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1.
Biomed Pharmacother ; 179: 117385, 2024 Oct.
Article in English | MEDLINE | ID: mdl-39241571

ABSTRACT

As the research on cancer-related treatment deepens, integrating traditional therapies with emerging interventions reveals new therapeutic possibilities. Melittin and phospholipase A2, the primary anti-cancer components of bee venom, are currently gaining increasing attention. This article reviews the various formulations of melittin in cancer therapy and its potential applications in clinical treatments. The reviewed formulations include melittin analogs, hydrogels, adenoviruses, fusion toxins, fusion peptides/proteins, conjugates, liposomes, and nanoparticles. The article also explored the collaborative therapeutic effects of melittin with natural products, synthetic drugs, radiotherapy, and gene expression regulatory strategies. Phospholipase A2 plays a key role in bee venom anti-cancer strategy due to its unique biological activity. Using an extensive literature review and the latest scientific results, this paper explores the current state and challenges of this field, with the aim to provide new perspectives that guide future research and potential clinical applications. This will further promote the application of bee venom in cancer therapy.


Subject(s)
Antineoplastic Agents , Bee Venoms , Melitten , Neoplasms , Phospholipases A2 , Melitten/pharmacology , Humans , Phospholipases A2/metabolism , Phospholipases A2/pharmacology , Bee Venoms/pharmacology , Animals , Antineoplastic Agents/pharmacology , Neoplasms/drug therapy
2.
Chem Biol Interact ; 402: 111217, 2024 Oct 01.
Article in English | MEDLINE | ID: mdl-39197813

ABSTRACT

Snake venoms are a complex mixture of proteins and polypeptides that represent a valuable source of potential molecular tools for understanding physiological processes for the development of new drugs. In this study two major PLA2s, named PLA2-I (Asp49) and PLA2-II (Lys49), isolated from the venom of Bothrops diporus from Northeastern Argentina, have shown cytotoxic effects on LM3 murine mammary tumor cells, with PLA2-II-like exhibiting a stronger effect compared to PLA2-I. At sub-cytotoxic levels, both PLA2s inhibited adhesion, migration, and invasion of these adenocarcinoma cells. Moreover, these toxins hindered tubulogenesis in endothelial cells, implicating a potential role in inhibiting tumor angiogenesis. All these inhibitory effects were more pronounced for the catalytically-inactive toxin. Additionally, in silico studies strongly suggest that this PLA2-II-like myotoxin could effectively block fibronectin binding to the integrin receptor, offering a dual advantage over PLA2-I in interacting with the αVß3 integrin. In conclusion, this study reports for the first time, integrating both in vitro and in silico approaches, a comparative analysis of the antimetastatic and antiangiogenic potential effects of two isoforms, an Asp49 PLA2-I and a Lys49 PLA2-II-like, both isolated from Bothrops diporus venom.


Subject(s)
Bothrops , Crotalid Venoms , Phospholipases A2 , Animals , Bothrops/metabolism , Mice , Phospholipases A2/metabolism , Phospholipases A2/chemistry , Phospholipases A2/pharmacology , Cell Line, Tumor , Crotalid Venoms/chemistry , Cell Movement/drug effects , Neovascularization, Pathologic/drug therapy , Neovascularization, Pathologic/pathology , Neovascularization, Pathologic/metabolism , Cell Adhesion/drug effects , Female , Endothelial Cells/drug effects , Endothelial Cells/metabolism , Endothelial Cells/cytology , Neoplasm Metastasis , Integrin alphaVbeta3/metabolism , Integrin alphaVbeta3/antagonists & inhibitors , Fibronectins/metabolism , Angiogenesis Inhibitors/pharmacology , Angiogenesis Inhibitors/chemistry , Humans , Lysine/chemistry , Lysine/metabolism , Antineoplastic Agents/pharmacology , Antineoplastic Agents/chemistry , Mammary Neoplasms, Animal/drug therapy , Mammary Neoplasms, Animal/pathology , Mammary Neoplasms, Animal/metabolism , Angiogenesis
3.
Toxins (Basel) ; 16(7)2024 Jul 05.
Article in English | MEDLINE | ID: mdl-39057948

