Skip to content

#stem cell

2 public questions tagged with this topic.

What happens when a stem cell divides symmetrically into two daughter cells that retain stemness?

Symmetric self-renewing division yields two daughter cells inheriting stemness program, adhesion molecules, and niche responsiveness, thereby doubling stem cell number per cycle. This strategy serves as primary mechanism for pool expansion during embryonic growth, after injury when rapid repopulation needed, or in optimized culture when self-renewal signals dominate. Regulatory control involves spindle orientation relative to basement membrane so both daughters remain within Wnt-rich, BMP-low niche retaining Lgr5 expression. Excessive unchecked symmetric expansion predisposes to neoplastic hyperplasia, requiring tight feedback via contact inhibition and Hippo pathway signaling to maintain tissue homeostasis balanced.

Ref: Morrison & Kimble, Nature 2006; Simons & Clevers, Cell 2011: Symmetric self-renewal expansion mechanism niche.

Which of the following is the defining characteristic of a stem cell?

Self-renewal and differentiation capacity together constitute fundamental defining traits across all stem cell classifications from embryonic to adult. Self-renewal allows maintenance of undiminished pool through repeated mitotic cycles without loss of potency or accumulation of senescence, while differentiation produces specialized progeny acquiring distinct morphological and functional characteristics such as contractility or secretion. This duality is governed by precise balance of core transcription factors like Oct4, Sox2, lineage regulators, and niche-derived cues controlling symmetric versus asymmetric division orientation. Solely symmetric division or single lineage production or restriction to embryonic stages are individually insufficient descriptors of true stemness broadly.

Ref: Gilbert, Developmental Biology, 12th ed., Chapter 6: Self-renewal and differentiation defining stem characteristics.