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T F DeLaney

Publications and source records attributed to T F DeLaney.

11 recordsLinked to original sources

Measurement of thymidine replacement in patients with high grade gliomas, head and neck tumors, and high grade sarcomas after continuous intravenous infusions of 5-iododeoxyuridine.

Based upon the radiation sensitization properties of the halogenated pyrimidines, 5-iododeoxyuridine (IdUrd) and 5-bromodeoxyuridine, long term i.v. infusions of halogenated pyrimidines in conjunction with fractionated radiation therapy have been evaluated in the treatment of a variety of human malignancies. While clinical studies have attempted to measure the halogenated pyrimidine incorporation, few have successfully related tumor response to the incorporation of IdUrd by the tumor. The present study reports the continuous IdUrd labeling index (number of cells labeled) and the IdUrd corrected replacement (percentage of thymidine replacement in the labeled cells of the population) from the tumors of 17 patients who received continuous infusions of IdUrd (1000 mg/m2/24 h). The tumors treated included four high grade gliomas, five head and neck tumors, four high grade sarcomas, and five other tumors of varying types. Less than 25% of the cells in three of four gliomas incorporated IdUrd after 5-7-day IdUrd infusion time. Corrected replacement for the gliomas ranged from 0 to 4%. In contrast, 63-85% of the cells in the head and neck biopsies were labeled with IdUrd after 3-7-day IdUrd infusions suggesting that these large tumors (3-12 cm diameter) have a high fraction of dividing cells. Corrected replacements values for the head and neck tumor patients ranged from 2.9 to 26.3%. The high grade sarcomas also demonstrated a high percentage of IdUrd labeled cells (57-79%) with three patients having corrected replacements of 7.5-14.2%. The continuous labeling and thymidine replacement data for four patients from whom serial biopsies were taken during IdUrd infusion demonstrated both an increasing IdUrd replacement and continuous labeling index with an increasing duration of IdUrd infusion. The clinical response of both the high grade glioma and head and neck tumor patients indicate that the IdUrd replacement and labeling data may provide some important predictive information with regard to the successful use of the halogenated pyrimidines in clinical radiation trials.

Animals

Technique of photodynamic therapy for disseminated intraperitoneal malignant neoplasms. Phase I study.

Patients with disseminated intraperitoneal malignant neoplasms were given intra-abdominal photodynamic therapy. Patients received dihematoporphyrin ethers intravenously 48 to 72 hours before laparotomy at doses of 1.5 to 3.0 mg/kg. At operation, as much tumor as possible was resected. Red light (630 nm) was delivered to all peritoneal surfaces from an argon-pumped dye laser at doses ranging from 0.2 to 3.0 J/cm2 in an escalating fashion. Viscera and peritoneal surfaces were anatomically isolated and exposed to light for intervals calculated to deliver the prescribed energy. Light was delivered to mesentery and bowel by a flat-cut optical fiber, while other areas, including diaphragm, viscera, omental bursa, gutters, and pelvis, were delivered light through a diffusing wand. Twenty-three patients (13 with ovarian cancer, eight with sarcoma, and two with pseudomyxoma peritoneii) underwent photodynamic therapy. Five of eight patients cleared positive peritoneal cytologies after treatment. Six patients remained clinically free of disease for up to 18 months, and five patients had treatment-related complications. Intraperitoneal phototherapy is technically feasible and deserving of clinical evaluation.

Adrenal Gland Neoplasms

Acute and long-term effects on limb function of combined modality limb sparing therapy for extremity soft tissue sarcoma.

A retrospective review is presented on 145 patients who underwent limb-sparing surgery and radiation therapy (with or without adjuvant chemotherapy) for their primary soft tissue sarcomas of the extremities on protocol between 1975 and 1986. The focus on our analysis was the acute and long term toxicity of treatment on limb function. The most common acute complication was skin reaction, occurring in 52 patients (36%). Long term (occurring after more than 1 year following all treatment) treatment complications in the extremity were as follows: bone fracture = 6%; contracture = 20%; pain requiring narcotics = 7%; edema greater than 2+ = 19%; moderate to severe decrease in range of motion = 32%; moderate to severe decrease in manual muscle strength = 20%; orthotic device required = 9%; cane or crutch required = 7%; chronic infection = 9%; and tissue induration = 57%. Three amputations for treatment complications were required. Inclusion of more than 50% of the joint in the radiation portal was associated with a higher frequency of contracture. High nominal standard dose (greater than 1760 rets, greater than 63 Gy at 1.8 Gy per fraction) resulted in more painful limbs as well as limbs with increased edema, decreased manual muscle strength, decreased range of motion, and skin telangiectasias. Edema was more often noted in patients with a longer radiation portal (greater than 35 cm), as was tissue induration. Chronic ulcer or infection was more frequently seen in patients with lower extremity tumors and when more than 75% of the extremity diameter was irradiated. Although chemotherapy given concurrent with radiation therapy was associated with a higher number of acute skin reactions, this did not appear to translate into increased long term morbidity. The percentage of patients ambulating without assistive devices and with mild or no pain was 84%. Careful attention to the techniques of radiation therapy may have a significant impact on minimizing acute and long term complications of limb sparing treatment for extremity soft tissue sarcoma.

