Most organisms grow according to simple laws, which in principle can be derived from energy conservation and scaling arguments, critically dependent on the relation between the metabolic rate of energy flow and the organism mass . Although this relation is generally recognized to be of the form , the specific value of the exponent is the object of an ongoing debate, with many mechanisms being postulated to support different predictions. We propose that multicellular tumor spheroids provide an ideal experimental model system for testing these allometric growth theories, especially under controlled conditions of malnourishment and applied mechanical stress.
REFERENCES
1.
C.
Guiot
, P. G.
Degiorgis
, P. P.
Delsanto
, P.
Gabriele
, and T. S.
Deisboeck
, J. Theor. Biol.
225
,147
(2003
).2.
G. B.
West
, J. H.
Brown
, and B. J.
Enquist
, Nature (London)
413
, 628
(2001
).3.
P. S.
Dodds
, D. H.
Rothman
, and J. S.
Weitz
, J. Theor. Biol.
209
, 9
(2001
).4.
5.
6.
7.
8.
9.
10.
R.
Chignola
, A.
Schenetti
, E.
Chiesa
, R.
Foroni
, S.
Sartoris
, A.
Brendolan
, G.
Tridente
, G.
Andrighetto
, and D.
Liberati
, Cell Prolif
33
, 219
(2000
).11.
M.
Marusic
, Z.
Bajzer
, S.
Vuk-Pavlovic
, and J. P.
Freyer
, Bull. Math. Biol.
56
, 617
(1994
);
[PubMed]
12.
13.
G.
Helmlinger
, P. A.
Netti
, H. C.
Lichtenbeld
, R. J.
Melder
, and R. K.
Jain
, Nat. Biotechnol.
15
, 778
(1997
).14.
J. P.
Freyer
and P. L.
Schor
, J. Cell Physiol.
138
, 384
(1989
).© 2004 American Institute of Physics.
2004
American Institute of Physics
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