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Biomedical subjects

C Fontolliet

Publications and source records attributed to C Fontolliet.

At least 37 records · Page 2Linked to original sources

Field cancerisation and polyclonal p53 mutation in the upper aero-digestive tract.

Field cancerisation of the aerodigestive tract is caused by chronic exposure to alcohol and tobacco, but the nature of the genetic alterations preceding overt malignancy is unknown. To identify potential field changes we have used a functional assay which tests the transcriptional competence of human p53 expressed in yeast. To increase the sensitivity and reliability of the technique for samples containing under 20% mutant p53, the 5' and 3'-ends of the p53 cDNA were examined separately. With this split form of the assay the tissue p53 mRNA acts as its own control for RNA quality. Mutations were detected in 87% (46/53) of tumours, reflecting the high sensitivity of the technique. Multiple biopsies of histologically normal tissue from the upper aero-digestive tract were tested and clonal p53 mutations were identified in 76% (38/50) of biopsies from patients presenting with multiple tumours compared with 32% (38/117) of biopsies from patients presenting with single tumours (P<0.000001). All patients (16/16) presenting with multiple tumours had at least one positive biopsy, compared with only 53% (19/36) of patients presenting with single tumours (P <0.001). This defines expansion of multiple clones of mutant p53-containing cells as an important biological mechanism of field cancerisation, and provides a means to identify patients likely to benefit from intensive screening for the development of new head and neck tumours.

Adult↗

Photodynamic therapy for early squamous cell carcinomas of the esophagus, bronchi, and mouth with m-tetra (hydroxyphenyl) chlorin.

OBJECTIVE: To clinically evaluate a new photosensitizer, m-tetra(hydroxyphenyl) chlorin (m-THPC), for the photodynamic therapy of early squamous cell carcinomas of the upper aerodigestive tract. DESIGN: Phase 1 included evaluation of the innocuousness of the compound after intravenous injection (control of vital parameters and blood analysis before and after injection) and evaluation of the duration of skin photosensitization. Phase 2 included assessment of optimal conditions for treatment (injected dose, drug-light interval, light dose, wavelength, etc), on 33 early squamous cell carcinomas of the mouth, esophagus, and bronchi, with a mean follow-up of 14 months; irradiation tests on healthy and neoplastic mucosae to determine the irradiation conditions that lead to tumor eradication with minimal damage to the surrounding normal mucosa and muscle layers; and localization of the dye in various tissue compartments and cells at different time intervals after the injection of the photosensitizer, by using a fluorescence microscope to analyze 46 biopsy specimens taken during the treatment sessions and 8 resected specimens of early cancers, excised with the carbon dioxide laser. SETTING: Endoscopic medical center of an otolaryngology-head and neck surgery department. PATIENTS: Twenty-five patients treated previously for a head and neck cancer with a synchronous or metachronous early second primary cancer. Patients with porphyria were excluded from the trial. RESULTS: The best results in the bronchi and mouth were obtained with an injected dose of 0.15 mg of m-THPC per kilogram of body weight 4 days before irradiation. The fluence was 7 to 16 J/cm2, and the fluence rate was between 100 and 150 mW/cm2 using red light at 652 nm. In the esophagus, green light at 514 nm is preferred to the red light to avoid fistulas. Optimal irradiation conditions at this wavelength, which was also used in the trachea, were found at a fluence of 75 to 100 J/cm2 and a fluence rate between 70 and 100 mW/cm2. Of 33 lesions treated thus far by photodynamic therapy with m-THPC, 28 show no recurrence with a mean follow-up of 14 months. Photosensitivity to sunlight does not exceed 6 weeks. CONCLUSIONS: m-Tetra(hydroxyphenyl) chlorin is a second-generation photosensitizer that has several significant advantages as compared with the first-generation porphyrin mixtures hematoporphyrin derivative and porfimer sodium (Photofrin II). It is a pure compound that is 100 times more phototoxic at 652 nm and 10 times more photoxic at 514 nm, has better selectivity for early carcinomas, and a shorter duration of skin photosensitivity. The therapeutic results indicate a recurrence rate that is similar to that obtained with Photofrin II, ie, about 15%.

Antineoplastic Agents↗

Germ-line mutations of the p16INK4(MTS1) gene occur in a subset of patients with hepatocellular carcinoma.

