Home LiteratureArticle Details
PMID: 14888812 Published · ppublish English Journal Article

Studies on host-virus interactions in the chick embryo-influenza virus system. IV. The role of inhibitors of hemagglutination in the evaluation of viral multiplication.

The Journal of experimental medicine ·Vol. 94 ·No. 4 ·1951-10-00 ·Pages 269-89

LIU OC, HENLE W

Abstract

The role of inhibitors of hemagglutination in the evaluation of host-virus interactions in the chick embryo-influenza virus system has been analyzed. Comparisons were made between materials (allantoic fluids and membrane suspensions) derived from in vivo (growth curve) experiments at hourly intervals after inoculation, and from in vitro tests in which normal allantoic fluids and membrane suspensions were incubated with virus at 37 degrees C. for various periods of time. In both instances large amounts of virus were added to the systems, resulting in comparable concentrations of the agent. The seeds employed were either fully active or irradiated by ultraviolet light to the extent that the virus lost its capacity to increase but kept its interfering and hemagglutinating properties. The various materials were assayed for (a) the hemagglutinating titers of the virus present in the systems before and after heating to 56 degrees C.; (b) the concentration of inhibitor in the materials at various stages of incubation after heating to 70 degrees C. for 30 minutes as measured by the hemagglutination-inhibition reaction with native or heated test virus (30 minutes 56 degrees C.); and (c) the degree of adsorption of the hemagglutinins present in the materials onto chicken red cells at 0 degrees C. and their subsequent elution at 37 degrees C. The effects of receptor-destroying enzyme (RDE), treatment with sodium periodate, or high speed centrifugation on the inhibitory activities were studied in some of the tests. The essential results which indicate certain sources of error in the evaluation of host-virus interactions as well as means for studying virus activity at the early stages of the infectious process, were as follows: 1. Though some inhibitory effects on hemagglutination were noticeable in the allantoic fluid during the 1st hour after inoculation they were, as a rule, no longer apparent after this interval, and treatment with RDE did not increase the hemagglutinin titers. Thus, the interpretation of growth curve data concerning allantoic fluids hardly seems to be affected by inhibitor. On the other hand, striking effects were noted with the membrane suspensions of growth curve experiments in that RDE shortened the latent period to 2 hours and the titers in the first few positive samples (4 to 5 hours) increased) whereas in later harvests no such effect was noted. Under these conditions complement-fixation antigens and hemagglutinins made their appearance in the tissues simultaneously and not as previously reported the former prior to the latter. However, the infectivity showed increments only several hours after these two activities had become measurable. Thus the hypothesis of the stagewise development of influenza virus is still supported by these data. 2. Using the inhibition of hemagglutination technic it was found that the inhibitor in allantoic fluid rapidly decreased as a result of the action of active and irradiated virus, but destruction was never complete. In the membranes of the in vivo series only active seed led to loss of inhibitor, again without complete destruction, beginning at the time complement-fixing antigen and hemagglutinins became measurable. Irradiated seed was without effect in vivo whereas, in the in vitro tests it equalled the activity of the active virus. The implications of this difference in the effectiveness of active and irradiated seed in vivo with regard to the understanding of the mode of viral multiplication are discussed. 3. Although many factors may influence the shape of adsorption-elution curves it is felt that at 0 degrees C. the extent of adsorption is directly related to the amount of inhibitor present in the systems. In the early hours after inoculation the degree of adsorption was relatively small but it increased gradually with the time of incubation. The inhibitor of adsorption was destroyed by RDE and NaIO(4) and was only partially sedimentable by high speed centrifugation. In every respect studied its properties corresponded with the findings obtained with inhibitors in the hemagglutination-inhibition technic. Although the difference in the rapidity of inhibitor destruction as measured by the various technics might suggest a multiplicity of inhibitors it is felt that it rather denotes a greater sensitivity of the adsorption technic as compared to the others.

