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Biomedical subjects

Xueyan Zhang

Publications and source records attributed to Xueyan Zhang.

12 recordsLinked to original sources

Multi-omics dynamic profiling reveals predictive biomarkers for first-line immunochemotherapy in extensive-stage small-cell lung cancer.

BACKGROUND: Extensive-stage small-cell lung cancer (ES-SCLC) is associated with a poor prognosis. Although first-line immunochemotherapy improves clinical outcomes, robust prognostic biomarkers for this treatment modality remain unavailable. The aim of this study was to identify non-invasive, easily accessible, and dynamically monitored biomarkers of ES-SCLC by machine learning integrating serum metabolomics, lipidomics, and proteomics at multiple time points. METHODS: A total of 816 serum samples were collected from ES-SCLC patients receiving first-line immunotherapy combined with chemotherapy or first-line chemotherapy for metabolomics, lipidomics, and proteomics analysis. The immunochemotherapy cohort was randomly divided into training and validation subsets at a 6:4 ratio. Biomarkers were identified using machine learning algorithms, and their prognostic significance was evaluated through receiver operating characteristic (ROC) analysis, Kaplan–Meier survival analysis, and multivariate Cox regression. Potential metabolic pathways and mechanisms were further explored via integrated multi-omic analysis. RESULTS: The immunochemotherapy exhibited a prolonged median progression-free survival (PFS) and higher objective response rate (ORR) compared to the chemotherapy group. A total of 5 serum metabolites (uric acid, L-aspartate-semialdehyde, dimethisterone, xanthine, L-cysteine), 6 lipids (Cer d18:1/26:0, Cer d18:2/25:0, SM d18:1/20:1, SM d17:1/25:1, DG O-18:1_16:0, PS 18:0_24:0), and 3 proteins (ACIN1, ACSL4, PHGDH) were identified and constructed into independent prognostic models. Among patients receiving immunochemotherapy, those categorized as low-risk based on the model demonstrated significantly longer PFS compared with those in the high-risk group. These prognostic signatures also retained predictive value in patients who underwent second-line treatment with anlotinib plus immunochemotherapy. Integrated analysis revealed that glycine, serine, and threonine metabolism was the commonly enriched pathway across all three omics layers. Notably, PHGDH (protein), L-aspartate-semialdehyde and L-cysteine (metabolites), and PS (18:0_24:0) (lipid), key elements in this pathway, were all incorporated in the predictive model. In addition, models of the composition of these substances after one cycle of treatment can still predict the prognosis of patients. CONCLUSION: In this study, we constructed and validated a set of non-invasive, dynamically monitorable prognostic models (containing 5 metabolites, 6 lipids, and 3 proteins) using machine learning by integrating multiple time point data from the serum metabolome, lipid panel, and proteome to accurately distinguish the prognostic risk of patients with ES-SCLC receiving immunochemotherapy. PFS was significantly prolonged in patients in the low-risk group, and this model remains predictive in the subsequent second-line treatment with anlotinib in combination with immunochemotherapy. Glycine-serine-threonine metabolic pathway may be the key mechanism, of which PHGDH, L-aspartate semialdehyde, L-cysteine and PS (18:0_24:0) are the core predictors. This study provides the first multi-omics dynamic prognostic tool for ES-SCLC immunochemotherapy and reveals potential therapeutic targets.

Humans↗

Reduced MTA1 expression by RNAi inhibits in vitro invasion and migration of esophageal squamous cell carcinoma cell line.

To distinguish aggressive esophageal squamous cell carcinoma from indolent disease is the important clinical challenge. Studies have indicated that metastasis-associated gene 1(Mta1) played a role in the process of metastasis of carcinoma. The overexpression of Mta1 gene has been found in a variety of tumors. To identify the detailed roles of MTA1 protein in the carcinogenesis of esophageal squamous cell carcinoma, this study analyzed the pathological specimens on tissue microarray derived from 72 patients using immunohistochemistry. MTA1 expression increased in the nuclear with the development of esophageal squamous cell carcinoma from normal epithelial cell, dysplasia, to invasive cancer. In biological studies with human esophageal squamous cell carcinoma cell line, MTA1 plays its roles to promote cancer cell invasion, adhesion and movement. RNA interference (RNAi) against MTA1 decreased the malignant phenotypes. Gene microarray analysis revealed some metastasis-associated genes were altered by MTA1 RNAi. This study started an effective beginning to explore metastasis mechanisms and cancer gene therapy strategy targeting MTA1.