Combined Modality Therapy

Photodynamic therapy for chest wall recurrence in breast cancer.

Photodynamic therapy is the use of a sensitizer (dihematoporphyrin ethers) which is preferentially retained in tumor cells and activated by subsequent light delivery resulting in a selective tumoricidal effect. Between 1986 and 1989, we treated 20 patients with photodynamic therapy for chest wall recurrence of breast cancer. Responses were seen (20% complete response, 45% partial response, 35% no response), but the duration of response was short (average 2.5 months). Complications, in decreasing frequency, included pain, ecchymoses, blistering, ulceration and necrosis in the area of tumor involvement on the chest wall. One patient required skin flap reconstruction for full thickness necrosis. A limitation to this mode of therapy is that the sensitizer currently used is activated by light at a wavelength of 630 nm. This light can penetrate to a tissue depth of only 0.5 to 1.0 cm; thus, deeper disease cannot be treated. Future research must focus on the development of a clinically useful photosensitizer that can be activated by light at longer wavelengths and thereby achieve deeper tissue penetration. This would greatly expand the patient population for which this therapy is useful.

Adult

Principles of treatment of pediatric solid tumors.

Great strides have been made in the treatment of pediatric solid tumors over the last three decades. A multimodality approach involving a combination of surgery, radiation therapy, and chemotherapy is now used in the treatment of these diseases. This article reviews the principles that guide the use of these modalities and the multidisciplinary approach used to integrate them into a coordinated treatment plan. The role of each modality in the control of local and systemic disease is described. Radiation treatment planning, dose fractionation, and toxicity are also discussed.

Antineoplastic Agents

Proton magnetic resonance spectroscopy of small regions (1 mL) localized inside superficial human tumors. A clinical feasibility study.

It is demonstrated that the stimulated echo technique for proton magnetic resonance spectroscopy (MRS) can be used to study metabolites in volumes of interest (VOIs) as small as 1 mL localized within superficial human tumors. Access to these small VOIs is important for characterization of tissue regions within a tumor, before, during and after treatment. Spectral appearance resembles that from studies on extracts, and cell suspensions and perfused cells of several tumor types. For the first time proton MRS was used to study cancer treatment in vivo in humans, for a case of radiation treatment of squamous cell carcinoma. No spectral evidence of changed metabolism prior to reduction in tumor size was found. However, after the first period of radiation (39 Gy, 4 weeks), complete disappearance of the metabolite resonances from the spectrum was observed, while a considerable mass still remained, suggesting effective cell destruction upon treatment. Needle aspiration cytology of this mass showed absence of malignant cells, supporting this result.

Carcinoma, Squamous Cell

Preoperative irradiation, lymphadenectomy, and 125iodine implantation for patients with localized carcinoma of the prostate.

Fifty-four patients with clinically and surgically localized prostatic carcinoma were treated with low-dose preoperative irradiation (1,050 cGy), pelvic lymphadenectomy, and interstitial 125Iodine implantation. The follow-up range is 2 to 9 years with a median follow-up of 5 years. Overall local tumor control is 92%. Actuarial 5-year survival is 86% and the actuarial disease-free survival at 5 years is 73%. Patients with poorly differentiated tumors have a significantly worse actuarial survival (62%) at 5 years than patients with well (95%) or moderately well differentiated tumors (93%), p = 0.04. Disease-free survival at 5 years was influenced by grade: well (100%), moderate (60%), and poor (48%), p = 0.03. Multivariate regression analysis indicates that only the degree of differentiation (p = 0.05) significantly impacts on survival. Both degree of differentiation (p = 0.04) and nodal status (p = 0.03) significantly influence disease-free survival. Potency has been maintained in 71% of patients potent at the time of implantation. Late reactions have been acceptable to date: bladder outlet obstruction (13%), mild proctitis (13%), cystourethritis (6%), incontinence (2%), and prostatic calculi (2%).

Adenocarcinoma

Ewing's sarcoma.

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Adult

Photodynamic therapy: the NCI experience and its nursing implications.

Recent laboratory and clinical data have demonstrated encouraging results with a new treatment modality, photodynamic therapy (PDT). Initially used as a technique for tumor localization, PDT produces cytotoxic effects in superficial tumors such as those growing on the surfaces of the bladder, pleura, head and neck, bronchus, chest wall, and peritoneal cavity. PDT has three components: a light-sensitizing drug, light (generally from a laser), and oxygen. Initial results of phase I clinical trials conducted at the National Cancer Institute (NCI) are encouraging, and systemic toxicities have been minimal. Nursing intervention includes teaching, counseling, monitoring acute reactions, and follow-up care of these patients. This study outlines the results of experience with PDT at NCI and the nursing implications.

Clinical Protocols