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Biomedical subjects

E B Douple

Publications and source records attributed to E B Douple.

At least 19 recordsLinked to original sources

Irradiation enhances cellular uptake of carboplatin.

PURPOSE: Because radiation is known to damage cellular membranes, the purpose of this study was to determine whether irradiation of cultured cells might modify the cellular uptake of the chemotherapy agent carboplatin. METHODS AND MATERIALS: Total intracellular platinum was measured using atomic absorption spectrometry in cultured V79 cells and in four Chinese hamster ovary (CHO) cell lines. RESULTS: Intracellular carboplatin concentrations increased linearly with radiation dose (10-50 Gy) under both hypoxic and oxic irradiation conditions. Similar doses of radiation did not significantly increase the uptake of a nontoxic platinum compound [Pt(NH3)4Cl2.H2O] (p > 0.5). Compared to unirradiated controls, there was no increase in intracellular carboplatin concentrations when carboplatin was irradiated prior to administration to the cell cultures (p > 0.5). Within the 32.5 min or less required to deliver the radiation, a dose of 50 Gy produced approximately a 50% increase in intracellular platinum in V79 cells and approximately an increase of a factor of 1.3-1.6 in the CHO cell lines. Although the increase in drug uptake would be expected to be less than 10% for most cell lines at the doses of radiation used to investigate radiosensitization by carboplatin, this level of increase may play a significant role in the radioenhancement observed in UV41 cells because these excision-repair--deficient cells are much more sensitive to carboplatin as measured by cytotoxicity. CONCLUSION: These results suggest that some of the enhanced cell killing that results when cells are exposed to carboplatin in combination with radiation may be attributed to an increased cellular uptake. One mechanism of radiopotentiation may be an enhanced chemotoxicity resulting from a radiation-induced increase in carboplatin uptake.

Animals

Enhanced radiation-induced cell killing by carboplatin in cells of repair-proficient and repair-deficient cell lines.

The objective of this study was to determine whether a deficiency for either one of two repair processes influences the phenomenon of enhancement of radiation-induced cell killing by carboplatin which has been reported previously in one cell line (V79) and which is presumably a result of an interaction between these two therapeutic modalities. Cell killing was enhanced in cells of four cell lines when the cells were exposed to carboplatin before and during irradiation in either air or hypoxia. In cell lines proficient in both excision repair and DNA double-strand break repair (K1 and AA8), and in a cell line deficient in nucleotide excision repair (UV41), the enhancement was characterized as both a reduction in the shoulder region of the survival curves indicated by a reduced Dq and a reduction in D0 in the terminal region of the survival curves determined for cells exposed in air and under hypoxic conditions. Only the latter effect was observed in a cell line deficient in DNA double-strand break repair (xrs-5). The survival curves were fitted to the data using the repair saturation model and a computer program developed by N. Albright (Radiat. Res. 118, 112-130, 1989). In hypoxia, the reductions in Dq were as great as from 7.0 Gy to 2.1 Gy, 3.3 Gy to 0 Gy and 1.7 Gy to 0 Gy for K1, AA8 and UV41 cells, respectively. Sensitizer enhancement ratios ranged from 1.3 to 1.7 and were similar for irradiation in air and under hypoxic conditions. This enhanced cell killing by carboplatin combined with radiation required levels of the drug sufficient to produce cytotoxicity by the drug alone as exemplified by the UV41 cell line, which is intrinsically sensitive to carboplatin and in which 1/30 of the drug concentration required for the other cell lines produced an enhanced cell killing at an equitoxic dose of only 5 microM.

Animals

Carboplatin enhances the production and persistence of radiation-induced DNA single-strand breaks.

