• 제목/요약/키워드: Cellular Uptake

검색결과 277건 처리시간 0.026초

In Vitro N-Glycan Mannosyl-Phosphorylation of a Therapeutic Enzyme by Using Recombinant Mnn14 Produced from Pichia pastoris

  • Kang, Ji-Yeon;Choi, Hong-Yeol;Kim, Dong-Il;Kwon, Ohsuk;Oh, Doo-Byoung
    • Journal of Microbiology and Biotechnology
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    • 제31권1호
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    • pp.163-170
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    • 2021
  • Enzyme replacement therapy for lysosomal storage diseases usually requires recombinant enzymes containing mannose-6-phosphate (M6P) glycans for cellular uptake and lysosomal targeting. For the first time, a strategy is established here for the in vitro mannosyl-phosphorylation of high-mannose type N-glycans that utilizes a recombinant Mnn14 protein derived from Saccharomyces cerevisiae. Among a series of N-terminal- or C-terminal-deleted recombinant Mnn14 proteins expressed in Pichia pastoris, rMnn1477-935 with deletion of N-terminal 76 amino acids spanning the transmembrane domain (46 amino acids) and part of the stem region (30 amino acids), showed the highest level of mannosyl-phosphorylation activity. The optimum reaction conditions for rMnn1477-935 were determined through enzyme assays with a high-mannose type N-glycan (Man8GlcNAc2) as a substrate. In addition, rMnn1477-935 was shown to mannosyl-phosphorylate high-mannose type N-glycans (Man7-9GlcNAc2) on recombinant human lysosomal alpha-glucosidase (rhGAA) with remarkably high efficiency. Moreover, the majority of the resulting mannosyl-phosphorylated glycans were bis-form which can be converted to bis-phosphorylated M6P glycans having a superior lysosomal targeting capability. An in vitro N-glycan mannosyl-phosphorylation reaction using rMnn1477-935 will provide a flexible and straightforward method to increase the M6P glycan content for the generation of "Biobetter" therapeutic enzymes.

Antibacterial activity of enrofloxacin loaded gelatin-sodium alginate composite nanogels against intracellular Staphylococcus aureus small colony variants

  • Luo, Wanhe;Liu, Jinhuan;Algharib, Samah Attia;Chen, Wei
    • Journal of Veterinary Science
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    • 제23권3호
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    • pp.48.1-48.12
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    • 2022
  • Background: The poor intracellular concentration of enrofloxacin might lead to treatment failure of cow mastitis caused by Staphylococcus aureus small colony variants (SASCVs). Objectives: In this study, enrofloxacin composite nanogels were developed to increase the intracellular therapeutic drug concentrations and enhance the efficacy of enrofloxacin against cow mastitis caused by intracellular SASCVs. Methods: Enrofloxacin composite nanogels were formulated by an electrostatic interaction between gelatin (positive charge) and sodium alginate (SA; negative charge) with the help of CaCl2 (ionic crosslinkers) and optimized by a single factor test using the particle diameter, zeta potential (ZP), polydispersity index (PDI), loading capacity (LC), and encapsulation efficiency (EE) as indexes. The formation mechanism, structural characteristics, bioadhesion ability, cellular uptake, and the antibacterial activity of the enrofloxacin composite nanogels against intracellular SASCVs strain were studied systematically. Results: The optimized formulation was comprised of 10 mg/mL (gelatin), 5 mg/mL (SA), and 0.25 mg/mL (CaCl2). The size, LC, EE, PDI, and ZP of the optimized enrofloxacin composite nanogels were 323.2 ± 4.3 nm, 15.4% ± 0.2%, 69.6% ± 1.3%, 0.11 ± 0.02, and -34.4 ± 0.8 mV, respectively. Transmission electron microscopy showed that the enrofloxacin composite nanogels were spherical with a smooth surface and good particle size distributions. In addition, the enrofloxacin composite nanogels could enhance the bioadhesion capacity of enrofloxacin for the SASCVs strain by adhesive studies. The minimum inhibitory concentration, minimum bactericidal concentration, minimum biofilm inhibitory concentration, and minimum biofilm eradication concentration were 2, 4, 4, and 8 ㎍/mL, respectively. The killing rate curve had a concentration-dependent bactericidal effect as increasing drug concentrations induced swifter and more radical killing effects. Conclusions: This study provides a good tendency for developing enrofloxacin composite nanogels for treating cow mastitis caused by intracellular SASCVs and other intracellular bacterial infections.

