Journal of Nuclear Medicine 2001-03-01

Particle size analysis of (99m)Tc-labeled and unlabeled antimony trisulfide and rhenium sulfide colloids intended for lymphoscintigraphic application.

C Tsopelas

Index: J. Nucl. Med. 42(3) , 460-6, (2001)

Full Text: HTML

Abstract

Colloidal particle size is an important characteristic to consider when choosing a radiopharmaceutical for mapping sentinel nodes in lymphoscintigraphy.Photon correlation spectroscopy (PCS) and transmission electron microscopy (TEM) were used to determine the particle size of antimony trisulfide and rhenium sulfide colloids, and membrane filtration (MF) was used to determine the radioactive particle size distribution of the corresponding (99m)Tc-labeled colloids.Antimony trisulfide was found to have a diameter of 9.3 +/- 3.6 nm by TEM and 18.7 +/- 0.2 nm by PCS. Rhenium sulfide colloid was found to exist as an essentially trimodal sample with a d(v(max1)) of 40.3 nm, a d(v(max2)) of 438.6 nm, and a d(v) of 650-2200 nm, where d(v) is volume diameter. (99m)Tc-antimony trisulfide by MF showed that more than 96% of radioactive particles were smaller than 100 nm; however, (99m)Tc-rhenium sulfide showed that more than 21% were smaller than 100 nm. These radioactive colloids were used with seven different membrane compositions and found not to adsorb significantly to any of them.MF was validated as a simple and reliable technique to estimate the percentage radioactive particle size distribution.


Related Compounds

Related Articles:

Nanoscale ferroelectric and piezoelectric properties of Sb2S3 nanowire arrays.

2012-02-08

[Nano Lett. 12(2) , 868-72, (2012)]

Improving bone marrow scintigraphy. A clinical and experimental study.

1993-01-01

[Acta Radiol. Suppl. 385 , 1-24, (1993)]

Antimony trioxide and antimony trisulfide.

1989-01-01

[IARC Monogr. Eval. Carcinog. Risks Hum. 47 , 291-305, (1989)]

Blue dye versus combined blue dye-radioactive tracer technique in detection of sentinel lymph node in breast cancer.

2004-11-01

[Eur. J. Surg. Oncol. 30(9) , 913-7, (2004)]

Enhancing the device performance of Sb2S3-sensitized heterojunction solar cells by embedding Au nanoparticles in the hole-conducting polymer layer.

2012-03-14

[Phys. Chem. Chem. Phys. 14(10) , 3622-6, (2012)]

More Articles...