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本文引用的文献

1
ULTRACENTRIFUGATION STUDIES ON THE ELEMENTARY BODIES OF VACCINE VIRUS : I. GENERAL METHODS AND DETERMINATION OF PARTICLE SIZE.超速离心研究疫苗病毒的基本粒子:I. 一般方法和粒子大小的测定。
J Exp Med. 1938 Sep 30;68(4):583-606. doi: 10.1084/jem.68.4.583.
2
A METHOD FOR DETERMINING THE DIFFERENTIAL SEDIMENTATION OF PROTEINS IN THE HIGH SPEED CONCENTRATION CENTRIFUGE.一种在高速浓缩离心机中测定蛋白质差速沉降的方法。
J Exp Med. 1938 May 31;67(6):941-52. doi: 10.1084/jem.67.6.941.
3
AN IMPROVED AIR-DRIVEN TYPE OF ULTRACENTRIFUGE FOR MOLECULAR SEDIMENTATION.一种改良的空气驱动式分子沉降超速离心机。
J Exp Med. 1937 Mar 31;65(4):565-86. doi: 10.1084/jem.65.4.565.
4
A HIGH SPEED VACUUM CENTRIFUGE SUITABLE FOR THE STUDY OF FILTERABLE VIRUSES.适用于研究滤过性病毒的高速真空离心机。
J Exp Med. 1936 Sep 30;64(4):503-28. doi: 10.1084/jem.64.4.503.
5
THE TITRATION OF YELLOW FEVER VIRUS IN STEGOMYIA MOSQUITOES.黄热病病毒在致倦库蚊中的滴定。
J Exp Med. 1933 Jul 31;58(2):211-26. doi: 10.1084/jem.58.2.211.

超速离心研究黄热病病毒。

ULTRACENTRIFUGATION STUDIES OF YELLOW FEVER VIRUS.

机构信息

Laboratories of the International Health Division of The Rockefeller Foundation, New York.

出版信息

J Exp Med. 1940 Apr 30;71(5):703-17. doi: 10.1084/jem.71.5.703.

DOI:10.1084/jem.71.5.703
PMID:19870992
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2135097/
Abstract
  1. It was possible to study in the ultracentrifuge by optical methods the behavior of yellow fever virus particles directly in the unaltered serum from infected monkeys. 2. The virus showed an extremely high light absorption in the spectral range of 320 to 440 mmicro, which seemed to be its intrinsic property. In a 1 cm. thickness of fluid, the small amount of virus present in unaltered infective serum absorbed about as much light (approximately 25 per cent) in the middle of this range as did all the normal serum proteins present in a combined concentration some 1000 times as great. 3. The concentration of virus in the unaltered serum was found to be of the order of 0.00005 gm. per cc. 1 cc. of a 10(-9) dilution, which, as has been shown, may constitute a minimal infective dose for monkeys, would contain approximately 10,000 virus particles. The probability that most of the virus particles were in the inactive form is discussed. 4. In infective serum having a viscosity of 14 millipoises, the particles sediment with a blurred boundary at rates lying between approximately 18 and 30 x 10(-13) cm./sec./dyne. Evidence indicates that this spread is the result of an aggregation or association phenomenon. 5. Computations of size are in approximate agreement with those made from ultrafiltration studies. On the assumption that the density of the virus particle is near that of protein, its volume is computed to be at least that of a spherical particle having a diameter of 12 mmicro. An assumed density of 1.15 gm. per cc. yields a diameter of 19 mmicro, considering the shape as spherical.
摘要
  1. 通过光学方法在超速离心机中研究,直接在来自受感染猴子的未改变血清中研究黄热病病毒颗粒是可能的。

  2. 病毒在 320 至 440 毫微米的光谱范围内表现出极高的光吸收,这似乎是其固有特性。在 1 厘米厚的液体中,未改变的感染性血清中存在的少量病毒在该范围内的中间吸收的光量(约 25%)与存在于浓度约为 1000 倍的所有正常血清蛋白相同。

  3. 发现未改变血清中的病毒浓度约为 0.00005 克/毫升。 10(-9)稀释度的 1 毫升,如前所述,可能构成猴子的最小感染剂量,将包含约 10,000 个病毒颗粒。讨论了大多数病毒颗粒处于非活动形式的可能性。

  4. 在具有 14 毫泊粘度的感染性血清中,颗粒以模糊边界在约 18 至 30 x 10(-13) cm./sec./dyne 之间的速率沉降。有证据表明,这种扩散是聚集或缔合现象的结果。

  5. 大小的计算与超滤研究的结果大致相符。假设病毒颗粒的密度接近蛋白质的密度,则其体积计算至少为直径为 12 微米的球形颗粒的体积。假设密度为 1.15 克/毫升,考虑到形状为球形,则直径为 19 微米。