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1.
Biomedicines ; 11(4)2023 Apr 07.
Article in English | MEDLINE | ID: mdl-37189733

ABSTRACT

Protozoal infections are a world-wide problem. The toxicity and somewhat low effectiveness of the existing drugs require the search for new ways of protozoa suppression. Snake venom contains structurally diverse components manifesting antiprotozoal activity; for example, those in cobra venom are cytotoxins. In this work, we aimed to characterize a novel antiprotozoal component(s) in the Bungarus multicinctus krait venom using the ciliate Tetrahymena pyriformis as a model organism. To determine the toxicity of the substances under study, surviving ciliates were registered automatically by an original BioLaT-3.2 instrument. The krait venom was separated by three-step liquid chromatography and the toxicity of the obtained fractions against T. pyriformis was analyzed. As a result, 21 kDa protein toxic to Tetrahymena was isolated and its amino acid sequence was determined by MALDI TOF MS and high-resolution mass spectrometry. It was found that antiprotozoal activity was manifested by ß-bungarotoxin (ß-Bgt) differing from the known toxins by two amino acid residues. Inactivation of ß-Bgt phospholipolytic activity with p-bromophenacyl bromide did not change its antiprotozoal activity. Thus, this is the first demonstration of the antiprotozoal activity of ß-Bgt, which is shown to be independent of its phospholipolytic activity.

2.
RSC Adv ; 13(23): 15926-15933, 2023 May 22.
Article in English | MEDLINE | ID: mdl-37250213

ABSTRACT

Direct oxidation of methane over oxo-doped ZIF-204, a bio-mimetic metal-organic framework, is investigated under first-principles calculations based on density functional theory. In the pristine ZIF-204, the tetrahedral methane molecule anchors to an open monocopper site via the so-called η2 configuration with a physisorption energy of 0.24 eV. This weak binding arises from an electrostatic interaction between the negative charge of carbon in the methane molecule and the positive Cu2+ cation in the framework. In the modified ZIF-204, the doped oxo species is stabilized at the axial position of a CuN4-base square pyramid at a distance of 2.06 Å. The dative covalent bond between Cu and oxo is responsible for the formation energy of 1.06 eV. With the presence of the oxo group, the presenting of electrons in the O_pz orbital accounts for the adsorption of methane via hydrogen bonding with an adsorption energy of 0.30 eV. The methane oxidation can occur via either a concerted direct oxo insertion mechanism or a hydrogen-atom abstraction radical rebound mechanism. Calculations on transition-state barriers show that reactions via the concerted direct oxo insertion mechanism can happen without energy barriers. Concerning the hydrogen-atom abstraction radical rebound mechanism, the C-H bond dissociation of the CH4 molecule is barrierless, but the C-O bond recombination to form the CH3OH molecule occurs through a low barrier of 0.16 eV. These predictions suggest the modified ZIF-204 is a promising catalyst for methane oxidization.

3.
Med Vet Entomol ; 37(2): 381-395, 2023 06.
Article in English | MEDLINE | ID: mdl-36598082

ABSTRACT

Despite the fact that over a 100 anopheline mosquito species have been identified as human malaria vectors, little is known about ungulate malaria vectors. Consequently, we focused on investigating the bionomics and genetic characterizations of anopheline mosquitoes in goat malaria-endemic regions. We also attempted to screen for ungulate malaria potential vectors. A total of 1019 female anopheline mosquitoes were collected from six goat farms in four provinces of Thailand from 2020 to 2021. Mosquitoes were morphologically identified and subsequently confirmed using the mitochondrial DNA barcoding region-cytochrome oxidase c subunit I (MtDNA-COI), mitochondrial DNA-cytochrome c oxidase subunit II (MtDNA-COII), and ribosomal DNA internal transcribed spacer 2 (rDNA-ITS2) sequences. The current study reveals the genetic characteristics and distribution of nine mosquito species within the Anopheles and Cellia subgenera. Four dominant species, including Anopheles peditaeniatus, Anopheles subpictus, Anopheles vagus, and Anopheles aconitus exhibited significant intraspecific gene flow within their corresponding species. Although malaria parasites were not found in 126 mosquito pools, meaning more investigation is necessary, the current study adds to the existing DNA barcoding data collection and improves the current understanding of the genetic structure and distribution of anopheline mosquito species, which could be useful for effective control of mosquito-borne diseases.


Subject(s)
Anopheles , Goat Diseases , Malaria , Female , Humans , Animals , Goats/genetics , Thailand , Mosquito Vectors/genetics , Malaria/epidemiology , Malaria/veterinary , Anopheles/parasitology , DNA, Mitochondrial
4.
Hosp Top ; 101(3): 227-234, 2023.
Article in English | MEDLINE | ID: mdl-34904528

ABSTRACT

Active participation in pain management is vital to improve postoperative pain outcomes. However, this issue has not been fully examined in Vietnam. This study aimed to examine the active participation of patients in pain management after surgery, as well as explore its effect on acute postoperative pain.A hospital-based survey on 245 patients after surgery was conducted. Information about demographic and clinical characteristics, pain intensity and active participation in pain management was collected. Multivariate regression models were utilized to determine the associations.53.9% of patients reported that they were informed about the postoperative pain relief method before surgery. One-third (33.5%) of patients selected preferred pain relief methods; 46.1% reported that they asked physicians when feeling pain immediately after surgery; 49.8% asked physicians when pain was not relieved after taking medications, and 52.2% asked physicians for their current pain in the time of interview. Age and occupation were found to be positively associated with active participation score. Patients being informed about the postoperative pain relief method before surgery had 0.87 points higher than those not receiving explanation (Coef. = 0.87; 95%CI = 0.49-1.26). Patients with high active participation scores were more likely to have pain improvement (OR = 3.41, 95%CI = 2.37-4.92).This study highlights a low level of active participation in postoperative pain management among Vietnamese patients. Routinely providing information about pain control before surgery, and encouraging patients to actively participate in pain management are essential to improve postoperative pain outcomes.


