to advanced data analysis, empowering researchers to decode the spatial