Base Sequence↗

Administration of PUMA adenovirus increases the sensitivity of esophageal cancer cells to anticancer drugs.

Esophageal cancer is one of the most lethal human tumors, characterized by relative chemoresistance and poor prognosis. Researchers have been seeking for multimodality to improve its outcome of therapy. PUMA (p53 upregulated modulator of apoptosis) is a potent proapoptotic molecule that is rapidly induced in cells following DNA damage and is required for p53-induced apoptosis. We evaluated the therapeutic potential of PUMA adenovirus against esophageal cancer cell lines (KYSE-150, KYSE-410, KYSE-510 and YES-2). Infection with Ad-PUMA (PUMA Adenovirus) resulted in the more powerful cytotoxicity in these cell lines compared with Ad-p53. Furthermore, we assessed the efficacy of a combined treatment with Ad-PUMA and anticancer drug (cisplatin, paclitaxel, 5-fluorouracil, respectively) for these cells and found PUMA significantly increased the chemosensitivity of esophageal cancer cells, which may result from more abundant apoptosis induction. Interestingly, Ad-PUMA was found to be more efficient than Ad-p53 in inhibiting cell growth and enhancing the chemosensitivity of esophageal cancer cell lines irrespective of the p53 status. These results suggest that Ad-PUMA is a potent cytotoxic agent and could be a promising alternative in the cancer gene therapy in combination with chemotherapeutic agents.

Antineoplastic Agents↗

Induction of protective and therapeutic antitumour immunity using a novel tumour-associated antigen-specific DNA vaccine.

DNA vaccination has become an attractive immunization strategy against cancer. However, a major problem of DNA vaccination is its limited potency to be taken up by the antigen-presenting cells. In contrast, loss of immunogenic epitopes of tumour cells has urged the development of vaccines against multiple epitopes. In this study, we developed a novel strategy for the APC to efficiently cross-present a fusion tumour antigen, which contains both MHC class I-restricted and class II-restricted T-cell epitopes from Her-2/neu and p53 in a cognate manner. The N-terminus of the fusion Her-2/neu, p53 protein was linked to the sequence encoding for human secondary lymphoid-tissue chemokine for secretion and chemokinesis, and the C-terminus of the fusion protein was linked to a cell-binding domain of IgG (Fc portion, the cell-binding domain of IgG) for receptor-mediated internalization. Here, we show that the introduction of fused-gene DNA vaccine by gene gun reduced the size of established tumours and prolonged the lifespan of tumour-bearing mice. Results show that this DNA vaccination strategy can broadly enhance the antigen-specific cellular and humoral immune responses. This vaccine is capable of inducing adaptive immunity and may provide a novel, generic design for the development of therapeutic and preventive DNA vaccines.

Animals↗

Pharmacokinetic and cytotoxic studies of pegylated liposomal daunorubicin.

Pegylated liposomes have been studied for nearly two decades. However, fewer pharmacological studies about its application in daunorubicin (DNR) than those in doxorubicin have been reported. In order to conduct a complete pharmacokinetic study, radiolabeled DNR was encapsulated in pegylated liposomes. Its in vitro drug release kinetics was determined to be in a slow manner, which was reflected in its cytotoxic effect on four cell lines. The lethal dose, plasma pharmacokinetics as well as tissue distribution of the formulation were evaluated in comparison with free DNR. The results revealed that liposomal daunorubicin significantly reduced the toxicity of the drug, with a half lethal dose of 29.35 mg/kg, compared with 5.45 mg/kg for free drug. Pharmacokinetic study of liposomal DNR demonstrated a slower clearance rate, an elevated area under the concentration-time curve, as well as increased half-lives compared to free drug. In addition, an altered tissue distribution of liposomal DNR was observed, with lower cardiac accumulation. Taken together, pegylated liposome-loaded DNR may be a promising anticancer drug and worth further therapeutic study.

Animals↗

Angiogenesis inhibitor Z24 induces endothelial cell apoptosis and suppresses tumor growth and metastasis.