The molecular mechanisms of hepatocarcinogenesis are poorly understood. Only very recently has there been a suggestion of familial hepatocellular carcinoma (HCC). We have analyzed the status of the p16INK4(MTS1) gene, a cyclin-dependent kinase inhibitor, in 26 patients with HCC of different etiologies. Four patients carried hemizygous germ-line point mutations of the p16INK4(MTS1) gene, suggesting the existence of familial HCC involving this gene. The wild-type allele was lost in the tumor in 2 of these 4 patients. Three of the patients carrying a germ-line mutation had non-cirrhosis-associated HCC. No somatic mutations of p16INK4(MTS1) were observed in the 26 cases of HCC. The most common somatic alteration of the p16INK4(MTS1) gene in HCC was de novo methylation, which was detected in 48% of the cases. Low levels (21%) of p16INK4(MTS1) gene allele loss were observed. Altogether, these results indicate that alteration of the p16INK4(MTS1) gene plays an important role in the genesis of HCC.

Adult↗

Photodynamic therapy of early squamous cell carcinoma with tetra(m-hydroxyphenyl)chlorin: optimal drug-light interval.

The optimal drug-light interval for effective photodynamic therapy (PDT) of early squamous cell carcinomas was evaluated with tetra(m-hydroxyphenyl)chlorin (mTHPC) by means of two complementary modalities: irradiation tests and ex vivo fluorescence microscopy. A Syrian hamster cheek pouch tumour model was used in these experiments. Photodynamic therapy on both tumour-bearing and contralateral healthy cheek pouch mucosae was performed at 650 nm and 514 nm. Light doses of 12 J cm(-2) were delivered at a light dose rate of 150 mW cm(-2) and light doses of 80 J cm(-2) were delivered at a light dose rate of 100 mW cm(-2) respectively, at these two wavelengths, between 6 h and 12 days after the injection of 0.5 mg kg(-1) body weight mTHPC. Two histologically different types of tissue damage were observed: first, a non-selective and non-specific ischaemic vascular necrosis for the cases in which PDT took place during the first 48 h after the injection of the dye and, second, tissue-specific PDT damage, as a coagulation necrosis, when PDT took place more than 72 h after injection of the dye. The time-dependent biodistribution of mTHPC investigated by fluorescence microscopy shows a weak and non-significant difference in relative fluorescence intensities between early SCC and healthy mucosae. Up to 2 days after the injection, the drug is mainly localized in the endothelial cells of the blood vessels. After this period, the dye accumulates in the squamous epithelia with a concentration peaking at 4 days. At all time points, a weak fluorescence intensity is observed in the underlying lamina propria and striated muscle. The information obtained from these studies could well be relevant to clinical trials as it suggests that time delays between 4 and 8 days after i.v. injection should be optimal for PDT of early malignancies in hollow organs.

Animals↗

Measurements by fluorescence microscopy of the time-dependent distribution of meso-tetra-hydroxyphenylchlorin in healthy tissues and chemically induced "early" squamous cell carcinoma of the Syrian hamster cheek pouch.

The influence of the time interval between dye administration and detection by fluorescence microscopy was assessed in "early" squamous cell carcinomas of the cheek pouch mucosa and different healthy tissues of the Syrian hamster. Following intracardiac injection of 0.15 mg (kg bodyweight)-1 of meso-tetra-hydroxyphenylchlorin (m-THPC), groups of three animals were sacrificed at different time intervals up to 30 days. A group of three non-injected animals was used to detect the endogene fluorescence of the corresponding normal tissues for autofluorescence subtraction. The following excised organs (oesophagus, trachea, liver, spleen, kidney, skin, striated muscle, healthy and tumoral cheek pouch mucosae) were fast frozen in liquid nitrogen and stored at -70 degrees C for fluorescence microscopy. The results show significant differences in the detectable m-THPC levels in different tissue layers (for instance, the epithelia and muscle of the oesophagus, trachea and cheek pouch) at different time intervals. These data indicate that pharmacokinetic studies may be useful for selecting the optimal time for the photodetection and phototherapy of cancer.

Animals↗

7,12-dimethylbenz[a]anthracene-induced 'early' squamous cell carcinoma in the Golden Syrian hamster: evaluation of an animal model and comparison with 'early' forms of human squamous cell carcinoma in the upper aero-digestive tract.

To test and optimize photodynamic therapy of early cancers in the upper aero-digestive tract and oesophagus, we sought an appropriate animal model, which was found in the 7,12-dimethylbenz[a]anthracene-induced early squamous cell carcinoma in the Golden Syrian hamster. This chemically induced neoplasm is shown, by histology and immunohistochemistry, to pass through similar stages of early cancer development as its human counterpart. Its time sequence is highly reproducible, leading to a well differentiated carcinoma in situ and microinvasive carcinoma in the hamster cheek pouch over a period of 10 weeks.

