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Updated: Mar 21, 2026

An Adipocyte Cell Culture Model to Study the Impact of Protein and Micro-RNA Modulation on Adipocyte Function
Published on: May 4, 2021
Gene-manipulated Adipocytes for the Treatment of Various Intractable Diseases
Masayuki Kuroda1, Hideaki Bujo, Masayuki Aso
1Chiba University Hospital Center for Advanced Medicine.
Abstract:
Although protein replacement is an effective treatment for serum protein deficiencies such as diabetes and hemophilia, recombinant protein products are not available for all rare inherited diseases due to the instability of the recombinant proteins and/or to cost. Gene therapy is the most attractive option for treating patients with such rare diseases. To develop an effective ex vivo gene therapy-based protein replacement treatment requires recipient cells that differ from those used in standard gene therapy, which is performed to correct the function of the recipient cells. Adipose tissue is an expected source of proliferative cells for cell-based therapies, including regenerative medicine and gene transfer applications. Based on recent advances in cell biology and extensive clinical experience in transplantation therapy for adipose tissue, we focused on the mature adipocyte fraction, which is the floating fraction after collagenase digestion and centrifugation of adipose tissue. Proliferative adipocytes were propagated from the floating fraction by the ceiling culture technique. These cells are designated as ceiling culture-derived proliferative adipocytes (ccdPAs). We first focused on lecithin:cholesterol acyltransferase (LCAT) deficiency, an inherited metabolic disorder caused by lcat gene mutation, and ccdPAs as a therapeutic gene vehicle for LCAT replacement therapy. In our recent in vitro and animal model studies, we developed an adipose cell manipulation procedure using advanced gene transduction methods and transplantation scaffolds. We herein introduce the progress made in novel adipose tissue-based therapeutic strategies for the treatment of protein deficiencies and describe their future applications for other intractable diseases.
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