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Application SolutionsHematopoietic Stem Cell-derived Megakaryocytes (HSC-derived Megakaryocytes)
Megakaryocytes (Megakaryocytes, MKs) are key cells in the hematopoietic system responsible for platelet production.
Application SolutionsHematopoietic Stem Cell-derived Myeloid Cells
Hematopoietic Stem Cells (HSCs) are the core cell population responsible for maintaining blood system homeostasis throughout life.
Application SolutionsHematopoietic Stem Cell-derived T Cells
Hematopoietic Stem Cells (HSCs) are the core cell population responsible for the continuous renewal of the human immune system.
Application SolutionsHematopoietic Stem Cell-derived B Cells (HSC-derived B Cells)
B cells (B lymphocytes) are a critical component of the adaptive immune system, responsible for antibody production, antigen presentation, and the establishment of immune memory.
Application SolutionsHematopoietic Stem Cell (HSC)-derived Natural Killer Cells (NK Cells)
Natural Killer Cells (NK cells) are important effector cells of the innate immune system, possessing the ability to rapidly recognize and eliminate tumor cells and virus-infected cells.
Application SolutionsNeural Stem Cell-derived Neurons
Neural Stem Cells (NSCs) are neural progenitor cells with self-renewal capacity and multipotent differentiation potential.
Application SolutionsThyroid/Other Endodermal Organ Lineages Derived from Pluripotent Stem Cells
Thyroid Hypothyroidism, Congenital Thyroid Developmental Defects, Brain–Lung–Thyroid Syndrome, and Hormone Dependence after Thyroid Surgery represent major unmet clinical needs in endocrine medicine.
Application SolutionsPluripotent Stem Cell-Derived Hepatic Lineage
The clinical demand for end-stage liver failure, hereditary metabolic liver diseases, viral hepatitis, and drug-induced liver injury continues to increase, while donor liver resources remain extremely limited, restricting the application of liver transplantation and hepatocyte transplantation.
Application SolutionsPluripotent Stem Cell-Derived Pancreatic Lineage
Type 1 diabetes is caused by autoimmune destruction of pancreatic β cells, leaving patients dependent on exogenous insulin for life and prone to severe complications such as diabetic nephropathy, blindness, and cardiovascular diseases.
