Explore the revolutionary science of transdifferentiation - how cells can be directly converted from one type to another without stem cell intermediates, offering new hope for regenerative medicine.
An exploration of religiously based opposition to clinical and scientific interference with the human embryo, examining ethical frameworks and global policies.
Explore how human induced pluripotent stem cells are transforming Alzheimer's disease research through advanced 3D brain organoid models and personalized medicine approaches.
Explore the groundbreaking advances in in vivo editing of hematopoietic stem cells and how this technology is revolutionizing treatment for genetic blood disorders.
Explore groundbreaking advances in gene and stem cell therapies for treating hearing and balance disorders, including clinical trials and future directions.
Explore how CRISPR and stem cell technologies are transforming medicine by enabling precise genetic corrections for diseases like sickle cell anemia and cancer.
Explore how microRNAs and Ago2 protein work together as cellular traffic controllers to guide stem cell fate through genome-wide binding mapping.
Discover how the KOLF2.1J reference iPSC line is solving the reproducibility crisis in stem cell research and enabling large-scale collaborative studies.
Explore how mouse embryonic stem cells employ unique strategies to preserve their genomic integrity against constant DNA damage threats.
Exploring how CRISPR/Cas9 and synthetic DNA are used to create NPHP1 knockout stem cells for studying kidney diseases.