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Biomedical subjects

K J Harrington

Publications and source records attributed to K J Harrington.

At least 19 recordsLinked to original sources

Raynaud's phenomenon after radical radiotherapy for tumours of the head and neck.

Endothelial cell injury is implicated in the development of radiation induced tissue damage and may also be involved in the pathophysiology of secondary Raynaud's phenomenon. Two patients are presented in whom the typical symptoms and signs of Raynaud's phenomenon developed as a late complication of radical radiotherapy. One had Raynaud's of the tongue and one of the lip. Both patients had a prior history of primary Raynaud's phenomenon and in each case the symptoms were repeatedly precipitated by sudden cold exposure. The possible pathogenesis of radiation induced Raynaud's phenomenon in the head and neck region is discussed.

Aged↗

Managing side effects of radiotherapy in head and neck cancer.

Curative radiotherapy for head and neck cancer causes very significant side effects. In addition to their considerable impact on the patient's quality of life, these effects can prejudice treatment outcome. This review looks at the management of the adverse effects of radiotherapy for head and neck cancer.

Dose-Response Relationship, Radiation↗

Polyethylene glycol in the design of tumor-targetting radiolabelled macromolecules -- lessons from liposomes and monoclonal antibodies.

Radiolabelled macromolecules such as liposomes and monoclonal antibodies (Mab) are attractive agents for tumour-targetting studies. In addition to their potential diagnostic role, they can also provide vital information on the targetting capacity of therapeutic agents. Certainly in the case of liposome development, this ability to track the pharmacokinetics and biodistribution of the agents in a non-invasive fashion has assisted the design and application of therapeutic liposomal agents. A significant limitation of unmodified liposomes and Mab is their tendency to be cleared rapidly from the circulation. The use of polyethylene glycol (PEG) in the formulation of these agents has the capacity to alter their biological behaviour in such a way as to improve their ability to target tumours. In this paper we review the data relating to the use of PEG-modified liposomes and Mab in the context of nuclear medicine studies.

Antibodies, Monoclonal↗

The effect of irradiation on the biodistribution of radiolabeled pegylated liposomes.

PURPOSE: The effect of total-body irradiation (TBI) on the biodistribution and pharmacokinetics of (111)In-DTPA-labeled pegylated liposomes (IDLPL) was evaluated in tumor-bearing nude mice as part of an ongoing effort to develop liposome-targeted radiosensitizers. METHODS AND MATERIALS: Mice received TBI (2 Gy or 5 Gy) according to two protocols: (1) to test the effect of radiation delivered 30 min before liposome injection on the time course of IDLPL biodistribution to tumor and normal tissues over 96 h; (2) to test the effect of radiation at times ranging from 72 h to 1 h before liposome injection on tumor and normal tissue uptake of IDLPL at 24 h. Tumor and tissue/organ levels of liposome uptake were measured by dissection and quantitation in a gamma counter. RESULTS: For most tissues (tumor, liver, kidney, lung, skin, heart, and central nervous system), irradiation did not alter IDLPL biodistribution. Splenic uptake appeared to be increased by TBI, but further analysis revealed that this effect was due to reduced splenic weight in irradiated mice. IDLPL uptake was increased in the small intestine, stomach, musculoskeletal system, female reproductive tract, and adrenal glands in irradiated mice. CONCLUSION: These findings suggest that concomitant administration of liposomal radiosensitizers during radical radiotherapy is likely to be safe. However, caution should be exercised in situations in which significant volumes of small intestine or hemopoietic tissue will be irradiated.

Animals↗

Balanced branching in transcription termination.

The theory of stochastic transcription termination based on free-energy competition [von Hippel, P. H. & Yager, T. D. (1992) Science 255, 809-812 and von Hippel, P. H. & Yager, T. D. (1991) Proc. Natl. Acad. Sci. USA 88, 2307-2311] requires two or more reaction rates to be delicately balanced over a wide range of physical conditions. A large body of work on glasses and large molecules suggests that this balancing should be impossible in such a large system in the absence of a new organizing principle of matter. We review the experimental literature of termination and find no evidence for such a principle, but do find many troubling inconsistencies, most notably, anomalous memory effects. These effects suggest that termination has a deterministic component and may conceivably not be stochastic at all. We find that a key experiment by Wilson and von Hippel [Wilson, K. S. & von Hippel, P. H. (1994) J. Mol. Biol. 244, 36-51] thought to demonstrate stochastic termination was an incorrectly analyzed regulatory effect of Mg(2+) binding.

