Background In recent years, planaria have emerged as an important model system for research into stem cells and regeneration. Attention is focused on their unique stem cells, the neoblasts, which can differentiate into any cell type present in the adult organism. Sequencing of the Schmidtea mediterranea genome and some expressed sequence tag projects have generated extensive data on the genetic profile of these cells. However, little information is available on their protein dynamics. Results We developed a proteomic strategy to identify neoblast-specific proteins. Here we describe the method and discuss the results in comparison to the genomic high-throughput analyses carried out in planaria and to proteomic studies using other stem cell s...
Planarians possess amazing abilities to regulate tissue homeostasis and regenerate missing body part...
BACKGROUND: Mammalian stem cells are difficult to access experimentally; model systems that can reg...
Matrix metalloproteinases (MMPs) are major executors of extracellular matrix remodeling and, consequ...
Abstract Background In recent years, planaria have emerged as an important model system for research...
Background In recent years, planaria have emerged as an important model system for research into ste...
SummaryPlanarian regeneration depends on the presence of pluripotent stem cells in the adult. We dev...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Cataloged from PDF ve...
SummaryPlanarians are flatworms capable of regenerating any missing body region. This capacity is me...
| Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent st...
Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent stem...
Planarians owe their remarkable regenerative capabilities to somatic pluripotent stem cells or neobl...
SummaryIn adult planarians, the replacement of cells lost to physiological turnover or injury is sus...
Freshwater planaria are a very attractive model system for stem cell biology, tissue homeostasis, an...
Planarian regeneration depends on the presence of pluripotent stem cells in the adult. We developed ...
Background: Planarian stem cells, or neoblasts, drive the almost unlimited regeneration capacities o...
Planarians possess amazing abilities to regulate tissue homeostasis and regenerate missing body part...
BACKGROUND: Mammalian stem cells are difficult to access experimentally; model systems that can reg...
Matrix metalloproteinases (MMPs) are major executors of extracellular matrix remodeling and, consequ...
Abstract Background In recent years, planaria have emerged as an important model system for research...
Background In recent years, planaria have emerged as an important model system for research into ste...
SummaryPlanarian regeneration depends on the presence of pluripotent stem cells in the adult. We dev...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Biology, 2012.Cataloged from PDF ve...
SummaryPlanarians are flatworms capable of regenerating any missing body region. This capacity is me...
| Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent st...
Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent stem...
Planarians owe their remarkable regenerative capabilities to somatic pluripotent stem cells or neobl...
SummaryIn adult planarians, the replacement of cells lost to physiological turnover or injury is sus...
Freshwater planaria are a very attractive model system for stem cell biology, tissue homeostasis, an...
Planarian regeneration depends on the presence of pluripotent stem cells in the adult. We developed ...
Background: Planarian stem cells, or neoblasts, drive the almost unlimited regeneration capacities o...
Planarians possess amazing abilities to regulate tissue homeostasis and regenerate missing body part...
BACKGROUND: Mammalian stem cells are difficult to access experimentally; model systems that can reg...
Matrix metalloproteinases (MMPs) are major executors of extracellular matrix remodeling and, consequ...