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Biomedical subjects

Yong Wu

Publications and source records attributed to Yong Wu.

14 recordsLinked to original sources

Developmental and cellular vulnerabilities underlie genetic architecture of schizophrenia.

Schizophrenia (SZ) is a highly heritable neuropsychiatric condition with complex polygenic architecture. Elucidating the cellular and developmental substrates vulnerable to the genetic risk is essential for understanding the underlying neurobiological mechanisms. Here, we integrated genome-wide association study (GWAS) and whole-exome sequencing (WES) data with a developmental multi-omics atlas of the human cortex (including 5 cortical regions), comprising about 3 million single-nucleus RNA sequencing (snRNA-Seq) and single-nucleus assay for transposase-accessible chromatin using sequencing (snATAC-Seq) profiles across 8 neurodevelopmental processes, to map cell-type-specific enrichment of SZ genetic risk. Our enrichment analyses revealed that both common and rare genetic liabilities converged on broad excitatory and inhibitory neuronal classes. Across different statistical frameworks, we identified genetic enrichment within intratelencephalic (IT) projection neurons and layer 6b excitatory neurons (Ex-L6b) networks across multiple cortical regions. Stage-resolved developmental mapping in the frontal cortex showed that genetic liabilities, particularly the rare variants, are predominantly concentrated within early developmental processes, namely neurogenesis and neuronal migration. Differential expression analysis in postmortem frontal cortex snRNA-Seq datasets cross-validated the cellular substrates of the genetic liabilities. Collectively, our findings establish a high-resolution cellular and temporal framework of SZ susceptibility, implicating mature associative IT microcircuits, deep-layer thalamocortical-regulating networks, and early developmental specification windows as primary points of genetic convergence in SZ.

Journal Article↗

Comprehensive analysis of metabolomics and transcriptomics of radiation-induced rectal injury.

Radiation-induced rectal injury (RRI) significantly affects the quality of life in patients with locally advanced rectal cancer (LARC) undergoing neoadjuvant chemoradiotherapy (NCRT). Non-targeted liquid chromatography-mass spectrometry metabolomics analysis and transcriptomic analysis were conducted to explore RRI characteristics. Hematoxylin-eosin and Masson staining confirmed radiation-induced injury in rectal tissue within the radiotherapy target region. Orthogonal partial least squares discriminant analysis identified 823 differentially expressed metabolites (DEMs). Transcriptomic analysis revealed 400 differentially expressed genes (DEGs). Enrichment analysis revealed that DEMs and DEGs were primarily involved in metabolic, immune, and signal transduction pathways. Integrated analysis demonstrated significant enrichment of DEMs and DEGs in the arachidonic acid metabolism pathway. Pearson's correlation and canonical correlation analyses were used to assess the association between DEMs and DEGs within this pathway. In conclusion, this study identified key biological regulatory pathways involved in RRI through a multi-omics approach, offering potential targets for its diagnosis and treatment.

Humans↗

[Effect of zinc phthalocyanine-mediated photodynamic therapy on bone marrow purging, an experimental study].

