• 제목/요약/키워드: Cellular Uptake

검색결과 274건 처리시간 0.029초

Comparison of D-[18F]FMAU and L-[18F]FMAU as PET Imaging Agents for HSV1-TK Gene Expression

  • Moon, Byung-Seok;Jo, Nam-Hyun;Lee, Kyo-Chul;El-Gamal, Mohammed I.;An, Gwang-Il;Hong, Su-Hee;Choi, Tae-Hyun;Choi, Won-Kyoung;Park, Jin-Hun;Cho, Jung-Hyuck;Cheon, Gi-Jeong;Oh, Chang-Hyun
    • Bulletin of the Korean Chemical Society
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    • 제31권11호
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    • pp.3309-3312
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    • 2010
  • D-[$^{18}F$]FMAU and L-[$^{18}F$]FMAU are F-18 labeled nucleoside analogue which have been efficiently synthesized in order to be a PET imaging probe. D-[$^{18}F$]FMAU and L-[$^{18}F$]FMAU were compared as PET imaging agents using HSV1-TK gene expressing tumor-bearing mice. Their cellular uptake profiles were also compared using MCA and MCA-TK cell lines. D-[$^{18}F$]FMAU demonstrated higher cellular uptake and higher accumulation in MCA-TK tumor regions than L-[$^{18}F$]FMAU. On the other hand, L-[$^{18}F$]FMAU showed higher MCA-TK/MCA ratio of %ID/g than that of D-[$^{18}F$]FMAU. L-[$^{18}F$]FMAU can be utilized as a good candidate for HSV1-TK PET imaging. It can be used for antiviral drug evaluation.

Pyruvate Protection against Endothelial Cytotoxicity Induced by Blockade of Glucose Uptake

  • Chung, Se-Jin;Lee, Se-Hee;Lee, Yong-Jin;Park, Hyoung-Sook;Bunger, Rolf;Kang, Young-Hee
    • BMB Reports
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    • 제37권2호
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    • pp.239-245
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    • 2004
  • We have previously demonstrated that the redox reactant pyruvate prevents apoptosis in the oxidant model of bovine pulmonary artery endothelial cells (BPAEC), and that the anti-apoptotic mechanism of pyruvate is mediated in part via the mitochondrial matrix compartment. However, cytosolic mechanisms for the cytoprotective feature of pyruvate remain to be elucidated. This study investigated the pyruvate protection against endothelial cytotoxicity when the glycolysis inhibitor 2-deoxy-D-glucose (2DG) was applied to BPAEC. Millimolar 2DG blocked the cellular glucose uptake in a concentration- and time-dependent manner with >85% inhibition at $\geq$5 mM within 24 h. The addition of 2DG evoked BPAEC cytotoxicity with a substantial increase in lipid peroxidation and a marked decrease in intracellular total glutathione. Exogenous pyruvate partially prevented the 2DG-induced cell damage with increasing viability of BPAEC by 25-30%, and the total glutathione was also modestly increased. In contrast, 10 mM L-lactate, as a cytosolic reductant, had no effect on the cytotoxicity and lipid peroxidation that are evoked by 2DG. These results suggest that 2DG toxicity may be a consequence of the diminished potential of glutathione antioxidant, which was partially restored by exogenous pyruvate but not L-lactate. Therefore, pyruvate qualifies as a cytoprotective agent for strategies that attenuate the metabolic dysfunction of the endothelium, and cellular glucose oxidation is required for the functioning of the cytosolic glutathione/NADPH redox system.

Docetaxel-loaded PLGA nanoparticles to increase pharmacological sensitivity in MDA-MB-231 and MCF-7 breast cancer cells

  • Tran, Phuong;Nguyen, Thu Nhan;Lee, Yeseul;Tran, Phan Nhan;Park, Jeong-Sook
    • The Korean Journal of Physiology and Pharmacology
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    • 제25권5호
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    • pp.479-488
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    • 2021
  • This study aimed to develop docetaxel (DTX) loaded poly(lactic-co-glycolic acid) (PLGA) nanoparticles (DTX-NPs) and to evaluate the different pharmacological sensitivity of NPs to MCF-7 and MDA-MB-231 breast cancer cells. NPs containing DTX or coumarin-6 were prepared by the nanoprecipitation method using PLGA as a polymer and d-α-tocopherol polyethylene glycol 1000 succinate (TPGS) as a surfactant. The physicochemical properties of NPs were characterized. In vitro anticancer effect and cellular uptake were evaluated in breast cancer cells. The particle size and zeta potential of the DTX-NPs were 160.5 ± 3.0 nm and -26.7 ± 0.46 mV, respectively. The encapsulation efficiency and drug loading were 81.3 ± 1.85% and 10.6 ± 0.24%, respectively. The in vitro release of DTX from the DTX-NPs was sustained at pH 7.4 containing 0.5% Tween 80. The viability of MDA-MB-231 and MCF-7 cells with DTX-NPs was 37.5 ± 0.5% and 30.3 ± 1.13%, respectively. The IC50 values of DTX-NPs were 3.92- and 6.75-fold lower than that of DTX for MDA-MB-231 cells and MCF-7 cells, respectively. The cellular uptake of coumarin-6-loaded PLGA-NPs in MCF-7 cells was significantly higher than that in MDA-MB-231 cells. The pharmacological sensitivity in breast cancer cells was higher on MCF-7 cells than on MDA-MB-231 cells. In conclusion, we successfully developed DTX-NPs that showed a great potential for the controlled release of DTX. DTX-NPs are an effective formulation for improving anticancer effect in breast cancer cells.

