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Decreased circulating progenitor cell number and failed mechanisms of stromal cell-derived factor-1alpha mediated bone marrow mobilization impair diabetic tissue repair
Tepper, Oren M; Carr, Jacquelyn; Allen, Robert J Jr; Chang, Christopher C; Lin, Clarence D; Tanaka, Rica; Gupta, Sanjeev M; Levine, Jamie P; Saadeh, Pierre B; Warren, Stephen M
OBJECTIVE: Progenitor cells (PCs) contribute to postnatal neovascularization and tissue repair. Here, we explore the mechanism contributing to decreased diabetic circulating PC number and propose a novel treatment to restore circulating PC number, peripheral neovascularization, and tissue healing. RESEARCH DESIGN AND METHODS: Cutaneous wounds were created on wild-type (C57BL/J6) and diabetic (Lepr(db/db)) mice. Blood and bone marrow PCs were collected at multiple time points. RESULTS: Significantly delayed wound closure in diabetic animals was associated with diminished circulating PC number (1.9-fold increase vs. 7.6-fold increase in lin(-)/sca-1(+)/ckit(+) in wild-type mice; P < 0.01), despite adequate numbers of PCs in the bone marrow at baseline (14.4 +/- 3.2% lin(-)/ckit(+)/sca1(+) vs. 13.5 +/- 2.8% in wild-type). Normal bone marrow PC mobilization in response to peripheral wounding occurred after a necessary switch in bone marrow stromal cell-derived factor-1alpha (SDF-1alpha) expression (40% reduction, P < 0.01). In contrast, a failed switch mechanism in diabetic bone marrow SDF-1alpha expression (2.8% reduction) resulted in impaired PC mobilization. Restoring the bone marrow SDF-1alpha switch (54% reduction, P < 0.01) with plerixafor (Mozobil, formerly known as AMD3100) increased circulating diabetic PC numbers (6.8 +/- 2.0-fold increase in lin(-)/ckit(+), P < 0.05) and significantly improved diabetic wound closure compared with sham-treated controls (32.9 +/- 5.0% vs. 11.9 +/- 3% at day 7, P > 0.05; 73.0 +/- 6.4% vs. 36.5 +/- 7% at day 14, P < 0.05; and 88.0 +/- 5.7% vs. 66.7 +/- 5% at day 21, P > 0.05, respectively). CONCLUSIONS: Successful ischemia-induced bone marrow PC mobilization is mediated by a switch in bone marrow SDF-1alpha levels. In diabetes, this switch fails to occur. Plerixafor represents a potential therapeutic agent for improving ischemia-mediated pathology associated with diabetes by reducing bone marrow SDF-1alpha, restoring normal PC mobilization and tissue healing
PMCID:2911062
PMID: 20484135
ISSN: 1939-327x
CID: 111581
Cutaneous low-dose radiation increases tissue vascularity through upregulation of angiogenic and vasculogenic pathways
Thanik, Vishal D; Chang, Christopher C; Lerman, Oren Z; Greives, Matthew R; Le, Huong; Warren, Stephen M; Schneider, Robert J; Formenti, Sylvia C; Saadeh, Pierre B; Levine, Jamie P
BACKGROUND/AIMS: Neovascularization involves angiogenesis and vasculogenesis mediated by cytokines and soluble chemokines. The predominant stimulus is ischemia, however, recent data suggest that ionizing radiation (IR) has angiogenic potential. In this study we evaluated whether IR increases vascularity and perfusion in vivo. METHODS: In wild-type mice, a full-thickness, pedicled skin flap was created and isolated for localized irradiation at a dose of 5 Gy. Serial Doppler analysis of the flap was performed. The skin flaps were then harvested at various time points for vascularity and histologic analysis. Blood was concurrently harvested for serum and hematopoietic progenitor cell population analysis. RESULTS: IR to an ischemic flap augmented the angiogenic cytokines SDF-1 and VEGF. Serum MMP-9 and s-kit levels, which are critical for progenitor cell mobilization, were also increased. When hematopoietic progenitor cells were evaluated by Sca1+/Flk1+ cells, a correlate 2-fold increase was seen compared to controls. When the flaps were examined, both vascularity and perfusion were increased. CONCLUSION: In this study we demonstrate that local, low-dose IR upregulates angiogenic chemokines and results in progenitor cell mobilization to the systemic circulation. There is a resultant increase in the vascularity of the irradiated flap, suggesting that the pro-angiogenic effects of IR can be harnessed locally
PMID: 20431296
ISSN: 1423-0135
CID: 113939
Modeling senescent wound healing with the Zmpste24 transgenic mouse [Meeting Abstract]
Butala, Parag; Szpalski, Caroline; Knobel, Denis; Crawford, James L.; Marchac, Alexandre; Davidson, Edward H.; Sultan, Steven M.; Wetterau, Meredith; Saadeh, Pierre B.; Warren, Stephen M.