ABSTRACT

Currently, the search for new alternatives to conventional antibiotics to combat bacterial resistance is an urgent task, as many microorganisms threaten human health due to increasing bacterial resistance to traditional medicines. Thus, new molecules such as antimicrobial peptides have emerged as promising alternatives because of their low induction of resistance and broad spectrum of action. In this context, in the past few years, our research group has synthesized and characterized a peptide derived from the C-terminal region of the Lys49 PLA2-like BthTX-I, named p-BthTX-I. After several studies, the peptide (p-BthTX-I)2K was proposed as the molecule with the most considerable biotechnological potential. As such, the present work aimed to evaluate whether the modifications made on the peptide (p-BthTX-I)2K can be applied to other molecules originating from the C-terminal region of PLA2-like Lys49 from snake venoms. The peptides were obtained through the solid-phase peptide synthesis technique, and biochemical and functional characterization was carried out using dichroism techniques, mass spectrometry, antimicrobial activity against ESKAPE strains, hemolytic activity, and permeabilization of lipid vesicles. The antimicrobial activity of the peptides was promising, especially for the peptides (p-AppK)2K and (p-ACL)2K, which demonstrated activity against all strains that were tested, surpassing the model molecule (p-BthTX-I)2K in most cases and maintaining low hemolytic activity. The modifications initially proposed for the (p-BthTX-I)2K peptide were shown to apply to other peptides derived from Lys49 PLA2-like from snake venoms, showing promising results for antimicrobial activity. Future assays comparing the activity of the dimers obtained through this strategy with the monomers of these peptides should be carried out.


Subject(s)
Phospholipases A2 , Phospholipases A2/pharmacology , Phospholipases A2/chemistry , Hemolysis/drug effects , Antimicrobial Peptides/pharmacology , Antimicrobial Peptides/chemistry , Antimicrobial Peptides/chemical synthesis , Animals , Microbial Sensitivity Tests , Anti-Bacterial Agents/pharmacology , Anti-Bacterial Agents/chemical synthesis , Anti-Bacterial Agents/chemistry , Humans , Anti-Infective Agents/pharmacology , Anti-Infective Agents/chemistry , Anti-Infective Agents/chemical synthesis , Bacteria/drug effects
4.
Toxicon ; 247: 107838, 2024 Aug 28.
Article in English | MEDLINE | ID: mdl-38971473

ABSTRACT

Phospholipase A2 (PLA2) is an enzyme present in appreciable quantity in snake venoms which catalyze the hydrolysis of glycerophospholipids at sn-2 position and promote the release of lysophospholipids and fatty acids. 5-methylcoumarin-4-ß-glucoside (5MC4BG) and lupeol were previously isolated from the leaves of V. glaberrima. The aim of this research was to evaluate effect of these compounds as potential inhibitors of snake venom toxins of Naja nigricollis using an in vitro and in silico studies. Antisnake venom studies was conducted using acidimetry while the molecular docking analysis against PLA2 enzyme from N. nigricollis was performed using Auto Dock Vina and ADME-Tox analysis was evaluated using swissADME and ProTox-II online servers. The two compounds (5MC4BG and Lupeol) were able to inhibit the hydrolytic actions of PLA2 enzyme with percentage inhibition ranging from 23.99 to 72.36 % and 21.97-24.82 % at 0.0625-1.00 mg/mL respectively while the standard ASV had 82.63 % at 1.00 mg/mL after 10 min incubation at 37 °C. Similar effects were observed after 30 min incubation, although there was significant increase in percentage inhibition of 5MC4BG and lupeol ranging from 66.51 to 83.73 % and 54.87-59.60 % at similar concentrations. Furthermore, the compounds were able to bind to the active site of PLA2 enzyme with high affinity (-7.7 to -6.3 kcal/mol); the standard ligand, Varespladib had a docking score of -6.9 kcal/mol and they exhibited favorable drug-likeness and pharmacokinetic properties and according to toxicity predictions, the two compounds are toxic. In conclusion, the leaf of V. glaberrima contains phytoconstituents with antisnake activity and thus, validates the hypothesis that, the phytoconstituents of V. glaberrima leaves has antisnake venom activity against N. nigricollis venom and thus, should be studied further for the development as antisnake venom agents.