모과추출물의 C2C12 근육세포에서 근분화 및 에너지대사조절인자 발현 증진 효과 연구 (Effects of Chaenomelis Fructus Extract on the regulation of myoblasts differentiation and the expression of biogenetic factors in C2C12 myotubes)

  • 강석용;현선영;권예담;박용기;정효원
    • 대한본초학회지
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    • 제34권6호
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    • pp.99-107
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    • 2019
  • Objective : The present study was conducted to investigate the effects of Chaenomelis Fructus (CF) on the regulation of biogenesis in C2C12 mouse skeletal muscle cells. Methods : C2C12 myoblasts were differentiated into myotubes in 2% horse serum-containing medium for 5 days, and then treated with CF extract at different concentrations for 48 hr. The expression of muscle differentiation markers, myogenin and myosin heavy chain (MHC) and mitochondrial biogenesis-regulating factors, peroxisome proliferator-activated receptor gamma coactivator 1alpha (PGC1α), sirtuin1 (Sirt1), nuclear respiratory factor1 (NRF1) and transcription factor A, mitochondrial (TFAM), and the phosphorylation of AMP-activated protein kinase (AMPK) and acetyl-CoA carboxylase (ACC) were determined in C2C12 myotubes by reverse transcriptase (RT)-polymerase chain reaction (RT-PCR) and western blot, respectively. The cellular glucose levels and total ATP contents were measured by cellular glucose uptake and ATP assays, respectively. Results : Treatment with CF extract (0.01, 0.02, and 0.05 mg/㎖) significantly increased the expression of MHC protein in C2C12 myotubes compared with non-treated cells. CF extract significantly increased the expression of PGC1α and TFAM in the myotubes. Also, CF extract significantly increased glucose uptake levels and ATP contents in the myotubes. Conclusion : CF extract can stimulate C2C12 myoblasts differentiation into myotubes and increase energy production through upregulation of the expression of mitochondrial biogenetic factors in C2C12 mouse skeletal muscle cell. This suggests that CF can help to improve skeletal muscle function with stimulation of the energy metabolism.

High fat diet-induced brain damaging effects through autophagy-mediated senescence, inflammation and apoptosis mitigated by ginsenoside F1-enhanced mixture

  • Hou, Jingang;Jeon, Byeongmin;Baek, Jongin;Yun, Yeejin;Kim, Daeun;Chang, Boyoon;Kim, Sungyeon;Kim, Sunchang
    • Journal of Ginseng Research
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    • 제46권1호
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    • pp.79-90
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    • 2022
  • Background: Herbal medicines are popular approaches to capably prevent and treat obesity and its related diseases. Excessive exposure to dietary lipids causes oxidative stress and inflammation, which possibly induces cellular senescence and contribute the damaging effects in brain. The potential roles of selective enhanced ginsenoside in regulating high fat diet (HFD)-induced brain damage remain unknown. Methods: The protection function of Ginsenoside F1-enhanced mixture (SGB121) was evaluated by in vivo and in vitro experiments. Human primary astrocytes and SH-SY5Y cells were treated with palmitic acid conjugated Bovine Serum Albumin, and the effects of SGB121 were determined by MTT and lipid uptake assays. For in vivo tests, C57BL/6J mice were fed with high fat diet for 3 months with or without SGB121 administration. Thereafter, immunohistochemistry, western blot, PCR and ELISA assays were conducted with brain tissues. Results and conclusion: SGB121 selectively suppressed HFD-induced oxidative stress and cellular senescence in brain, and reduced subsequent inflammation responses manifested by abrogated secretion of IL-6, IL-1β and TNFα via NF-κB signaling pathway. Interestingly, SGB121 protects against HFD-induced damage by improving mitophagy and endoplasmic reticulum-stress associated autophagy flux and inhibiting apoptosis. In addition, SGB121 regulates lipid uptake and accumulation by FATP4 and PPARα. SGB121 significantly abates excessively phosphorylated tau protein in the cortex and GFAP activation in corpus callosum. Together, our results suggest that SGB121 is able to favor the resistance of brain to HFD-induced damage, therefore provide explicit evidence of the potential to be a functional food.