ISI:000281708600169
ISSN: 1072-7515
CID: 113915
Improved fat graft survival with mobilization of progenitor cells [Meeting Abstract]
Butala, Parag; Sultan, Steven M.; Davidson, Edward H.; Crawford, James L.; Szpaiski, Caroline; Knobel, Denis; Saadeh, Pierre B.; Warren, Stephen M.; Coleman, Sydney; Hazen, Alexes
ISI:000281708600210
ISSN: 1072-7515
CID: 113916
Cranial bone defects: current and future strategies
Szpalski, Caroline; Barr, Jason; Wetterau, Meredith; Saadeh, Pierre B; Warren, Stephen M
Bony defects in the craniomaxillofacial skeleton remain a major and challenging health concern. Surgeons have been trying for centuries to restore functionality and aesthetic appearance using autografts, allografts, and even xenografts without entirely satisfactory results. As a result, physicians, scientists, and engineers have been trying for the past few decades to develop new techniques to improve bone growth and bone healing. In this review, the authors summarize the advantages and limitations of current animal models; describe current materials used as scaffolds, cell-based, and protein-based therapies; and lastly highlight areas for future investigation. The purpose of this review is to highlight the major scaffold-, cell-, and protein-based preclinical tools that are currently being developed to repair cranial defects
PMID: 21121722
ISSN: 1092-0684
CID: 114859
Treatment of metachronous lower extremity defects with delay and splitting of a previously advanced reverse sural artery flap
Capla, Jennifer M; Michaels, Joseph 4th; Ceradini, Daniel J; Levine, Jamie P; Saadeh, Pierre B
PMID: 21124115
ISSN: 1529-4242
CID: 114865
Improved diabetic wound healing through topical silencing of p53 is associated with augmented vasculogenic mediators
Nguyen, Phuong D; Tutela, John Paul; Thanik, Vishal D; Knobel, Denis; Allen, Robert J Jr; Chang, Christopher C; Levine, Jamie P; Warren, Stephen M; Saadeh, Pierre B
Diabetes is characterized by several poorly understood phenomena including dysfunctional wound healing and impaired vasculogenesis. p53, a master cell cycle regulator, is upregulated in diabetic wounds and has recently been shown to play a regulatory roles in vasculogenic pathways. We have previously described a novel method to topically silence target genes in a wound bed with small interfering (si)RNA. We hypothesized that silencing p53 results in improved diabetic wound healing and augmentation of vasculogenic mediators. Paired 4-mm stented wounds were created on diabetic db/db mice. Topically applied p53 siRNA, evenly distributed in an agarose matrix, was applied to wounds at postwound day 1 and 7 (matrix alone and nonsense siRNA served as controls). Animals were sacrificed at postwound days 10 and 24. Wound time to closure was photometrically assessed, and wounds were harvested for histology, immunohistochemistry, and immunofluorescence. Vasculogenic cytokine expression was evaluated via Western blot, reverse transcription-polymerase chain reaction, and enzyme-linked immunosorbent assay. The ANOVA/t-test was used to determine significance (p</= 0.05). Local p53 silencing resulted in faster wound healing with wound closure at 18+/-1.3 d in the treated group vs. 28+/-1.0 d in controls. The treated group demonstrated improved wound architecture at each time point while demonstrating near-complete local p53 knockdown. Moreover, treated wounds showed a 1.92-fold increase in CD31 endothelial cell staining over controls. Western blot analysis confirmed near-complete p53 knockdown in treated wounds. At day 10, VEGF secretion (enzyme-linked immunosorbent assay) was significantly increased in treated wounds (109.3+/-13.9 pg/mL) vs. controls (33.0+/-3.8 pg/mL) while reverse transcription-polymerase chain reaction demonstrated a 1.86-fold increase in SDF-1 expression in treated wounds vs. controls. This profile was reversed after the treated wounds healed and before closure of controls (day 24). Augmented vasculogenic cytokine profile and endothelial cell markers are associated with improved diabetic wound healing in topical gene therapy with p53 siRNA