OBJECTIVE: To probe into the purging effects of zinc phthalocyanine-mediated photodynamic therapy (PDT) on simulated remission bone marrow grafts of chronic granulocytic leukemia. METHODS: (1) K562 cells, aline chronic granulocytic leukemia cells, and normal mononuclear cells (MNC) were cultured. Zinc phthalocyanine (ZnPcS(2)P(2)), a photosensitizer, with the terminal concentration of 1.0 micro g/ml was added into the cultures. The K562 cells and normal MNCs in the suspensions were broken. Fluorescence spectrophotometry was used to determine the concentration of zinc phthalocyanine in cells at different time points so as to find the optimal time for photodynamic purging process. (2) Suspensions of K562 cells and MNCs were made and incubated with zinc phthalocyanine of different concentrations (0.062 5, 0.125, 0.25, 0.5, and 1.0 micro g/ml) for 5 hours. A blank control group (sodium chloride of the same volume was added), a PDT control group (without photosensitizer), and a photosensitizer control group (zinc phthalocyanine was added without PDT) were established. Then the suspensions were irradiated with 670 nm laser. Trypan blue dye exclusion technique was used to calculate the number of live cells for a period of 5 days. The proliferative potency of K562 cells was detected by MTT colorimetric assay. The OD value was detected with ELISA apparatus to calculate the inhibition rate. Colony formation of K562 cells and MNCs was determined. (3) K562 cells were mixed into normal MNCs at the ratios of 1:100 and 1:1,000 so as to create the model of simulated remission bone marrow. After PDT treatment, colony formation test was done and nested-PCR was used to detect the bcr-abl mRNA expression in K562 cells. Colony formation test was made on the MNCs treated with PDT. The antiproliferative effects of PDT on normal hematopoietic progenitors were evaluated by CFU-Mix, CFU-GM and CFU-E assays. RESULTS: (1) The zinc phthalocyanine content in the MNCs reached its peak within the first hour of incubation and then rapidly decreased to the lowest value in 4 hours. However, the zinc phthalocyanine content in the K562 cells gradually increased within the first 4 hours of incubation and reached its peak by the fifth hour with a ratio of zinc phthalocyanine content in K562 cells to that in MNCs of 4.59. Therefore, the fifth hour after incubation was selected as the optimal time to irradiate the suspensions using the laser with a wavelength of 670 nm. (2) The inhibitory rate of laser on the colony information rate was 91.1% for the K562 cells, 18.0% for the MNCs in CFU-Mix methyl cellulose culture system, 18.6% for the MNCs in CFU-GM methyl cellulose culture system, and 17.8% for the MNCs in CFU-E methyl cellulose culture system At the concentration of 0.25 micro g/ml, K562 cells were inhibited by 91.1%, however, CFU-Mix, CFU-GM and CFU-E were relatively spared, inhibitory rate being 18.0%, 18.6% and 17.8% respectively. (3) At the concentration of 0.25 micro g/ml, residual K562 cells in the simulated remission bone marrow were completely photoinactivated. CONCLUSION: Zinc phthalocyanine -based PDT selectively kills K562 cells. It would be a promising purging technique for chronic granulocytic leukemia.

Bone Marrow Purging↗

Ab initio studies for the photodissociation mechanism of hydroxyacetone.

The reaction pathways for CH(3)COCH(2)OH (hydroxyacetone) photodissociation on the low-lying electronic states have been studied with use of the CASSCF energy gradient techniques. The S(0)/S(1) and S(1)/T(1) intersection points were determined by the state-average CASSCF method. Two main reaction pathways, which are possible to the photodissociation, have been studied. It has been found that the mechanism is stepwise, and belongs to Norrish type-I reaction. The n --> pi* excitation leads to the first excited singlet state, followed by the intersystem crossing from S(1) to T(1). On the T(1) potential energy surface, the system can dissociate adiabatically to CH(3)(x) +COCH(2)OH( x) and CH(3)CO(x)+CH(2)OH(x). The COCH(2)OH(x) and CH(3)CO(x) radicals can further dissociate into CO, OH, and other fragments. Our calculated results are in good agreement with recent experimental results.

Journal Article↗

[Effect of endogenous TGF-beta1 and TNF-alpha on the As(2)O(3) inducing apoptosis of HL-60 cells].

OBJECTIVE: To study the effect of endogenous TGF-beta(1) and TNF-alpha on As(2)O(3) inducing apoptosis of HL-60 cells. METHODS: The expressions of endogenous TGF-beta(1) and TNF-alpha in apoptotic HL-60 cells induced by As(2)O(3) were assayed by RT-PCR, quantitative RT-PCR, ELISA, DNA fragmentation and TUNEL. The effect of TGF-beta(1) and TNF-alpha antisense phosphorothioate oligodeoxynucleotides (PSODNs) on As(2)O(3) inducing apoptotic HL-60 cells was further studied. RESULTS: (1) Expressions of endogenous TGF-beta(1) and TNF-alpha were significantly up-regulated in As(2)O(3) inducing apoptotic HL-60 cells (from 13,546 +/- 124 and 497,216 +/- 187 before treatment to 23,273 +/- 229 and 674,217 +/- 189 after treatment, respectively), accompanied with down-regulated bcl-2 mRNA expression (from 10,424 +/- 274 before treatment to 3,361 +/- 89 after treatment). (2) TGF-beta(1) and TNF-alpha antisense PSODNs could rescue As(2)O(3) induced apoptosis of HL-60 cells, with a restoration of bcl-2 gene expression. CONCLUSIONS: Endogenous TGF-beta(1) and TNF-alpha played an important role in As(2)O(3) inducing HL-60 cells apoptosis through down-regulation of bcl-2 expression.