P-Glycoprotein과 Multidrug Resistance Associated Protein을 발현하는 암세포와 종양에서 Tc-99m Sestamibi와 Tc-99m Tetrofosmin의 섭취율 비교 (Comparative Uptake of Tc-99m Sestamibi and Tc-99m Tetrofosmin in Cancer Cells and Tissue Expressing P-Glycoprotein or Multidrug Resistance Associated Protein)

  • 조정아;이재태;유정아;서지형;배진호;정신영;안병철;손상균;하정희;이규보
    • 대한핵의학회지
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    • 제39권1호
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    • pp.34-43
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    • 2005
  • 목적: 인체대장암 HCT15/CL02 암세포와 인체 비소세포 폐암 A549세포를 대상으로 Pgp와 MRP발현을 조사하고, 세포와 이종이식된 종양조직에서 $^{99m}Tc$-MIBI와 tetrofosmin의 섭취정도를 비교하여 이들 방사성의약품의 Pgp와 MRP 추적자로서의 성능을 알아보고자 하였다. 또한 다약제내성 극복제인 CsA 처리에 의한 두 방사성 의약품의 암세포 내섭취정도를 비교해 보았다. 재료 및 방법: Pgp의 발현은 RT-PCR과 면역조직화학 염색으로, MRP발현은 MRPrl항체에 대한 western blot analysis와 면역조직화학 염색으로 확인하였다. 세포 섭취는 $37^{\circ}C$에서 $1{\times}10^6$개/ml 농도에서 MIBI와 tetrofosmin을 30분과 60분 동안 반응시킨 후 상층액과 침전물로 분리하여 각각의 방사능을 감마계수기로 측정하여, 50 ${\mu}M$의 cyclosporin A (CsA)를 처리한 성적과 비교하였다. 체내실험은 HCT15/CL02세포와 A549세포를 이종이식 한 누드마우스를 4군으로 구분하여, MIBI와 tetrofosmin 만을 주사한 군과, CsA를 70 mg/kg으로 1시간전에 주사한 후 체내분포를 측정한 군으로 구분하였다. MIBI와 tetrofosmin은 각각 370 KBq을 정맥주사하고 10분, 60분, 240분 후에 동물들을 희생시켜 종양조직내의 두 방사성의약품의 장기섭취율(%ID/gm)로 계산하여 비교하였다. 결과: HCT15/CL02세포와 A549세포에서 MIBI와 tetrofosmin의 섭취는 배양시간이 지남에 따라 증가하였으며 그 섭취정도는 MIBI가 tetrofosmin보다 높았다. CsA 50 ${\mu}M$에 의한 MIBI와 tetrofosmin의 섭취정도를 각각의 60분 대조군과 비교하면 각각 763%와 629% 증가하여 MIBI의 섭취증가 정도가 tetrofosmin보다 높았다. 체내에서 두 방사성의약품의 섭취정도는 유사하였다. CsA 처리군의 섭취정도는 각각의 대조군에 비교하여 MIBI는 10분에 114%, 60분에 257%, 240분에 396%로 증가하였으며, tetrofosmin은 10분에 110%, 60분에 205%, 240분에 410%로 증가하였다. HCT15/ CL02 세포실험에서도 두 방사성약품의 섭취정도에 유의한 차이가 없었으나, CsA를 처리하였을 때 MIBI와 tetrofosmin의 섭취율은 기저치보다 모두 증가하였다. CsA에 의한 MIBI와 tetrofosmin의 섭취율은 기저치보다 각각 10배와 2.4배 증가하여, MIBI의 섭취율이 tetrofosmin보다 1.2배에서 4배정도 높았다. HCT15/CL02 종양조직내의 섭취는 CsA 처치시 증가하였으나 MIBI와 tetrofosmin 간에 유의한 차이는 없었다. 결론: Pgp와 MRP를 발현하여 다약제내성을 나타내는 암세포에서 MIBI와 tetrofosmin 섭취율은 유사하였으나, Pgp와 MRP를 억제하는 CsA에 의한 섭취증가정도는 MIBI가 더 높았다. 그러나 두 약제 섭취율 증가의 차이는 동물실험에서는 관찰되지 않았다. 이러한 결과로 보아 MIBI와 tetrofosmin은 Pgp와 MRP에 의한 다약제내성의 발현을 평가할 수 있는 방사성의약품으로 판단되며, 다약제내성 극복제의 시험관내 효능평가에는 MIBI가 tetrofosmin보다 더 우수할 것으로 사료되었다.

