Lifecube™ SSB Single-Use Bottle Assemblies with Molded Silicone Cap, 3 Ports 1/4"-1/4"-1/8" HB Sterile, 10/pk

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Part No. SSBG12513C01
Volume
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*Not for medical use
*Ships out within 12 Business Days
*Customers are responsible for any import duties or taxes
*Read our Shipping Policy and Refund Policy
*Not for medical use

Cobetter Lifecube™ SSB PETG Square media bottles are used for preparation and storage of cell culture media, buffers, sera or biological liquids.

Specifications

Bottle Dimensions
125 mL 52.0 x 52.0 x 104.4
LxWxH (mm) 250mL 58.0 x 58.0 x 141.0
500mL 73.0 x 73.0 x 171.5
1L 93.0 x 93.0 x 213.5
Physical Properties Temperature Range

PETG: -40 to 60°C

PC: -80 to 121°C
Cap Diameter 38 mm
Cap Material (2 Ports)

Cap: PP

Molded seal part: Platinum-cured silicone
Tubing Feed Line 2 x 1/4" ID Lifemeta™ STT  Platinum-Cure Silicone Tubing + Metallic Sleeve + ECS Female Connector
Vent Tube 1/8" ID Lifemeta™ STT Platinum-Cured Silicone Tubing + 0.2μm Vent Filter
Dip Tube 2 x 1/4" ID Lifemeta™ STT Platinum-Cured Silicone Tubing
Sterility Delivery Condition
Sterile
Sterilization Method

PETG: Gamma irradiation at 25-45kGy

PC: Gamma irradiation at 25-45kGy or autoclaved for 30 minutes at 121°C
Package Pack Size 10 pcs/pk
Packaging Individually packed in PE bag

Features

  • The bottle is made of PETG, the cap is made of HDPE, which are recyclable plastic
  • All materials comply with USP Class VI standards
  • Extremely low levels of extractables
  • Economically designed for the single-use market
  • Customized designs, sizes, packaging are available upon request

Applications

  • Cell culture laboratories
  • Liquid handling and storage
  • Formulations of media and reagents or powder ingredients 

Regulatory Compliance

  • Particulate matter in injections meet the requirements in USP <788> for large volume parenterals
  • Endotoxin limit of WFI System< 0.25 EU/mL with the Limulus Amebocyte Lysate (LAL), USP <85>
  • Meet the requirement of current USP <87> Class VI, Biological Reactivity Test, In Vitro
  • Meet the criteria of current USP <88> Class VI, Biological Reactivity Test, In Vivo
  • Complies with FDA 21 CFR Part 177-182 (Indirect food additives)
  • Products do not contain animal derived components and are free from TSE risk
  • Products are manufactured in a facility which adheres to ISO 9001:2015 Quality management systems
  • Products follow BPOG and USP <665> guidelines for E&L studies

Q: Cobetter single-use bottles are available in PETG and PC materials. How to select the material?

PETG bottle has a relatively narrow temperature tolerance range and can be used within -40 to 60°C, while PC bottle offers a wider temperature tolerance range, suitable for -80 to 121°C. Customers can choose the appropriate material based on their application needs (e.g., sterilization method, chemical compatibility, light transmittance).

Q: What are the applications of Cobetter single-use media bottle?

Cobetter Lifecube SSB single-use bottles are widely used in bio-pharmaceutical industry due to the sterility, convenience and low risk of cross-contamination. It can be used in many processes such as the storage and transmission of culture media and buffers, temporary storage of intermediate products, aseptic sampling and drugs freeze-thaw. PETG bottles are more suitable for the storage of culture media, buffers and other products, while PC bottles are more appropriate for the low-temperature st

Q: What are the available capacities for Cobetter single-use media bottles?

1. PETG bottles: 30/60/125/250/500mL and 1L
2. PC bottles: 125/250/500mL and 1L/2L

Q: How are Cobetter single-use media bottles packaged?

Sterilized using double-layer packaging before being packed into cartons for transport.

Q: What is the sterilization method for Cobetter single-use media bottles?

PETG bottles only can be sterilized by 25-45 kGy gamma irradiation and is not resistant to autoclaving. PC bottles can be sterilized by 25-45 kGy gamma irradiation or by autoclaving at 121℃.
* For autoclaving sterilization, fully loosen the cap to prevent deformation or leakage caused by differential thermal contraction between the cap and bottle body.

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