Evaluation of intracellular uptake of cyclic RGD peptides in integrin αvβ3-expressing tumor cells

  • Soyoung Lee;Young-Hwa Kim;In Ho Song;Ji Young Choi;Hyewon Youn;Byung Chul Lee;Sang Eun Kim
    • 대한방사성의약품학회지
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    • 제6권2호
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    • pp.92-101
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    • 2020
  • The cyclic Arg-Gly-Asp (cRGD) peptide is well-known as a binding molecule to the integrin αvβ3 receptor which is highly expressed on activated endothelial cells and new blood vessels in tumors. Although numerous results have been reported by the usage of cRGD peptide-based ligands for cancer diagnosis and therapy, the distinct mechanisms, and functions of cRGD-integrin binding to cancer cells are still being investigated. In this study, we evaluated the internalization efficacy of different types of cRGD peptides (monomer, dimer and tetramer form) in integrin αvβ3 overexpressing cancer cells. Western blot and flow cytometric analysis showed U87MG expresses highly integrin αvβ3, whereas CT-26 does not show integrin αvβ3 expression. Cytotoxicity assay indicated that all cRGD peptides (0-200 µM) had at least 70-80% of viability in U87MG cells. Fluorescence images showed cRGD dimer peptides have the highest cellular internalization compare to cRGD monomer and cRGD tetramer peptides. Additionally, transmission electron microscope results clearly visualized the endocytic internalization of integrin αvβ3 receptors and correlated with confocal microscopic results. These results support the rationale for the use of cRGD dimer peptides for imaging, diagnosis, or therapy of integrin αvβ3-rich glioblastoma.

Ginsenoside F2 enhances glucose metabolism by modulating insulin signal transduction in human hepatocarcinoma cells

  • Shengqiang Han ;Long You ;Yeye Hu ;Shuai Wei ;Tingwu Liu ;Jae Youl Cho ;Weicheng Hu
    • Journal of Ginseng Research
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    • 제47권3호
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    • pp.420-428
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    • 2023
  • Background: Ginsenoside F2 (GF2), a minor component of Panax ginseng, has been reported to possess a wide variety of pharmacological activities. However, its effects on glucose metabolism have not yet been reported. Here, we investigated the underlying signaling pathways involved in its effects on hepatic glucose. Methods: HepG2 cells were used to establish insulin-resistant (IR) model and treated with GF2. Cell viability and glucose uptake-related genes were also examined by real-time PCR and immunoblots. Results: Cell viability assays showed that GF2 up to 50 μM did not affect normal and IR-HepG2 cell viability. GF2 reduced oxidative stress by inhibiting phosphorylation of the mitogen-activated protein kinases (MAPK) signaling components such as c-Jun N-terminal kinase (JNK), extracellular signal-regulated kinase 1/2 (ERK1/2), and p38 MAPK, and reducing the nuclear translocation of NF-κB. Furthermore, GF2 activated PI3K/AKT signaling, upregulated the levels of glucose transporter 2 (GLUT-2) and GLUT-4 in IR-HepG2 cells, and promoted glucose absorption. At the same time, GF2 reduced phosphoenolpyruvate carboxykinase and glucose-6-phosphatase expression as well as inhibiting gluconeogenesis. Conclusion: Overall, GF2 improved glucose metabolism disorders by reducing cellular oxidative stress in IR-HepG2 cells via MAPK signaling, participating in the PI3K/AKT/GSK-3β signaling pathway, promoting glycogen synthesis, and inhibiting gluconeogenesis.