PMCID:3145486
PMID: 20955346
ISSN: 1524-475x
CID: 138168
Low-dose radiation augments vasculogenesis signaling through HIF-1-dependent and -independent SDF-1 induction
Lerman, Oren Z; Greives, Matthew R; Singh, Sunil P; Thanik, Vishal D; Chang, Christopher C; Seiser, Natalie; Brown, Daniel J; Knobel, Denis; Schneider, Robert J; Formenti, Silvia C; Saadeh, Pierre B; Levine, Jamie P
The inflammatory response to ionizing radiation (IR) includes a proangiogenic effect that could be counterproductive in cancer but can be exploited for treating impaired wound healing. We demonstrate for the first time that IR stimulates hypoxia-inducible factor-1alpha (HIF-1alpha) up-regulation in endothelial cells (ECs), a HIF-1alpha-independent up-regulation of stromal cell-derived factor-1 (SDF-1), as well as endothelial migration, all of which are essential for angiogenesis. 5 Gray IR-induced EC HIF-1alpha and SDF-1 expression was greater when combined with hypoxia suggesting an additive effect. While small interfering RNA silencing of HIF-1alpha mRNA and abolition of HIF-1alpha protein induction down-regulated SDF-1 induction by hypoxia alone, it had little effect on SDF-1 induction by IR, demonstrating an independent pathway. SDF-1-mediated EC migration in hypoxic and/or radiation-treated media showed IR induced strong SDF-1-dependent migration of ECs, augmented by hypoxia. IR activates a novel pathway stimulating EC migration directly through the expression of SDF-1 independent of HIF-1alpha induction. These observations might be exploited for stimulation of wound healing or controlling tumor angiogenesis
PMID: 20631377
ISSN: 1528-0020
CID: 138185
Obesity impairs wound healing via a vasculogenic mechanism [Meeting Abstract]
Wagner, Ida Janelle; Allen, Robert J.; Nguyen, Phuong D.; Davidson, Edward H.; Tutela, John P.; Canizares, Orlando; Saadeh, Pierre B.; Warren, Stephen M.
ISI:000269755300169
ISSN: 1072-7515
CID: 722042
The proximally based peroneal vascular bundle: an insulated extension cord for free flap reconstruction [Case Report]
Sailon, Alexander M; Reformat, Derek D; Hecht, Elizabeth M; Garfein, Evan S; Spector, Jason A; Levine, Jamie P; Saadeh, Pierre B
Large, traumatic wounds around the proximal third of the lower extremity may have disrupted local vasculature, potentially obviating local pedicled options. However, free-tissue transfer to this area is technically challenging given the resulting paucity of recipient options and the depth of principal blood vessels. We present an anatomic and radiographic study of the proximally based peroneal vascular bundle as a recipient option in the proximal leg. Optimal approach was prone, through an incision over the fibula with dissection between lateral and posterior compartments. Magnetic resonance angiography demonstrated consistent vascular anatomy between patients. A proximally based peroneal vascular bundle protected by a cuff of flexor hallucis longus was used as a recipient vessel in free flap reconstruction of an open knee wound. The bundle itself does not require coverage by virtue of its own local muscle cuff. Caveats for its use include the need for adequate leg inflow and foot outflow.
PMID: 19387161
ISSN: 0148-7043
CID: 379142