플라보노이드 세포 수송 기전 (Cellular Flavonoid Transport Mechanisms in Animal and Plant Cells)

  • 한유리;이소영;이지혜;이성준
    • 한국식품과학회지
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    • 제45권2호
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    • pp.137-141
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    • 2013
  • 플라보노이드는 식물의 주요 2차 대사산물 중 하나로 자외선 차단, 식물의 수분을 위한 곤충 유인 등 외부환경에 적응하는데 이로운 역할을 한다. 특히 플라보노이드는 항산화 효과가 우수한 것으로 알려져 노화방지와 생활습관 질병예방에 유용한 건강기능식품소재로 각광받고 있다. 하지만 플라보노이드의 생체이용률은 매우 낮으며 이러한 플라보노이드 흡수과정에 관한 생물학적기전은 최근에 조금씩 밝혀지기 시작하고 있다. 플라보노이드의 수송기전에는 세포 내에서 일어나는 소포체 매개 수송과 세포막 및 소기관 표면 단백질에 의한 막 수송체 매개 수송이 있다. 소포체 매개 수송의 경우 cellular trafficking에 의한 일련의 소포체 유래 vesicle의 융합 반응을 거쳐 식물 세포의 경우 액포 내에 플라보노이드가 축적되거나 세포 외부로 배출된다. 표면 단백질에 의해 플라보노이드의 세포막 흡수가 일어나게 되는데 ATP를 사용한 능동수송, 막 전위를 이용한 2차 수송에 관여하는 다수의 수송체들이 관여하는 것으로 보인다. 다양한 종류의 플라보노이드가 존재하는 만큼 플라보노이드 수송체도 다양하며 어쩌면 모든 플라보노이드의 특이적 수송체를 규명하는 것은 불가능 할 지도 모른다. 하지만 식품에 다량 존재하는 주요 플라보노이드를 모델 화합물로 이용한 연구를 수행하면 이에 관련된 주요 수송체 단백질과 관련 메커니즘에 대해 깊이 이해할 수 있고 이를 통해 생체 이용률을 향상시키는 방법을 생각해 볼 수 있으며 특히 낮은 혈중 농도 조건에서도 조직 세포 내에 플라보노이드 축적을 통해 건강 기능성을 최적화하는 노력을 기울이는데 적절한 과학적 방법을 제시해 줄 수 있을 것으로 기대한다.

Efficient In Vitro Labeling Rabbit Bone Marrow-Derived Mesenchymal Stem Cells with SPIO and Differentiating into Neural-Like Cells

  • Zhang, Ruiping;Li, Jing;Li, Jianding;Xie, Jun
    • Molecules and Cells
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    • 제37권9호
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    • pp.650-655
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    • 2014
  • Mesenchymal stem cells (MSCs) can differentiate into neural cells to treat nervous system diseases. Magnetic resonance is an ideal means for cell tracking through labeling cells with superparamagnetic iron oxide (SPIO). However, no studies have described the neural differentiation ability of SPIO-labeled MSCs, which is the foundation for cell therapy and cell tracking in vivo. Our results showed that bone marrow-derived mesenchymal stem cells (BM-MSCs) labeled in vitro with SPIO can be induced into neural-like cells without affecting the viability and labeling efficiency. The cellular uptake of SPIO was maintained after labeled BM-MSCs differentiated into neural-like cells, which were the basis for transplanted cells that can be dynamically and non-invasively tracked in vivo by MRI. Moreover, the SPIO-labeled induced neural-like cells showed neural cell morphology and expressed related markers such as NSE, MAP-2. Furthermore, whole-cell patch clamp recording demonstrated that these neural-like cells exhibited electrophysiological properties of neurons. More importantly, there was no significant difference in the cellular viability and $[Ca^{2+}]_i$ between the induced labeled and unlabeled neural-like cells. In this study, we show for the first time that SPIO-labeled MSCs retained their differentiation capacity and could differentiate into neural-like cells with high cell viability and a good cellular state in vitro.