Effect of gamma irradiation on the size of cellulose nanocrystals with polyethylene glycol and sodium hydroxide/Gd2O3 nanocomposite as contrast agent in magnetic resonance imaging (MRI)

  • Fathyah Whba;Faizal Mohamed;Mohd Idzat Idris;Rawdah Whba;Noramaliza Mohd Noor
    • Nuclear Engineering and Technology
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    • 제56권5호
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    • pp.1803-1812
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    • 2024
  • The attractive properties of gadolinium-based nanoparticles as a positive contrast agent for magnetic resonance imaging (MRI) have piqued the interest of both researchers and clinicians. Nonetheless, due to the biotoxicity of gadolinium (III) ions' free radicals, there is a need to address this issue. Therefore, this research aimed to develop a biocompatible, dispersible, stable, hydrophilic, and less toxic cellulose nanocrystals/gadolinium oxide nanocomposite as contrast agent properties for MRI purposes. This study aimed to synthesize gadolinium oxide nanoparticles coated with cellulose nanocrystals with polyethylene glycol and sodium hydroxide (CNCs-PEG/NaOH)/Gd2O3 using the gamma irradiation method to reduce the particle size. The results showed that using a gamma irradiation dose of 10 kGy, quasi-spherical morphology with a size of approximately 5.5 ± 0.65 nm could be produced. Furthermore, the cytocompatibility of (CNCs-PEG/NaOH)/Gd2O3 nanocomposite synthesized was assessed through MTT assay tests on Hep G2 cells, which demonstrated good cytocompatibility without any cytotoxic effects within a concentration range of (10 ㎍/mL - 150 ㎍/mL) and had sufficient cellular uptake. Moreover, the T1-weighted MRI of (CNCs-PEG/NaOH)/Gd2O3 nanocomposite revealed promising results as a positive contrast agent. It is envisaged that the gamma irradiation method is promising in synthesizing (CNCs-PEG/NaOH)/Gd2O3 nanocomposite with nanoscale for different applications, especially in the radiotherapy field.

MRP발현 인체 비소세포 폐암 A549에서 Tc-99m MIBI와 Tc-99m Tetrofosmin섭취의 비교 (Comparison of the Uptakes of Tc-99m MIBI and Tc-99m Tetrofosmin in A549, an MRP-expressing Cancer Cell, In Vitro and In Vivo)

  • 유정아;정신영;서명랑;배진호;안병철;이규보;최상운;이병호;이재태
    • 대한핵의학회지
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    • 제37권6호
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    • pp.382-392
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    • 2003
  • 목적: 인체 비소세포 폐암 A549세포에서 MRP발현을 조사하고, A549세포와 종양에서 Tc-99m MIBI와 tetrofosmin의 섭취정도를 비교하여 MRP추적자로서의 성능을 알아보고자 하였다. 재료 및 방법: A549세포의 MRP발현은 MRPr1항체에 대한 western blot analysis와 면역조직화학 검사로 확인하였다. 세포내 섭취는 $37^{\circ}C$에서 $100{\mu}M$의 verapamil (Vrp), $50{\mu}M$의 cyclosporin A (CsA)와 $25{\mu}M$의 butoxysulfoximide (BSO)가 전 처리된 $1{\times}10^6$개/ml 농도의 단일세포 부유 상태에서MIBI와 tetrofosmin을 30분과 60분 동안 반응시킨 후 상층액과 침전물로 분리하여 각각의 방사능을 감마계수기로 측정하였다. 체내실험은 누드마우스에 A549세포를 이종이식하여 4군으로 나누었다. Gr1과 Gr3은 MIBI와 tetrofosmin을 각각 주사한 군들이며, Gr2와 Gr4는 CsA를 70mg/kg으로 MIBI와 tetrofosmin투여 1시간 전에 처리한 군들이다. MIBI와 tetrofosmin은 각각 370KBq용량으로 꼬리정맥 주사하고 10분, 60분, 240분 후에 동물들을 희생시켜 종양조직내의 두 방사성의약품의 장기섭취율(%ID/gm)로 계산하여 비교하였다. 결과: MRPr1 항체(clone MRPr1)를 이용하여 western blot analysis결과 A549세포는 약 190 kDa에 해당하는 MRPr1 밴드를 나타내었으며, 면역조직화학 염색검사에 의한 종양조직에서도 MRP가 발현되었음을 관찰할 수 있었다. A549세포에서 세포내 MIBI와 tetrofosmin의 섭취는 배양시간이 지남에 따라 증가 하였으며 그 섭취정도는 MIBI가 tetrofosmin보다 높았다. MRP역전제들에 의한 MIBI와 tetrofosmin의 섭취정도를 각각의 60분 대조군과 비교하면 Vrp($100{\mu}M$) 처리에 의하여 각각 623%와 427%, CsA($50{\mu}M$)에 의해서는 각각 763%와 629%, BSO ($25{\mu}M$)에 의해서는 각각 219%와 140%로 증가하여 모든 역전제에서 MIBI의 섭취증가 정도가 tetrofosmin보다 높았다. 체내에서 Gr1과 Gr3에서 두 방사성의 약품의 섭취정도는 유사하였다. Gr2와 Gr4에서 CsA (70mg/kg)에 의한 섭취정도는 각각의 대조군에 비교하여 MIBI는 10분에 114%, 60분에 257%, 240분에 396%로 증가하였으며, tetrofosmin은 10분에 110%, 60분에 205%, 240분에 410%로 증가하였다. 결론: 본 연구의 결과로 보아 인체 비소세포 폐암 A549세포와 종양에서 MIBI와 teoofosmin은 MRP발현을 측정할 수 있는 방사성의약품으로 사료되며, MRP억제제들에 의한 MIBI와 tetrofosmin의 섭취증가 정도는 세포실험에서는 MIBI가 tetrofosmin보다 높았으나 동물실험에서는 유사하였다.