Fluorometric analysis of DNA unwinding and alkaline elution were used to investigate the production and persistence of DNA single-strand breaks (SSBs) in Chinese hamster V79 and xrs-5 cells treated with the chemotherapeutic agent carboplatin in combination with radiation. Carboplatin was administered to cells before irradiation in hypoxic conditions, or the drug was added immediately after irradiation during the postirradiation recovery period in air. The results of DNA unwinding studies suggest that carboplatin enhances the production of radiation-induced SSBs in hypoxic V79 cells and xrs-5 cells by a factor of 1.86 and 1.83, respectively, when combined with radiation compared to the SSBs produced by irradiation alone. Carboplatin alone did not produce a measurable number of SSBs. Alkaline elution profiles also indicated that the rate of elution of SSBs was higher in cells treated with the carboplatin-radiation combination in hypoxia when compared to irradiation alone, resulting in an increased yield of radiation-induced SSBs by a factor of 1.46 in V79 cells with 20 Gy irradiation and by a factor of 2.02 in xrs-5 cells with 20 Gy irradiation. When carboplatin is present after irradiation and during the postirradiation recovery period, the rejoining of radiation-induced SSBs is inhibited during this postirradiation incubation period (radiopotentiation) with a relative inhibition factor at 1 h postirradiation of 1.25 in V79 cells and 1.15 in xrs-5 cells. An increased production and persistence of SSBs resulting from the interaction of carboplatin with radiation may be an important step in the mechanism responsible for the potentiated cell killing reported previously from studies in animal tumors and in cultured cells.

Animals

Production of DNA double-strand breaks by interactions between carboplatin and radiation: a potential mechanism for radiopotentiation.

The production of DNA double-strand breaks (DSBs) was studied in cells of four CHO cell lines under conditions where combining radiation with carboplatin enhanced cell killing (radiosensitization and radiopotentiation). The cell lines included repair-proficient (AA8 and K1), excision repair-deficient (UV41) and DSB repair-deficient (xrs-5) cells. Double-strand breaks were analyzed by neutral elution either immediately after or 4 h after a single 55-Gy radiation dose delivered under hypoxic conditions. Carboplatin (1 mM) combined with radiation produced a small increase in DSBs compared to radiation alone immediately after irradiation in AA8, UV41 and xrs-5 cells. However, the yield of DSBs in AA8, K1 and xrs-5 cells was significantly higher 4 h after carboplatin-radiation treatment; no such increase was found at 4h in UV41 cells. Strand scission factors (SSFs) were calculated as SSF = -log [percentage DNA remaining on filter at 8 h elution (treated cells)/percentage DNA remaining at 8 h elution (untreated cells)]. The ratios of the SSF at 4 h to 0 h postirradiation for carboplatin-treated cells were 13.7 for K1, 4.9 for xrs-5, 2.5 for AA8 and 1.2 for UV41 cells. These results support a possible explanation for the enhanced killing of irradiated cells by platinum chemotherapeutic agents, namely enhanced production of DSBs.

Animals

Effects of cis-diamminedichloroplatinum II released from D,L-polylactic acid implanted adjacent to cortical allografts in dogs.

This study was performed to determine the pharmacokinetics and local and systemic effects of cis-diamminedichloroplatinum II (cisplatin) released from an open-cell polylactic acid polymer when the drug delivery device was placed adjacent to a cortical allograft. Bilateral intercalary femoral allografts were implanted in six normal beagles. The polymer containing cisplatin was implanted adjacent to the allograft in one femur, and the polymer without cisplatin was implanted adjacent to the allograft in the contralateral femur. Systemic toxicity was evaluated clinically by hematologic and serum biochemistry tests and urinalysis. Healing of the allograft was monitored radiographically. The femora were evaluated biomechanically, histologically, and histomorphometrically 7.5 months after surgery. Total serum platinum levels were measured by atomic absorption spectrophotometry, and pharmacokinetic parameters were calculated. Healing was impaired slightly by the presence of the polymer with cisplatin, and systemic and local toxicity was mild and transient. After implantation of the polymer with cisplatin, the mean peak total serum platinum concentration was low (1.71 +/- 0.19 micrograms/ml). However, the area under the curve for total serum platinum concentration versus time for the first 21 days was large (27,050 +/- 3,201 micrograms.min/ml). When cisplatin was given as an intravenous bolus at a dose of 70 mg/m2 to six other beagles, the mean peak total platinum concentration was 8.80 +/- 2.1 micrograms/ml and the area under the curve was 940.3 +/- 256.7 micrograms.min/ml. These results indicate that a sustained release of cisplatin can be delivered safely from an open-cell polylactic acid polymer. This device may be useful in the treatment of solid tumors.

Animals

Theoretical and experimental analysis of air cooling for intracavitary microwave hyperthermia applicators.

