Abstract
The influence on stroma of heat alone, X-rays alone or the combined treatment, has been studied using the tumour bed effect (TBE) as an assay. Ca NT cells have been implanted into previously treated subcutaneous sites as an angiogenic stimulus. The vascular damage is then assessed by the reduced tumour growth rate, which results from inadequate vascular proliferation. A range of X-ray doses was used and large alterations in latent period for growth to 2 mm diameter were followed by smaller alterations in the growth rate of established tumours. A dose response relationship was seen for latency (0-20 Gy) and for growth rate (0-16 Gy). A range of subcutaneous temperatures was obtained by immersion in a water bath for 60 minutes at 40 degrees, 41.5 degrees, 43 degrees or 44.5 degrees C. A slight retardation of tumour growth was seen after 41.5 degrees C, but an unexpected acceleration resulted from the highest heat treatment. Combined heat and X-ray treatments showed thermal sensitization of the X-ray induced TBE at 41.5 degrees C, with a reversal at higher temperatures. At 43 degrees C and 44.5 degrees C a mild thermal burn was induced and this appeared to elicit neovascularisation that could be utilized by the implanted tumour cells. Delayed implantation of tumour cells (at 4 weeks instead of 1 day) abolished this effect.
MeSH Terms
Adenocarcinoma/blood supply
Animals
Blood Vessels/radiation effects
Dose-Response Relationship, Radiation
Female
Hot Temperature
Mice
Mice, Inbred CBA
Neoplasm Transplantation
Neovascularization, Pathologic
Time Factors
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Hill S A
Cancer Research Campaign, Gray Laboratory, Mount Vernon Hospital, Northwood, Middlesex, UK.
Smith K A
Denekamp J
References (25)
25 references, click to expand
-
Vascular damage and delayed cell death in tumours after hyperthermia.
Br J Cancer. 1980 Feb;41(2):309-12
PMID: 7370172
-
Primary and secondary cell death in human melanoma xenografts following hyperthermic treatment.
Cancer Res. 1986 Jan;46(1):355-61
PMID: 3940201
-
The gross response of an experimental tumour to single doses of x-rays.
Br J Cancer. 1967 Mar;21(1):108-23
PMID: 6024502
-
Promotion of growth of tumour cells in acutely inflamed tissues.
Br J Cancer. 1974 Sep;30(3):246-60
PMID: 4451630
-
Modification of tumor response to cyclophosphamide and irradiation by preirradiation of the tumor bed: prolonged growth delay but reduced curability.
Int J Radiat Oncol Biol Phys. 1985 Mar;11(3):547-53
PMID: 3156110
-
Tumour microcirculation as a target for hyperthermia.
Int J Hyperthermia. 1986 Apr-Jun;2(2):111-37
PMID: 3540146
-
Cell kinetics and radiation biology.
Int J Radiat Biol Relat Stud Phys Chem Med. 1986 Feb;49(2):357-80
PMID: 3510997
-
Endothelial proliferation in tumours and normal tissues: continuous labelling studies.
Br J Cancer. 1984 Apr;49(4):405-13
PMID: 6201181
-
Effects of hyperthermia in a malignant tumor.
Cancer. 1980 Feb;45(3):613-23
PMID: 7353209
-
Effects of roentgen irradiation on the tumor bed. I. The inhibiting action of local pretransplantation roentgen irradiation (1500 r alpha) on the growth of mouse mammary carcinoma.
Radiat Res. 1955 Apr;2(2):180-91
PMID: 14372038
-
The growth of transplanted murine tumours in pre-irradiated sites.
Br J Cancer. 1968 Dec;22(4):808-24
PMID: 5705144
-
Differential effect of hyperthermia and x-irradiation on regrowth rate and tumour-bed effect for a rat sarcoma.
Br J Cancer. 1982 Feb;45(2):265-71
PMID: 7059475
-
The response of the mouse ear to heat applied alone or combined with X rays.
Br J Radiol. 1978 Feb;51(602):132-8
PMID: 626813
-
Correlation between initial and long-term responses of spontaneous pet animal tumors to heat and radiation or radiation alone.
Cancer Res. 1983 Dec;43(12 Pt 1):5735-41
PMID: 6640525
-
Experimental radiotherapy of a rat rhabdomyosarcoma with 15 MeV neutrons and 300 kV x-rays. I. Effects of single exposures.
Eur J Cancer. 1969 Sep;5(4):373-91
PMID: 4981449
-
The response of the rat tail to hyperthermia.
Br J Radiol. 1977 Aug;50(596):576-80
PMID: 890233
-
Insignificant tumor bed effect after pretransplantation hyperthermia.
Cancer Res. 1980 Jan;40(1):26-8
PMID: 7349900
-
Tumor eradication and cell survival after localized hyperthermia induced by ultrasound.
Cancer Res. 1979 Jun;39(6 Pt 1):2166-71
PMID: 445414
-
Hypoxic cell radiosensitizers and local control by X-ray of a transplanted tumour in mice.
Br J Cancer. 1977 Jun;35(6):795-808
PMID: 871367
-
Differential response of normal and tumor microcirculation to hyperthermia.
Cancer Res. 1984 Feb;44(2):605-12
PMID: 6692365
-
Contrasting regrowth delay responses of a murine tumour to isocurative hyperthermia or X irradiation.
Br J Radiol. 1982 Oct;55(658):780-2
PMID: 7127032
-
Thermal sensitivity of endothelial cells.
Radiat Res. 1985 Aug;103(2):276-85
PMID: 4023180
-
Mammary carcinoma cell population growth in preirradiated and unirradiated transplant sites. Viable tumor growth, vascularity, and the tumor-bed effect.
Radiology. 1975 Nov;117(2):459-65
PMID: 1178882
-
Physiological mechanisms in hyperthermia: a review.
Int J Radiat Oncol Biol Phys. 1984 Feb;10(2):289-95
PMID: 6368492
-
Effects of hyperthermia and X-irradiation on mouse stromal tissue.
Int J Radiat Biol Relat Stud Phys Chem Med. 1986 Jul;50(1):65-76
PMID: 3487526