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Biomedical subjects

Jeremy Taylor

Publications and source records attributed to Jeremy Taylor.

6 recordsLinked to original sources

Do Aviram-Ratner diodes rectify?

We present state-of-the-art first principles calculations for the IV characteristics of a donor-insulator-acceptor (DsigmaA) type molecular diode anchored with thiolate bonds to two gold electrodes. We find very poor diode characteristics of the device, and the origin of this is analyzed in terms of the bias-dependent electronic structure. At zero bias, the highest occupied molecular orbital (HOMO) is confined to the D part, and the lowest unoccupied molecular orbital (LUMO) is confined to the A part, while at 3.8 V the two states align, and this gives rise to an increasing current. The latter is a potential mechanism for rectification and may in some cases lead to favorable diode characteristics. We identify the origin of the vanishing rectification for the investigated molecule, and on the basis of this we suggest parameters which are important for successful chemical engineering of DsigmaA rectifiers.

Journal Article↗

Theory of rectification in tour wires: the role of electrode coupling.

We report first-principles studies of electronic transport and rectification in molecular wires attached to gold electrodes. Our ab initio calculation gives an accurate description of the voltage drop as well as the broadening and alignment of the molecular levels in the metal-molecule-metal complex. We find that the operation range and rectification in such strongly chemisorbed molecules is limited by the width of the transmission resonances and their proximity to the Fermi level.

Journal Article↗

Combined shock-wave and immunogene therapy of mouse melanoma and renal carcinoma tumors.

The effects of ultrasonic shock waves (SW), recombinant interleukin-12 (rIL-12) protein and DNA plasmids coding for interleukin-12 (pIL-12) were investigated on progression of mouse B16 melanoma and RENCA renal carcinoma tumors. Tumor cells were implanted and grown on the hind legs of syngeneic mice. Before treatment, mice were anesthetized and the tumor region was shaved and depilated. Air bubbles at 10% of tumor volume and an equal volume of phosphate buffered saline (PBS), either with rIL-12 or pIL-12 were injected into the tumor. SW treatment consisted of 500 SWs (7.4-MPa peak negative pressure) from a spark-gap lithotripter. Tumor volume was measured every other day and tumor growth was statistically modeled. SW treatment augmented by air injection induced a tumor growth delay for a few days immediately after exposure. Intratumor rIL-12 injection enhanced the SW effect on tumor progression, to the extent that a statistically significant increase in survival was realized in both tumor models. pIL-12 injection alone, which is known to produce some gene transfer, provided no detectable tumor-growth reduction. The combination of SW and pIL-12 injection provided a statistically significant reduction in tumor growth relative to SW alone for both tumor models. IL-12 expression due to SW-induced gene transfer was confirmed in ELISA assays. This research demonstrates a potentiality for further development of ultrasound (US)-enhanced cancer gene therapy.

Animals↗

The regulation of prostate cancer cell adhesion to human bone marrow endothelial cell monolayers by androgen dihydrotestosterone and cytokines.

A previous study from our laboratory suggested that prostate cancer metastasis to bone may be mediated, in part, by preferential adhesion to human bone marrow endothelial (HBME) cells. Tumor cell adhesion to endothelial cells may be modulated by the effect of cytokines on cell adhesion molecules (CAMs). Tumor necrosis factor-alpha (TNF-alpha) regulates VCAM expression on the endothelium and this effect is enhanced by dihydrotestosterone (DHT). Transforming growth factor-beta (TGF-beta) stimulates the expression of alpha2beta1 integrin on PC-3 cells. The current study investigated the effects of the above cytokines and DHT (singularly and in various combinations) upon HBME and prostate cancer cell expression of VCAM, alpha2 integrin subunit, and beta1 integrin subunit by flow cytometry. We also monitored the effects of the above treatments on PC-3 cell adhesion to HBME monolayers. The data demonstrate that none of the treatments significantly altered the expression of selected CAMs on HBME cell and neoplastic prostate cell lines. The treatment of HBME monolayers with various combinations of cytokines and DHT prior to performing adhesion assays with PC-3 demonstrates that treatments containing TGF-beta reduced PC-3 cell adhesion to HBME monolayers by 32% or greater (P < 0.05). The reduction in PC-3 cell adhesion to TGF-beta-treated HBME monolayers was dose dependent. Interestingly, LNCaP cells but not PC-3 cells treated with TGF-beta had a reduced ability to adhere to untreated HBME monolayers. These results suggest that TGF-beta may reduce tumor cell adhesion to bone marrow microvascular endothelium, in vivo. The biological significance of this observation is discussed.

Adenocarcinoma↗

Renal dysfunction in allogeneic hematopoietic cell transplantation.

BACKGROUND: Allogeneic hematopoietic cell transplantation (HCT), formerly called bone marrow transplantation, can potentially cure various malignant and non-malignant diseases, but it is associated with a high risk of toxicity. We have previously shown an overall 21% incidence of severe acute renal failure in patients undergoing autologous HCT. The present study evaluated renal dysfunction in patients undergoing allogeneic HCT. METHODS: The clinical course of 88 adult patients who received allogeneic HCT at the University of Colorado Health Science Center was analyzed. Renal dysfunction was classified as follows: Grade 0 = normal renal function; Grade 1 =>25% decrement in GFR but twofold increase in serum creatinine; Grade 3 =>twofold increase in serum creatinine and need for dialysis. RESULTS: Of the 88 patients, 81 (92%) patients had some degree of renal dysfunction (Grade 1, 20 patients; Grade 2, 32 patients; Grade 3, 29 patients). Severe nephrotoxicity (Grade 2 and Grade 3 renal dysfunction) was associated with significantly higher frequencies of sepsis, hepatic toxicity and hepatic veno-occlusive disease (VOD), and lung toxicity. The overall mortality rate at the end of 6 months was 58%. Grade 3 renal dysfunction was associated with a significantly increased risk of mortality (82.6%). CONCLUSION: A 92% incidence of renal dysfunction in allogeneic HCT patients was found. Lung and liver toxicities were significantly correlated with developing renal dysfunction, and the mortality rates for patients with Grade 3 renal failure exceeded 80%.

Adult↗

Radiotherapy and antiangiogenic TM in lung cancer.

Tetrathiomolybdate (TM) is a potent nontoxic orally delivered copper complexing agent under development for the last several years for the treatment of Wilson's disease. It has been shown to block angiogenesis in primary and metastatic tumors. Therefore, the combination of cytotoxic radiotherapy (RT) and antiangiogenic TM could target both the existing tumor and the tumor microvasculature in a comprehensive strategy. Using a Lewis lung high metastatic (LLHM) carcinoma mouse tumor model, we demonstrate that the combination of TM and RT is more effective than either used as monotherapy. We also show that their therapeutic effects are additive, with no additional toxicity. We show that TM has no significant cytotoxicity in vitro against LLHM tumor cells, further supporting the antiangiogenic mechanism for its action.

Angiogenesis Inhibitors↗