Keywords
INFLUENZA VIRUS
MeSH Terms
Animals Chickens Hemagglutination Orthomyxoviridae
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
LIU O C
HENLE W
References (21)
21 references, click to expand
  1. Reactions between influenza virus and a component of allantoic fluid.
    J Exp Med. 1948 Oct 1;88(4):463-84 PMID: 18884904
  2. Studies on host-virus interactions in the chick embryo-influenza virus system; the propagation of virus in conjunction with the host cells.
    J Exp Med. 1949 Jul;90(1):13-22 PMID: 18152336
  3. The nature of the virus receptors of red cells; evidence on the chemical nature of the virus receptors of red cells and of the existence of a closely analogous substance in normal serum.
    J Exp Med. 1948 Apr 1;87(4):301-14 PMID: 18904216
  4. Studies on host-virus interactions in the chick embryo-influenza virus system. VI. Evidence for multiplicity reactivation of inactivated virus.
    J Exp Med. 1951 Oct;94(4):305-22 PMID: 14888814
  5. The general pathology of virus infections.
    Lancet. 1950 Jun 10;1(6615):1059-63 PMID: 15422819
  6. Agglutination of red blood cells of different animal species by influenza and Newcastle disease viruses.
    J Hyg (Lond). 1948 Sep;46(3):239-46 PMID: 18104080
  7. Incomplete growth cycle of influenza virus in mouse brain.
    Proc Soc Exp Biol Med. 1950 Jul;74(3):541-8 PMID: 15440881
  8. Studies on host-virus interactions in the chick embryo-influenza virus system; development of infectivity, hemagglutination, and complement fixation activities during the first infectious cycle.
    J Exp Med. 1949 Jul;90(1):23-37 PMID: 18152337
  9. THE DEMONSTRATION OF ONE-STEP GROWTH CURVES OF INFLUENZA VIRUSES THROUGH THE BLOCKING EFFECT OF IRRADIATED VIRUS ON FURTHER INFECTION.
    J Exp Med. 1947 Oct 31;86(5):423-37 PMID: 19871688
  10. Characterization and separation of an inhibitor of viral hemagglutination present in urine.
    Proc Soc Exp Biol Med. 1950 May;74(1):106-8 PMID: 15430405
  11. Influence of saliva upon hemagglutination by influenza virus.
    Proc Soc Exp Biol Med. 1948 Nov;69(2):291-4 PMID: 18102207
  12. Reactivation of Irradiated Bacteriophage by Transfer of Self-Reproducing Units.
    Proc Natl Acad Sci U S A. 1947 Sep;33(9):253-64 PMID: 16588748
  13. THE EFFECT OF ULTRAVIOLET IRRADIATION ON VARIOUS PROPERTIES OF INFLUENZA VIRUSES.
    J Exp Med. 1947 Mar 31;85(4):347-64 PMID: 19871620
  14. ADSORPTION OF INFLUENZA VIRUS ON CELLS OF THE RESPIRATORY TRACT.
    J Exp Med. 1943 Aug 1;78(2):99-109 PMID: 19871317
  15. ADSORPTION OF INFLUENZA HEMAGGLUTININS AND VIRUS BY RED BLOOD CELLS.
    J Exp Med. 1942 Aug 1;76(2):195-209 PMID: 19871229
  16. The growth cycle of influenza virus A; a study of the relations between virus, soluble antigen and host cell in fertile eggs inoculated with influenza virus.
    Br J Exp Pathol. 1948 Oct;29(5):390-9 PMID: 18108407
  17. DISSOCIATION OF HEMAGGLUTINATING AND ANTIBODY-MEASURING CAPACITIES OF INFLUENZA VIRUS.
    J Exp Med. 1947 Jan 1;85(1):1-7 PMID: 19871594
  18. Studies on host-virus interactions in the chick embryo-influenza virus system. V. Simultaneous serial passage of the agents of influenza A and B in relation to variations in the growth cycle of influenza B virus.
    J Exp Med. 1951 Oct;94(4):291-304 PMID: 14888813
  19. Studies on a factor in normal allantoic fluid inhibiting influenza virus haemagglutination; precipitation reaction in mixtures of inactive virus and inhibitor.
    Br J Exp Pathol. 1949 Aug;30(4):248-54 PMID: 15393415
  20. One-step growth curves of various strains of influenza A and B viruses and their inhibition by inactivated virus of the homologous type.
    J Exp Med. 1949 Mar;89(3):279-85 PMID: 18110882
  21. THE NATURE OF NON-SPECIFIC INHIBITION OF VIRUS HEMAGGLUTINATION.
    J Exp Med. 1947 Jun 30;86(1):65-75 PMID: 19871656
Article Info
Journal
The Journal of experimental medicine
Abbr.
J Exp Med
ISSN
0022-1007
Published
1951-10-00
Pages
269-89
Language
English
Region
United States
NLM ID
2985109R
PMCID
PMC2136112
Subset
OM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: product@genelibs.com