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Biomedical subjects

Yu-Hua Liu

Publications and source records attributed to Yu-Hua Liu.

6 recordsLinked to original sources

[Clinical study on preventive effect of fuzheng quxie granule on respiratory viral infection].

OBJECTIVE: To evaluate the effect of Fuzheng Quxie granule (FQG) on immune cells and cytokines of populations susceptible to respiratory viral infection. METHODS: One thousand four hundred and two subjects selected from 25 hospitals in Shanghai between May and June in 2003, were divided into the FQG group treated with FQG and the control group treated with placebo. Serum levels of interleukin 2 (IL-2), interleukin 4 (IL-4), gamma-interferon (gamma-IFN), blood lymphocyte subsets (CD3+ , CD4+, CD8+), B-cell count and natural killer cell (NK) percent ratio were measured in 130 of the FQG group and 120 of the control group before treatment, by the end of the 2nd week and two weeks after treatment. RESULTS: By the end of the 2nd week of treatment, as compared with before treatment, the levels of IL-2, gamma-IFN, and NK percent in the FQG group increased significantly (P < 0.05), while IL-4 and CD3+, CD4+, CD8+ and B-cell count were unchanged. Besides, levels of Th1/Th2 ratio markedly increased at the end of the 2nd week and two weeks after treatment, in comparing with that before treatment and in the control group (P<0.05). CONCLUSION: FQG could improve immune function of population susceptible to respiratory viral infection certain extent.

Adult↗

Human-specific amino acid changes found in 103 protein-coding genes.

We humans have many characteristics that are different from those of the great apes. These human-specific characters must have arisen through mutations accumulated in the genome of our direct ancestor after the divergence of the last common ancestor with chimpanzee. Gene trees of human and great apes are necessary for extracting these human-specific genetic changes. We conducted a systematic analysis of 103 protein-coding genes for human, chimpanzee, gorilla, and orangutan. Nucleotide sequences for 18 genes were newly determined for this study, and those for the remaining genes were retrieved from the DDBJ/EMBL/GenBank database. The total number of amino acid changes in the human lineage was 147 for 26,199 codons (0.56%). The total number of amino acid changes in the human genome was, thus, estimated to be about 80,000. We applied the acceleration index test and Fisher's synonymous/nonsynonymous exact test for each gene tree to detect any human-specific enhancement of amino acid changes compared with ape branches. Six and two genes were shown to have significantly higher nonsynonymous changes at the human lineage from the acceleration index and exact tests, respectively. We also compared the distribution of the differences of the nonsynonymous substitutions on the human lineage and those on the great ape lineage. Two genes were more conserved in the ape lineage, whereas one gene was more conserved in the human lineage. These results suggest that a small proportion of protein-coding genes started to evolve differently in the human lineage after it diverged from the ape lineage.

Animals↗

[Clinical applications of ultrasound biomicroscopy in diagnosis and treatment of lens subluxation].

OBJECTIVE: To evaluate the clinical value in diagnosis and treatment of lens subluxation using ultrasound biomicroscopy (UBM). METHOD: This study comprised 29 patients (32 eyes) that had cataract with subluxated lenses due to different causes admitted into our hospital between November 2000 and January 2002. All eyes received UBM examination preoperatively and postoperatively. Capsular tension ring (CTR) implantations were performed using different technique according to UBM examination. Then all patients received phacoemulsification and intraocular lens (IOL) implantation. The location of IOL and CTR and complications were evaluated postoperatively. RESULTS: Different kinds of subluxated lens shown different manifestations in UBM. The degree of zonular defect can be evaluated with UBM preoperatively. With UBM examination preoperatively, extent of lens subluxation less than 1/2 quadrant in 19 eyes while more than 1/2 quadrant in other 13 eyes were observed. Postoperative UBM examination in this series shown that CTRs were holding in place except one attached to the iris root. IOLs in 29 eyes were in proper position while IOLs in 3 patients were slightly tilted. CONCLUSIONS: The degree and extent of lens subluxation can be evaluated using UBM examinations preoperatively, which is necessary in the selection of surgical protocol. With postoperative UBM examinations, a precise observation on the actual location of CTR and IOL can be achieved to produce an objective evaluation of the surgical outcomes.

Adolescent↗

[The causes and reposition of fixed intraocular lens pupillary capture in children].

OBJECTIVE: To analyze the cause of fixed intraocular lens (IOLs) pupillary capture in children and investigate the rational methods to reposit intraocular lens. METHODS: Thirty-one eyes (30 cases) with fixed intraocular lens pupillary capture under 14 years old were analyzed based on clinical data; the causes and the complications were also evaluated. The IOL reposition procedure was performed in 8 cases (8 eyes) with severe complications. RESULTS: Different extent of secondary cataract, posterior iris synechia caused by severe postoperative uveal tract reaction were existed in all 30 cases, corecleisis was occurred in some severe cases. During reposition operation, different extent of lens cortex regeneration in the equator portion of capsule bag was found in all eight cases. CONCLUSION: Fixed pupillary capture of IOL is the common complication in children after cataract surgery. Severe postoperative uveal tract reaction and secondary cataract and lens cortex regeneration are the major causes of intraocular lens pupillary capture. The intraocular lens could be reposited through iris synechia separation, regenerated lens cortex cleaning and secondary cataract extraction.

Adolescent↗

Genetic variation versus recombination rate in a structured population of mice.

The correlation between genetic variation and recombination rate was investigated in a structured mouse population. Nucleotide sequence data from 19 autosomal DNA loci from eight inbred strains of mouse (Mus musculus) sampled from three major subspecies were analyzed. The recombination rate was estimated from the comparison of genetic and physical map distances between markers flanking a 10-cM region of each locus. The strains were categorized into four groups (subpopulations) based on geography. By partitioning the genetic diversity into within-group and among-group variation, we detected a positive correlation between the recombination rate and nucleotide diversity within groups. The level of nucleotide differentiation among groups (G(ST)) showed a negative correlation with the rate of recombination. There was no significant correlation between recombination rate and nucleotide diversity when data from different subpopulations were pooled. No correlation was detected between recombination rate and nucleotide divergence of M. musculus and M. spicilegus. These patterns deviate from the strict neutral expectation under the constant nucleotide substitution rate, and they are likely to have been formed either by a hitchhiking effect of positively selected mutants or by background selection of deleterious mutants occurring in a subdivided population. Our series of comparisons show that because a real population always has some structure, incorporation of its information is important in detecting non-neutral evolution.

Animals↗