Stem Cells News and Research

RSS
Stem cells have the remarkable potential to develop into many different cell types in the body during early life and growth. In addition, in many tissues they serve as a sort of internal repair system, dividing essentially without limit to replenish other cells as long as the person or animal is still alive. When a stem cell divides, each new cell has the potential either to remain a stem cell or become another type of cell with a more specialized function, such as a muscle cell, a red blood cell, or a brain cell.
Prenatal high fructose exposure impairs brain development and memory

Prenatal high fructose exposure impairs brain development and memory

Vascular organoids may be an effective treatment for ischemic heart disease

Vascular organoids may be an effective treatment for ischemic heart disease

Evolutionary noncoding RNAs reveal new targets for cancer therapy

Evolutionary noncoding RNAs reveal new targets for cancer therapy

Engineered CAR T cells show promise against myeloproliferative neoplasms

Engineered CAR T cells show promise against myeloproliferative neoplasms

LEF1 and niche-derived factors regulate T cell stemness across chronic diseases

LEF1 and niche-derived factors regulate T cell stemness across chronic diseases

German study identifies therapeutic Achilles' heel for advanced colorectal cancer

German study identifies therapeutic Achilles' heel for advanced colorectal cancer

Rare genetic condition offers new insights into human aging process

Rare genetic condition offers new insights into human aging process

Duke engineers grow retinal blood vessel cells from pluripotent stem cells

Duke engineers grow retinal blood vessel cells from pluripotent stem cells

New diagnostic tool bypasses blood-brain barrier to detect autism early

New diagnostic tool bypasses blood-brain barrier to detect autism early

Genetic research links KDF1 mutation to impaired dental epithelial organization

Genetic research links KDF1 mutation to impaired dental epithelial organization

New drug candidate reduces toxic protein clumps of Huntington's disease

New drug candidate reduces toxic protein clumps of Huntington's disease

Scientists map how cellular senescence and stemness interact in disease

Scientists map how cellular senescence and stemness interact in disease

Scaling organoid workflows with automation and AI for drug discovery

Scaling organoid workflows with automation and AI for drug discovery

Pioneering gene therapy for rare immune disorder shows promise in early pre-clinical studies

Pioneering gene therapy for rare immune disorder shows promise in early pre-clinical studies

Scientists identify key osteoblast protein that promotes bone formation

Scientists identify key osteoblast protein that promotes bone formation

Targeting specific immune pathways could prevent severe reperfusion injury

Targeting specific immune pathways could prevent severe reperfusion injury

Opposing protein pathways control skin regeneration and disease development

Opposing protein pathways control skin regeneration and disease development

Base editing technique reveals crucial gene for early human development

Base editing technique reveals crucial gene for early human development

Study identifies key fibrotic cells driving hypertrophic scars

Study identifies key fibrotic cells driving hypertrophic scars

Modulating pathogenic scar cells promotes spinal cord regeneration

Modulating pathogenic scar cells promotes spinal cord regeneration

While we only use edited and approved content for Azthena answers, it may on occasions provide incorrect responses. Please confirm any data provided with the related suppliers or authors. We do not provide medical advice, if you search for medical information you must always consult a medical professional before acting on any information provided.

Your questions, but not your email details will be shared with OpenAI and retained for 30 days in accordance with their privacy principles.

Please do not ask questions that use sensitive or confidential information.

Read the full Terms & Conditions.