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Biomedical subjects

W R Hudgins

Publications and source records attributed to W R Hudgins.

At least 19 recordsLinked to original sources

Cytostatic activity of phenylacetate and derivatives against tumor cells. Correlation with lipophilicity and inhibition of protein prenylation.

The aromatic fatty acid phenylacetate, a common metabolite of phenylalanine, shows promise as a relatively non-toxic drug for cancer treatment. This slowly metabolized fatty acid alters tumor cell lipid metabolism causing, among other effects, inhibition of protein prenylation critical to malignant growth. In pursuit of more potent analogues, we have examined the activity of related compounds against tumor cell lines established from patients with advanced prostatic carcinoma, glioblastomas, and malignant melanoma. Like phenylacetate, derivatives containing alpha-carbon or ring substitutions induced cytostasis and phenotypic reversion at non-toxic concentrations. Potency was correlated with the degree of calculated lipophilicity of the aromatic fatty acid, and the extent of inhibition of protein prenylation. Remarkably, a parallel cytostatic activity was reported in embryonic plant cells, which respond to phenylacetate and its analogues in the same concentration range and the same rank order of lipophilicity. These data suggest that phenylacetate and its analogues may act through common mechanisms to inhibit the growth of vastly divergent, undifferentiated cell types, and provide a basis for the development of new agents for the treatment of human malignancies.

Antimetabolites, Antineoplastic

Cinnamic acid: a natural product with potential use in cancer intervention.

Cinnamic acid, a naturally occurring aromatic fatty acid of low toxicity, has a long history of human exposure. We now show that cinnamic acid induces cytostasis and a reversal of malignant properties of human tumor cells in vitro. The concentration causing a 50% reduction of cell proliferation (IC50) ranged from 1 to 4.5 mM in glioblastoma, melanoma, prostate and lung carcinoma cells. Using melanoma cells as a model, we found that cinnamic acid induces cell differentiation as evidenced by morphological changes and increased melanin production. Moreover, treated cells had reduced invasive capacity associated with modulation of expression of genes implicated in tumor metastasis (collagenase type IV, and tissue inhibitor metalloproteinase 2) and immunogenicity (HLA-A3, class-I major histocompatibility antigen). Further molecular analysis indicated that the anti-tumor activity of cinnamic acid may be due in part to the inhibition of protein isoprenylation known to block mitogenic signal transduction. The results presented here identify cinnamic acid as a new member of the aromatic fatty acid class of differentiation-inducers with potential use in cancer intervention.

Antineoplastic Agents

Transcriptional upregulation of TGF-alpha by phenylacetate and phenylbutyrate is associated with differentiation of human melanoma cells.

The aromatic fatty acids phenylacetate (PA) and phenylbutyrate (PB) induce tumour cell differentiation in experimental models and both are currently in clinical trials. The purpose of this study was to determine the effect of these antitumour agents on the expression of transforming growth factor-alpha (TGF-alpha) in neoplastic cells. Treatment of human melanoma 1011 cultures with either PA or PB caused over 40-fold increase in TGF-alpha biosynthesis and secretion into the media. Whereas elevation in TGF-alpha mRNA steady-state levels became evident within 6-12 h and reached peak quantities the following day, the amounts of its coded protein increased gradually over a period of 5 days of treatment. Further molecular analysis revealed that regulation of TGF-alpha expression occurred at the transcriptional level. In contrast to TGF-alpha, expression of its receptor remained below detectable levels, indicating that an autocrine loop involving this growth factor is unlikely. Interestingly, the increase in TGF-alpha production paralleled drug-induced cytostasis and differentiation defined by morphological changes and increased melanogenesis. Like PA and PB, other differentiation inducers such as all-trans-retinoic acid, dimethyl sulfoxide, and 5-aza-2'-deoxycytidine, all induced TGF-alpha expression in the melanoma cells. The close association between enhanced TGF-alpha production and melanoma cell differentiation suggests that this growth factor, often linked to mitogenesis, may play a novel role in tumour differentiation by PA and PB.

Antineoplastic Agents

A multi-institutional experience with stereotactic radiosurgery for solitary brain metastasis.