Thallium-201을 이용한 세포막 $Na^+-K^+$ ATPase 활성도 측정: Rubidium-86 측정법과의 비교 (Quantitative Measurement of Membrane $Na^+-K^+$ ATPase Activity using Thallium-201 : Comparison with Rubidium-86)

  • 이재태;이인규;손상균;이규보
    • 대한핵의학회지
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    • 제32권2호
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    • pp.121-128
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    • 1998
  • 목적 : 생물학적 성질이 potassium과 유사하고 핵의학분야에서 널리 이용되고 있으며 쉽게 구할 수 있는 T1-201을 이용하여 $Na^+-K^+$ ATPase의 활성도를 측정할 수 있는지를 알아보고자, 배양한 백서 대동맥평활근세포와 사람의 제대동맥 평황근세포에서 $Na^+-K^+$ ATPase의 활성도를 측정하곤 기존의 Rb-86으로 측정한 방법과 비교하였다. 또한 T1-201로 측정한 활성도에 대한 포도당, 인슐린 및 PMA의 영향을 알아보고자 하였다. 대상 및 방법: Sprague-Dawley 백서의 흉부대동맥과 인체태반의 제대동맥에서 얻은 평활근세포를 배양하여 사용하였고. ouabain첨가로 억제되는 Rb-86과 T1-201의 섭취율을 $Na^+-K^+$ ATPase에 의한 섭취율로 계산하여 활성도로 간주하였다. 결과: 배양된 백서대동맥 평활근세포에서 $Na^+-K^+$ ATPase 활성도는 고포도당배양액(22 mM) 상태에서 생리적 농도의 저포도당배양액(5 mM) 상태에 비하여 평균 28%의 저하를 보였으며, 인슐린 100 nM을 첨가하였을 때는 50%의 증가를 보였다. PKC효소를 활성화시키는 PMA는 20%의 증가를 나타내었다. 인체제대동맥의 평활근세포에서도 유사한 변화를 보였다. T1-201로 측정한 $Na^+-K^+$ ATPase의 활성도치의 변화는 Rb-86을 이용한 측정에서도 동일하게 나타났다. 결론: T1-201을 이용하여 측정한 $Na^+-K^+$ ATPase 황성도는 Rb-86을 이용한 측정치와 유사하여, T1-201은 세포막 $Na^+-K^+$ ATPase 활성도의 측정에 사용할 수 있으리라 판단된다. 인슐린과 PKC효소 자극제는 $Na^+-K^+$ ATPase 활성도를 증가시키고, 고농도의 포도당은 활성도를 감소시키는 것으로 사료된다.

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3'-$[^{18}F]$Fluoro-3'-deoxythymidine의 합성과 9L glioma 세포를 이식한 래트에서의 체내동태에 관한 연구 (A Study on Preparation of 3'-$[^{18}F]$Fluoro-3'-deoxythymidine and Its Biodistribution in 9L Glioma Bearing Rats)