Subject(s)
Molecular Docking Simulation , Pentacyclic Triterpenes , Phospholipases A2 , Phytochemicals , Plant Leaves , Vernonia , Phytochemicals/pharmacology , Phytochemicals/chemistry , Plant Leaves/chemistry , Animals , Vernonia/chemistry , Phospholipases A2/pharmacology , Pentacyclic Triterpenes/pharmacology , Pentacyclic Triterpenes/chemistry , Elapid Venoms/chemistry , Elapid Venoms/toxicity , Naja , Coumarins/pharmacology , Coumarins/chemistry , Phospholipase A2 Inhibitors/pharmacology , Plant Extracts/pharmacology , Plant Extracts/chemistry , Computer Simulation , Lupanes
5.
Toxicon ; 243: 107742, 2024 May 28.
Article in English | MEDLINE | ID: mdl-38705486

ABSTRACT

Phospholipases A2 (PLA2s) from snake venom possess antitumor and antiangiogenic properties. In this study, we evaluated the antimetastatic and antiangiogenic effects of MjTX-II, a Lys49 PLA2 isolated from Bothrops moojeni venom, on lung cancer and endothelial cells. Using in vitro and ex vivo approaches, we demonstrated that MjTX-II reduced cell proliferation and inhibited fundamental processes for lung cancer cells (A549) growth and metastasis, such as adhesion, migration, invasion, and actin cytoskeleton decrease, without significantly interfering with non-tumorigenic lung cells (BEAS-2B). Furthermore, MjTX-II caused cell cycle alterations, increased reactive oxygen species production, modulated the expression of pro- and antiangiogenic genes, and decreased vascular endothelial growth factor (VEGF) expression in HUVECs. Finally, MjTX-II inhibited ex vivo angiogenesis processes in an aortic ring model. Therefore, we conclude that MjTX-II exhibits antimetastatic and antiangiogenic effects in vitro and ex vivo and represents a molecule that hold promise as a pharmacological model for antitumor therapy.


Subject(s)
Angiogenesis Inhibitors , Bothrops , Cell Proliferation , Crotalid Venoms , Lung Neoplasms , Animals , Humans , Angiogenesis Inhibitors/pharmacology , Lung Neoplasms/drug therapy , Cell Proliferation/drug effects , Phospholipases A2/pharmacology , Cell Movement/drug effects , Human Umbilical Vein Endothelial Cells/drug effects , Vascular Endothelial Growth Factor A/metabolism , A549 Cells , Cell Line, Tumor , Antineoplastic Agents/pharmacology , Neovascularization, Pathologic/drug therapy , Reactive Oxygen Species/metabolism , Venomous Snakes
6.
Toxicon ; 239: 107632, 2024 Feb 23.
Article in English | MEDLINE | ID: mdl-38310691

ABSTRACT

Snake venoms are known to contain toxins capable of interfering with normal physiological processes of victims. Specificity of toxins from snake venoms give scope to identify new molecules with therapeutic action and/or help to understand different cellular mechanisms. Russell's viper venom (RVV) is a mixture of many bioactive molecules with enzymatic and non-enzymatic proteins. The present article describes Daboialipase (DLP), an enzymatic phospholipase A2 with molecular mass of 14.3 kDa isolated from RVV. DLP was obtained after cation exchange chromatography followed by size-exclusion high performance liquid chromatography (SE-HPLC). The isolated DLP presented strong inhibition of adenosine di-phosphate (ADP) and collagen induced platelet aggregation. It also showed anti-thrombin properties by significantly extending thrombin time in human blood samples. Trypan blue and resazurin cell viability assays confirmed time-dependent cytotoxic and cytostatic activities of DLP on MCF7 breast cancer cells, in vitro. DLP caused morphological changes and nuclear damage in MCF7 cells. However, DLP did not cause cytotoxic effects on non-cancer HaCaT cells. Peptide sequences of DLP obtained by O-HRLCMS analysis showed similarity with a previously reported PLA2 (Uniprot ID: PA2B_DABRR/PDB ID: 1VIP_A). An active Asp at 49th position, calcium ion binding site and anticoagulant activity sites were identified in 1 VIP_A. These findings are expected to contribute to designing new anti-platelet, anticoagulant and anti-cancer molecules.


Subject(s)
Anticoagulants , Phospholipases A2 , Vipera , Animals , Humans , Anticoagulants/chemistry , Anticoagulants/isolation & purification , Anticoagulants/pharmacology , Phospholipases A2/chemistry , Phospholipases A2/isolation & purification , Phospholipases A2/pharmacology , Thrombin/antagonists & inhibitors , Viper Venoms/chemistry , Antineoplastic Agents/chemistry , Antineoplastic Agents/isolation & purification , Antineoplastic Agents/pharmacology
7.
Toxins (Basel) ; 16(2)2024 02 10.
Article in English | MEDLINE | ID: mdl-38393179

