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CD34+ Stem Cell Mimic™

Slingshot BiosciencesSL-00046Available: Worldwide

A lyophilized cell mimic designed for reliable performance checks and normalization controls in immunophenotyping and flow cytometry workflows.

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Description

CD34+ Stem Cell Mimic™ is a specialized in vitro tool designed to model CD34+ hematopoietic stem and progenitor cell behavior under controlled laboratory conditions. It enables researchers to study stem cell–like responses without relying on primary human stem cell isolates.

Advanced stem cell–like modeling

CD34+ Stem Cell Mimic™ is formulated to emulate key phenotypic and functional characteristics associated with CD34+ stem and progenitor cells. This mimic system supports reproducible assessment of stem cell–relevant pathways, signaling responses, and differentiation cues in a consistent, ready-to-use format.

Consistent performance for in vitro research

Engineered for reliability, CD34+ Stem Cell Mimic™ minimizes lot-to-lot variability that can complicate experiments using primary material. Its standardized composition helps streamline assay development, optimization, and routine screening, supporting robust data generation across multiple studies and time points.

Streamlined integration into existing workflows

CD34+ Stem Cell Mimic™ is compatible with common in vitro workflows, including culture, imaging, and analytical assays that focus on hematopoietic stem cell–like properties. By reducing dependence on scarce donor-derived samples, it helps laboratories scale studies, improve planning, and maintain more predictable experimental timelines.

Key features and benefits of CD34+ Stem Cell Mimic™

  • Models essential characteristics of CD34+ hematopoietic stem and progenitor cells in vitro
  • Provides a standardized, reproducible alternative to primary human stem cell isolates
  • Reduces variability to support consistent assay development and screening
  • Integrates smoothly with established stem cell–focused culture and analysis workflows
  • Helps conserve limited donor material and improves scalability of stem cell–related research

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