An intracavitary microwave antenna array system has been developed and tested for the hyperthermia treatment of prostate cancer at Thayer School of Engineering and Dartmouth-Hitchcock Medical Center. The antenna array consists of a choked dipole antenna inserted into the urethra and a choked dipole antenna eccentrically embedded in a Teflon obturator inserted into the rectum. To prevent unnecessary heating of the healthy tissue that surrounds each applicator, an air cooling system has been incorporated into the rectal applicator. The air cooling system was designed and modeled theoretically using a numerical solution of heat and momentum equations within the applicator, and an analytical solution of the Pennes bioheat equation in tissue surrounding the applicator. The 3-D temperature distribution produced by the air-cooled rectal applicator was measured in a perfused canine prostate.

Animals

A coaxial microwave applicator for transurethral hyperthermia of the prostate.

Benign prostatic hyperplasia (BPH) is a common disease of elderly men. The current definitive treatment for urinary obstruction caused by this disease is surgery (transurethral resection of the prostate, or TURP). Recent evidence suggests that hyperthermia may be a useful nonsurgical alternative for treatment of symptomatic BPH. A transurethral microwave applicator has been designed around a Foley catheter for delivery of local hyperthermia to the prostate. The Foley balloon is used to maintain the antenna position within the prostatic urethra. The Foley catheter also features an antenna choke to confine power deposition to the intended region. The antenna is a coaxial dipole designed to operate at 915 MHz. Qualitative and quantitative specific absorption rate (SAR) patterns are shown for this antenna. In vivo experiments in dog prostate demonstrate that temperatures > 42 degrees C can be obtained > 1 cm away from the catheter, while maintaining a maximum urethral temperature of 47 degrees C to 48 degrees C. Histology obtained acutely after the hyperthermia treatments showed minimal damage to the periurethral tissues. We conclude from these studies that this microwave applicator is capable of providing local hyperthermia to the prostatic tissues with a predictable and well-circumscribed thermal distribution.

Animals

Combined modality treatment with ternary Cu(II) complexes and X rays.

Ternary Cu(II) complexes with bidentate malonato- and heterocyclic amine ligands were tested with regard to cytotoxicity and potentiation of x-ray induced cell killing in V79 cells. Two lead complexes were also tested in a tumor assay using the MTG-B murine adenocarcinoma model growing in the flanks of female C3H/HeJ mice. One complex, [2,2'-bipyridyl malonatoCu(II)] (RL-5077), produced sensitizer enhancement ratios (SER's) of 1.8 (hypoxic conditions) and 1.0 (oxic conditions) in vitro when irradiation followed 1 hr exposure to the drug at 100 microM. When RL-5077 was administered at doses of 1/2 (11.65 mg/kg) or 1/4 (5.25 mg/kg) the maximum tolerated dose (MTD), 15 min prior to a locally delivered dose of 20 Gy, enhancement ratios (ER's) of 1.6 and 2, respectively, resulted. The second lead complex, [1,10 phenanthroline (malonato)Cu(II)hydrate] (RL-5027), produced SER's of 1.8 and 1.2 under hypoxic and oxic conditions, respectively, at a concentration of 25 microM. Injection of RL-5027 (5 mg/kg) resulted in toxicity without enhancement in combination with radiation. Analogues of these two complexes have been synthesized in an effort to optimize the potentiation of radiation effects while minimizing toxicity to drug alone and increasing water solubility of the drug. Further studies of the structure-activity relationship of Cu(II) ternary complexes using in vitro radiosensitization as the endpoint have identified four classes of ligands with varying biological activity and have supplied information about the effects of group substitution on solubility, toxicity, and radiation potentiation. This group of complexes represents a new class of radiopotentiators that deserves further investigation into its potential for clinical use.

2,2'-Dipyridyl

Experimental brain hyperthermia: techniques for heat delivery and thermometry.

An experimental canine brain model was developed to assess the effects of hyperthermia for a range of time and temperature endpoints, delivered within a specified distance of an interstitial microwave antenna in normal brain. The target temperature location was defined radially at 5.0 or 7.5 mm from the microwave source at the longitudinal location of maximum heating along the antenna in the left cerebral cortex. Temperatures were measured with fiberoptic probes in a coronal plane at this location in an orthogonal catheter at 1.0 mm intervals. Six antennas were evaluated, including dipole, modified dipole, and four shorted helical antennas with coil lengths from 0.5 to 3.9 cm. Antenna performance evaluated in tissue equivalent phantom by adjusting frequency at a fixed insertion depth of 7.8 cm or adjusting insertion depth at 915 MHz showed dipoles to be much more sensitive to insertion depth and frequency change than helical antennas. Specific absorption rate (SAR) was measured in a brain/skull phantom and isoSAR contours were plotted. In vivo temperature studies were also used to evaluate antenna performance in large and small canine brain tissues. A helical antenna with a 2.0 cm coil length driven at 915 MHz was chosen for the beagle experiments because of tip heating characteristics, well-localized heating along the coil length, and heating pattern appropriate to the smaller beagle cranial vault. Verification of lesion dimensions in 3-D was obtained by orthogonal MRI scans and histology to document the desired heat effect, which was to obtain an imagable lesion with well-defined blood-brain-barrier breakdown and necrotic zones. The desired lesion size was between 1.5 to 2.5 cm diameter radially, in the coronal plane with the greatest diameter.