ABSTRACT

Phospholipases A2 (PLA2s) are a large family of snake toxins manifesting diverse biological effects, which are not always related to phospholipolytic activity. Snake venom PLA2s (svPLA2s) are extracellular proteins with a molecular mass of 13-14 kDa. They are present in venoms in the form of monomers, dimers, and larger oligomers. The cardiovascular system is one of the multiple svPLA2 targets in prey organisms. The results obtained previously on the cardiovascular effects of monomeric svPLA2s were inconsistent, while the data on the dimeric svPLA2 crotoxin from the rattlesnake Crotalus durissus terrificus showed that it significantly reduced the contractile force of guinea pig hearts. Here, we studied the effects of the heterodimeric svPLA2 HDP-1 from the viper Vipera nikolskii on papillary muscle (PM) contractility and the tension of the aortic rings (ARs). HDP-1 is structurally different from crotoxin, and over a wide range of concentrations, it produced a long-term, stable, positive inotropic effect in PMs, which did not turn into contractures at the concentrations studied. This also distinguishes HDP-1 from the monomeric svPLA2s, which at high concentrations inhibited cardiac function. HDP-1, when acting on ARs preconstricted with 10 µM phenylephrine, induced a vasorelaxant effect, similar to some other svPLA2s. These are the first indications of the cardiac and vascular effects of true vipers' heterodimeric svPLA2s.


Subject(s)
Crotalid Venoms , Crotoxin , Venomous Snakes , Rats , Animals , Guinea Pigs , Crotoxin/pharmacology , Papillary Muscles , Vipera , Aorta, Thoracic/metabolism , Phospholipases A2/pharmacology , Phospholipases A2/metabolism , Crotalus/metabolism , Snake Venoms/metabolism , Polyesters , Crotalid Venoms/toxicity , Crotalid Venoms/metabolism
8.
Molecules ; 28(18)2023 Sep 08.
Article in English | MEDLINE | ID: mdl-37764293

ABSTRACT

Secreted phospholipases A2 are snake-venom proteins with many biological activities, notably anti-tumor activity. Phospholipases from the same snake type but different geographical locations have shown similar biochemical and biological activities with minor differences in protein sequences. Thus, the discovery of a new phospholipase A2 with unique characteristics identified in a previously studied venom could suggest the origins of these differences. Here, a new Group II secreted phospholipase A2 (Cc-PLA2-II) from the snake venom of Saudi Cerastes cerastes gasperetti was isolated and characterized. The purified enzyme had a molecular weight of 13.945 kDa and showed high specific activity on emulsified phosphatidylcholine of 1560 U/mg at pH 9.5 and 50 °C with strict calcium dependence. Interestingly, stability in extreme pH and high temperatures was observed after enzyme incubation at several pH levels and temperatures. Moreover, a significant dose-dependent cytotoxic anti-tumor effect against six human cancer cell lines was observed with concentrations of Cc-PLA2 ranging from 2.5 to 8 µM. No cytotoxic effect on normal human umbilical-vein endothelial cells was noted. These results suggest that Cc-PLA2-II potentially has angiogenic activity of besides cytotoxicity as part of its anti-tumor mechanism. This study justifies the inclusion of this enzyme in many applications for anticancer drug development.


Subject(s)
Antineoplastic Agents , Viperidae , Animals , Humans , Group II Phospholipases A2 , Saudi Arabia , Phospholipases A2/pharmacology , Phospholipases A2/chemistry , Phospholipases , Viper Venoms/pharmacology , Viper Venoms/chemistry , Antineoplastic Agents/pharmacology
9.
J Biochem Mol Toxicol ; 37(11): e23476, 2023 Nov.
Article in English | MEDLINE | ID: mdl-37466159

ABSTRACT

Daboxin P, reported earlier from the venom of Daboia russellii, disturbs the blood coagulation cascade by targeting factor X and factor Xa. The present study exhibits that Daboxin P also inhibits platelet aggregation induced by various agonists. The thrombin-induced platelet aggregation was inhibited maximum whereas inhibition of collagen-induced platelet aggregation was found to be 50% and no inhibition of adenosine diphosphate (ADP) and arachidonic acid-induced aggregation was observed. Daboxin P dose-dependently inhibited the thrombin-induced platelet aggregation with Anti-Aggregation 50 (AD50 ) dose of 55.166 nM and also reduced the thrombin-mediated calcium influx. In-silico interaction studies suggested that Daboxin P binds to thrombin and blocks its interaction with its receptor on the platelet surface. Quenching of thrombin's emission spectrum by Daboxin P and electrophoretic profiles of pull-down assay further reveals the binding between Daboxin P and thrombin. Thus, the present study demonstrates that Daboxin P inhibits thrombin-induced platelet aggregation by binding to thrombin.