Subject(s)
Pain Management , Patient Participation , Humans , Vietnam , Pain Management/methods , Pain, Postoperative/drug therapy , Hospitals, Urban
6.
Sci Rep ; 12(1): 5747, 2022 04 06.
Article in English | MEDLINE | ID: mdl-35388073

ABSTRACT

Ungulate malaria parasites and their vectors are among the least studied when compared to other medically important species. As a result, a thorough understanding of ungulate malaria parasites, hosts, and mosquito vectors has been lacking, necessitating additional research efforts. This study aimed to identify the vector(s) of Plasmodium bubalis. A total of 187 female mosquitoes (133 Anopheles spp., 24 Culex spp., 24 Aedes spp., and 6 Mansonia spp. collected from a buffalo farm in Thailand where concurrently collected water buffalo samples were examined and we found only Anopheles spp. samples were P. bubalis positive. Molecular identification of anopheline mosquito species was conducted by sequencing of the PCR products targeting cytochrome c oxidase subunit 1 (cox1), cytochrome c oxidase subunit 2 (cox2), and internal transcribed spacer 2 (ITS2) markers. We observed 5 distinct groups of anopheline mosquitoes: Barbirostris, Hyrcanus, Ludlowae, Funestus, and Jamesii groups. The Barbirostris group (Anopheles wejchoochotei or Anopheles campestris) and the Hyrcanus group (Anopheles peditaeniatus) were positive for P. bubalis. Thus, for the first time, our study implicated these anopheline mosquito species as probable vectors of P. bubalis in Thailand.


Subject(s)
Anopheles , Malaria , Plasmodium , Animals , Anopheles/genetics , Anopheles/parasitology , Electron Transport Complex IV/genetics , Female , Malaria/parasitology , Plasmodium/genetics , Thailand
7.
Nanomaterials (Basel) ; 9(9)2019 Aug 23.
Article in English | MEDLINE | ID: mdl-31443607

ABSTRACT

It is well-known that drugs administered into an organism intravenously or through the gastrointestinal tract are degraded by enzymes of the body, reducing their therapeutic effect. One of the ways to decrease this undesirable process is through the inclusion of drugs in nanomaterials. Earlier strong anticoagulant activity was demonstrated for dipeptide IleTrp (IW) and adenosine (Ado). In this work, the effect of inclusion in nanomaterials on the biological activity of IW and Ado was studied. For this purpose, Ado and IW were incorporated into thermosensitive nanogel composed of pluronic P123-grafted heparin. The prepared nanocarrier was characterized by transmission electron microscopy, dynamic light scattering, and ζ-potential. Biological activity was determined by measuring the bleeding time from mouse tail in vivo and the time of clot formation in vitro. It was found that encapsulation of Ado and IW into nanomaterial significantly increased their effects, resulting in an increase in the bleeding time from mouse tail and clot formation time. Thus, inclusion of low molecular weight anticoagulants Ado and IW into nanomaterials may be considered a way to increase their biological activity.

8.
Toxins (Basel) ; 9(11)2017 10 26.
Article in English | MEDLINE | ID: mdl-29072627

ABSTRACT

Scorpion venoms are complex polypeptide mixtures, the ion channel blockers and antimicrobial peptides being the best studied components. The coagulopathic properties of scorpion venoms are poorly studied and the data about substances exhibiting these properties are very limited. During research on the Heterometrus laoticus scorpion venom, we have isolated low-molecular compounds with anticoagulant activity. Determination of their structure has shown that one of them is adenosine, and two others are dipeptides LeuTrp and IleTrp. The anticoagulant properties of adenosine, an inhibitor of platelet aggregation, are well known, but its presence in scorpion venom is shown for the first time. The dipeptides did not influence the coagulation time in standard plasma coagulation tests. However, similarly to adenosine, both peptides strongly prolonged the bleeding time from mouse tail and in vitro clot formation in whole blood. The dipeptides inhibited the secondary phase in platelet aggregation induced by ADP, and IleTrp decreased an initial rate of platelet aggregation induced by collagen. This suggests that their anticoagulant effects may be realized through the deterioration of platelet function. The ability of short peptides from venom to slow down blood coagulation and their presence in scorpion venom are established for the first time. Further studies are needed to elucidate the precise molecular mechanism of dipeptide anticoagulant activity.


Subject(s)
Adenosine/pharmacology , Anticoagulants/pharmacology , Peptides/pharmacology , Scorpion Venoms/chemistry , Adenosine/chemistry , Adenosine/isolation & purification , Animals , Anticoagulants/chemistry , Anticoagulants/isolation & purification , Male , Mice , Molecular Weight , Peptides/chemistry , Peptides/isolation & purification , Platelet Aggregation/drug effects , Scorpions
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