We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

Features Partner Sites Information LinkXpress
Sign In
Advertise with Us
RANDOX LABORATORIES

Download Mobile App




Whole Organ Bioreactor Cultures Tissue-Engineered Esophagus, and Blood Vessels

By LabMedica International staff writers
Posted on 03 Nov 2010
Print article
A three-dimensional (3D) whole organ bioreactor rotates and is designed for cell seeding and culturing on both surfaces of a tubular matrix.

The Harvard Apparatus InBreath Whole Organ Bioreactor is a hollow organ 3D reactor system that is suitable for esophagus, trachea, intestines, blood vessels, and virtually any hollow organ. Harvard Apparatus (Holliston, MA, USA) in conjunction with Dr. Paolo Macchiarini, head and chairman of the Hospital Clínic (Barcelona Metro) de Barcelona, University of Barcelona (Spain) has developed the InBreath Whole Organ Bioreactor. Dr. Macchiarini first published his findings with the bioreactor in the journal the Lancet, December 13, 2008. The InBreath is world's first commercially available bioreactor for tubular organ regeneration. The unit is precision engineered for cell seeding and culturing on both intraluminal and extraluminal surfaces of a tubular matrix.

An autoclavable polymer-based culture chamber houses the scaffold and culture medium for the entire duration of the organ generation procedure. An organ scaffold is mounted to the corresponding scaffold holder of appropriate diameter. Each holder features a reduced diameter central portion that functions to expose the luminal surface of the matrix for cell seeding and culturing. Secondary elements (paddles) moving with the scaffold holder, produce continuous mixing of the culture medium to increase oxygenation and mass transport.

The cell/scaffold construct is rotated on the holder by a brushless DC motor (0 rpm - 5 rpm adjustable) that is completely separated from the culture compartment. A coaxial conduit links the inner chamber to the external environment through an interface at the chamber wall. The detachable connection between the motor unit and the culture chamber allows the latter to be removed for maintenance while the motor unit remains stationed in the incubator. An external control unit regulates and monitors rotation.

Autoclavability, ease of handling under sterile conditions, effectiveness, and precision ensures full compatibility of the device with good laboratory practice (GLP) rules.

Harvard Apparatus also has electrofusion, femtomole cell injectors, and ventilation and anesthesia products to advance cell and tissue engineering experimentation.

Related Links:
Harvard Apparatus


Platinum Member
COVID-19 Rapid Test
OSOM COVID-19 Antigen Rapid Test
Magnetic Bead Separation Modules
MAG and HEATMAG
Complement 3 (C3) Test
GPP-100 C3 Kit
New
Gold Member
Plasma Control
Plasma Control Level 1

Print article

Channels

Clinical Chemistry

view channel
Image: The 3D printed miniature ionizer is a key component of a mass spectrometer (Photo courtesy of MIT)

3D Printed Point-Of-Care Mass Spectrometer Outperforms State-Of-The-Art Models

Mass spectrometry is a precise technique for identifying the chemical components of a sample and has significant potential for monitoring chronic illness health states, such as measuring hormone levels... Read more

Molecular Diagnostics

view channel
Image: A blood test could predict lung cancer risk more accurately and reduce the number of required scans (Photo courtesy of 123RF)

Blood Test Accurately Predicts Lung Cancer Risk and Reduces Need for Scans

Lung cancer is extremely hard to detect early due to the limitations of current screening technologies, which are costly, sometimes inaccurate, and less commonly endorsed by healthcare professionals compared... Read more

Hematology

view channel
Image: The CAPILLARYS 3 DBS devices have received U.S. FDA 510(k) clearance (Photo courtesy of Sebia)

Next Generation Instrument Screens for Hemoglobin Disorders in Newborns

Hemoglobinopathies, the most widespread inherited conditions globally, affect about 7% of the population as carriers, with 2.7% of newborns being born with these conditions. The spectrum of clinical manifestations... Read more

Immunology

view channel
Image: Exosomes can be a promising biomarker for cellular rejection after organ transplant (Photo courtesy of Nicolas Primola/Shutterstock)

Diagnostic Blood Test for Cellular Rejection after Organ Transplant Could Replace Surgical Biopsies

Transplanted organs constantly face the risk of being rejected by the recipient's immune system which differentiates self from non-self using T cells and B cells. T cells are commonly associated with acute... Read more

Microbiology

view channel
Image: The real-time multiplex PCR test is set to revolutionize early sepsis detection (Photo courtesy of Shutterstock)

1 Hour, Direct-From-Blood Multiplex PCR Test Identifies 95% of Sepsis-Causing Pathogens

Sepsis contributes to one in every three hospital deaths in the US, and globally, septic shock carries a mortality rate of 30-40%. Diagnosing sepsis early is challenging due to its non-specific symptoms... Read more

Pathology

view channel
Image: The QIAseq xHYB Mycobacterium tuberculosis Panel uses next-generation sequencing (Photo courtesy of 123RF)

New Mycobacterium Tuberculosis Panel to Support Real-Time Surveillance and Combat Antimicrobial Resistance

Tuberculosis (TB), the leading cause of death from an infectious disease globally, is a contagious bacterial infection that primarily spreads through the coughing of patients with active pulmonary TB.... Read more
Copyright © 2000-2024 Globetech Media. All rights reserved.