Tenovin-1 Induces Senescence and Decreases Wound-Healing Activity in Cultured Rat Primary Astrocytes

  • Bang, Minji;Ryu, Onjeon;Kim, Do Gyeong;Mabunga, Darine Froy;Cho, Kyu Suk;Kim, Yujeong;Han, Seol-Heui;Kwon, Kyoung Ja;Shin, Chan Young
    • Biomolecules & Therapeutics
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    • 제27권3호
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    • pp.283-289
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    • 2019
  • Brain aging induces neuropsychological changes, such as decreased memory capacity, language ability, and attention; and is also associated with neurodegenerative diseases. However, most of the studies on brain aging are focused on neurons, while senescence in astrocytes has received less attention. Astrocytes constitute the majority of cell types in the brain and perform various functions in the brain such as supporting brain structures, regulating blood-brain barrier permeability, transmitter uptake and regulation, and immunity modulation. Recent studies have shown that SIRT1 and SIRT2 play certain roles in cellular senescence in peripheral systems. Both SIRT1 and SIRT2 inhibitors delay tumor growth in vivo without significant general toxicity. In this study, we investigated the role of tenovin-1, an inhibitor of SIRT1 and SIRT2, on rat primary astrocytes where we observed senescence and other functional changes. Cellular senescence usually is characterized by irreversible cell cycle arrest and induces senescence- associated ${\beta}$-galactosidase (SA-${\beta}$-gal) activity. Tenovin-1-treated astrocytes showed increased SA-${\beta}$-gal-positive cell number, senescence-associated secretory phenotypes, including IL-6 and IL-$1{\beta}$, and cell cycle-related proteins like phospho-histone H3 and CDK2. Along with the molecular changes, tenovin-1 impaired the wound-healing activity of cultured primary astrocytes. These data suggest that tenovin-1 can induce cellular senescence in astrocytes possibly by inhibiting SIRT1 and SIRT2, which may play particular roles in brain aging and neurodegenerative conditions.

변형세포와 비변형세포에서 이온형과 Transferrin 결합형 Fe-59와 Ga-67 섭취율의 비교 (Comparison of Uptake of Ionic and Tf-bound Fe-59 and Ga-67 in Transformed and Untransformed Cells)

  • 손명희;이영환;이상용;정경호;한영민;김종수;최기철;임창열
    • 대한핵의학회지
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    • 제30권1호
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    • pp.145-151
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    • 1996
  • 철분이 축적하는데는 Tf나 Tf수용체에 의해 중재되는 경로와 비의존적인 경로가 둘 다 보고되어 왔다. 종양영상에 많이 사용되고 있는 Ga-67은 철분 유사 물질로 이러한 철분의 섭취 경로와 같은 경로에 의해 섭취되는지는 확실하지 않지만 Ga도 Tf의존성과 비의존성 섭취 경로가 보고되었으며 부분적으로는 철분과 같은 섭취경로를 공유할 수도 있다. 또한 종양의 변형정도에 따라 방사성 금속의 섭취기전이 다를 수도 있다. 변형세포로서 MMSV/3T3 세포와 비변형세포로서 BALB/3T3 세포를 Tf이 존재할때와 존재하지 않을 때에서 1uM의 Ga-67-citrate 혹은 Fe-59-chloride 와 함께 $37^{\circ}C$에서 15분간 배양하였다. 그 후 단일층의 세포를 HBSS로 3번, PBS로 1번 씻은 후 1% SDS로 용해시킨 후 감마카운터로 방사능을 측정한 후 단백질양을 측정하여 pmole metal/mg cellular protein으로 표시하였다. Fe-59와 Ga-67의 섭취양상은 71결합형과 이온형 둘다에서 크기의 차이는 있지만 비슷한 양상을 보였다. 즉 두 방사성 금속은 Tf 결합형과 이온형으로 세포로 들어간다. Tf과 함께 존재할 때는 철분이나 Ga 섭취가 변형세포에서 비변형세포에 비해 약 3배 이상 높았으나 Tf이 없이 이온형으로 존재할 때는 이와는 반대로 비변형세포에 의한 섭취가 변형세포에 비해 약4배 더 많았다. Ga-67이나 Fe-59의 섭취의 효율성은 Tf결합형인 Ga-Tf, Fe-Tf 형태가 이온형에 비해 약 10-15배 더 컸다. 그러나 섭취는 효율성의 크기는 Ga-67(3배)에 비해 Fe-59(10배)가 더 컸다. Ga-67의 섭취는 Tf의존성과 Tf비의존성 기전이 같이 존재하며 변형세포와 비변형세포는 서로 반대로 작용하였다. 즉 변형세포의 섭취는 Tf의존성 기전에 의하고, 비변형세포의 섭취는 Tf 비의존성 기전에 의해 주로 일어나며 종양조직에 의한 Ga-67의 섭취 기전은 부분적으로는 Fe-59와 같은 섭취기전을 공유할 수 있다고 생각되었다.

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