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Biomedical subjects

Ronald C Walker

Publications and source records attributed to Ronald C Walker.

7 recordsLinked to original sources

Expression of heparanase by primary breast tumors promotes bone resorption in the absence of detectable bone metastases.

Heparanase is an enzyme that cleaves heparan sulfate and through this activity promotes tumor growth, angiogenesis, invasion, and metastasis in several tumor types. In human breast cancer patients, heparanase expression is associated with sentinel lymph node metastases. However, the precise role of heparanase in the malignant progression of breast cancer is unknown. To examine this, a variant of MDA-MB-231 cells was transfected with the cDNA for human heparanase (HPSE cells) or with vector alone as a control (NEO cells). Transfection produced a 6-fold increase in heparanase activity in HPSE cells relative to NEO cells. When injected into the mammary fat pads of severe combined immunodeficient mice, the tumors formed by HPSE cells initially grow significantly faster than the tumors formed by NEO cells. The rapid growth is due in part to increased angiogenesis, as microvessel densities are substantially elevated in primary HPSE tumors compared with NEO tumors. Although metastases to bones are not detected, surprisingly vigorous bone resorption is stimulated in animals bearing tumors formed by the HPSE cells. These animals have high serum levels of the C-telopeptide derived from type I collagen as well as significant elevation of the active form of tartrate-resistant acid phosphatase (TRAP)-5b. In contrast, in animals having a high tumor burden of Neo cells, the serum levels of C-telopeptide and TRAP-5b never increase above the levels found before tumor injection. Consistent with these findings, histologic analysis for TRAP-expressing cells reveals extensive osteoclastogenesis in animals harboring HPSE tumors. In vitro osteoclastogenesis assays show that the osteoclastogenic activity of HPSE cell conditioned medium is significantly enhanced beyond that of NEO conditioned medium. This confirms that a soluble factor or factors that stimulate osteoclastogenesis are specifically produced when heparanase expression is elevated. These factors exert a distal effect resulting in resorption of bone and the accompanying enrichment of the bone microenvironment with growth-promoting factors that may nurture the growth of metastatic tumor cells. This novel role for heparanase as a promoter of osteolysis before tumor metastasis suggests that therapies designed to block heparanase function may disrupt the early progression of bone-homing tumors.

Adenocarcinoma↗

Avascular necrosis of femoral and/or humeral heads in multiple myeloma: results of a prospective study of patients treated with dexamethasone-based regimens and high-dose chemotherapy.

PURPOSE: To assess the prevalence, time of onset, risk factors, and outcome of avascular necrosis (AVN) of bone in patients with multiple myeloma undergoing antineoplastic therapy. PATIENTS AND METHODS: A total of 553 consecutive assessable patients were enrolled onto a treatment protocol consisting of dexamethasone-containing induction chemotherapy, autologous stem-cell transplantation, consolidation chemotherapy, and maintenance with interferon alfa. Patients were randomly assigned to receive thalidomide (269 patients) or no thalidomide (284 patients) throughout the study period. RESULTS: With a median follow-up of 33 months (range, 5 to 114 months), AVN of the femoral head(s) developed in 49 patients (9%). Median time to onset of AVN was 12 months (range, 2 to 41 months). Three risk factors for AVN were identified by multivariate analysis: cumulative dexamethasone dose (odds ratio [OR], 1.028; 95% CI, 1.012 to 1.044; P = .0006 [per 40 mg dexamethasone]), male sex (OR, 0.390; 95% CI, 0.192 to 0.790; P = .009), and younger age (OR, 0.961; 95% CI, 0.934 to 0.991 per year; P = .0122). Thalidomide-treated patients had a prevalence of AVN similar to that of the control group (8% v 10%, respectively; P = .58). AVN-related pain and limited range of motion of the affected joint were present in only nine and four patients, respectively, and four patients underwent hip replacement because of AVN. Fluorine-18 fluorodeoxyglucose positron emission tomography failed to detect abnormal uptake in the AVN-affected bones. CONCLUSION: AVN is a rare and usually asymptomatic complication during myeloma therapy. Cumulative dexamethasone dose, male sex, and younger age, but not thalidomide, increase the risk of AVN.

Adult↗

Introduction to PET imaging with emphasis on biomedical research.

Medical imaging is migrating from anatomic imaging to functional imaging and fused anatomic/functional imaging. The technology is being adapted for biomedical research using both clinical and small animal scanners. The ability to externally image real-time physiologic processes in both normal and deranged conditions, including various models to image gene expression, apoptosis, or drug biodistribution, has powerful impact on the exploration of biomedical and fundamental biological research. Positron emission tomography (PET) has a unique ability to not only provide such images but also to do so with high resolution (typically 1-2mm resolution for small animal scanners) and to provide both relative and absolute quantitation. This technology is revolutionizing biomedical and biological research. This article reviews the underlying principles involved in this technology, gives a brief history of its development, and then introduces the interested researcher to some of the important techniques that could be of use.

Animals↗

Diagnosis of infection of implantable central venous catheters by [18F]fluorodeoxyglucose positron emission tomography.

OBJECTIVE: The aim of this study was to evaluate the role of [18F]fluorodeoxyglucose (FDG) positron emission tomography (PET) imaging in the diagnosis of infection of implantable vascular catheters. METHODS: We evaluated six patients with haematological cancer and infection of their implantable vascular catheter and who underwent FDG PET imaging around the time of their infection. RESULTS: Six patients with multiple myeloma who developed infection of their implantable device (five port pocket infections and one tunnel infection) were identified. FDG PET revealed increased uptake at the site of the implantable catheter (SUV 2.7-4.5) in all six patients, even in the absence of signs or symptoms of infection at the site of the device (three), and the presence of severe neutropenia (four). The three patients who did not have local inflammation at the site of the device were profoundly neutropenic. The FDG PET diagnosis led to removal of the device in two patients. CONCLUSION: FDG PET is a safe, rapid and accurate tool for diagnosing infection of an implantable catheter, including among those patients not exhibiting local signs and symptoms of infection, and in whom the diagnosis of infected device may be difficult. FDG PET may help prevent the unnecessary removal of implantable intravascular catheters and the unwarranted use of antibiotics.

Adult↗

Positron emission tomography scanning: a primer.

PET is one of the most exciting advancements in medicine in many years. Its ability to image physiology rather than anatomy, combined with the wide range of organic "probes" or molecules that can be utilized, offer remarkable possibilities for medical imaging in the coming years.

Arkansas↗

PET practice in nuclear pharmacy.

PET systems, which are based on many years of work in theoretical and practical physics, provide a window into both normal and disease state biochemical processes not possible by other external imaging techniques. FDG is a workhorse of PET chemistry, helping to visualize the accumulation of glucose in cancer cells. A complex series of steps is involved in [18F]fluoride ion production to make a sterile, injectable solution of FDG. PET and CT scanners are being developed that increase greatly the clinical utility of both technologies.

Fluorine Radioisotopes↗