| Literature DB >> 26435835 |
Eleni Oberbauer1,2, Carolin Steffenhagen1,2, Christoph Wurzer1,2, Christian Gabriel1,2,3, Heinz Redl1,2, Susanne Wolbank1,2.
Abstract
In the past decade, adipose tissue became a highly interesting source of adult stem cells for plastic surgery and regenerative medicine. The isolated stromal vascular fraction (SVF) is a heterogeneous cell population including the adipose-derived stromal/stem cells (ASC), which showed regenerative potential in several clinical studies and trials. SVF should be provided in a safe and reproducible manner in accordance with current good manufacturing practices (cGMP). To ensure highest possible safety for patients, a precisely defined procedure with a high-quality control is required. Hence, an increasing number of adipose tissue-derived cell isolation systems have been developed. These systems aim for a closed, sterile, and safe isolation process limiting donor variations, risk for contaminations, and unpredictability of the cell material. To isolate SVF from adipose tissue, enzymes such as collagenase are used. Alternatively, in order to avoid enzymes, isolation systems using physical forces are available. Here, we provide an overview of known existing enzymatic and non-enzymatic adipose tissue-derived cell isolation systems, which are patented, published, or already on the market.Entities:
Keywords: Adipose-derived stromal/stem cells; Enzymatic; Human adipose tissue; Isolation systems; Non-enzymatic; Stromal vascular fraction
Year: 2015 PMID: 26435835 PMCID: PMC4591586 DOI: 10.1186/s13619-015-0020-0
Source DB: PubMed Journal: Cell Regen (Lond) ISSN: 2045-9769
Fig. 1Adipose-derived cells: origin, immunophenotype, morphology, and differentiation potential. Lipoaspirate can be easily obtained from the patient and processed to obtain a heterogeneous cell population, the stromal vascular fraction (SVF). Adipose-derived stromal/stem cells (ASC) can be isolated from the SVF by in vitro cultivation on plastic surfaces. ASC are characterized mainly by mesenchymal stem cell marker (CD73, CD90, CD105) at the expense of hematopoietic stem cell marker (CD45) and their spindle-shaped morphology with the ability to differentiate into the adipogenic, osteogenic, and chondrogenic lineages. The differentiation potential can be analyzed by histological stainings, such as Oil red O for adipogenic, Alizarin red for osteogenic, and Alcian Blue for chondrogenic differentiation
Survey of enzymatic adipose tissue-derived cell isolation systems
| Enzymatic SVF isolation systems | |||
|---|---|---|---|
| Company | Device/Method | Picture | Publication / Patent |
AdiStem Pty Ltd.
| AdiStem™ Small / Large Kit |
| [ |
| AdiLight |
| ||
Biosafe Group SA
| Sepax 2 |
| [ |
Cellthera, s.r.o.
| Cellthera Kit I and II
|
| [ |
Cellular Biomedicine Group, Inc./Cellular Biomedicine Group HK, Ltd.
| A-Stromal™ kit |
| - |
Cytori Therapeutics, Inc.
| Celution® 800/CRS |
| [ |
| ED Co. Ltd. & Purebiotech Co., Ltd./Medica Group | Sceldis® | – | [ |
|
| |||
| General Electric Company |
| – | [ |
| - | |||
| GID Group, Inc. | GID SVF-1™ | – | [ |
|
| |||
|
| |||
| Hurim BioCell, Co., Ltd. | HuriCell | – | [ |
|
| |||
Ingeneron, Inc. - |
|
| [ |
|
| |||
Medikan International Inc.
| STEM-XTM |
| - |
| N-Biotek, Inc. | Beauty Cell | – | - |
|
| |||
NeoGenesis Co., Ltd.
| UNISTATION™ |
| - |
| PNC International Co., Ltd. / PNC North America | CHA STATION™ | – | [ |
| Division Of Advanced Bio-Medical Equipment Co., INC | Multi Station | ||
|
| |||
|
| |||
| SNJ Co., Ltd. / TOPMED CO., LTD. | CID300 | – | - |
|
| |||
| Stempeutics Research Pvt. Ltd. | Stempeutron™ | – | [ |
|
| |||
| Tissue Genesis, Inc. | Tissue Genesis® Icellator Cell Isolation System™ | – | [ |
|
|
| – | |
Patented, published or commercial available systems are listed with the associated company (in alphabetical order), a picture of the system as well as links and references if accessible. The majority of the systems generates stromal vascular fraction (SVF). (Italic represents the title of patents, − not available)
Survey of non-enzymatic adipose tissue-derived cell isolation systems
| Non-Enzymatic SVF isolation systems | |||
|---|---|---|---|
| Company | Device/Method | Picture | Publication / Patent |
| Agency Science, Tech & Res |
| – | [ |
| - | |||
| Baxter International Inc. |
| – | [ |
| - | |||
Bimini Technologies LLC - | Puregraft® |
| [ |
CORIOS Soc. Coop.
| Fastkit (Fastem) |
| [ |
Genesis Biosystems Inc.
| LipiVage™ |
| [ |
| Human Med AG |
| – | [ |
| - |
| – | [ |
| IntelliCell® BioSciences Inc. |
|
| [ |
|
|
| [ | |
| LifeCell Corporation / GID Group, Inc. | Revolve™ / GID 700™ | – | [ |
|
| |||
|
| |||
|
| |||
Lipogems International S.p.A.
| Lipogems® |
| [ |
Medikan International Inc.
| Lipo-Kit GT |
| [ |
| MicroAire Surgical Instruments, LLC | StromaCell™ | – | [ |
|
| |||
MyStem LLC
| myStem® |
| - |
| Pennington Biomedical Research Center |
| – | [ |
| - | |||
| Rusty Property Holdings Pty Ltd, / Amberdale Enterprises Pty Ltd, / Tavid Pty |
| * | [ |
| - | |||
| Solta Medical, Inc. |
| – | [ |
| - | |||
Patented, published or commercial available systems are listed with the associated company (in alphabetical order), a picture of the system as well as links and references if accessible. The majority of the systems generates cell enriched adipose tissue, while some systems obtain stromal vascular fraction (SVF). (Italic represents the title of patents, * currently upgrading technology, − not available)