Animals

Effect of step-down heating on brachytherapy in a murine tumor system.

The effects of step-down heating combined with low-dose-rate irradiation (brachytherapy) were studied using a murine mammary adenocarcinoma (MTG-B) grown in the flanks of C3H mice. Treatment was initiated when tumors reached 0.9 to 1.1 cm in diameter. Step-down heating consisted of 7.5 min at 45 degrees C immediately followed by 7.5 min at 42 degrees C. Step-up heating consisted of 7.5 min at 42 degrees C immediately followed by 7.5 min at 45 degrees C. Step-down heating and step-up heating were compared to a single 45 degrees C, 15-min hyperthermia treatment. These hyperthermia protocols were combined before, in the middle of, or after brachytherapy. There were 4 untreated controls, 6 sham controls, and 11 treated animals in each of the brachytherapy-alone and combined treatment groups. The entire experiment was repeated at brachytherapy doses of 988, 1273, and 1603 cGy. In addition, the effects of step-down heating, step-up heating, and single-temperature hyperthermia were tested alone and in combination with sham treatment for each sequence. Based on daily measurements of tumor diameter, the growth delay to doubling volume was used as the biological end point. To compare the various treatment protocols, an isoeffect thermal enhancement ratio (TERiso) was calculated. Step-down heating after 988 cGy brachytherapy had a TERiso of 2.0 +/- 0.04, while step-up heating after 988 cGy brachytherapy had a TERiso of 1.7 +/- 0.05. Overall, the thermal enhancement ratios calculated from these growth delays indicate that step-down heating caused significantly greater hyperthermic radiosensitization than step-up heating when combined with brachytherapy.

Adenocarcinoma

Potentiation of radiation-induced cell kill by synthetic metalloporphyrins.

The effects of the combination of several meso-substituted, water soluble metalloporphyrins with ionizing radiation on hypoxic and oxic monolayers of Chinese hamster fibroblast (V79N) cells were studied. The metalloporphyrins tested included a series of cationic metalloporphyrins complexed with Co(III), Zn(II), Fe(III), Cu(II), Pd(II) or Mn(III) and a series of anionic porphyrins chelated with Co(III), Fe(III), Cu(II), Rh(III), Mn(III) or Sn(IV). Both cationic and anionic free porphyrins were also tested. Cationic ligands were tetrakis(4N-methylpyridyl)porphine [TMPyP], tetrakis(4N-trimethylamino phenyl)porphine [TMAP], tetrakis(4N-butylpyridyl)porphine [TBPyP] and tetrakis(3N-methylpyridyl)porphine [3TMPyP]. Anionic ligands tested were tetrakis(4-sulfonato phenyl)porphine [TPPS], tetrakis(biphenyl)porphine sulfonate [TBPS] and tetrakis(4-carboxyphenyl)porphine [TCPP]. SER calculated from survival curves and SFR from one radiation dose were used to assess the relative effectiveness of this class as non-cytotoxic hypoxic and oxic cell-kill potentiators. Comparisons were made at 100 microM, which was essentially non-toxic (greater than 70% survival) for all porphyrins tested except for Co[TMPyP] (approximately 50% survival after 1 hour at 37 degrees C under oxic conditions). The greatest effects on radiation-induced cell kill were achieved with Co[TPPS] and Co[TMPyP] with SER values of 2.3 and 2.4 respectively. Porphyrin analogs with no coordinated metal were found to be less active than the same compound with metal. The overall charge on the molecule did not systematically relate to the biological activity of the compounds tested.

Animals

The independent action of radiation and cisplatin on the survival or recovery of human normal or tumour cells in vitro or in vivo.