Bacteriophages↗

Single-fraction irradiation has no effect on uptake of radiolabeled pegylated liposomes in a tumor xenograft model.

PURPOSE: These studies were performed with the intention of examining the effect of single-fraction doses of radiotherapy (RT) on the tumor deposition of radiolabeled pegylated liposomes in an animal xenograft tumor model. METHODS AND MATERIALS: Human KB head-and-neck xenograft tumors were established in female nude mice. The effect of single fraction tumor RT doses (5, 10, 15, and 20 Gy) on the tumor uptake of intravenously administered (111)In-DTPA-labeled pegylated liposomes (IDLPL) was examined using two protocols: (1) to test the effect of RT delivered 30 min before liposome injection on the time course of tumor uptake over a 96-h period; (2) to test the effect of RT at times ranging from 72-h to 1-h before liposome injection on the levels of liposome uptake at 24 h. Tumor and normal tissue/organ (blood, liver, spleen, lung, and kidney) liposome uptake was determined by dissection and quantitation in a gamma counter. RESULTS: There was no demonstrable effect of RT on tumor uptake of IDLPL (p > 0.1 for all comparisons). Reassuringly, neither was there an effect of RT on the pharmacokinetics and biodistribution of radiolabeled liposomes to normal tissues. CONCLUSIONS: Single fraction doses of RT appear to have no effect on tumor or normal tissue biodistribution and pharmacokinetics of radiolabeled pegylated liposomes in this animal model.

Animals↗

Gene therapy for prostate cancer: current status and future prospects.

PURPOSE: Locally advanced, relapsed and metastatic prostate cancer has a dismal prognosis with conventional therapies offering no more than palliation. In recent years advances achieved in understanding the molecular biology of cancer have afforded clinicians and scientists the opportunity to develop a range of novel genetic therapies for this disease. MATERIALS AND METHODS: We performed a detailed review of published reports of gene therapy for prostate cancer. Particular emphasis was placed on recent developments in the arena of nonviral (plasmid DNA, DNA coated gold particles, liposomes and polymer DNA complexes) and viral (adenovirus, retrovirus, adeno-associated virus, herpes virus and pox virus) vectors. Therapeutic strategies were categorized as corrective, cytoreductive and immunomodulatory gene therapy for the purpose of data analysis and comparison. RESULTS: Locoregional administration of nonviral and viral vectors can yield impressive local gene expression and therapeutic effects but to our knowledge no efficient systemically delivered vector is available to date. Corrective gene therapy to restore normal patterns of tumor suppressor gene (p53, Rb, p21 and p16) expression or negate the effect of mutated tumor promoting oncogenes (ras, myc, erbB2 and bcl-2) have efficacy in animal models but this approach suffers from the fact that each cancer cell must be targeted. A wide variety of cytoreductive strategies are under development, including suicide, anti-angiogenic, radioisotopic and pro-apoptotic gene therapies. Each approach has strengths and weaknesses, and may best be suited for use in combination. Immunomodulatory gene therapy seeks to generate an effective local immune response that translates to systemic antitumor activity. Currently most studies involve immunostimulatory cytokine genes, such as granulocyte-macrophage colony-stimulating factor, or interleukin-2 or 12. CONCLUSIONS: Various therapeutic genes have proved activity against prostate cancer in vitro and in vivo. However, the chief challenge facing clinical gene therapy strategies is the lack of efficient gene delivery by local and systemic routes. For the foreseeable future vector development may remain a major focus of ongoing research. Despite this caveat it is anticipated that gene therapy approaches may significantly contribute to the management of prostate cancer in the future.

Adjuvants, Immunologic↗

Phase II study of pegylated liposomal doxorubicin (Caelyx) as induction chemotherapy for patients with squamous cell cancer of the head and neck.

A phase II trial of pegylated liposomal doxorubicin (Caelyx) as induction chemotherapy was conducted in 20 patients with treatment-naïve squamous cell cancer of the head and neck (SCCHN). 10 patients received two cycles of Caelyx (40 mg/m(2)) every 3 weeks before starting radical radiotherapy (RT). Subsequently, consecutive groups of 3 patients received a third escalating dose of Caelyx (10, 15 and 20 mg/m(2)) 3 days before RT. 9 of 18 (50%, 95% confidence intervals (CI): 26-74%) evaluable patients responded to Caelyx, with 11 responses in 26 (42%, 95% CI: 24-62%) evaluable sites (three complete responses (12%), eight partial responses (31%)). There was no grade 3/4 haematological, mucosal or cardiac toxicity. Nausea and vomiting were minimal. There were no drug-related RT delays. Local RT-induced toxicity was not increased. Caelyx has significant activity against SCCHN and warrants further investigation in this disease. In view of its tumour targeting properties and activity at moderate doses, it may be useful in concomitant chemoradiotherapy strategies for SCCHN.

