Background: Photodynamic therapy (PDT) has been widely accepted in keratocyte carcinoma and an increasing number of literatures concerning PDT in skin cancer is published. But a detailed examination of publication patterns of PDT in skin cancer has not yet been carried out.
Methods: Bibliographies were retrieved from Web of Science Core Collection restricted the publication date from January 1, 1985 to December 31, 2021. The search terms were photodynamic therapy and skin cancer. Visualization analysis and statistical analysis were performed by VOSviewer (Version 1.6.13), R software (Version 4.1.2) and Scimago Graphica (Version 1.0.15).
Results: 3248 documents were selected for analysis. The results showed that the number of annual publications related to PDT in skin cancer was gradually increased and would continue to increase in the future. The results illustrated that "melanoma", "nanoparticles", "drug-delivery", "mechanism", "delivery" and "in-vitro" are newly occurred topics. The most prolific country was the United States and the most productive institution was the University of Sao Paulo in Brazil. German researcher Szeimies RM published the most papers related to PDT in skin cancer. British Journal of Dermatology was the most popular journal in this field.
Conclusion: The topic that PDT in skin cancer is a heated issue. Our study revealed the bibliometric result of the field, which might provide the prospects for further research. We recommend future investigations focusing on PDT in treating melanoma, innovation of photosensitizer, improvement of drug delivery and the mechanism of PDT in skin cancer.
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http://dx.doi.org/10.1111/phpp.12868 | DOI Listing |
Gynecol Oncol Rep
February 2025
People's Hospital of China Medical University, Department of Gynecology, People's Hospital of Liaoning Province, Shenyang, China.
Background: Keratoacanthoma is a relatively rare skin tumor, with vulvar keratoacanthoma being even more uncommon. Although the majority of keratoacanthomas exhibit a benign course, a subset of cases may show features of malignant potential, such as marginal invasion and recurrence.
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Indian Dermatol Online J
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Department of Dermatology, Father Muller Medical College, Mangalore, Karnataka, India.
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Mr. Davidson is with Fallon Medica in Tinton Falls, New Jersey, and was an employee of Bristol Myers Squibb at the time of manuscript development.
Numerous clinical trials have established that various biologic and oral small-molecule therapies are efficacious in patients with psoriasis. However, as there are limited head-to-head trials, healthcare providers may compare results across multiple trials when providing treatment recommendations. Direct comparisons among agents are challenging because psoriasis trials differ in terms of study design, patient population, and data analysis methodologies.
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Vaccine Research & Development Center, Department of Physiology & Biophysics, University of California Irvine, Irvine, CA 92697, United States.
Adjuvants play a central role in enhancing the immunogenicity of otherwise poorly immunogenic vaccine antigens. Combining adjuvants has the potential to enhance vaccine immunogenicity compared with single adjuvants, although the cellular and molecular mechanisms of combination adjuvants are not well understood. Using the influenza virus hemagglutinin H5 antigen, we define the immunological landscape of combining CpG and MPLA (TLR-9 and TLR-4 agonists, respectively) with a squalene nanoemulsion (AddaVax) using immunologic and transcriptomic profiling.
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Department of Dermatology, Medical University of Warsaw, Warsaw, Poland.
Multinucleate cell angiohistiocytoma (MCAH) is a rare benign cutaneous entity. It classically presents as slowly progressive erythematous to violaceous papules on the distal extremities of middle-aged or elderly women. The entity may clinically resemble granuloma annulare, lichen planus, and several cutaneous vascular proliferations.
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!