Deterministic Parsing model of CBE factor for Intra-cellular 10 B Distribution in Boron Neutron Capture Therapy Shintaro ISHIYAMA ※a and Yoshio IMAHORI b ※a Quantum Beam Science Center, Japan Atomic Energy Agency, Tokai-mura, Naka-gun Ibaragi 319-1195 Japan b Cancer Intelligent Care System Ltd, Ariake 3-5-7 Kouto-Ku, Tokyo Japan 1
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Deterministic Parsing model of CBE factor for Intra-cellular 10 B Distribution in Boron Neutron Capture Therapy Shintaro ISHIYAMA ※ a and Yoshio IMAHORI.
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Deterministic Parsing model of CBE factor for Intra-cellular 10B Distribution in Boron
Neutron Capture Therapy
Shintaro ISHIYAMA a※ and Yoshio IMAHORIb
※a Quantum Beam Science Center, Japan Atomic Energy Agency, Tokai-mura, Naka-gun Ibaragi 319-1195 Japan b Cancer Intelligent Care System Ltd, Ariake 3-5-7 Kouto-Ku, Tokyo Japan
1
No. TissueNB-max
(μg/g)CBE factor
11) Tumor 72 3.8
22) Normal skin tissue 28.8 2.5
33) Normal brain tissue 20 1.34
44) Normal oral mucosal tissue 21.5 4.87
55) Normal liver tissue 24 4.25
66) Normal lung tissue 24 2.3
77) Normal heart tissue 24 1.35
1 ) Fukuda et al,. 1994, 2 ) Kiger et al., 2008, 3 ) Suzuki et al., 2000,4-7 ) Morris et al., 1997 with BPA experiments of mice
High degree of precision for the CBE factor estimation was achieved!
※
13
(Calc.)
What is the distribution factor DF in CBE factor model ?
14
DF=Nth/NmaxCell model
BPA
DF
1
Cell nucleus
Endoplasm
Nmax
1-DF
What is the CBE0 ?
BB
BB
B B
BB
B
BB
B
B
B
B B
B
B
B
B
B
B
B
B B
B B
B
B
B
B B
B
BB
B
B
B
B
B
B
B
B
B
B B
B B
B
B
B
B B
BB
BB
B
B BB
B
B
BB
B
B
N = Nth N > NthN < Nth
r< r0 r=r0 r> r0
15
What is the Proximity of boron atoms F (=8)?
B
B
B
B
BB
BB
B
B
B B
BB
B
Mode 2(F=2)
Mode 4(F=4)
Mode 6 (F=6)
Mode 8 (F=8)
Octahedron
B
B
BB
B
B BB
B
Tetrahedron HexahedronDihedral
16
What is the Space filing factor n ?
r/r0
DF
(=N
th/N
max
)
n=3(Stereo)
n=2(Planar)
n=1(Liner)
0 0.5 1.00.01
0.1
1
BBB
B
BB B
BB
17
18
Classification of normal tissues/tumor
Oral
Liver
Skin
Lung
Tumor Brain
0 0.2 0.40
4
8
12
DF(=Nth/Nmax)
Nth(C
alc.
), μ
g/g
Normal tissue
Heart
Group I
Group II
Group IIIGroup IV
4 3 2 1CBE factor
BPA
How to define CBE factor for Human Brain Tumor by CBE factor model ?
19
DF=Nth/Nmax
Patients with GliomaAII(8)
AIII(11)GBM(13)
Total 33
Imahori, Ueda et al., J Nucl Med (1998)
1,8000
20
Definition of DF for the case of tumor and normal tissues
5
10
15
20
25
30
35
40
4,000 8,000 1,2000 1,60000
Tis
sue
10B
con
ten
t,N (
μg/
g)
Dose of BPA ( mg/kg )
BloodBrainSpinal cord
Morris MG et al. (1997)
Nth
DF=1-0.17 (=0.83)
(0.8)
(0.93)Nmax
Normal tissueDF=1-Nth/Nmax
TumorDF=Nth/Nmax
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21Imahori Y., et al., J Nucl Med (1998)
Gjedde-Patlak plotting model(1983)
Cp(t) Ce(t) Cn(t)
K1
k2
k3
Endoplasm Cell nucleusB in blood
GBM AIII AII ControlL
00.005
0.010.015
0.020.025
0.030.035
0.040.045
Series1 Series2 Series3K1
k3k2
Dynamic PET
Tumor Normal
K1<k2<k3K1>k2>k3
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0.01 0.1 10
1
2
3
4
5
CBE factor model
Oral ( N)
Liver( N )Tumor
Skin ( N)
Lung( N ) Brain ( N
)Heart ( N
)
Human brain tumorN:Normal tissue
DF(=Nth/Nmax)
CB
E f
acto
r
GBM(L) AIII(L)AII(L)Control
Grade
GBM
AIII
AIIImahori Y., et al., J Nucl Med (1998)
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BNCT effectiveness
0GBMAII AIII
1
2
3
4
5
CB
E f
acto
r
GBM(DL) AIII(DL) AII(DL) Control
Grade
Control
BNCT effectiveness on tumor grade
B in blood
?
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CBE transition process on the grade of glioma
Damage on toughness of membrane in cell and nucleus
K1
k3k2
K1
k2
k3
K1
k2
k3
Normal AII AIII GBM
CB
E
Cp(t)
K1
k2
k3Endoplasm
Cell nucleus
K1 k2 k3
Positive object Negative
K1↑ orientedk3↓
BPA
G-P model
Imahori Y., et al., J Nucl Med (1998)
Conclusion
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(1) The CBE factor is well expressed by the following equation,
DF=Nth/Nmax , Nth: Threshold of boron concentration Nmax: Boron concentration at saturation point Constant: CBE0, F, n(2) Calculated CBE factor indicates the BNCT effectiveness on the grade of brain tumor CBE0=0.5, F=8,n=3 for BPA
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Thanks you all for attentive listening
BNCT for health and happiness of all patients in the world