共查询到4条相似文献,搜索用时 1 毫秒
1.
Ryde S. J. S. Morgan W. D. Compston J. Evans C. J. Sivyer A. Dutton J. 《Biological trace element research》1990,(1):429-437
A clinical neutron activation instrument has been developed for in vivo elemental analysis. Utilizing the prompt-capture gamma
ray technique, simultaneous total body (TB) measurements of primarily Ca, but also Cl, N, C, and H are routinely performed.
This paper describes a technique for the measurement of TBCa (g) that relies on the use of TBCl as an internal standard. The
method has been tested with four anthropomorphic phantoms covering a range of body habitus. The mean discrepancy between the
measured and known Ca contents was 3.6%. The technique has been applied to two patient groups, and encouraging results were
obtained. 相似文献
2.
Krishnan S. S. McNeill K. G. Mernagh J. R. Harrison J. E. 《Biological trace element research》1990,(1):415-421
Two new facilities for in vivo activation analysis of patients have been designed, developed, and constructed at Toronto General
Hospital. One of these is for the determination of body calcium for the diagnosis of osteoporosis and other diseases associated
with bone loss. The other is for the measurement of total body nitrogen for the determination of protein status.
These facilities replace old university facilities and take into account the comfort and management of patients. In addition,
in the case of the calcium facility, the precision of the measurements has been improved because of larger detector volume
and increased neutron source strength. Both the facilities are now in routine hospital clinical use. 相似文献
3.
G. V. Iyengar 《Biological trace element research》1987,12(1):263-295
This report attempts to formulate reference ranges of elemental concentrations for 15 trace elements in selected human tissues
and body fluids.
A set of samples consisting of whole blood, blood serum, urine, milk, liver, and hair were chosen and considered for 15 elements
of biological significance: As, Cd, Co, Cr, Cu, F, Fe, I, Hg, Mn, Mo, Ni, Pb, Se, and Zn. The results represent wholly or
partially data received from 40 countries of the global regions of Africa, Asia, Europe, North, South, and Central America,
Australia, and New Zealand.
This survey, even if qualitative, has been useful in demonstrating certain trends of trace-element scenarios around the world.
It is of course recognized that both diet and environment exert a strong influence on the distribution pattern of several
elements, such as As, Cd, Mn, Pb, Se, and Zn. A limited comparison of the available information on soil status of different
countries reflected some interesting associations for elements, such as Mn and Zn.
Importantly, this study revealed that only a few countries were in a position to identify a reasonable amount of data on samples
requested for this project. Regretably, for a number of countries, any dependable data for even such essential elements as
Cu, Fe, and Zn were not available.
In view of the nutritional importance of many elements, the time is ripe for concerted efforts by intergovernmental agencies
to initiate investigations or commission task forces/projects to generate reliable reference data for selected global regions,
which sadly lack data of any kind at present. 相似文献
4.
Our present understanding of the nature of the transition state for protein folding depends predominantly on studies where individual side-chain contributions are mapped out by mutational analysis (phi value analysis). This approach, although extremely powerful, does not in general provide direct information about the formation of backbone hydrogen bonds. Here, we report the results of amide H/D isotope effect studies that probe the development of hydrogen bonded interactions in the transition state for the folding of a small alpha-beta protein, the N-terminal domain of L9. Replacement of amide protons by deuterons in a solvent of constant isotopic composition destabilized the domain, decreasing both its T(m) and Delta G(0) of unfolding. The folding rate also decreased. The parameter Phi(H/D), defined as the ratio of the effect of isotopic substitution upon the activation free energy to the equilibrium free energy was determined to be 0.6 in a D(2)O background and 0.75 in a H(2)O background, indicating that significant intraprotein hydrogen bond interactions are developed in the transition state for the folding of NTL9. The value is in remarkably good agreement with more traditional measures of the position of the transition state, which report on the relative burial of surface area. The results provide a picture of a compact folding transition state containing significant secondary structure. Indirect analysis argues that the bulk of the kinetic isotope effect arises from the beta-sheet-rich region of the protein, and suggests that the development of intraprotein hydrogen bonds in this region plays a critical role in the folding of NTL9. 相似文献