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Sarcoma-bearing Mice에서 Cadmium-109과 Gallium-67의 체내 분포의 비교
손명희,장숙경,정경호,한영민,김종수,최기철,임창열,강신화,Sohn, Myung-Hee,Chang, Sook-Kyeong,Chung, Kyung-Ho,Han, Young-Min,Kim, Chong-Soo,Choi, Ki-Chul,Yim, Chang-Yeol,Kang, Shin-Hwa 대한핵의학회 1994 핵의학 분자영상 Vol.28 No.1
Metallothionein (MT)는 세포내에 존재하는 cystein이 풍부한 적은 단백질로서 핵의학적 영상이나 치료에 이응이 가능할 여러 금속성 방사성 동위원소와 결합한다. 본 연구는 sarcoma를 주사한 Balb/C mice에서 MT와 결합하는 방사성동위원소인 cadmium이 종양에 축적되는가를 확인하고, 그것이 핵의학적인 영상과 치료에 이용될 수 있는지와 Ga-67을 대신할 수 있는지를 보기 위해 종양과 정상조직에서 Cd-109과 Ga-67의 섭취율을 비교하고 종양과 정상조직의 비를 비교하였다. Balb/3T3 세포를 Molony murine sarcoma virus (MMSV)로 변형시킨 세포를 Balb/C mice의 왼쪽 서혜부에 피하로 주사한 후 종양이 $0.6{\sim}l.0cm^2$로 자랐을 때 $25{\mu}Ci$ Cd-109 chloride와 $40{\mu}Ci$ Ga-67 citrate을 피하주사 한 후 18 또는 72시간에 쥐를 희생하여 종양과 여러 정상조직을 제거하여 무게를 잰 후 방사능을 측정하였다. Cd-109의 종양섭취는 Ga-67과 비슷하나 대부분의 정상조직에 비해 (MT가 풍부한 간과 신장을 제외) Ga-67보다 높았다. 종양대 정상조직의 섭취비는 Cd-109이 Ga-67에 비해 배후방사능에 중요한 영향을 미치는 장기인 뼈, 장, 지방조직, 근육, 혈액에서 월등히 높아서 (P<0.001) 같은 종양에서 Ga-67보다 좋은 영상을 얻을 수 있으리라고 생각되며, MT에 결합하는 cadmium은 암의 종양영상과 치료에 이용될 수 있을 것으로 생각된다. The search for tumor-avid agents for use in nuclear medicine imaging or therapy is a field of ongoing importance. Metallothionein (MT) is an intracellular protein that binds many metals with isotopes having imaging or radiotherapeutic potential. The purpose of the study was to determine whether uptake of radioisotopes that bind to MT is increased in tumor. We measured the uptake of Cd-109 and Ga-67 in tumor and normal tissues of sarcoma-bearing mice. Tumors were grown subcutaneously in female Balb/C mice from cultured Balb/3T3 cells transformed by the Moloney murine sarcoma virus (MMSV). When the tumors reached about 1 cm in diameter, mice were injected subcutaneously with Cd-109 and Ga-67. Eighteen and seventy-two hours later, the mice were sacrified. Organs and tissues were removed, weighed, and activity per mg tissue determined by gamma well-counting. Uptake of Cd-109 by MMSV tumors exceeded that by normal tissues examined, with the exception of liver and kidney (the organs known to be richest in MT). The tumor-to-tissue ratios of uptake for Cd-109 were far greater than those for Ga-67 for many normal tissues of great importance in terms of background activity (bone, intestine, fat, muscle, and blood). We concluded that metals that bind to MT may be useful for oncologic imaging or rediotherapy of cancer.
생쥐 종양모델에서 57Co-Vitamin B12의 종양 친화성에 관한 연구
손명희(Myung Hee Sohn),정경호(Gyung Ho Chung),임창열(Chang Yeol Yim),박순아(Soon A Park),김수현(Su Hyun Kim) 대한핵의학회 1998 핵의학 분자영상 Vol.32 No.1
N/A The search for tumor-avid agents for use in nuclear medicine imaging is an ongoing field of importance. The purpose of this study was to determine the affinity for radiolabeled vitamin B12 by a wide histologic variety of tumor types in mice. Seventeen different types of tumor were grown subcutaneously in female Balb/C or Balb nu/nu(nude) mice. When the tumors reached about 1 cm in diameter, mice were injected intraperitoneally with 57Co-vitamin B12. Twenty-foul hours later, the mice were sacrificed. Organs and tissues were removed, weighed, and activity per mg determined by gamma counter. Values represented cpm/mg tissue that was normalized to 20 grams body weight for each mouse. A wide variety of tumor types showed significant uptake and concentration of 57Co-vitamin B12, as evidenced by tumor:tissue activity ratios. For many tissues of great importance in terms of background(bone, muscle, blood), the tumor:tissue activity ratios of uptake were high. These data strongly suggest that further efforts to evaluate the utility of radiolabeled adducts of vitamin B12 for clinical use in oncologic imaging are warranted.
