Planarian regeneration depends on the presence and precise regulation of pluripotent adult somatic stem cells named neoblasts, which differentiate to replace cells of any missing tissue. A characteristic feature of neoblasts is the presence of large perinuclear nonmembranous organelles named “chromatoid bodies”, which are comparable to ribonucleoprotein structures found in germ cells of organisms across different phyla. In order to better understand regulation of gene expression in neoblasts, and potentially the function and composition of chromatoid bodies, we characterized homologues to known germ and soma ribonucleoprotein granule components from other organisms and analyzed their function during regeneration of the planarian Dugesia jap...
Planarians are flatworms capable of regenerating any missing body region. This capacity is mediated ...
Planarians owe their remarkable regenerative capabilities to somatic pluripotent stem cells or neobl...
Precise regulation of gene expression is crucial for the maintenance of pluripotency and proper diff...
Planarian regeneration depends on the presence and precise regulation of pluripotent adult somatic s...
AbstractPlanarian regeneration depends on the presence and precise regulation of pluripotent adult s...
SummaryPlanarians can regenerate any missing body part in a process requiring dividing cells called ...
Planarians can regenerate any missing body part in a process requiring dividing cells called neoblas...
Freshwater planarians, Plathelminthes, have been an intriguing model animal of regeneration studies ...
Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent stem...
SummaryThe regenerative abilities of freshwater planarians are based on neoblasts, stem cells mainta...
| Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent st...
<div><p>Post-transcriptional regulatory mechanisms are of fundamental importance to form robust gene...
SummaryIn adult planarians, the replacement of cells lost to physiological turnover or injury is sus...
BACKGROUND: Planarian stem cells, or neoblasts, drive the almost unlimited regeneration capacities o...
The freshwater planarian is one of nature’s best regenerators. In just 7 days, a tiny planarian body...
Planarians are flatworms capable of regenerating any missing body region. This capacity is mediated ...
Planarians owe their remarkable regenerative capabilities to somatic pluripotent stem cells or neobl...
Precise regulation of gene expression is crucial for the maintenance of pluripotency and proper diff...
Planarian regeneration depends on the presence and precise regulation of pluripotent adult somatic s...
AbstractPlanarian regeneration depends on the presence and precise regulation of pluripotent adult s...
SummaryPlanarians can regenerate any missing body part in a process requiring dividing cells called ...
Planarians can regenerate any missing body part in a process requiring dividing cells called neoblas...
Freshwater planarians, Plathelminthes, have been an intriguing model animal of regeneration studies ...
Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent stem...
SummaryThe regenerative abilities of freshwater planarians are based on neoblasts, stem cells mainta...
| Freshwater planaria possess extreme regeneration capabilities mediated by abundant, pluripotent st...
<div><p>Post-transcriptional regulatory mechanisms are of fundamental importance to form robust gene...
SummaryIn adult planarians, the replacement of cells lost to physiological turnover or injury is sus...
BACKGROUND: Planarian stem cells, or neoblasts, drive the almost unlimited regeneration capacities o...
The freshwater planarian is one of nature’s best regenerators. In just 7 days, a tiny planarian body...
Planarians are flatworms capable of regenerating any missing body region. This capacity is mediated ...
Planarians owe their remarkable regenerative capabilities to somatic pluripotent stem cells or neobl...
Precise regulation of gene expression is crucial for the maintenance of pluripotency and proper diff...