PURPOSE: A multi-institutional experience in radiosurgery for solitary brain metastases was combined to identify factors associated with safety, efficacy, tumor control, and survival. MATERIALS AND METHODS: A review of 116 patients with solitary brain metastases who underwent gamma knife stereotactic radiosurgery at five institutions was performed. The median follow-up was 7 months following radiosurgery and 12 months following diagnosis. Minimum tumor doses varied from 8-30 Gy (mean, 17.5 Gy). Forty-five patients failed prior radiotherapy and 71 had no prior brain irradiation. Fifty-one patients had radiosurgery alone and 65 underwent combined radiosurgery with fractionated large-field radiotherapy (mean dose, 33.8 Gy). RESULTS: Median survival was 11 months after radiosurgery and 20 months after diagnosis. Follow-up documented local tumor control in 99 patients (85%), tumor recurrence in 17 (15%), and documented radiation necrosis in one (1%). The 2-year actuarial tumor control rate was 67 +/- 8%. Tumor histology affected survival (better for breast cancer, p = .004) and local control (better for melanoma and renal cell, p = .0003) in multivariate analyses. Combined fractionated radiotherapy and radiosurgery improved local control (p = 0.111), but not survival in multivariate testing. CONCLUSION: Radiosurgery is effective in controlling solitary brain metastases with low morbidity. Further study is needed to better define optimum treatment parameters for radiosurgery.

Adult

Selective activity of phenylacetate against malignant gliomas: resemblance to fetal brain damage in phenylketonuria.

Phenylacetate, a deaminated metabolite of phenylalanine, has been implicated in damage to immature brain in phenylketonuria. Because primary brain tumors are highly reminiscent of the immature central nervous system, these neoplasms should be equally vulnerable. We show here that sodium phenylacetate can induce cytostasis and reversal of malignant properties of cultured human glioblastoma cells, when used at pharmacological concentrations that are well tolerated by children and adults. Treated tumor cells exhibited biochemical alterations similar to those observed in phenylketonuria-like conditions, including selective decline in de novo cholesterol synthesis from mevalonate. Because gliomas, but not mature normal brain cells, are highly dependent on mevalonate for production of sterols and isoprenoids vital for cell growth, sodium phenylacetate would be expected to affect tumor growth in vivo while sparing normal tissues. Systemic treatment of rats bearing intracranial gliomas resulted in significant tumor suppression with no apparent toxicity to the host. The data indicate that phenylacetate, acting through inhibition of protein prenylation and other mechanisms, may offer a safe and effective novel approach to treatment of malignant gliomas and perhaps other neoplasms as well.

Animals

Differentiation of cultured human melanoma cells induced by the aromatic fatty acids phenylacetate and phenylbutyrate.

The increasing incidence of melanoma and the poor responsiveness of disseminated disease to conventional treatments call for the development of new therapeutic approaches. Phenylacetate, a nontoxic differentiation inducer, can suppress the growth of other neuroectodermal tumors, i.e., gliomas, in laboratory models and in humans. This finding led us to explore the efficacy of phenylacetate and related aromatic fatty acids in melanoma. Phenylacetate and phenylbutyrate were found to a) induce selective cytostasis and maturation of cultured human melanoma cells, b) modulate the expression of genes implicated in tumor metastasis (type IV collagenase and tissue inhibitor of metalloproteinases-2) and immunogenicity (HLA class I); and c) enhance the efficacy of other agents of clinical interest, including retinoids, interferon-alpha, suramin, and 5-aza-2'-deoxycytidine. Reflecting on the phenotypic heterogeneity of melanoma, the degree of biologic alterations induced by phenylacetate/phenylbutyrate varied significantly among the tumor cell lines tested. Although losing invasive capacity and tumorigenicity in athymic mice, poorly differentiated cells exhibited only a marginal change in morphology, remained amelanotic, and resumed growth after treatment was discontinued. By contrast, treatment of melanoma cells that were in a more advanced stage of maturation resulted in profound alterations in cell growth, morphology, and pigmentation consistent with terminal differentiation. The in vitro antitumor activity was observed with nontoxic, pharmacologic concentrations of phenylacetate and phenylbutyrate, suggesting potential clinical use of these drugs in the treatment of melanomas.

Antineoplastic Agents

Patients' attitude about outcomes and the role of gamma knife radiosurgery in the treatment of vestibular schwannomas.

In one strategy for the treatment of unilateral vestibular schwannomas measuring up to 3 cm in diameter, decision analysis shows that gamma knife radiosurgery has probabilistic dominance over microsurgical resection. That is, radiosurgery produces better results for any value assigned to treatment outcomes (ranked from best to worst) of the following: no complications, hearing loss only, residual/recurrent tumor, facial paralysis, major disability, or death. This little-known principle of decision analysis will be explained. It implies that when patients prefer the preservation of facial nerve function, even if that requires leaving a tumor remnant, then gamma knife radiosurgery is a better treatment strategy than microsurgical resection.

Decision Support Techniques

Decision analysis of the treatment of AVMs with radiosurgery.