Aged↗

Phase I-II study of pegylated liposomal cisplatin (SPI-077) in patients with inoperable head and neck cancer.

BACKGROUND: Concomitant chemoradiotherapy (CCRT) for squamous cancers of the head and neck (SCCHN) improves survival but increases toxicity. Pegylated liposomes localise to solid cancers and may deliver radiosensitizing agents preferentially to tumour tissue, potentially improving the therapeutic ratio of CCRT. PATIENTS AND METHODS: A phase I-II trial of pegylated liposome encapsulated cisplatin (SPI-077) was conducted in 18 patients with treatment-naive locally advanced, inoperable SCCHN. The first 10 patients received 2 cycles of 200 mg/m2, and the next 8 received 260 mg/m2, every 3 weeks before commencing radical radiotherapy (RT). RESULTS: Only 2 of 18 (11%) patients had partial responses to SPI-077 with 2 responses in 29 (6.9%) evaluable sites. SPI-077 was tolerated well with no haematological, renal, hepatic or neurological toxicities. Nausea and vomiting were minimal. There were no drug-related delays in the delivery of RT. RT-induced mucosal and cutaneous toxicity were not significantly increased. CONCLUSIONS: SPI-077 is essentially inactive against SCCHN and, in its present formulation, does not merit further evaluation as induction chemotherapy or as part of a CCRT approach.

Aged↗

The development of monoclonal antibody therapy in leukemias.

Conventional cytotoxic management of leukemia has less than optimal results, while it is associated with life-threatening toxic effects due to lack of specificity for hematopoietic cells. Therefore, novel therapeutic strategies with monoclonal antibodies (MAbs) are being explored for delivering chemotherapy or radiation directly to malignant cells. Recently, anti-CD33 antibodies have been engineered to target malignant myeloid and immature normal cells and have been used to deliver cytotoxic agents or radiation to leukemic cells. 131I-labeled anti-CD45 antibodies are used in combination with conventional chemotherapy in leukemic patients receiving marrow transplantation. Additionally, the emergence of Rituximab (against CD20) and Campath-1H (against CD52) for chronic lymphocytic leukemia (CLL) has provided encouraging clinical results for the prognosis of this disease. In conclusion, there has been ongoing research indicating that the approach of patients with leukemia through the application of MAbs might be safer and more effective than current treatment. Considering the preliminary data, MAb therapy appears to be a new, promising weapon in the oncologist's armentarium.

Antibodies, Monoclonal↗

Effective targeting of solid tumors in patients with locally advanced cancers by radiolabeled pegylated liposomes.

The biodistribution and pharmacokinetics of (111)In-DTPA-labeled pegylated liposomes (IDLPL) were studied in 17 patients with locally advanced cancers. The patients received 65-107 MBq of IDLPL, and nuclear medicine whole body gamma camera imaging was used to study liposome biodistribution. The t(1/2beta) of IDLPL was 76.1 h. Positive tumor images were obtained in 15 of 17 studies (4 of 5 breast, 5 of 5 head and neck, 3 of 4 bronchus, 2 of 2 glioma, and 1 of 1 cervix cancer). The levels of tumor liposome uptake estimated from regions of interest on gamma camera images were approximately 0.5-3.5% of the injected dose at 72 h. The greatest levels of uptake were seen in the patients with head and neck cancers [33.0 +/- 15.8% ID/kg (percentage of injected dose/kg)]. The uptake in the lung tumors was at an intermediate level (18.3 +/- 5.7% ID/kg), and the breast cancers showed relatively low levels of uptake (5.3 +/- 2.6% ID/kg). These liposome uptake values mirrored the estimated tumor volumes of the various tumor types (36.2 +/- 18.0 cm3 for squamous cell cancer of the head and neck, 114.5 +/- 42.0 cm3 for lung tumors, and 234.7 +/- 101.4 cm3 for breast tumors). In addition, significant localization of the liposomes was seen in the tissues of the reticuloendothelial system (liver, spleen, and bone marrow). One patient with extensive mucocutaneous AIDS-related Kaposi sarcoma was also studied according to a modified protocol, and prominent deposition of the radiolabeled liposomes was demonstrated in these lesions. An additional two patients with resectable head and neck cancer received 26 MBq of IDLPL 48 h before undergoing surgical excision of their tumors. Samples of the tumor, adjacent normal mucosa, muscle, fat, skin, and salivary tissue were obtained at operation. The levels of tumor uptake were 8.8 and 15.9% ID/kg, respectively, with tumor uptake exceeding that in normal mucosa by a mean ratio of 2.3:1, in skin by 3.6:1, in salivary gland by 5.6:1, in muscle by 8.3:1, and in fat by 10.8:1. These data strongly support the development of pegylated liposomal agents for the treatment of solid tumors, particularly those of the head and neck.