Subject(s)
Platelet Aggregation , Thrombin , Thrombin/pharmacology , Phospholipases A2/pharmacology , Blood Coagulation , Blood Platelets , Viper Venoms/pharmacology
10.
Toxicon ; 231: 107207, 2023 Aug 01.
Article in English | MEDLINE | ID: mdl-37364619

ABSTRACT

Phospholipases A2 (PLA2s) are associated with inflammatory response, performing a complex process involving, specially, cytokines. The excess of pro-inflammatory cytokines induces a chronic inflammatory response and can cause several disorders in the body. Therefore, the inhibition or regulation of cytokines' signaling pathways is a target for new treatment development strategies. Thus, this study aimed to select PLA2 inhibitor mimetic peptides through phage display technology with anti-inflammatory activity. Specific mimetic peptides were selected using BpPLA2-TXI, a PLA2 isolated from Bothrops pauloensis, as a target, and γCdcPL, a PLA2 inhibitor isolated from Crotalus durissus collilineatus, which was used as a competitor during the elution step. We selected the peptide C2PD, which seems to play a pivotal role in the modulation of IL-6, IL-1ß, and IL-10 cytokines in inflammatory cells. The C2PD showed a significant reduction in PLA2 activity. Furthermore, the synthetic peptide was tested in PBMC and showed a significant down-modulation of IL-6 and IL-1ß release, whereas IL-10 responses were up-regulated. Our findings suggest that this novel peptide may be a potential therapeutic candidate for the treatment of inflammatory diseases, mainly due to its anti-inflammatory properties and absence of cytotoxicity.


Subject(s)
Crotalid Venoms , Interleukin-10 , Leukocytes, Mononuclear , Interleukin-6 , Phospholipases A2/pharmacology , Peptides/pharmacology , Peptides/chemistry , Cytokines , Crotalid Venoms/toxicity
11.
Toxicol In Vitro ; 88: 105562, 2023 Apr.
Article in English | MEDLINE | ID: mdl-36690282

ABSTRACT

Dengue fever is considered a major public health problem in tropical and subtropical regions. Our study analyzed the effect of BaltPLA2, a phospholipase A2 from Bothrops alternatus snake venom, on the viability of cells infected with Dengue virus. In presence of BaltPLA2, the viability of infected cells increased significantly in virucidal, post-treatment, and adsorption assays. Although preliminary these results reveal the need for further studies to investigated whether BaltPLA2 has antiviral activity against Dengue virus.


Subject(s)
Bothrops , Crotalid Venoms , Dengue Virus , Animals , Phospholipases A2/pharmacology , Snake Venoms , Antiviral Agents/pharmacology , Crotalid Venoms/pharmacology
12.
Toxins (Basel) ; 14(11)2022 10 23.
Article in English | MEDLINE | ID: mdl-36355974

ABSTRACT

Increasing concern about the use of animal models has stimulated the development of in vitro cell culture models for analysis of the biological effects of snake venoms. However, the complexity of animal venoms and the extreme synergy of the venom components during envenomation calls for critical review and analysis. The epithelium is a primary target for injected viper venom's toxic substances, and therefore, is a focus in modern toxinology. We used the Vero epithelial cell line as a model to compare the actions of a crude Macrovipera lebetina obtusa (Levantine viper) venom with the actions of the same venom with two key enzymatic components inhibited (specifically, phospholipase A2 (PLA2) and metalloproteinases) in the bioenergetic cellular response, i.e., oxygen uptake and reactive oxygen species generation. In addition to the rate of free-radical oxidation and lipid peroxidation, we measured real-time mitochondrial respiration (based on the oxygen consumption rate) and glycolysis (based on the extracellular acidification rate) using a Seahorse analyzer. Our data show that viper venom drives an increase in both glycolysis and respiration in Vero cells, while the blockage of PLA2 or/and metalloproteinases affects only the rates of the oxidative phosphorylation. PLA2-blocking in venom also increases cytotoxic activity and the overproduction of reactive oxygen species. These data show that certain components of the venom may have a different effect within the venom cocktail other than the purified enzymes due to the synergy of the venom components.


