Skin lesions are common and crucial manifestations, often serving as early indicators in many rheumatic diseases. These lesions play an essential role in diagnosis and disease monitoring and are frequently included in the classification criteria for conditions such as systemic lupus erythematosus, dermatomyositis, scleroderma, adult-onset Still's disease, and Behçet's disease1. A thorough examination of the skin can assist in the early diagnosis, effective treatment, and monitoring of these conditions, helping to prevent severe complications.
Skin biopsy is one of the most commonly performed diagnostic procedures in rheumatic diseases with cutaneous manifestations. As a simple and cost-effective diagnostic modality, skin biopsy allows for the visualization of morphological features that are not visible to the naked eye. Histopathology provides a detailed examination of a small portion of the lesion, viewed perpendicular to the skin surface. This process is crucial for both clinicians and pathologists in diagnosing connective tissue diseases (CTD).
The formalin-fixed, paraffin-embedded technique is widely established and offers several advantages, such as the ability to archive samples long-term and the potential for immunohistochemical processing. Hematoxylin and eosin (HE) stain is the most commonly used stain for histopathology due to its capacity to highlight both normal and abnormal cellular and tissue components. The hematoxylin component binds to acidic structures, such as DNA and RNA, coloring them blue. In the skin, this stains cell nuclei, rough endoplasmic reticulum, and ribosomes2. Eosin stains eosinophilic structures, typically composed of intracellular or extracellular protein (e.g., cytoplasm and most connective tissue fibers), in varying shades of red. As a result, all relevant tissue structures in the specimen are effectively stained3.
Immunofluorescence (IF) is a critical diagnostic tool in evaluating patients with suspected autoimmune, vasculopathic, and cutaneous vesicobullous diseases, as it helps identify antigen-bound antibodies in tissues or body fluids. There are two main types of IF assays: direct IF (DIF) and indirect IF (IIF). The more commonly used DIF assay employs fluorochrome-labeled antibodies to detect the deposition of immunoreactants in patient skin. A panel of antibodies targeting immunoglobulin (Ig) G, IgA, IgM, and complement C3 has been utilized4.
Discoid lupus erythematosus (DLE) is the most prevalent form of cutaneous lupus erythematosus (CLE), typically affecting areas such as the scalp, face, auricle, and lips. When lesions extend beyond these regions to involve the trunk and limbs, the condition is referred to as disseminated DLE (DDLE)5. Characteristic skin lesions appear as well-demarcated discoid erythematous plaques, often accompanied by firmly adherent scales or crusts, central atrophy, characteristic scarring, and pigmentary changes, which may result in irreversible scarring alopecia if occurring on the scalp. Although many patients remain asymptomatic, some may experience mild itching6,7. DLE lesions are typically marked by epidermal atrophy, follicular plugging, basement membrane thickening, and lymphocytic infiltration. DIF demonstrates the deposition of immunoglobulin and complements along the dermo-epidermal junction, present in both lesional and non-lesional skin, known as the lupus band test8,9. The diagnosis of DLE is primarily based on clinical presentation, along with histopathological and immunopathological findings. When histopathological and immunopathological information is necessary, a skin biopsy becomes essential.
The choice of biopsy type and location significantly impacts the histological assessment. Understanding the appropriate timing, location, and technique of biopsy is crucial to obtaining accurate pathological results. Several factors must be considered to ensure a precise diagnosis, highlighting the importance of addressing potential challenges in the biopsy process to enhance both the quality of the biopsy and the accuracy of the diagnosis. This article provides a detailed overview of the standardized skin biopsy procedure, using DLE as an example, and highlights key considerations to ensure accurate and effective diagnosis.