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[Detection of human papillomaviruses and other agents causing sexually transmitted diseases with molecular diagnosis
Magdalena Grce1, Koraljka Husnjak, Nina Milutin
1Zavod za molekularnu medicinu Institut Ruder Bosković Bijenicka cesta 54 10002 Zagreb, Hrvatska. grce@irb.hr
Abstract:
Causative agents of sexually transmitted diseases (STD) are different types of bacteria, viruses, fungi and protozoa. The last two decades of the twentieth century were marked with a sudden rise in the number of cases of STDs. Human immunodeficiency virus (HIV), which emerged in the 1980s, is the most prominent STD agent because of its fast spread and severity of the disease it causes, acquired immunodeficiency syndrome (AIDS). Beside HIV, human papillomaviruses (HPVs), herpes simplex viruses (HSVs) and Chlamydia trachomatis are nowadays among most health-threatening STD pathogens. In order to stop the spread of infection, apart from education about precautions, early detection of the disease is essential. Although most STD pathogens can be detected by classical methods of cultivation, biochemical and/or serologic methods, molecular diagnosis of infectious diseases has largely simplified and accelerated their detection. For instance, HPVs that cause benign and malignant tumors of genital skin and mucosa cannot be routinely detected on cell culture, whereas serologic analysis is not sensitive and informative enough. Moreover, cytologic (Pap smear) and histologic analyses can indicate changes associated with HPV infection, but neither of these methods can prove the presence of HPV. That is why the molecular methods are essential to demonstrate the presence of the infection and, even more important, to determine the type of the virus, which is associated either with low-grade or high-grade genital lesions. There are numerous methods based on hybridization with DNA or RNA probes, some of them are suitable for detecting wide range of types and screening of large collection of samples. However, the most sensitive and informative methods are based on polymerase chain reaction (PCR), and they have the advantage of being able to determine the type of the virus and distinguishing between multiple infections. Herein, we present when and why molecular analysis is useful and necessary for the detection of STD agents.
Insights
Molecular diagnostics significantly improve the detection of sexually transmitted diseases (STDs). Polymerase chain reaction (PCR) offers sensitive and specific identification of various STD pathogens, including human papillomaviruses (HPVs).
Area of Science:
- Infectious Diseases
- Molecular Diagnostics
- Microbiology
Context:
- Sexually transmitted diseases (STDs) present a significant global health challenge, with a notable increase in cases observed in recent decades.
- Human immunodeficiency virus (HIV), human papillomaviruses (HPVs), herpes simplex viruses (HSVs), and Chlamydia trachomatis are among the most prevalent and concerning STD pathogens.
- Traditional diagnostic methods for STDs, including cultivation and serologic tests, often lack the sensitivity, specificity, or speed required for effective management.
Purpose:
- To highlight the critical role of molecular diagnostic techniques in the accurate and timely detection of sexually transmitted disease agents.
- To emphasize the advantages of molecular methods, particularly polymerase chain reaction (PCR), over conventional diagnostic approaches for various STDs.
- To explain the necessity of molecular analysis for identifying specific pathogens and differentiating strains, crucial for appropriate treatment and management.
Summary:
- Molecular diagnostics have revolutionized the detection of STD pathogens, offering enhanced sensitivity and specificity compared to traditional methods.
- Techniques like DNA/RNA probe hybridization and, more importantly, polymerase chain reaction (PCR) enable rapid and precise identification of infectious agents.
- PCR is particularly valuable for detecting human papillomaviruses (HPVs), distinguishing between different viral types, and identifying co-infections, which is essential for managing genital lesions.
Impact:
- Facilitates earlier and more accurate diagnosis of STDs, leading to prompt treatment and reduced disease transmission.
- Enables precise pathogen identification and strain typing, crucial for understanding disease progression and developing targeted therapies.
- Advances in molecular diagnostics are essential for combating the rising incidence of STDs and improving public health outcomes.
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