PubMed Health⌕ Search

Biomedical subjects

Ge Song

Publications and source records attributed to Ge Song.

9 recordsLinked to original sources

Deep learning-based multimodal pathogenomics integration for precision cancer prognosis.

BACKGROUND: Recent studies have revealed valuable prognostic insights in haematoxylin and eosin (H&E)-stained histological sections and transcriptomic profiles, suggesting potential applications in machine learning. However, existing methods lack sufficient intra- and inter-modal interactions, and face challenges in clinical validation due to incomplete multimodal data. METHODS: We proposed PathoGems (PathoGenomics-based integrative survival prediction), a weakly-supervised, interpretable multimodal learning framework that integrates histology and genomic profiles for precise cancer prognosis prediction. To evaluate the robustness of PathoGems, we initially curated a dataset of 1965 cases across four cohorts from The Cancer Genome Atlas (TCGA), including breast, colorectal, glioblastoma, and esophageal cancers. For external validation, PathoGems was further evaluated on four independent cohorts, consisting of 76 breast cancer and 41 esophageal squamous cell carcinoma cases from Zhejiang Cancer Hospital, as well as 102 colorectal cancer and 58 glioblastoma cases from the Clinical Proteomic Tumor Analysis Consortium (CPTAC). RESULTS: PathoGems effectively stratified patients into favorable and unfavorable risk groups, revealing significant differences in histological patterns, genomic features, and overall survival (log-rank test, p&#x2009;<&#x2009;0.05). Moreover, the model&#x2019;s predictions are further supported by visualization and transcriptomic analysis, enhancing interpretability and reliability. CONCLUSIONS: By fusing histological and clinicogenomic multimodal models, PathoGems will provide a solid foundation for developing an innovative tool that aids clinicians in making informed decisions and selection personalized treatment strategies for cancer patients.

Humans↗

Establishment of a corneal epithelial cell line spontaneously derived from human limbal cells.

The objective of this study was to establish a spontaneously derived human corneal epithelial cell line from a normal human limbus that retains differentiation potential and proliferative properties under continuous cell culture. After 50 passages of epithelial cells obtained from human limbal tissue a cell line spontaneously emerged. The immortalized cells showed a cobblestone appearance and displayed dense microvilli on their apical cell surface membrane. Colony forming efficiency was 5-6% and population doubling time was 19.6 h. In the mRNA level, cytokeratin (CK) 3 and 12 were detected in this cell line. In the protein level, the cells expressed CK3, CK12, CK14, CK19, vimentin, and some other proteins such as F-actin and beta-tubulin and beta(1)-integrin. They lacked p63. The immortalized cells had a heteroploid karyotype, but did not exhibit tumorigenic features. When cultured on an air-liquid interface the cells could form stratified multilayer epithelia. In summary, all these results indicated that a new human corneal epithelial cell line was spontaneously established from normal limbal tissue through serial culture. This cell line would be useful for studies of corneal epithelial biology and reconstructive corneal tissue engineering.

Blotting, Western↗

Quartz crystal microbalance studies on bilirubin adsorption on self-assembled phospholipid bilayers.

Bilirubin adsorption on self-assembled phospholipid bilayers was studied using quartz crystal microbalance, and factors influencing its adsorption such as pH, temperature, and solution ionic strength were discussed in detail. The results show the amount of adsorbed bilirubin on self-assembled phospholipid bilayers is small at higher temperature and large at higher pH and solution ionic strength, and the adsorption kinetic parameter estimated from the in situ frequency measurement is (1.8+/-0.27)x10(6) M(-1) (mean +/- S.D.). With the present method, the desorption of adsorbed bilirubin caused by human serum albumin and the photoinduced decomposition of adsorbed bilirubin under light illumination were also examined. QCM measurement provides a useful method for monitoring the adsorption/desorption process of bilirubin on self-assembled phospholipid bilayers.

Adsorption↗

A lower specificity PhaC2 synthase from Pseudomonas stutzeri catalyses the production of copolyesters consisting of short-chain-length and medium-chain-length 3-hydroxyalkanoates.

A polyhydroxyalkanoate (PHA) synthase gene phaC2 (Ps) from Pseudomonas stutzeri strain 1317 was introduced into a PHA synthase gene phbC (Re) negative mutant, Ralstonia eutropha PHB(-)4. It conferred on the host strain the ability to synthesize PHA, the monomer compositions of which varied widely when grown on different carbon sources. During cultivation on gluconate, the presence of phaC2 (Ps) in R. eutropha PHB(-)4 led to the accumulation of polyhydroxybutyrate (PHB) homopolymer in an amount of 40.9 wt% in dry cells. With fatty acids, the recombinant successfully produced PHA copolyesters containing both short-chain-length and medium-chain-length 3-hydroxyalkanoate (3HA) of 4-12 carbon atoms in length. When cultivated on a mixture of gluconate and fatty acid, the monomer composition of accumulated PHA was greatly affected and the monomer content was easily regulated by the addition of fatty acids in the cultivation medium. After the (R)-3-hydroxydecanol-ACP:CoA transacylase gene phaG (Pp) from Pseudomonas putida was introduced into phaC2(Ps)-containing R. eutropha PHB(-)4, poly(3HB-co-3HA) copolyester with a very high 3-hydroxybutyrate (3HB) fraction (97.3 mol%) was produced from gluconate and the monomer compositions of PHA synthesized from fatty acids were also altered. This study clearly demonstrated that PhaC2(Ps) cloned from P. stutzeri 1317 has extraordinarily low substrate specificity in vivo, though it has only 54% identity in comparison to a previously described low-substrate-specificity PHA synthase PhaC1(Ps) from Pseudomonas sp. 61-3. This study also indicated that the monomer composition and content of the synthesized PHA can be effectively modulated by controlling the addition of carbon sources or by modifying metabolic pathways in the hosts.

