XF Bioreactor MSC & EV Development Kits

Xeno-Free hMSC 4 x 500 ml Expansion & Exosome/EV Production

  • SKU/Catalog No: N/A
  • Kit Types: hBM-MSC Expansion Development Kit | hBM-MSC EV Development Kit
  • Price: $4,995.00$6,503.00
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Designed for development work in a scalable bioreactor system
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Overview

Overview

The Xeno-Free (XF) Bioreactor human Bone Marrow-derived MSC Starter Kits include RoosterBio XF hMSCs, XF RoosterNourish expansion media, and XF RoosterReplenish bioreactor feed.  A kit designed for process development and optimization studies with cell and media for 4 x 500 ml fed-batch hMSC bioreactor runs.

Simplified, step by step process recommendations from seed-train to bioreactor expansion are available for multiple bioreactor platforms to ensure no matter the level of bioreactor experience, scientists can quickly and effortlessly generate >100 million hMSCs within 8 to 10 days.

An additional kit option for hMSC-EV production includes RoosterCollect EV Pro to seamlessly transition from hMSC production to Exosomes / Extracellular Vesicle (EV) generation.

Intended Use: Research Use Only

Product Features

  • Each kit includes  – 4 x RoosterVial™-hBM-1M-XF (1 million hBM-MSCs, MSC-031) + 5 x RoosterNourish™-MSC-XF (500 mL, KT-016) + 4 x RoosterReplenish™-MSC-XF (10 mL, SU-023)
  • Extracellular Vesicle kits also include 4 x RoosterCollect EV Pro (500 ml, K41001)
  • A media exchange-free bioreactor system vetted in multiple platforms*
  • Backed by 2D to 3D comparability data

*Our system has been vetted in multiple bioreactor platforms, including PBS, Sartorius, Pall, Eppendorf, Univercells, Terumo and others.  Please contact us at info@roosterbio.com for platform specific recommendations.

Microcarriers not included:  Per our protocols and process recommendations for XF bioreactor cell culture, RoosterBio suggests using Corning® Low Concentration Synthemax® II Microcarriers (3781). Our system is also compatible with Corning CellBIND® Microcarriers (3779).

Product Documentation Scientific Resources