Several species during evolution suffered random mutations in response to various environmental factors, which resulted in the formation of venom in phylogenetically distant species. The composition of the venom of most species is poorly known. Snake venom is well characterized while most species have poorly known composition. In contrast, snake venoms are well characterized which proteins and peptides are the main active and most abundant constituents. 42 protein families have been identified, including metalloproteins known as metalloproteinases. These macromolecules are enzymes with zinc in their active site derived from the disintegrin A and metalloproteinase (ADAM) cellular family and are categorized into three classes (PI, PII and PIII) according to their domain organization. The snake venom metalloproteinases (SVMP) are cytotoxic, neurotoxic, myotoxic and/or hematotoxic with a crucial role in the defense and restraint of prey. In this scenario envenoming represents a danger to human health and has been considered a neglected disease worldwide, particularly in tropical and subtropical countries. Nevertheless, recently advances in "omics" technologies have demonstrated interesting biological activities of SVMPs such as antimicrobial, anticancer, against cardiovascular diseases and nervous system disorders. Metalloproteins have the therapeutic potential to be converted into drugs as other components of the venom have undergone this process (e.g., captopril, tirefiban and eptifibatide). So, this chapter is focused on the metalloproteins found in the secretions of venomous species, highlight some aspects such as structure, biological activity, pharmacological therapeutic potential and on.
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http://dx.doi.org/10.1016/bs.apcsb.2024.03.002 | DOI Listing |
Chem Sci
January 2025
LAQV/Requimte, Departamento de Química e Bioquímica, Faculdade de Ciências da Universidade do Porto Rua do Campo Alegre, s/n 4169-007 Porto Portugal
Snake venom-secreted phospholipases A (svPLAs) are critical, highly toxic enzymes present in almost all snake venoms. Upon snakebite envenomation, svPLAs hydrolyze cell membrane phospholipids and induce pathological effects such as paralysis, myonecrosis, inflammation, or pain. Despite its central importance in envenomation, the chemical mechanism of svPLAs is poorly understood, with detrimental consequences for the design of small-molecule snakebite antidotes, which is highly undesirable given the gravity of the epidemiological data that ranks snakebite as the deadliest neglected tropical disease.
View Article and Find Full Text PDFKorean J Physiol Pharmacol
January 2025
School of Preclinical Medicine, Wannan Medical College, Wuhu 241002, China.
Melittin (MEL) is the main bioactive component of bee venom and has been reported to have various pharmacological effects. This study investigates the protective effect of MEL on MPP-injured HT22 cells and the possible mechanisms involved. We treated the cells with 4 mM MPP for 24 h to induce a cellular injury model.
View Article and Find Full Text PDFTrop Med Health
January 2025
Medical Unit, National Hospital of Sri Lanka, Colombo, Sri Lanka.
Background: Hump-nosed viper (Hypnale species) bites are an important cause of mortality and morbidity in southern India and Sri Lanka, accounting for 27 and 77% of venomous snake bites, respectively. Previously, we knew them to be moderately venomous snakes, primarily causing local envenomation. However, recent reports have indicated severe systemic envenomation incidents, which include hemostatic dysfunction, microangiopathic hemolysis, kidney injury, myocardial toxicity, and even death.
View Article and Find Full Text PDFTrans R Soc Trop Med Hyg
January 2025
University of Florida College of Medicine, Gainesville, 32610 USA.
Background: Venomous snakes are among the most lethal animals worldwide and envenomation survivors face lifelong morbidities. Envenomation is colloquially considered highly prevalent in the US state of Florida, yet envenomation trends here are currently unassessed.
Methods: We present a comprehensive analysis of causes, characteristics and treatments of Florida's snake envenomations via medical records review of envenomated patients presenting to a major academic medical centre between 2002 and 2022.
Trans R Soc Trop Med Hyg
January 2025
Toxic Organisms Research Centre, Faculty of Science, University of Khartoum, Sudan.
Snakebite envenomation (SBE) is a neglected tropical disease. It causes substantial morbidity and mortality in Sudan. Despite its endemicity, there is a substantial lack of up-to-date data on venomous snakes and their geographical distribution in Sudan, with most information dating back to the early twentieth century.
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