The marked increase in the incidence of melanoma coupled with the rapid drop in the survival rate after metastasis has promoted the investigation into improved diagnostic methods for melanoma. High-frequency ultrasound (US), optical coherence tomography (OCT), and photoacoustic imaging (PAI) are three potential modalities that can assist a dermatologist by providing extra information beyond dermoscopic features. In this study, we imaged a swine model with spontaneous melanoma using these modalities and compared the images with images of nearby healthy skin. Histology images were used for validation.
Scurvy is a nutritional disorder resulting from vitamin C deficiency. Although rare in developing countries, scurvy continues to develop in settings of limited dietary intake such as post-gastrointestinal surgery and restrictive dietary habits. The disease primarily affects the skin and soft tissue. As the state of deficiency persists, hematological and immunological sequelae may develop. The classic signs of scurvy are not always present and can be altered by the presence of other comorbidities. In this article, we present a challenging case of scurvy in an older male from an urban tertiary healthcare setting. We review the atypical and uncommon clinical and pathological findings of scurvy including those seen in the skin, blood, and bone marrow. We also review contemporary research findings that provide a better understanding of the pathogenicity and clinical manifestations of vitamin C deficiency.
Background
Optical coherence tomography (OCT) is a promising imaging modality for skin cancer diagnosis. However, this capability has been hindered by the low contrast between normal and neoplastic tissue. To overcome this limitation, gold nanoparticles have been used to enhance the contrast in OCT images and are topically administered to reduce the risk of systematic side effects associated with intravenous injection. To ensure efficient penetration and distribution of the nanoparticles, an enhanced delivery strategy is required. In this porcine study, we assessed two delivery methods: (a) using dimethyl sulfoxide (DMSO) and (b) via sonophoresis.
Materials and Methods
The gold nanoparticles were topically applied on pig skin before evaluating DMSO and sonophoresis as penetration enhancers in topical administration. The OCT images were taken from the same locations to monitor signal change.
Conclusion
The combination of DMSO and sonophoresis is an effective method to enhance the penetration and diffusion rate of nanoparticles during topical administration.
Significance
Topical administration of nanoparticles is advantageous in dermatological applications. Nevertheless, efficient topical delivery remains a challenge. DMSO and sonophoresis can be used as two effective approaches to enhance topical delivery of nanoparticles.
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