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Marrow-Derived Stromal Cell Delivery on Fibrin Microbeads Can Correct Radiation-Induced Wound-Healing Deficits.

J Invest Dermatol.. 2013-02;  133(2):553-61
Xie MW, Gorodetsky R, Micewicz ED, Mackenzie NC, Gaberman E, Levdansky L, McBride WH. 1Department Radiation Oncology, David Geffen School Medicine, University of California, Los Angeles, Los Angeles, California, USA; 2Sharett Institute of Oncology, Hadassah-Hebrew University Medical Center, Jerusalem, Israel
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摘要

Skin that is exposed to radiation has an impaired ability to heal wounds. This is especially true for whole-body irradiation, where even moderate nonlethal doses can result in wound-healing deficits. Our previous attempts to administer dermal cells locally to wounds to correct radiation-induced deficits were hampered by poor cell retention. Here we improve the outcome by using biodegradable fibrin microbeads (FMBs) to isolate a population of mesenchymal marrow-derived stromal cells (MSCs) from murine bone marrow by their specific binding to the fibrin matrix, culture them to high density in vitro, and deliver them as MSCs on FMBs at the wound site. MSCs are retained locally, proliferate in site, and assist woun... More

关键词

AMD3100; plerixafor; BM; bone marrow; FMB; fibrin microbead; G-CSF; granulocyte colony-stimulating factor; GFP; green fluorescent protein; MSC; mesenchymal marrow-derived stromal cell; PBS; phosphate-buffered saline; SI; skin-only irradiation; WTS; wound tensile strength; WBI; whole-body irradiation