Subject(s)
Viper Venoms , Viperidae , Animals , Chlorocebus aethiops , Viper Venoms/toxicity , Vero Cells , Reactive Oxygen Species/metabolism , Viperidae/metabolism , Phospholipases A2/pharmacology , Phospholipases A2/metabolism , Metalloproteases/toxicity , Metalloproteases/metabolism , Lipid Peroxidation
13.
Molecules ; 27(22)2022 Nov 10.
Article in English | MEDLINE | ID: mdl-36431827

ABSTRACT

The growing problem of antibiotic resistance among bacteria requires searching for new therapeutic agents with bacteriostatic and/or bactericidal properties. Crotoxin is a ß-neurotoxin from the venom of the Crotalus durissus terrificus. It is composed of two subunits: CA (non-active) and CB (with phospholipase A2 activity). It has already been shown that the isolated CB, but not the CA, subunit of crotoxin exhibits an antibacterial activity towards a variety of Gram-positive and Gram-negative bacterial species. However, no studies on the whole crotoxin complex have been carried out so far. We tested the antibacterial properties of crotoxin, as well as its isolated CB subunit, towards Staphylococcus aureus ATCC 25923, Staphylococcus aureus ATCC 6535, Micrococcus luteus ATCC 10240, Escherichia coli ATCC 25922, Escherichia coli ATCC 8739, and Pseudomonas aeruginosa ATCC 10145. Both toxins exhibited antibacterial properties only against Micrococcus luteus ATCC 10240. Crotoxin showed only bacteriostatic activity with a MIC of 46 µM, while the CB subunit acted as both a bacteriostatic and bactericidal agent with a MIC = MBC = 0.21 µM. The bacteriostatic effect of the toxins was independent of the enzymatic activity of the CB subunit. Bactericidal properties, however, require phospholipase A2 activity. Both toxins reduced bacteria viability at the MIC by 72% and 85% for crotoxin- and CB-treated bacteria, respectively. The membrane permeability increased approximately three times within the first hour of incubation with toxins; afterwards, either no significant changes or a decrease of membrane permeability, compared to the control cells, were observed. We isolated a single, approximately 30 kDa bacterial wall protein which belongs to the NlpC/P60 family that interacts with crotoxin leading to the inhibition of bacterial growth. Neither crotoxin nor the CB subunit showed any cytotoxic properties to human fibroblasts at the MIC during the three-day incubation.


Subject(s)
Crotoxin , Animals , Humans , Crotoxin/pharmacology , Crotalus/metabolism , Phospholipases A2/pharmacology , Anti-Bacterial Agents/pharmacology , Escherichia coli/metabolism
14.
Molecules ; 27(19)2022 Oct 01.
Article in English | MEDLINE | ID: mdl-36235027

ABSTRACT

Due to the lack of chemotherapeutic drugs that selectively affect cervical cancer cells, natural sources such as snake venom are currently being investigated for molecules with antitumor potential. Pllans-II, a phospholipase A2 type-Asp49 from Porthidium lansbergii lansbergii snake venom, induced cell death in a cervical cancer cell line-Ca Ski-related to dysfunction in the ability to resolve endoplasmic reticulum stress, evidenced by sub-expression of genes such as PERK, ERO1 PDIs, HSP70, and CHOP. Western blot analysis validated the last two genes' sub-expression at the protein level. In addition, Pllans-II presented a dose-dependent cytotoxic effect on cancer cells and an insignificant effect on healthy endothelial cells (HUVEC). Additionally, Pllans-II inhibited cancer cells' adhesion and migration capacity, induced cell cycle arrest in the G2/M phase, and induced apoptosis stimulated possibly by the extrinsic route. These results demonstrate for the first time that Pllans-II has an antitumor effect on a squamous epithelial cervical cancer cell line and represents a possible biotechnological tool for designing a prominent antitumor agent.


Subject(s)
Antineoplastic Agents , Bone Neoplasms , Breast Neoplasms , Carcinoma, Squamous Cell , Uterine Cervical Neoplasms , Antineoplastic Agents/pharmacology , Apoptosis , Cell Line, Tumor , Endoplasmic Reticulum Stress , Endothelial Cells , Female , Humans , Phospholipases A2/pharmacology , Uterine Cervical Neoplasms/drug therapy , Uterine Cervical Neoplasms/pathology
15.
Iran J Med Sci ; 47(4): 300-313, 2022 07.
Article in English | MEDLINE | ID: mdl-35919080

ABSTRACT

Venomous arthropods such as scorpions and bees form one of the important groups with an essential role in medical entomology. Their venom possesses a mixture of diverse compounds, such as peptides, some of which have toxic effects, and enzymatic peptide Phospholipase A2 (PLA2) with a pharmacological potential in the treatment of a wide range of diseases. Bee and scorpion venom PLA2 group III has been used in immunotherapy, the treatment of neurodegenerative and inflammatory diseases. They were assessed for antinociceptive, wound healing, anti-cancer, anti-viral, anti-bacterial, anti-parasitic, and anti-angiogenesis effects. PLA2 has been identified in different species of scorpions and bees. The anti-leishmania, anti-bacterial, anti-viral, and anti-malarial activities of scorpion PLA2 still need further investigation. Many pieces of research have been stopped in the laboratory stage, and several studies need vast investigation in the clinical phase to show the pharmacological potential of PLA2. In this review, the medical significance of PLA2 from the venom of two arthropods, namely bees and scorpions, is discussed.