Adult↗

Transcriptional control: an essential component of cancer gene therapy strategies?

The therapeutic index of cancer gene therapy approaches will, at least in part, be dictated by the spatial and temporal control of expression of the therapeutic transgenes. Strategies which allow precise control of gene transcription are likely to play a crucial role in the future pre-clinical and clinical development of gene therapy. In this review, we discuss these issues as they relate to tissue and tumor specific promoters. In addition, the exciting opportunities offered by the development of regulated gene expression systems using small molecules, radiation and heat are reviewed. It is realistic to expect that the future offers the prospect of amalgamating elements of a number of these different systems in a co-ordinated gene delivery approach with the potential to increase the efficacy and reduce the toxicity of treatment.

Allosteric Regulation↗

Pegylated liposome-encapsulated doxorubicin and cisplatin in the treatment of head and neck xenograft tumours.

PURPOSE: To evaluate the in vitro and in vivo activity of unencapsulated doxorubicin (DOX) and cisplatin (CDDP) and their pegylated liposome encapsulated counterparts (PLED and PLEC) in a subcutaneous model of human squamous cell cancer of the head and neck. METHODS: In vitro cytotoxicity was determined by means of the sulphorhodamine B assay and in vivo activity was assessed in terms of tumour growth delay following single intravenous doses of the various agents. Treatment-related toxicity was evaluated by means of serial weight measurement. RESULTS: The IC(50) values for DOX (12.1-fold) and CDDP (21.5-fold) were lower than for their liposome-encapsulated counterparts. When the two unencapsulated agents were compared, the IC(50) value for DOX was 16-fold lower than that for CDDP. In the in vivo studies, liposomes containing DTPA (PLEDTPA) exerted no effect on KB xenograft tumours when compared to untreated controls (P > 0.1). PLED was significantly more effective than DOX at doses of 2 mg/kg, 4 mg/kg and 8 mg/kg (P < 0.001 for all comparisons). At the 8 mg/kg dose, 7/13 animals treated with PLED were free of disease at 60 days, compared to 0/12 treated with DOX. PLEC displayed superior activity in comparison to CDDP at the 4 mg/kg dose level (P < 0.001), although at doses of 2 mg/kg and 10 mg/kg this comparison only reached borderline statistical significance (0.1 > P > 0.05). The highest dose level of 20 mg/kg was fatal to all animals in the CDDP group but well-tolerated by the animals in the PLEC group. On the basis of serial weight measurements, both PLED and PLEC were shown to be tolerated better than DOX and CDDP. CONCLUSION: Both PLED and PLEC were shown to exert significant activity against head and neck xenograft tumours, with PLED showing particular efficacy.

Animals↗

The role of E-cadherin-catenin complex: more than an intercellular glue?

It is now widely recognized that alterations in the adhesion properties of neoplastic cells may play a pivotal role in the development and progression of the malignant phenotype in a range of tumor types. The cadherins and catenins, being the prime mediators of cell-cell adhesion, are intimately involved in the control of morphological differentiation and cellular proliferation; loss of their intercellular function allows malignant cells to escape from their site of origin, degrade the extracellular matrix, acquire a more motile and invasive phenotype, and, finally, invade and metastasize. In addition to participating in tumor invasiveness and metastasis, the E-cadherin-catenin complex is fundamental for the establishment and maintenance of multicellular organisms and regulates or significantly contributes to a variety of functions, including signal transduction, cell growth, differentiation, site-specific gene expression, morphogenesis, immunologic function, cell motility, wound healing, and inflammation. We reviewed the role of the E-cadherin-catenin complex in tumor development and presented the potential clinical applications of these molecules.

Animals↗