Antineoplastic Agents↗

[The effect of anti-bcr-abl hammerhead ribozyme on bone marrow purging].

To study effects of a hammerhead ribozyme on chronic myelogenous leukemia (CML) cells and bone marrow purging in vitro, a bcr-abl specific ribozyme gene was introduced into CML and normal bone marrow cells using retroviral transduction. The effects of the ribozyme on primary cells from CML patients were detected by hematopoietic progenitor cell assays, flow cytometry and immunocytochemical methods. Then a model of remission was built up, and the effects of ribozyme on bone marrow purging were detected by leukemia colony assay and nest-PCR after transduction of this model by using the ribozyme. The results showed that ribozyme significantly suppressed the clonogenic growth and the expression of p210 protein in primary cells from CML patients, but did not affect the growth of normal hematopoietic progenitor cells. In the model of remission, ribozyme eliminated the proliferation and the expression of bcr-abl mRNA in residual K562 cells, but did not affect the expression of abl mRNA. The results suggest that anti-bcr-abl ribozyme might be used for bone marrow puring of CML cells.

Bone Marrow Cells↗

Parallel image restoration with a two-dimensional likelihood-based algorithm.

We describe a pixelwise parallel algorithm for the restoration of images that have been corrupted by a low-pass optical channel and additive noise. This new algorithm is based on an iterative soft-decision method of error correction (i.e., turbo decoding) and offers performance on binary-valued imagery that is comparable to the Viterbi algorithm. We quantify the restoration performance of this new algorithm on random binary imagery for which it is superior to both the Wiener filter and the projection onto convex sets algorithms over a wide range of channels. For typical optical channels, the new algorithm is within 0.5 dB of the two-dimensional Viterbi restoration method [J. Opt. Soc. Am. A 17, 265 (2000)]. We also demonstrate the extension of our new algorithm to correlated and gray-scale images using vector quantization to mitigate the associated complexity burden. A highly parallel focal-plane implementation is also discussed, and a design study is presented to quantify the capabilities of such a VLSI hardware solution. We find that video-rate restoration on 252 x 252 pixel images is possible using current technology.

Journal Article↗

Multiple transcription initiation sites, alternative splicing, and differential polyadenylation contribute to the complexity of human neurofibromatosis 2 transcripts.

Northern blot analysis has shown that the human neurofibromatosis type 2 (NF2) cDNA hybridizes to multiple RNA species. To examine whether these hybridizing RNA species represent NF2 transcripts, we cloned the complete NF2 cDNA by a combination of techniques: 5' and 3' rapid amplification of cDNA ends, RT-PCR, and searching and sequencing the NF2-related cDNA clones from the IMAGE consortium. We showed that human NF2 transcripts initiate at multiple positions. Analogous to those reported previously, NF2 transcripts undergo alternative splicing in the coding exons. We isolated eight alternatively spliced NF2 cDNA isoforms, including one that contains a new exon termed exon 2', which potentially could encode proteins of different sizes. We assembled the overlapping cDNA fragments, and the longest NF2 cDNA, containing all 17 exons, consists of 6067 nucleotides, which is consistent with the size of the major RNA species hybridized to the NF2 probe. The cDNA has a 425-nucleotide 5' untranslated region upstream from the ATG start codon, and a long 3' untranslated region of 3869 nucleotides. We also isolated two shorter NF2 cDNAs that were terminated by different polyadenylation signal sequences, which indicates that differential usage of multiple polyadenylation sites also contributes to the complexity of human NF2 transcripts. By reference to the transcription initiation site mapped, we analyzed the 5' flanking sequence of the human NF2 gene. Transient transfection analysis in human 293 kidney, SK-N-AS neuroblastoma, and NT2/D1 teratocarcinoma cells with NF2 promoter-luciferase chimeric constructs revealed a core promoter region extending 400 base pairs from the major transcription initiation site. Although multiple regions are required for full promoter activity, a site-directed mutagenesis experiment identified a GC-rich sequence (position -58 to -46), which could be bound by transcription factor Sp1, as a positive cis-acting regulatory element. Cotransfection studies in Drosophila melanogaster SL2 cells showed that Sp1 could activate the NF2 promoter through the GC-rich sequence.