Subject(s)
Bee Venoms , Scorpion Venoms , Animals , Bee Venoms/chemistry , Bee Venoms/pharmacology , Bee Venoms/therapeutic use , Bees , Peptides , Phospholipases A2/chemistry , Phospholipases A2/pharmacology , Phospholipases A2/therapeutic use , Scorpion Venoms/pharmacology , Scorpion Venoms/therapeutic use , Scorpions
16.
Arch Microbiol ; 204(8): 526, 2022 Jul 27.
Article in English | MEDLINE | ID: mdl-35895237

ABSTRACT

Viral infections are linked to a variety of human diseases. Despite the achievements made in drug and vaccine development, several viruses still lack preventive vaccines and efficient antiviral compounds. Thus, developing novel antiviral agents is of great concern, particularly the natural products that are promising candidates for such discoveries. In this study, we have purified an approximately 15 kDa basic phospholipase A2 (PLA2) enzyme from the Egyptian cobra Naja haje haje venom. The purified N. haje PLA2 showed a specific activity of 22 units/mg protein against 6 units/mg protein for the whole crude venom with 3.67-fold purification. The antiviral activity of purified N. haje PLA2 has been investigated in vitro against bovine coronavirus (BCoV) and simian rotavirus (RV SA-11). Our results showed that the CC50 of PLA2 were 33.6 and 29 µg/ml against MDBK and MA104 cell lines, respectively. Antiviral analysis of N. haje PLA2 showed an inhibition of BCoV and RV SA-11 infections with a therapeutic index equal to 33.6 and 16, respectively. Moreover, N. haje PLA2 decreased the BCoV and RV SA-11 titers by 4.25 log10 TCID50 and 2.5 log10 TCID50, respectively. Thus, this research suggests the potential antiviral activity of purified N. haje PLA2 against BCoV and RV SA-11 infections in vitro.


Subject(s)
Antiviral Agents , Coronavirus, Bovine , Elapid Venoms , Phospholipases A2 , Rotavirus , Animals , Antiviral Agents/pharmacology , Coronavirus, Bovine/drug effects , Elapid Venoms/pharmacology , Naja haje , Phospholipases A2/pharmacology , Rotavirus/drug effects
17.
Molecules ; 27(11)2022 May 26.
Article in English | MEDLINE | ID: mdl-35684381

ABSTRACT

Secretory group V phospholipase A2 (PLA2-V) is known to be involved in inflammatory processes in cellular studies, nevertheless, the biochemical and the enzymatic characteristics of this important enzyme have been unclear yet. We reported, as a first step towards understanding the biochemical properties, catalytic characteristics, antimicrobial and cytotoxic effects of this PLA2, the production of PLA2-V from dromedary. The obtained DrPLA2-V has an absolute requirement for Ca2+ and NaTDC for enzymatic activity with an optimum pH of 9 and temperature of 45 °C with phosphatidylethanolamine as a substrate. Kinetic parameters showed that Kcat/Kmapp is 2.6 ± 0.02 mM-1 s-1. The enzyme was found to display potent Gram-positive bactericidal activity (with IC50 values of about 5 µg/mL) and antifungal activity (with IC50 values of about 25 µg/mL)in vitro. However, the purified enzyme did not display a cytotoxic effect against cancer cells.


Subject(s)
Anti-Bacterial Agents , Camelus , Animals , Anti-Bacterial Agents/pharmacology , Kinetics , Phospholipases A2/pharmacology , Temperature
18.
Toxicon ; 210: 25-31, 2022 Apr 30.
Article in English | MEDLINE | ID: mdl-35183570

