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3.
PLoS Negl Trop Dis ; 14(11): e0008873, 2020 11.
Article in English | MEDLINE | ID: mdl-33253321

ABSTRACT

Bungarus multicinctus is the most venomous snake distributed in China and neighboring countries of Myanmar, Laos, north Vietnam and Thailand. The high mortality rate of B. multicinctus envenomation is attributed to the lethal components of α-, ß-, γ- and κ- bungarotoxins contained in the venom. Although anti-B. multicinctus sera were produced in Shanghai, Taiwan and Vietnam, the most widely clinic used product was term as B. multicinctus antivenin and manufactured by Shanghai Serum Bio-technology Co. Ltd. In the present investigation, high purity α-, ß- and γ-bungarotoxins were separately isolated from B. multicinctus crude venom. Rabbit anti- α-, ß- and γ-bungarotoxin antisera were prepared by common methods, respectively. LD50 values of α-, ß- and γ-bungarotoxins were systematically determined via three administration pathways (intraperitoneal, intramuscular and intravenous injections) in Kunming mice. LD50 values of ß-bungarotoxin were closely related with injection routines but those of both α- and γ-bungarotoxins were not dependent on the injection routines. Commercial B. multicinctus antivenin showed strong immunoreaction with high molecular weight fractions of the B. multicinctus but weakly recognized low molecular weight fractions like α- and γ-bungarotoxins. Although B. multicinctus antivenin showed immunoreaction with high molecular weight fractions of Bungarus fasciatus, Naja atra, Ophiophagus hannah venoms but the antivenin only demonstrated animal protection efficacy against O. hannah venom. These results indicated that the high molecular weight fractions of the O. hannah played an important role in venom lethality but those of B. fasciatus and N. atra did not have such a role.


Subject(s)
Antivenins/immunology , Bungarotoxins/immunology , Elapid Venoms/immunology , Immune Sera/immunology , Animals , Bungarotoxins/chemistry , Bungarotoxins/toxicity , Bungarus , China , Elapid Venoms/chemistry , Elapid Venoms/toxicity , Lethal Dose 50 , Male , Mice , Neutralization Tests , Ophiophagus hannah , Rabbits
4.
Food Chem Toxicol ; 50(6): 1902-10, 2012 Jun.
Article in English | MEDLINE | ID: mdl-22510491

ABSTRACT

Lysine-rich rice (LR) is a transgenic rice produced by fusion protein expressed genes into the germline of rice seeds. Compositional analysis of LR showed that the absolute concentration of lysine was significantly higher as compared to a near-isogenic non-transgenic rice. Lysine is believed to be the first limiting essential amino acid in rice, it is important to improve lysine content on rice nutritional quality. Here we report the results of a three generation study comparing the outcome in rats fed the transgenic rice to those fed conventional, near-isogenic rice or a control diet. In the study, both clinical performance variables and pathological responses such as body weight, food consumption, reproductive data, hematological parameters, serum chemistry and relative organ weights were examined respectively. It was evident that there were no adverse effects observed in rats that were fed transgenic rice compared with non-transgenic rice. There were significant differences in some hematology, serum chemistry parameters and relative organ weights in rats consuming the transgenic rice diet or non-transgenic rice diet compared with the control diet, but no macroscopic or histological adverse effects were observed. So the results from this study demonstrate that LR rice is as safe as near-isogenic non-transgenic rice.


Subject(s)
Lysine/pharmacology , Oryza/adverse effects , Plants, Genetically Modified/adverse effects , Plants, Genetically Modified/chemistry , Animals , Blood Cell Count , Blood Chemical Analysis , Body Weight/drug effects , Diet , Eating/drug effects , Gonadal Steroid Hormones/blood , Lactation/physiology , Male , Nutritional Status , Organ Size/drug effects , Oryza/chemistry , Oryza/genetics , Rats , Rats, Sprague-Dawley , Reproduction/drug effects , Sex Characteristics
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