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gas gangrene/najas

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The pathogenesis of myonecrosis induced by three different snake venoms was studied by light microscopic examination of skeletal muscle tissue taken at time periods ranging from 0.25 hr to 4 weeks after an intramuscular injection of the venom into mice. It was possible to identify different types of

Neutralization of Naja naja venom induced lethality, edema and myonecrosis by ethanolic root extract of Coix lacryma-jobi.

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Coix lacryma-jobi, commonly known as job's tear, is a tall grain-bearing tropical plant of the family Poaceae. The ethanolic root extract (ERE) of the plant was investigated for the first time for anti-venom activity against Indian cobra Naja naja venom. In-vitro studies were conducted to determine

Pharmacological study on phospholipases A2 isolated from Naja mossambica mossambica venom.

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The pharmacological properties of three phospholipases A2 (CM-I, CM-II and CM-III) purified from Naja mossambica mossambica venom were studied. The order of their catalytic and indirect hemolytic potencies was CM-I = CM-II greater than CM-III. Among them, only CM-III had a direct hemolytic action on
The course of degeneration and regeneration of mouse skin following intradermal injection of spitting cobra (N. nigricollis) venom was investigated using simple histological staining techniques. Early changes observed were vascular congestion, oedema and degeneration of the skeletal muscle cell

Purification and characterization of an anti-hemorrhagic protein from Naja naja (Indian cobra) venom.

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Snake venom Kunitz-type proteins are well known to inhibit serine proteases but a few studies have also shown matrix metalloproteases (MMPs) inhibition. In view of the fact that MMPs and snake venom metalloproteases (SVMPs) have similar catalytic site, inhibition of SVMP activity by Kunitz-type
Experiments have been carried out to find potent inhibitors of hyaluronidases of Naja kaouthia (NK) and Calloselasma rhodostoma (CR) venoms with the aim of reducing local tissue damage and systemic toxicities caused by the venoms. Seven drugs/chemicals known to inhibit hyaluronidases were tested for

Cardiotoxin 1 from cobra (Naja naja atra) venom causes necrosis of skeletal muscle in vivo.

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Cardiotoxin 1 from cobra (Naja naja atra) venom was tested for its ability to cause necrosis of skeletal muscle cells after i.m. injection into mice. Light and electron microscopic examination of tissue indicated that the toxin caused necrosis of skeletal muscle as early as 30 min after injection.
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