Alternative Splicing↗

The neuropeptide bombesin improves IgA-mediated mucosal immunity with preservation of gut interleukin-4 in total parenteral nutrition-fed mice.

BACKGROUND: The Th2 cytokines, interleukin-4 (IL-4) and interleukin-10 (IL-10), stimulate IgA production. Total parenteral nutrition (TPN) reduces IL-4 and IL-10 messenger RNA in gut lamina propria lymphocytes, total IL-4 and IL-10 in gut homogenates, and IgA-mediated mucosal immunity. Bombesin (BBS) can maintain mucosal immunity in TPN-fed mice, but the effects of BBS on gut IL-4 and IL-10 levels and their mRNA expression in the lamina propria are unknown. METHODS: In experiment 1, mice that were fed chow, TPN, or TPN + BBS (15 microg/kg intravenously-three times a day) for 5 days were killed, and respiratory tract IgA and intestinal IgA, IL-4, and IL-10 levels were measured. In experiment 2, IL-4 and IL-10 mRNA were measured in isolated lamina propria lymphocytes from chow-, TPN-, and TPN+BBS-fed mice by reverse transcriptase-polymerase chain reaction. Intestines were harvested 1 hour after injection of 100 7 microg of lipopolysaccharide intraperitoneally. Samples were standardized to beta-actin. RESULTS: TPN-fed mice had significantly lower respiratory tract IgA levels than chow- or TPN + BBS-fed mice. TPN+BBS did not increase intestinal IL-10 or IL-10 lamina propria mRNA levels but maintained intestinal IL-4 levels and lamina propria IL-4 mRNA expression equal to those of chow-fed mice. CONCLUSIONS: BBS reverses the effects of TPN on intestinal and respiratory tract IgA levels and most effects on gut cytokines. Lamina propria cytokine mRNA levels reflect total gut cytokine concentration.

Animals↗

Soluble invertase expression is an early target of drought stress during the critical, abortion-sensitive phase of young ovary development in maize.

To distinguish their roles in early kernel development and stress, expression of soluble (Ivr2) and insoluble (Incw2) acid invertases was analyzed in young ovaries of maize (Zea mays) from 6 d before (-6 d) to 7 d after pollination (+7 d) and in response to perturbation by drought stress treatments. The Ivr2 soluble invertase mRNA was more abundant than the Incw2 mRNA throughout pre- and early post-pollination development (peaking at +3 d). In contrast, Incw2 mRNAs increased only after pollination. Drought repression of the Ivr2 soluble invertase also preceded changes in Incw2, with soluble activity responding before pollination (-4 d). Distinct profiles of Ivr2 and Incw2 mRNAs correlated with respective enzyme activities and indicated separate roles for these invertases during ovary development and stress. In addition, the drought-induced decrease and developmental changes of ovary hexose to sucrose ratio correlated with activity of soluble but not insoluble invertase. Ovary abscisic acid levels were increased by severe drought only at -6 d and did not appear to directly affect Ivr2 expression. In situ analysis showed localized activity and Ivr2 mRNA for soluble invertase at sites of phloem-unloading and expanding maternal tissues (greatest in terminal vascular zones and nearby cells of pericarp, pedicel, and basal nucellus). This early pattern of maternal invertase localization is clearly distinct from the well-characterized association of insoluble invertase with the basal endosperm later in development. This localization, the shifts in endogenous hexose to sucrose environment, and the distinct timing of soluble and insoluble invertase expression during development and stress collectively indicate a key role and critical sensitivity of the Ivr2 soluble invertase gene during the early, abortion-susceptible phase of development.

Abscisic Acid↗

[Treatment of fractures of the talar neck: long term follow up of 89 cases].

OBJECTIVE: To summarize the experience in treating talar neck fractures. METHODS: 89 patients with talar neck fracture were followed up, and classified by modified Hawkin's classification. Three patients of type I were treated with plastic cast and K-wire, 53 of type II with open reduction and internal fixation (ORIF), close reduction and plaster, fusion, and 29 of type III and 4 of type IV with joint fusion and ORIF. RESULTS: Mean follow-up was 5.18 years. Evaluation by Hawkin's criteria, showed 22 patients were excellent, 16 good; 28 fair and 19 poor results respectively. CONCLUSIONS: Emergency operation with ORIF should be performed in type II and type III talar neck fracture. Medial malleolus osteotomy is recommended when medial approach is used.

