The skin wound microenvironment can be divided into two main components that influence healing: the external wound microenvironment, which is outside the wound surface; and the internal wound microenvironment, underneath the surface, to which the cells within the wound are exposed. Treatment methods that directly alter the features of the external wound microenvironment indirectly affect the internal wound microenvironment due to the exchange between the two compartments. In this review, we focus on the effects of temperature, pressure (positive and negative), hydration, gases (oxygen and carbon dioxide), pH, and anti-microbial treatment on the wound. These factors are well described in the literature and can be modified with treatment methods available in the clinic. Understanding the roles of these factors in wound pathophysiology is of central importance in wound treatment.
Topical delivery of ultrahigh concentrations of gentamicin rapidly decontaminates acutely infected wounds and maintains safe systemic levels. Treatment of infected wounds using the proposed methodology protects the wound and establishes a favorable baseline for subsequent treatment.
Reconstruction of the ascending portion of the mandible, including the angle, ramus, and condyle, can be a challenging surgical problem. Many treatment options are available, but no single procedure has been able to restore long-term form and function in every case. Currently, autologous nonvascularized bone grafts are the most common treatment, with the costochondral graft as the historic leader. Nonvascularized grafts can often restore vertical height and normal function but may face the challenge of long-term durability secondary to bone resorption. Emerging techniques in microvascular surgery may offer an alternative approach with the benefits of resistance to resorption and infection by maintaining a viable blood supply to the graft. Vascularized grafts may thus be used to full advantage in cases where prior surgery, scarring, disrupted vasculature, or radiation damage may compromise the long-term surgical success of a nonvascularized graft. This article reviews the literature and summarizes key points regarding nonvascularized and vascularized treatment modalities for reconstruction of the ascending mandible. In addition, we present the use of the femoral medial epicondyle free flap based on the descending genicular vascular pedicle as a novel reconstruction of the ascending portion of the mandible with minimal donor-site morbidity. Knowledge of all available options will aid the surgeon in achieving the optimal reconstruction for their patient and improve long-term outcomes.
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