One strategy of adipose tissue engineering is to transplant adipocytes or adipocyte precursor cells in combination with polymeric materials. However, a satisfying formation of fat tissue and its long-term survival still remain major problems. There is increasing evidence that treatment of the cells prior to implantation plays a critical role in the success of adipose tissue growth. In a previous study, we established a model system based on 3T3-L1 cells that allows for reproducible engineering of mature, coherent adipose tissues in vitro. We utilized this model system in the current study and systematically investigated the long-term in vivo development of cellular constructs with varying stages of adipogenic development at the time point of implantation. Blank polyglycolic acid fiber meshes, scaffolds seeded with uninduced 3T3-L1 preadipocytes, and cell-polymer constructs precultivated under adipogenic conditions for 2, 9, or 35 days were implanted subcutaneously into nude mice. Histological analysis revealed that no fat formation occurred in constructs without adipogenic precultivation. Implantation of mature fat pads (35 days) resulted in adiponecrosis within the constructs. In contrast, implants with an immature phenotype at the time point of implantation (2 and 9 days) gave rise to vascularized, mature adipose tissue in vivo. Further, these engineered adipose tissues showed long-term survival in vivo over the whole investigation period of 24 weeks. The results of this study can contribute to the development of future clinical approaches as they give clear evidence which precultivation strategy promotes successful development and long-term survival of engineered adipose tissue.
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http://dx.doi.org/10.1089/tea.2007.0130 | DOI Listing |
J Med Ultrason (2001)
December 2024
Department of Internal Medicine, Kuma Hospital, Kobe, Hyogo, 650-0011, Japan.
Purpose: Parathyroid lipoadenomas are difficult to recognize preoperatively; hence, they may remain undetected. Difficulty in recognition is thought to be due to the adipocytes present in the tumor. This study aimed to clarify the impact of adipocytes as a component of parathyroid adenomas on ultrasound evaluation.
View Article and Find Full Text PDFJ Cosmet Dermatol
January 2025
Department of Plastic and Reconstructive Surgery, Senior Department of Burns and Plastic Surgery, The Fourth Medical Center of Chinese PLA General Hospital, Beijing, China.
Background: Hypertrophic scar (HS) is a fibroproliferative disorder resulting from abnormal healing of skin tissue after injury. Although various therapies are currently employed in clinical to treat HSs, there is no widely accepted standard therapy. Micro-plasma radiofrequency (MPR) and autologous chyle fat grafting are emerging treatments for this condition, and they have demonstrated promising therapeutic outcomes in clinical applications.
View Article and Find Full Text PDFSkelet Muscle
December 2024
Rehabilitation Sciences Institute, University of Toronto, Toronto, ON, Canada.
Background: INTER- and INTRAmuscular fat (IMF) is elevated in high metabolic states and can promote inflammation. While magnetic resonance imaging (MRI) excels in depicting IMF, the lack of reproducible tools prevents the ability to measure change and track intervention success.
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Virol J
December 2024
Virology Department, Croatian Veterinary Institute, Zagreb, Croatia.
Background: Canine adipose-derived mesenchymal stem cells (cAD-MSCs) demonstrate promising tissue repair and regeneration capabilities. However, the procurement and preservation of these cells or their secreted factors for therapeutic applications pose a risk of viral contamination, and the consequences for cAD-MSCs remain unexplored. Consequently, this research sought to assess the impact of canid alphaherpesvirus 1 (CHV) on the functional attributes of cAD-MSCs, including gene expression profiles and secretome composition.
View Article and Find Full Text PDFBiomed Eng Online
December 2024
ORTHOREBIRTH Co., Ltd., Yokohama, Japan.
Background: A biodegradable nonwoven fabric that can be used to extract adipose-derived stem cells (ADSCs) from adipose tissue slices was developed, which were cultured rapidly without enzymatic treatment. The extracted and cultured ADSCs remain on the nonwoven fabric and form a thick cell sheet. The aim was to use the thick cell sheet as a treatment by transplanting it into the living body.
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