Z24, a small molecular compound with similar chemical structure to SU5416 designed and synthesized by our lab, has been proved to be an angiogenesis inhibitor. In this study, Z24 was shown to induce human umbilical venous endothelial cell (HUVEC) apoptosis confirmed by morphologic changes including the presence of apoptotic bodies, significant apoptotic sub-G1 peak upon flow-cytometric analysis, formation of DNA ladders upon agarose gel electrophoresis, and TUNEL (TdT mediated X-dUTP nick-end labeling) results. Systemic administration of Z24 at non-toxic dose in nude mice resulted in inhibition of subcutaneous tumor growth of human colon cancer HCT-8, while it did not inhibit this cell line in vitro, with 100-fold more potent growth-inhibition against endothelial cells. The immunohistochemical results showed that the microvessel density of tumor tissue of the Z24 group was significantly lower than that of the control groups (P<0.05), which supported its anti-angiogenic property. We further found that Z24 inhibited the pulmonary metastasis of mouse lung adenocarcinoma LA795, with fewer surface lung metastases (89.6%, P<0.0001) and decreased lung weights (38.5%, P<0.01) compared to the vehicle group. All these findings support that Z24 is a promising angiogenesis inhibitor for limiting tumor growth and metastasis.

Angiogenesis Inhibitors↗

[Effect of Zingiber OfficinaleRosc on lipid peroxidation in hyperlipidemia rats].

Zingiber Officinale Rosc(ginger) is the food of rhizoma species as well as Chinese traditional medicine and has various pharmacological effects. The last researches showed that ginger not only reduced plasma lipid levels but also the mouse atherosclerotic lesion areas. The ginger antioxidative effect maybe pay an important role in attenuation of development of atherosclerosis. Antioxidative effect of Zingiber Officinale Rosc on hyperlipidemia rats have been studied and the changes of GSH-Px and LPO in their blood have been observed in this paper. Male adult Wistar rats were grouped into control, preventive and curative teams. The experimental teams were respectively fed on the test diet containing 2% ginger and 5% ginger, in order to measure the changes of plasma lipid peroxides (LPO) and glutathione (GSH-Px) after the experiment. The results show that ginger increased GSH-Px and reduced LPO in the rats' blood. Ginger could inhibit and/or scaving radicals of rat body in different degrees.

Animals↗

Bladder cancer therapy using combined proliferating cell nuclear antigen antisense oligonucleotides and recombinant adenovirus p53.

OBJECTIVE: To evaluate the antitumor efficacy of proliferating cell nuclear antigen antisense oligonucleotide (PCNA-ASO) in combination with recombinant adenovirus p53 (Ad-p53) against bladder cancer EJ and BIU-87 cells in vitro and in vivo. METHODS: Cells were transfected with Ad-p53 (100 MOI), and PCNA-ASO (1.6 micro mol/L) was then introduced into the cells using a cationic lipid (lipofectamine, 20 micro l/ml). In vitro and in vivo antitumor effects of combining PCNA-ASO with Ad-p53 were measured using the MTT assay, flow cytometry, clone formation, and a nude mice model. RESULTS: The combination of PCNA-ASO and Ad-p53 inhibited cell viability in both the EJ (89.3%) and BIU-87 (78.6%) cell lines. The ability of the cells to form foci was also reduced by 74.8% in EJ cells and by 67.5% in BIU-87 cells (P < 0.01). A significant decrease of cells in the S phase (11.4% in EJ cells, 14.6% in BIU-87 cells) and a significant increase of cells in G1 phase (62.2% in EJ, 56.8% in BIU-87) were noted. The mean tumor volume after 7 days of treatment with PCNA-ASO or Ad-p53 in combination decreased to 47.6% or 36.4% of the initial tumor size in the two cell lines respectively. CONCLUSION: These results indicate that combined PCNA-ASO and Ad-p53 in the treatment of bladder cancer with mutant p53 has important therapeutic potential, significantly suppressing the growth of human bladder cancer both in vitro and in vivo.

Adenoviridae↗

[Experimental study on adenovirus-mediated transfer of p53 or adenovirus- mediated transfer of p53 combined with radiotherapy for human cervical cancer cell line HeLa cells].