Recovery from radiation- or cisplatin-induced lethal damage has been studied in euoxic normal human foetal lung fibroblasts (HFL cells) that remain viable for at least 20 days in plateau-phase culture. After a 1 hour treatment with cisplatin the half-time of recovery was about 2 days. By contrast recovery after radiation was more rapid with half-times of approximately 10 h. There was no further measurable recovery after 2 days. With either agent the recovery ratios (RR) were dose-dependent but recovery (following treatment with equitoxic doses of the two agents) was appreciably greater after cisplatin (RR approximately 123 after 40 microM for 1 h) than after radiation (RR approximately 15 after 900 cGy). When radiation (900 cGy) was combined with cisplatin (40 microM for 1 h) the cell survival, measured at 5 days or later times after the treatments, was not significantly less than that predicted by the additive, independent effects of both agents (calculated as the product of their respective effects on cell survival) irrespective of whether cisplatin was given 1 h before, during or for 1 h immediately after radiation. In euoxic, exponentially growing HFL or HeLa cells there was no evidence that combinations of cisplatin and radiation gave more than additive toxic effects in the protocols tested. The combined effects of cisplatin or carboplatin and whole-body irradiation given 45 min later, on human melanoma cells (assessed by their colony-forming abilities in vitro) growing in thymectomised mice, were essentially the same as that predicted by the additive, independent effects of the two agents.

Animals

Response of a brachytherapy model using 125I in a murine tumor system.

The effects of low-dose-rate irradiation (brachytherapy) were investigated in vivo using a murine mammary adenocarcinoma (MTG-B) growing in the flank of C3H mice. For local tumor irradiations, a noninvasive cap was devised to cover the tumor and house three 125I seeds (average apparent activity 5.2 mCi each) located at 120 degree intervals around the circumference of the hemispherical cap (13 mm i.d.). Mice were secured during treatment in a tube allowing limited mobility while restricting access to the seeds. Tumors were exposed to a series of dose rates ranging from 14-40 cGy/h, and the total dose over the treatment interval (48 or 72 h) ranged from 830 to 2378 cGy. A total of nine experiments were conducted using the caps over a 10-week interval. In each experiment three groups (irradiated tumors, sham controls, and untreated controls) were analyzed, each containing 8-15 mice (N = 34, untreated control; N = 46, sham control; N = 91, brachytherapy irradiation). The brachytherapy results are compared to the effects of external beam irradiation in the same tumor system. A linear relationship was observed between the total radiation dose and doubling volume growth delay (GDDV) or treatment volume growth delay (GDTV) for the brachytherapy and external beam irradiation. The slopes of the dose-response curves are steeper for the acute dose (517 cGy/min) external beam irradiation (0.0072 day/cGy, GDDV; 0.00695 day/cGy, GDTV) than for the brachytherapy (0.0050 day/cGy, GDDV; 0.0057 day/cGy, GDTV) using both GDTV and GDDV end points. Comparison of the tumor volume regrowth slopes indicates that the tumor bed effect is larger for external beam irradiation than for brachytherapy, suggesting that the tumor bed effect may be dose-rate dependent.

Adenocarcinoma

Platinum levels in murine tumor following intraperitoneal administration of cisplatin or paraplatin.

To design protocols for exploitation of the potential for interaction among the platinum (Pt) chemotherapeutic agents cisplatin and paraplatin and radiation therapy, we measured levels of total platinum in a transplantable murine mammary adenocarcinoma (MTG-B) at different times after ip injection of platinum drugs and in various regimens. Cisplatin (20 mg/kg body weight) or paraplatin (60 or 120 mg/kg body weight) were injected ip in female C3H/HeJ mice bearing MTG-B of about 1 cm diameter. At various times after injection, tumors were removed and processed for acid digestion and total platinum analysis by atomic absorption spectrometry with a graphite furnace. The results of these experiments indicate that intratumoral Pt levels 15 minutes postinjection are higher than at 5 or 30 minutes. At 30 minutes, the Pt concentrations are of the magnitudes of 30 and 50 microM for cisplatin and paraplatin, respectively, that, when added to cells in vitro in combination with radiation therapy, produce the potentiation of cell killing. In addition, for paraplatin, intratumoral Pt levels at 30 minutes following an ip injection are approximately doubled if the tumors receive localized radiotherapy of 20 Gy immediately prior to injection of the drug. This apparent modification of paraplatin pharmacokinetics by radiotherapy might account for some of the supra-additive therapeutic potentiation in MTG-B reported for paraplatin added after irradiation.