9,10-Dimethyl-1,2-benzanthracene↗

Photodynamic therapy for cancer of the upper aerodigestive tract using tetra(m-hydroxyphenyl)chlorin.

A major step in the development of photodynamic therapy (PDT) is the clinical optimization and evaluation of new photosensitizers (PS). Ideally, new compounds should be more effective and/or induce fewer side effects than the first generation PS such as hematoporphyrin derivative and Photofrin. We report the results of our study of PDT applied in the human upper aerodigestive tract, using tetra(m-hydroxyphenyl)chlorin (mTHPC) as the photosensitizing drug. Twenty-seven patients with early (i.e., in situ or microinvasive) squamous cell carcinomas and 4 patients with T1 or T2 cancers were studied. In most cases, illumination of the tumor was performed 4 days after i.v. injection of 0.15 mg/kg of mTHPC using 652 or 514 nm laser light. Of the 36 early tumors evaluated 30 (83%) showed no recurrence after a mean disease-free follow-up of 15.3 months (3-35 months). Of the T1 and T2 cancers, only one achieved a complete response. Major complications, all following red light illuminations, included 1 bronchial stenosis, 1 esophagotracheal fistula, and 2 probable occult perforations of the esophagus. PDT in the esophagus with green light renders such perforations essentially impossible, without, however, reducing the efficacy of the treatment. Skin photosensitization, never observed later than the first week after injection, was seen in 12 patients. In conclusion, photodynamic therapy with mTHPC is a safe and effective technique for the treatment of early carcinomas of the upper aerodigestive tract. Its efficacy is much lower for more advanced cancers.

Adult↗

In vivo fluence rate effect in photodynamic therapy of early cancers with tetra(m-hydroxyphenyl)chlorin.

Several parameters affect clinical trials in photodynamic therapy and influence the therapeutic outcome. Beside drug dose, light dose, drug-light interval and other variables, the fluence rate is a parameter that can influence the therapeutic results. In this study we have evaluated the fluence rate effect with a second-generation photosensitizer, tetra(m-hydroxyphenyl)chlorin (mTHPC) using a 7,12-dimethylbenz(a)anthracene induced early squamous cell carcinoma of the Syrian hamster cheek pouch as a tumor model. Following injection of 0.5 mg/kg of mTHPC, irradiation tests were performed at two drug-light intervals, 4 and 8 days. Wavelength and light dose were adapted from those applied routinely in clinical trials. Irradiations at 652 nm were carried out with fluences ranging from 8 to 20 J/cm2 delivered at fluence rates of 15 and 150 mW/cm2. Similar tests were also performed at 514 nm with a fluence of 80 J/cm2 delivered at fluence rates ranging from 25 to 125 mW/cm2. At both wavelengths and drug-light intervals for a given fluence, the higher fluence rates resulted in less tissue damage in tumor and healthy mucosae. However, the lower fluence rates yielded slightly less therapeutic selectivity. This study confirms that the fluence rate is of major importance in clinical PDT.

Animals↗

[Magnetic resonance imaging and x-ray computed tomography in advanced cancer of the oral cavity. A comparative clinical, radiological and morphological study].

The objective of this prospective study is to assess the impact of magnetic resonance imaging (MRI) and computed tomography (CT) as compared to physical examination in the choice of type of surgery for advanced intraoral cancers (with or without resection of the mandibula). From 1990 to 1993, we operated on 21 intraoral malignant tumors with segmental resection of the mandibula followed by a histological examination. The preoperative evaluation consisted of an MRI (n = 8), a CT (n = 8) or both (n = 5). MRI suspected an infiltration of the bone in 9 cases, CT in 4 and physical examination in 16. This was histologically confirmed in 6 of the 21 patients only. MRI and CT both have a high sensitivity, as does physical examination, but neither have a good specificity (physical examination: 5 true positive, 4 true negative, 11 false positive, 1 false negative; MRI: 4 true positive, 4 true negative, 5 false positive, 0 false negative; CT: 3 true positive, 7 true negative, 3 false positive, 0 false negative). In conclusion, the decision of a mandibular resection can only be taken after a careful physical examination, including palpation under general anesthesia in a fully relaxed patient. This is best accomplished during the pretherapy bronchoesophagoscopy, routinely performed for the detection of synchronous second primary tumors using toluidin blue as a vital staining method. If this initial evaluation gives a suspicion of a massive infiltration of the mandible, an MRI, rather than a CT, should be performed to determine the extent of the resection because of a high rate of artefacts with CT.

Adult↗