Skip to search form
Skip to main content
Skip to account menu
Semantic Scholar
Semantic Scholar's Logo
Search 237,159,872 papers from all fields of science
Search
Sign In
Create Free Account
Snake Venoms
Known as:
Snake Venoms [Chemical/Ingredient]
, Venom, Snake
, Snake Venom
Expand
Solutions or mixtures of toxic and nontoxic substances elaborated by snake (Ophidia) salivary glands for the purpose of killing prey or disabling…
Expand
National Institutes of Health
Create Alert
Alert
Related topics
Related topics
22 relations
Antivenin
In Blood
Process of secretion
Snake Bites
Expand
Narrower (13)
Cilengitide
M4 protease, Crotalus molossus molossus
NaI protein, Notechis ater
boigatoxin A
Expand
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
1995
1995
Purification and characterization of myotoxin IV, a phospholipase A2 variant, from Bothrops asper snake venom.
C. Díaz
,
B. Lomonte
,
Fernando Zamudio
,
J. Gutiérrez
Natural toxins (Print)
1995
Corpus ID: 41748814
A basic myotoxic protein was purified from Bothrops asper venom. Like other basic Bothrops myotoxins, myotoxin IV induces acute…
Expand
1979
1979
Cardiovascular Effects of Snake Venoms
C. Y. Lee
,
S. Y. Lee
1979
Corpus ID: 69125468
Snake venoms have a variety of deleterious effects on almost every organ system. In most cases of snake venom poisoning…
Expand
Highly Cited
1971
Highly Cited
1971
Phospholipase A of snake venoms. I. Isolation and molecular properties of isoenzymes from Naja naja and Vipera russellii venoms.
J. Salach
,
P. Turini
,
R. Seng
,
J. Hauber
,
T. Singer
Journal of Biological Chemistry
1971
Corpus ID: 13266118
Abstract A combination of narrow range isoelectric focusing, electrophoresis on polyacrylamide gel, and gel exclusion on Sephadex…
Expand
1969
1969
Liver phospholipids of rats deprived of dietary choline.
J. Beare-Rogers
Canadian Journal of Biochemistry
1969
Corpus ID: 42636549
The effect of choline deprivation on the fatty acid composition of liver phospholipids was determined in male rats fed the test…
Expand
Highly Cited
1966
Highly Cited
1966
Lipid monolayers: action of phospholipase A of Crotalus atrox and Naja naja venoms on phosphatidyl choline and phosphatidal choline.
G. Colacicco
,
M. Rapport
Journal of Lipid Research
1966
Corpus ID: 11976396
The activity of phospholipase A on phosphatidyl choline and phosphatidal choline spread as monolayers on phosphate buffers…
Expand
Highly Cited
1962
Highly Cited
1962
The preparation and some properties of a reduced diphosphopyridine nucleotide dehydrogenase from the snake venom digest of a heartmuscle preparation.
T. King
,
R. Howard
Journal of Biological Chemistry
1962
Corpus ID: 7812361
Particulate preparations from mammalian heart which are able to transfer electrons in successive steps from reduced…
Expand
1960
1960
Fractionation of Habu snake venom by chromatography on cm-cellulose with special reference to biological activities.
A. Ohsaka
Japanese Journal of Medical Science & Biology
1960
Corpus ID: 42499676
One of the most prominent pathological changes evoked by the parenteral injection of Crotalidae venoms, including Habu venom, is…
Expand
1954
1954
Polyvalent antivenin in treatment of experimental snake venom poisoning.
S. Minton
American Journal of Tropical Medicine and Hygiene
1954
Corpus ID: 28085261
Summary The protective effect of North American polyvalent antivenin was tested against the venoms of eight representative…
Expand
Highly Cited
1953
Highly Cited
1953
Enzyme inhibitions by snake venoms.
B. Braganca
,
J. H. Quastel
Biochemical Journal
1953
Corpus ID: 37042843
Highly Cited
1938
Highly Cited
1938
The formation of lysocithin and of a muscle‐stimulating substance by snake venoms
W. Feldberg
,
H. Holden
,
C. Kellaway
Journal of Physiology
1938
Corpus ID: 31311546
IT has long been known that lecithin treated with venom becomes powerfully haemolytic through the formation of lysocithin. In a…
Expand