Acyltransferases↗

[Construction of mutant myocilin plasmid and its expression in human trabecular meshwork cells].

PURPOSE: To establish the mutant Myocilin gene plasmid in order to study the function of Myocilin. METHODS: The mutant site was induced by site-directed mutagenesis. This plasmid were transfected into human trabecular meshwork cells (HTM cells) by cationic liposomes and the expression of Myocilin was examined by RT-PCR and Western blot analysis. RESULTS: The mutant plasmid were correctly constructed. Myocilin was efficiently expressed in HTM cells transfected with this plasmid. CONCLUSION: The constructed eukaryote expression plasmid pcDNA-MYOC-P370L could express Myocilin in HTM cells in vitro.

Cells, Cultured↗

[Cloning of human angiogenesis inhibitor METH1 and its expression in mammalian cells].

OBJECTIVE: To get the full length of human METH1 cDNA and express it steadily in mammalian cell stably. METHODS: METH1 was amplified by RT-PCR, and cloned into pCDNA3.0 after confirmed by sequence analysis. HepG2 cells were transfected by Lipofectamine reagent and then selected in medium with G418. The expression level of METH1 was detected by RT-PCR and Western blot. RESULTS: METH1 with expected length was effectively amplified, and completely matched the published sequence of encoding mature peptide [GI:5725505] as shown by sequence analysis. Eukaryotic vector expressing METH1 was obtained by gene cloning, cells expressing METH1 was got by selection with G418 at 3 weeks after transfection. RT-PCR and Western blot showed high level expression of METH1. CONCLUSION: Full length of human METH1 gene is cloned successfully and expressed in HepG2 steadily, The results set up a basis for the study of effects of METH1 on hypertrophic scar angiogenesis.

ADAM Proteins↗

[Effect of total Panax notoginseng saponins on the activity of human endothelial nitric oxide synthase gene promoter].

OBJECTIVE: To study the mechanism of total Panax notoginseng saponin (tPNS) in regulating the transcription activity of human endothelial nitric oxide synthase (heNOS) gene promoter. METHODS: With gene recombination technique, we subcloned the heNOS gene promoter sequence (from -1 to -1 600 bp) into the BglII/HindIII sites of the firefly luciferase reporter gene vector, pGL2-Basic (Promega), to yield the recombinant plasmid designated as peNOS-Luc. With lipofectamine- mediated co-transfection technique, peNOS-Luc, pGL2-Basic and pCMV-beta were cotransfected into NIH3T3 cells, which were treated with lipopolysaccharide (LPS), tPNS and transforming growth factor beta1 (TGFbeta1) respectively. The relative activities (Luc/beta-gal) were subsequently determined in the cell lysates to evaluate the effects of these 3 factors on the activity of heNOS gene promoter. RESULTS: Double restriction enzyme digestion and sequencing both confirmed that the recombinant plasmid, peNOS-Luc, was constructed correctly, which could be effectively expressed in NIH3T3 cells. Upon LPS stimulation, the luciferase activity was obviously decreased, contrary to the results of tPNS and TGFbeta1 treatment, and between the latter two agents, TGFbeta1 produced higher transcription activity. CONCLUSIONS: A firefly luciferase reporter gene vector containing heNOS gene promoter sequence has been constructed correctly. tPNS can up-regulate the activity of heNOS gene promoter in NIH3T3 cells.

Animals↗

Construction of signal peptide-FRET fusion expression vectors and their expressions in NIH3T3 cells.

OBJECTIVE: To construct the fluorescence protein vector pairs with toll-like receptor 4 (TLR4) signal peptide, namely pECFP-C1-SP and pEYFP-C1-SP, therefore to make the application of fluorescence resonance energy transfer (FRET) possible in the study of the membrane protein interaction during lipopolysaccharide (LPS) recognition. METHODS: pECFP-C1-SP and pEYFP-C1-SP were constructed by means of site-directed mutagenesis, and the constructed plasmids were transiently transfected into NIH3T3 cells via lipofectamin to observe their intracellular expressions under a fluorescence microscope. RESULTS: DNA sequence analysis attested the validity of the constructed fluorescence vectors with signal peptide for FRET, and the expression of the vectors was located principally on the cell membrane as observed under fluorescence microscope. CONCLUSION: The constructed vectors TLR4 signal peptide are valid and capable of expressing on the cell membrane, therefore they can be effectively used in the study of the interaction between the membrane proteins.

3T3 Cells↗

[Effect of arthroscopic anterior cruciate ligament reconstruction].

OBJECTIVE: To investigate the clinical effect of reconstructing anterior cruciate ligament by using a bone-patellar tendon-bone autograft under arthroscopy. METHODS: Among 13 patients with anterior cruciate ligament injury, there were 9 males and 4 females(aged 23-45). Their anterior cruciate were reconstructed by applying the mid-one third autologous bone-patellar tendon-bone strip in -press fit technique under arthroscopy. The result was positive in 13 cases in anterior drawer test, in 4 cases in pivot shift test and in 7 cases in Lachman's test preoperatively. RESULTS: The follow-up period was 5-25 months averaged 15 months. The results of the above tests were negative in all the patients. According to Boszotta's evaluation quota, the results were excellent in 9 cases, good in 3 cases and fair in 1 case. The knee stability improved obviously in all patients. CONCLUSION: Anterior cruciate ligament injury can be treated by arthroscopic reconstruction with autologous bone-patellar tendon-bone strip and the clinical result of short-term followup is satisfactory.

Adult↗