Animals

Platinum-radiation interactions.

The important chemotherapeutic agent cisplatin is currently being combined with radiation therapy (RT) in clinical protocols intended to exploit the potential for this drug to potentiate radiation-induced tumor cell kill. This paper reviews the reports from preclinical studies leading to the design of combined modality protocols and describes the effects produced when platinum complexes are combined with RT. Two interactions that are receiving considerable attention since they might produce an improved therapeutic ratio are the radiosensitization of hypoxic cells and post-RT potentiation of cell kill. This latter effect might include the inhibition of recovery from RT-induced potentially lethal or sublethal damage. However, platinum-radiation interactions are complex and probably include several mechanisms that are unknown at this time. The potential for platinum complexes will be especially promising if results of ongoing phase III combined modality trials show them to be efficacious, since it is unlikely that current protocol designs are optimal. Furthermore, second-generation platinum analogs or other metal complexes designed as potentiators of RT may prove to be more interactive with RT.

Animals

Radioemetic protection at 24 h after 60Co irradiation in both normal and postremectomized cats.

The radioemetic dose-response relationships were established in 46 unanesthetized cats for each of two whole-body exposures, 24 h apart, to 60Co radiation at selected doses between 7.5 and 60 Gy. Individual episodes of vomiting were recorded for a period of 48 h as distinctive intrathoracic pressure deflections signaled through a catheter placed in the superior vena cava. Five cats with chronic lesions of the area postrema were included in the group exposed to 45 Gy. The lesioned animals were not detectably different in their radiation response behavior from the intact cats. Initial exposure in the entire cat series produced an increasing incidence of radioemesis from 25 to 80% over the specified dose range for the first observation period of 24 h. By contrast, the second exposure produced an inverse dose-related incidence of emesis varying from 63% to zero with an apparent crossover of radioemetic susceptibility for the two exposures at about 15 Gy. Complete protection during 12 h after the second exposure was obtained at 30, 45, and 60 Gy, and for all of 24 h at 45 and 60 Gy. In a separate group of 11 normal cats, the emetic drug xylazine invariably evoked vomiting when radioemetic protection was otherwise manifest after initial irradiation at 45 Gy. We conclude that the temporary recovery of well-being following acute lethal irradiation results selectively through increased radioemetic resistance, and it does not depend on the integrity of the area postrema.

Animals

Iridium-192 brachytherapy in combination with interstitial microwave-induced hyperthermia for malignant glioma.

A phase I clinical trial assessing the feasibility and safety of hyperthermia in combination with 192Ir brachytherapy (60 Gy) for the treatment of malignant glioma now includes 14 patients. Hyperthermia (42-43 degrees C at tumor margin for 60 min) has been induced using stereotactically implanted afterloading catheters and a microwave (915 or 2,450 MHz) antenna array. Thermometry recorded along each catheter confirms the general ability of the technique to heat such volumes, but thermal heterogeneities are documented. Transient or permanent worsening of previous neurologic deficit, seen in 7 patients, has been the most common morbidity.

Adult

Acute radiation-induced vomiting in area postrema-ablated cats.

A dose-response relationship was established in normal unanesthetized cats for emetic incidence, latency to onset of vomiting, and duration of emetic activity over a period of 24 h after whole-body exposure to 60Co radiation at selected doses between 7.5 and 90 Gy. Each episode of vomiting, i.e., retching and expulsion, was recorded oscillographically as its characteristic intrathoracic pressure waveform by means of a catheter inserted some days before into the superior vena cava. The gamma-radiation dose of 45 Gy evoked vomiting optimally with an incidence of 92% and an average onset time of 98 min. When administered to animals prepared chronically with surgical ablation of the area postrema, the same dose of radiation evoked vomiting in four of five test cases and with an average time to onset that was not by either measure significantly different from normal. Vomiting was also elicited in all of six normal cats exposed to an intestinal dose of 45 Gy X radiation with the head shielded. The same form of irradiation evoked vomiting in two of three chronically postremectomized cats. Successful ablation of the area postrema was determined functionally by emetic refractoriness to an injection of digitalis and confirmed for completeness by histological examination. It is concluded that the area postrema is not an essential element in the reflex mechanism of radiation-induced vomiting and, therefore, no physiological basis exists for dependence on a centrally acting chemogenic factor in radioemesis.

Animals