Decision analysis uses a tree-like diagram to describe treatment outcomes, the likelihood and value of which are obtained from the literature. A personal computer program entitled 'D-Tree' was used to compare radiosurgery to both microsurgery and nonoperative management of cerebral arteriovenous malformations (AVMs). The results indicated that radiosurgery is the treatment of choice for all AVMs up to 3 cm in diameter, not just those considered inoperable. Sensitivity analysis, to show the effect on treatment preference of a range of assumptions concerning outcome probabilities and values, suggested that for microsurgery to provide more years of life expectancy than radiosurgery, the obliteration rate of radiosurgery should be less than 60%. If the radiosurgical obliteration rate is 85%, then microsurgery must have a zero mortality and morbidity rate to equal the results of radiosurgery.

Adult

Glycosylated insulin-like growth factor II promoted expansion of granulocyte-macrophage colony-forming cells in serum-deprived liquid cultures of human peripheral blood cells.

This report presents the results of studies investigating the effect of a glycosylated form of insulin-like growth factor II with an apparent molecular weight of 15,000 (appM(r) = 15K IGF-II) and one with a molecular weight of 7500 (M(r) = 7.5K IGF-II) on the expansion of granulocyte-macrophage colony-forming cells (GM-CFC) in human peripheral blood cells. Blood cells were enriched for GM-CFC and other CFCs, and liquid cultures of these cells were established in serum-deprived medium supplemented with either interleukin-3 (IL-3) alone (no insulin or IGF added to the medium) or with IL-3 plus M(r) = 7.5K recombinant (r) IGF-II or appM(r) = 15K IGF-II. After incubation for 3 days or 1 week, the blood cells were subcultured in plasma clots, and the number of colonies detected at 7 days (D7) and at 14 days (D14) was used to calculate the number of D7 GM-CFC and D14 GM-CFC. The number of GM-CFC in liquid cultures of blood cells incubated for 3 days with IL-3 alone was similar to the number added at day 0. By 1 week, the number of D14 GM-CFC and D7 GM-CFC had increased to 3.5 +/- 0.9-fold (p = .03) and two- to 50-fold (p = .04) of the number at day 3, respectively. There were 1.5- to six-fold more D7 GM-CFC in cultures of blood cells incubated for 1 week with IL-3 plus either 100 ng/mL M(r) = 7.5K IGF-II or 200 ng/mL appM(r) = 15K IGF-II than after incubation with IL-3 alone. appM(r) = 15K IGF-II also promoted a two-fold increase in the number of D14 GM-CFC. appM(r) = 15K IGF-II promoted a greater increase in D14 GM-CFC than incubation with IL-3 alone even for blood samples in which M(r) = 7.5K IGF-II did not promote such an increase. The results of these studies demonstrate that physiologic concentrations of appM(r) = 15K IGF-II and M(r) = 7.5K IGF-II increased the number of GM-CFC more than IL-3 alone and suggest that appM(r) = 15K IGF-II was more potent than M(r) = 7.5K IGF-II in augmenting IL-3-induced expansion of GM-CFC in serum-deprived liquid cultures of peripheral blood cells.

Blood Cells

The identification of O-glycosylated precursors of insulin-like growth factor II.

A procedure that combined ion exchange, gel permeation, and insulin-like growth factor-binding protein 3 (IGF-BP-3) affinity chromatography with chromatofocusing and reversed-phase high pressure liquid chromatography was used to isolate high molecular weight precursors of human insulin-like growth factor II (IGF-II) from acetic acid extracts of Cohn fraction IV1. Two precursors had isoelectric points (pI) of 5.1 and 5.4 and apparent Mr values of 15,000 and 11,500, respectively. An apparent Mr = 16,000 RLPG/Ser29 variant of IGF-II was also identified in the acetic acid extracts. Amino-terminal amino acid sequencing of the major E domain-containing peptide that had been isolated from apparent Mr = 15,000 IGF-II (pI 5.1), following its digestion with the endoprotease Lys-C, indicated the carboxyl terminus of this precursor was near or at Lys88. During the sequencing of this peptide, a sharply reduced yield of derivatized amino acid occurred at cycle 10, indicating that Thr75 had been posttranslationally modified, possibly by O-glycosylation. To evaluate this possibility, the 125I-labeled high molecular weight IGF-IIs and their endoprotease-generated peptides were treated with glycosidases, and their effects were determined from the change in relative mobilities of the polypeptide and peptides during sodium dodecyl sulfate-polyacrylamide gel electrophoresis. Neuraminidase treatment of apparent Mr = 15,000 and 11,500 IGF-II reduced their Mr values to a common value of 10,500. When the desialylated precursors of IGF-II were treated with O-glycosidase, but not when treated with N-glycosidase, the Mr values were reduced further to about 10,000. This was the Mr value that would be predicted for an unglycosylated form of precursor IGF-II that had a carboxyl-terminal end at or near Lys88. When the Ser66-Lys88 endoprotease-generated E domain peptides from pI5.1 and 5.4 high Mr IGF-II were treated with the glycosidases, they had relative mobility changes during sodium dodecyl sulfate-polyacrylamide gel electrophoresis that were similar to those of the intact precursors. Finally, the association of O-linked oligosaccharide with the E domain peptide of IGF-II was confirmed by demonstrating the specificity of binding of the Ser66-Lys88 asialoglycopeptide to jackfruit lectin.