Sarcoma-bearing Bice 에서 Cadmium-109 과 Gallium-67 의 체내 분포의 비교
손명희(Myung Hee Sohn),김종수(Chong Soo Kim),최기철(Ki Chul Choi),한영민(Young Min Han),임창열(Chang Yeol Yim),장숙경(Sook Kyeong Chang),정경호(Kyung Ho Chung),강신화(Shin Hwa Kang) 대한핵의학회 1994 핵의학 분자영상 Vol.28 No.1
N/A The search for tumor-avid agents for use in nuclear medicine imaging or therapy is a field of ongoing importance. Metallothionein (MT) is an intracellular protein that binds many metals with isotopes having imaging or radiotherapeutic potential. The purpose of the study was to determine whether uptake of radioisotopes that bind to MT is increased in tumor. We measured the uptake of Cd-109 and Ga-67 in tumor and normal tissues of sarcoma-bearing mice. Tumors were grown subcutaneously in female Balb/C mice from cultured Balb/3T3 cells transfor- med by the Moloney murine sarcoma virus (MMSV). When the tumors reached about 1 cm in diameter, mice were injected subcutaneously with Cd-109 and Ga-67. Eighteen and seventy-two hours later, the mice were sacrified. Organs and tissues were removed, weighed, and activity per mg tissue determined by gamma well-counting. Uptake of Cd-109 by MMSV tumors exceeded that by normal tissues examined, with the exception of liver and kidney (the organs known to be richest in MT). The tumor-to-tissue ratios of uptake for Cd-109 were far greater than those for Ga-67 for many normal tissues of great importance in terms of background activity (bone, intestine, fat, muscle, and blood). We concluded that metals that bind to MT may be useful for oncologic imaging or radiotherapy of cancer.
변형세포와 비변형세포에서 이온형과 Transferrin 결합형 Fe - 59 와 Ga - 67섭취율의 비교
손명희(Myung Hee Sohn),최기철(Ki Chul Choi),이영환(Young Hwan Lee),이상용(Sang Yong Lee),정경호(Gyung Ho Chung),한영민(Young Min Han),김종수(Jong Soo Kim),임창열(Chang Yeol Yim) 대한핵의학회 1996 핵의학 분자영상 Vol.30 No.1
N/A Pathways both mediated by and independent of transferrin(Tf) and the TfR have been described for the accumulation of iron. Although it is not clear whether the same systems take up iron and gallium, these pathways may suggest the contention that uptake of Ga-67 can, in fact, occur by both Tf-independent and Tf-dependent systems and may share with Fe-59 in part the same mechanism for uptake. The predominant system by which uptake of both radiometals occurs may be different in the degree of the transformation af tumor. Transformed(MMSV/3T3) and untransformed(BALB/3T3) cells were incubated with luM of Ga-67-citrate of Fe-59-chloride for 15 min. at 37℃ in either the presence or absence of Tf. After then, the monolayers were washed with HBSS or PBS, and the cells were solubilized in 1% SDS for gamma well counting and protein determinations. There were similarities, as well as differences, in the pattern of uptake of Fe-59 and Ga-67 presented both in ionic from and as bound to Tf. Both radiometals appeared gain to cells in either ionic or Tf-bound forms. Transformed cells appeared to accumulate more radiometal, either Ga-67 or Fe-59 in the presence of Tf than do the their untransforemd counterparts. Conversly the presentation of either radiometal in ionic form resulted in significantly greater accumulation of metal by the untransformed cells than those transformed. The efficiency for uptake of Ga-67 or Fe-59 in the absence of Tf was greater than for uptake of the Ga-Tf or Fe-Tf. However, the magnitude of difference in efficiency of uptake was greater for Fe-59(10-fold) than for Ga-67 (3-fold). Our results Supports the theory that both Tf-independent and Tf-dependent systems for the uptake of Ga-67 both systems operate oppositely between transformed cells and those untransformed, with uptake by the predominating in transformed cells by the Tf-mediated system and in untransformed cells by the Tf-independent. The uptake of Ga-67 by tumor may share with Fe-59 in part the same mechanism.