OBJECTIVE: To evaluate the therapeutic efficiency of adenovirus-mediated transfer of p53(Ad-p53) or Ad-p53 combined with radiotherapy for human cervical cancer cell line HeLa cells. METHODS: HeLa cells were either transfected with Ad-p53 alone or with Ad-p53 combining with radiotherapy. Reverse transcription polymerase chain reaction(RT-PCR), the cell growth, morphological changes, cell cycle, apoptosis and molecular changes were measured using cell counting, microscopy, flow cytometry, DNA ladder, and in vivo therapy experiments to evaluate the therapeutic efficiency of the regimens. RESULTS: Ad-p53 could be transfected into HeLa cells and p53 mRNA could be expressed more in the targeted HeLa cells. Ad-p53 transfer had strong therapeutic effects to HeLa cells in vitro and in vivo (the inhibition rates were 61.8% and 54.8%, respectively), moreover, the combined administration of Ad-p53 and radiotherapy had stronger therapeutic effects in vitro and in vivo (the inhibition rate was 85.5% in vitro, and the inhibition rate was 77.4% in vivo). The inhibition rate by radiotherapy alone was 44.6% in vitro and 58.4% in vivo. Massive apoptosis of HeLa cells was induced by these regimens. Cell cycle analysis demonstrated that all these regimens could arrested HeLa cells in G(2)-M. CONCLUSIONS: After introduced into HeLa cells, Ad-p53 shows therapeutic efficiency for HeLa cells both in vitro and in vivo. Moreover, Ad-p53 could enhance therapeutic efficiency for HeLa cells when combined with radiotherapy.

Adenoviridae↗

Hydrophobicity at a Janus interface.

Water confined between adjoining hydrophobic and hydrophilic surfaces (a Janus interface) is found to form stable films of nanometer thickness whose responses to shear deformations are extraordinarily noisy. The power spectrum of this noise is quantified. In addition, the frequency dependence of the complex shear modulus is a power law with slope one-half, indicating a distribution of relaxation processes rather than any dominant one. The physical picture emerges that whereas surface energetics encourage water to dewet the hydrophobic side of the interface, the hydrophilic side constrains water to be present, resulting in a flickering, fluctuating complex.

Journal Article↗

Adenovirus-mediated transfer of p53 and p16 inhibiting proliferating activity of human bladder cancer cell EJ in vitro and in vivo.

To evaluate the effects of adenovirus (Ad)-mediated transfer of p53 and p16 on human bladder cancer cells EJ, EJ were transfected with Ad-p53 and Ad-p16. Cell growth, morphological change, cell cycle, apoptosis were measured using MTT assay, flow cytometry, cloning formation, immunocytochemical assays. Ad-p16 or Ad-p53 alone could inhibit the proliferating activity of EJ cells in vitro. Ad-p53 could induce apoptosis of partial EJ cells. G1 arrest was observed 72 h after infection with Ad-p16, but apoptosis was not obvious. The transfer of Ad-p16 and Ad-p53 could significantly inhibit the growth of EJ cells, decrease the cloning formation rate and induce apoptosis of large number of EJ cells. The occurrence time of subcutaneous tumor was delayed and the tumor volume in 4 weeks was diminished by using Ad-p53 combined with Ad-p16 and the difference was significant compared with using Ad-p53 or Ad-p16 alone. It was suggested that the transfer of wild-type p53 and p16 could significantly inhibit the growth of human bladder cancer in vitro and in vivo.

Adenoviridae↗

[Synergistic effect of toremifene and cisplatin on human lung cancer cell line A549].

OBJECTIVE: To study the toxic effect of toremifene (TOR) and its synergistic effect with cisplatin (DDP) on human lung adenocarcinoma cell line A549. METHODS: The cytotoxic effects of these agents on human lung cancer cell line A549 were monitored by a tetrazolium-based colorimetric assay (MTT assay). The cell cycle and DNA content were detected by flow cytometer technic. p21 expression level was monitored by Western blot. RESULTS: Toremifene inhibited the growth of A549 cell, with > or = 5 micromol/L significantly enhancing the chemosensitivity of cisplatin. TOR enhanced the antitumor activity of DDP at S, G(2) and M phases of cells. And p21 expression was increased after TOR and DDP had been given. CONCLUSION: Toremifene (> or = 5 micromol/L) combined with cisplatin shows significant synergistic anti-tumor effect on A549 cells.

Antineoplastic Combined Chemotherapy Protocols↗