Amino Acid Sequence

Comparison of urinary transforming growth factor-alpha in women with disseminated breast cancer and healthy control women.

In an effort to explore the use of polypeptide growth factors as potential markers for cancer detection, we have identified the presence of transforming growth factor-alpha (TGF-alpha) in pooled urine of patients with metastatic breast cancer by a commercial radioimmunoassay (RIA) based on a rabbit antiserum raised to the C-terminal 17aa synthetic fragment of rat TGF-alpha. This TGF-alpha RIA detected both high molecular weight (HMW) and low molecular weight (LMW) forms of TGF-alpha in the conditioned media of a breast cancer cell line (MDA-MB-231) and in the urine of healthy women and those with breast cancer. The ratio of HMW to LMW species of TGF-alpha by RIA after Bio-Gel P-100 chromatography was approximately equal in pooled urine samples from both healthy women and those with breast cancer, and in the conditioned media from the cell line MDA-MB-231. Using established procedures for concentrating urinary proteins from 24-h urine samples by adsorption onto methyl-bonded microparticulate silica and selective elution by acetonitrile, TGF-alpha RIA results from women with disseminated breast carcinoma were compared with those of healthy pre- and post-menopausal control women. Analysis indicated a median TGF-alpha value of 981 ng/g urinary creatinine for urine samples from cancer patients (range 608 to 1737) and 642 ng/g creatinine (range 417 to 941) for control urine samples. Although the difference was statistically significant (p less than 0.05), urinary TGF-alpha detection with this assay method appears to have limited usefulness as a diagnostic marker for metastatic human adenocarcinoma of the breast.(ABSTRACT TRUNCATED AT 250 WORDS)

Biomarkers, Tumor

The gamma knife.

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Arteriovenous Malformations

Variant forms of rat epidermal growth factor present in the urine of nude rats bearing human tumors.

Epidermal growth factor (EGF) receptor-binding peptides from the urine of tumor patients have been reported to differ in molecular weight and relative hydrophobicity from those of normal individuals. Nude rats bearing human large cell lung carcinomas or chondrosarcomas and non-tumor-bearing sibling control rats were used to investigate the contributions of tumor and host to urinary EGF-related peptide growth factors. Peptides were adsorbed from urine onto methyl-bonded silica and eluted according to their relative hydrophobicity by a stepwise gradient of aqueous acetonitrile. Total EGF receptor-binding activity relative to urinary creatine was elevated in the urine of only one group of tumor-bearing rats. However, the proportion of relatively hydrophilic activity was increased markedly in all three groups of tumor-bearing rats. Rats bearing a large cell lung cancer excreted unusually hydrophilic Mr 6000 peptides that were chromatographically similar to transforming growth factor alpha on reverse phase high performance liquid chromatography but proved to be rat EGF by radioimmunoassay (RIA). EGF receptor-binding activity that was common to the urine of tumor-bearing animals regardless of tumor type, but more hydrophilic than that from control rats, had Mr 60,000, 30,000, 12,000, and 4,000 to 7,000 components. All reacted fully in the rat EGF RIA and were negative for human EGF and transforming growth factor alpha by RIA. A more hydrophobic fraction of EGF receptor-binding activity, common to control and tumor-bearing animals, contained Mr 33,000, 5,000 to 7,000, and 2,000 to 5,000 components. High performance liquid chromatography and gel electrophoresis of the Mr 33,000 activity revealed a high molecular weight rat EGF comparable to that reported in human urine. No human EGF or transforming growth factor alpha was detected by RIA in any of the active fractions from tumor-bearing rat urine. Thus, all EGF receptor-binding activity appeared to derive from rat EGF produced by the rat host and not by the xenografted tumors.

Animals

Urinary TGFs1 in neoplasia: immunoreactive TGF-alpha in the urine of patients with disseminated breast carcinoma.

A tumor-associated growth factor was identified in a 22-liter pool of urine from patients with disseminated breast cancer using an isolation scheme which separates transforming growth factor-alpha (TGF-alpha) from the high level of human epidermal growth factor (hEGF) normally present in urine. Concentration of urinary proteins by adsorption onto methyl bonded microparticulate silica, selective elution by acetonitrile, and subsequent gel permeation, cation exchange, and high performance liquid chromatography, resolved an EGF-related growth factor which generated a competitive binding curve similar to that of synthetic rat TGF-alpha in radioimmunoassay. A 26-liter pool of urine from normal subjects, evaluated in the same manner as a part of another study, did not contain measureable quantities of this factor.

Adenocarcinoma