Adolescent↗

Anticancer activities of curcumin on human Burkitt's lymphoma.

OBJECTIVE: To study the anticancer activities of curcumin on human Burkitt's lymphoma and their molecular mechanism. METHODS: The effect of curcumin on the growth of CA46 cells and apoptosis were studied through Trypan blue exclusion, MTT assay, cell cycle, DNA fragmentation analysis and detection of TdT-mediated dUTP nick end labeling (TUNEL). The effect of curcumin on the expression of c-myc, bcl-2, mutant-type p53 and Fas protein and mRNA was studied by flow cytometry (FCM) and reverse transcription-polymerase chain reaction (RT-PCR). RESULTS: 1. Curcumin inhibited proliferation of CA46 cells in a time- and dose-dependent manner, 2. CA46 cells treated with curcumin showed G(0)/G(1) or G(2)/M phase increase and S phase decrease, 3. CA46 cells apoptosis induced by curcumin was confirmed by DNA fragmentation and TUNEL and 4. The expression of c-myc, bcl-2, mutant-type p53 protein and mRNA was decreased sharply in CA46 cells treated with curcumin, while Fas protein and mRNA was increased. CONCLUSION: Curcumin is able to inhibit the proliferation of CA46 cells and induce the cell apoptosis by down-regulating the expression of c-myc, bcl-2, mutant-type p53 and up-regulating the expression of Fas.

Antineoplastic Agents↗

[Study on telomerase activity and expression of hTERT, c-myc and bcl-2 during terminal differentiation of HL-60 cells induced by retinoic acid].

The study was to explore the telomerase activity and the expression of hTERT, c-myc and bcl-2 mRNA during terminal differentiation of HL-60 cells induced by all trans-retinoic acid (ATRA) and to study the possible molecular mechanism. By use of the model of differentiated HL-60 cells induced by ATRA, the telomerase activity was determined by TRAP-PCR-ELISA and the expression of hTERT, c-myc, bcl-2 mRNA was detected by RT-PCR in differentiated HL-60 cells. The results showed that during differentiation of HL-60 cells, the telomerase activity was decreased, the expression of hTERT, c-myc and bcl-2 mRNA was downregulated, and the downregulation of hTERT occurred prior to suppression of telomerase activity. It is concluded that the telomerase activity is related to decrease expression of hTERT, c-myc and bcl-2 mRNA during HL-60 cell differentiation induced by ATRA.

Cell Differentiation↗

[Effects of Exogenous Wild-Type p53 Gene on K562 Cells]

To investigate the effects of wt-p53 gene on proliferation and differentiation of K562 cells and to explore the feasibility of wt-p53 in leukemia gene therapy, pC53-SN(3), containing wt-p53 cDNA, and temperature-sensitive p53 mutant pN53cG(Val135) which behaved like wt-p53 at 32.5 degrees C, were introduced into p53-null K562 cells respectively by lipofectin mediated DNA transfection. In the presence of G418, K-SN(3) and K-pN53cG clones expressing P53 protein were selected. The effects of exogenous wt-p53 gene on the proliferation and differentiation of K562 cells were studied by detection of cell growth curves, leukemic colony formation, cell cycle analysis and DNA fragmentation, TdT-mediated dUTP nick end labeling (TUNEL) and benzidine staining. The results showed: (1) The level of p53 mRNA in K-SN(3) cells was lower than that in K-pN53cG cells by RT-PCR. (2) K-SN(3) and K-pN53cG(32.5 degrees C) cells proliferated more slowly than the control K562 cells, and their colony formation was obviously suppressed. The cells in G(0)/G(1) phase increased, and the cells in S phase decreased. These features were more obvious in K-pN53cG(32.5 degrees C). (3) K-pN53cG(32.5 degrees C) showed the feature of apoptosis and K-SN(3) showed the characteristics of erythroid lineage differentiation. It was indicated that exogenous of wt-p53 was capable of inhibiting the proliferation of K562 cells and inducing apoptosis of the cells at higher p53 level and interestingly, inducing the cells differentiation on erythroid lineage at lower p53 level.

Journal Article↗