ABSTRACT

Snake venoms are complex mixtures of molecules with several biological activities. Among these molecules, the enzymes with phospholipase A2 activity have been extensively studied in the venoms from snakes because of their importance in the envenomation process and symptoms. The Mexican rattlesnake Crotalus molossus nigrescens is widely distributed in the Mexican plateau. Unlike other crotalids, its venom components have been poorly studied. Here, we characterized the phospholipase activity of one fraction isolated from the venom of this snake and we determined the cytotoxic and neurotoxic effects on brain tumor cells and neuronal primary cultures, respectively. After reverse phase chromatography, we obtained a fraction which was analyzed by mass spectrometry showing higher activity than that from a PLA2 from bee venom used as control. This fraction was enriched with three basic Asp49 phospholipases with molecular masses of 12.5, 13.9 and 14.2 kDa. Their complete amino acid sequences were determined, and their predicted tertiary structures were generated using the model building softwares I-tasser and Chimera. Viability assays revealed that the fraction showed cytotoxic activity against brain tumor cells (C6, RG2 and Daoy) with IC50 values ranging between 10 and 100 ng/ml, whereas an IC50 > 100 ng/ml was exerted in rat primary astrocytes. These findings might be relevant in oncological medicine due to their potential as anticancer agents and low neurotoxic effects compared to conventional drugs.


Subject(s)
Antineoplastic Agents , Crotalid Venoms , Neoplasms , Animals , Crotalid Venoms/chemistry , Crotalus , Neoplasms/drug therapy , Phospholipases A2/chemistry , Phospholipases A2/pharmacology , Rats , Snake Venoms/chemistry
19.
J Cell Mol Med ; 26(5): 1466-1472, 2022 03.
Article in English | MEDLINE | ID: mdl-35166019

ABSTRACT

Phospholipases A2 (PLA2) are a superfamily of enzymes, playing a critical role in the development of various human cancers. However, the mechanism of PLA2 as an oncogene in glioblastoma remains largely unknown. In this study, we explored the effects of PLA2 on glioblastoma and investigated the underlying mechanism. The results showed that PLA2 was highly expressed in glioblastoma. Patients with a high PLA2 level have low overall survival than those with low PLA2 expression. PLA2 overexpression promoted glioblastoma cell proliferation and viability and inhibited cell apoptosis by inducing cell cycle transition from G1 to S stage. Knockdown of PLA2 inhibited tumor growth in the xenograft mice model. In addition, PLA2 knockdown decreased the protein level of MCM2 and MCM5. These findings identify PLA2 as an oncogene in glioblastoma progression and provide a promising strategy to treat glioblastoma in the future.


Subject(s)
Glioblastoma , Animals , Apoptosis/genetics , Cell Line, Tumor , Cell Proliferation , DNA Replication/genetics , Glioblastoma/pathology , Humans , Mice , Oncogenes , Phospholipases A2/genetics , Phospholipases A2/metabolism , Phospholipases A2/pharmacology
20.
Int J Mol Sci ; 23(3)2022 Jan 30.
Article in English | MEDLINE | ID: mdl-35163532

ABSTRACT

Since the beginning of the HIV epidemic, lasting more than 30 years, the main goal of scientists was to develop effective methods for the prevention and treatment of HIV infection. Modern medicines have reduced the death rate from AIDS by 80%. However, they still have side effects and are very expensive, dictating the need to search for new drugs. Earlier, it was shown that phospholipases A2 (PLA2s) from bee and snake venoms block HIV replication, the effect being independent on catalytic PLA2 activity. However, the antiviral activity of human PLA2s against Lentiviruses depended on catalytic function and was mediated through the destruction of the viral membrane. To clarify the role of phospholipolytic activity in antiviral effects, we analyzed the anti-HIV activity of several snake PLA2s and found that the mechanisms of their antiviral activity were similar to that of mammalian PLA2. Our results indicate that snake PLA2s are capable of inhibiting syncytium formation between chronically HIV-infected cells and healthy CD4-positive cells and block HIV binding to cells. However, only dimeric PLA2s had pronounced virucidal and anti-HIV activity, which depended on their catalytic activity. The ability of snake PLA2s to inactivate the virus may provide an additional barrier to HIV infection. Thus, snake PLA2s might be considered as candidates for lead molecules in anti-HIV drug development.


Subject(s)
Anti-HIV Agents/pharmacology , CD4-Positive T-Lymphocytes/cytology , Giant Cells/cytology , HIV-1/physiology , Phospholipases A2/pharmacology , Snake Venoms/enzymology , Snakes/metabolism , Animals , CD4-Positive T-Lymphocytes/drug effects , CD4-Positive T-Lymphocytes/virology , Cell Line , Cells, Cultured , Giant Cells/drug effects , Giant Cells/virology , HIV-1/drug effects , Humans , Inhibitory Concentration 50 , Reptilian Proteins/pharmacology , Snakes/classification , Virus Activation/drug effects , Virus Attachment/drug effects
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