  • 심아영;문병석;이태섭;이교철;안광일;양승대;유국현;천기정;최창운;임상무;전권수
    • Nuclear Medicine and Molecular Imaging
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    • 제40권5호
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    • pp.263-270
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    • 2006
  • 목적: 종양 내 양전자방출단층촬영으로 세포증식을 영상화하기 위해 $[^{11}C]$thymidine과 같은 다양한 방사성의약품이 개발되었다. 그러나 $[^{11}C]$thymidine은 C-11의 짧은 반감기와 대사과정의 추적에 문제점을 가지고 있어 문제점을 해결하기 위해 $[^{11}C]$thymidine을 대신하여 3'-$[^{18}F]$fluoro-3'-deoxythymidine ($[^{18}F]$FLT)이 개발이 보고되었다. 본 연구에서는 thymidine을 출발물질로 하여 총 6 단계에 걸쳐 3'-$[^{18}F]$fluoro-3'-deoxythymidine ($[^{18}F]$FLT)의 합성 하였다. 또한 합성된 $[^{18}F]$FLT를 이용하여 FET, FDG의 9L 세포에서 세포섭취율을 비교하였으며 생체 분포 및 양전자방출단층촬영 영상을 얻어 유용성을 검증하고자 하였다. 대상 및 방법: $[^{18}F]$FLT 전구체 3-N-tert-butoxycarbonyl-(5'-O-(4,4'-dimet hoxytriphenylmethyl)-2'-deoxy-3'-O-(4-nitrobenzenesulfonyl)-${\beta}$-D-threopentofuranosyl)thymine는 N3-위치에 tert-butoxycarbony (t-Boc)기를 도입하고, 3'-위치에 친핵성 치환반응을 유도하기 위한 이탈기로 nitrobenzenesulfonyl기를 도입하였다. 방사성동위원소 $^{18}F$의 표지는 전구체를 $120^{\circ}C$, acetonitrile 용매하에서 수행하였고 0.5 N HCl로 보호기를 제거하였다. 표지된 $[^{18}F]$FLT를 alumina N step-pak과 고성능액체크로마토그래피를 이용하여 정제하였다. $[^{18}F]$FLT의 세포섭취율은 $[^{18}F]FET,\;[^{18}F]FDG$와 9L 세포에서 비교하였고, 체내동태는 종양세포를 이식한 쥐를 이용하여 10분, 30분, 60분, 120분에 측정하였으며, 양전자방출단층촬영 영상을 얻었다. 결과: HPLC 분리 후 $[^{18}F]$FLT의 방사화학적 수율은 약 20-30% 정도였고 방사화학적 순도는 95% 이상이었다. 시험관 섭취율에서 $[^{18}F]$FLT는 시간이 지남에 따라 증가하는 양상을 보였고 생체분포 실험에서 주사 후 120분에서 tumor/blood, tumor/muscle, tumor/brain의 비율은 $1.61{\pm}0.34,\;1.70{pm}0.30,\;9.33{\pm}2.22$를 나타내었다. 또한, 양전자방출단층촬영 결과 종양에 국소화된 영상을 얻었다. 결론: $[^{18}F]$FLT의 종양세포 섭취는 정상 뇌에 비해 월등히 높게 나타났으며, 양전자방출단층 촬영 결과는 뇌종양 진단을 위한 방사성의약품으로 유용하게 이용될 수 있을 것으로 기대된다.

Influence of Quaternary Benzophenantridine and Protopine Alkaloids on Growth Performance, Dietary Energy, Carcass Traits, Visceral Mass, and Rumen Health in Finishing Ewes under Conditions of Severe Temperature-humidity Index

  • Estrada-Angulo, A.;Aguilar-Hernandez, A.;Osuna-Perez, M.;Nunez-Benitez, V.H.;Castro-Perez, B.I.;Silva-Hidalgo, G.;Contreras-Perez, G.;Barreras, A.;Plascencia, A.;Zinn, R.A.
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권5호
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    • pp.652-658
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    • 2016
  • Twenty $Pelibuey{\times}Katahdin$ ewes ($35{\pm}2.3kg$) were used to determine the effects of the consumption of standardized plant extract containing a mixture of quaternary benzophenanthridine alkaloids and protopine alkaloids (QBA+PA) on growth performance, dietary energetics, visceral mass, and ruminal epithelial health in heat-stressed ewes fed with a high-energy corn-based diet. The basal diet (13.9% crude protein and 2.09 Mcal of net energy [NE] of maintenance/kg of dry matter) contained 49.7% starch and 15.3% neutral detergent fiber. Source of QBA+PA was Sangrovit RS (SANG) which contains 3 g of quaternary benzophenathridine and protopine alkaloids per kg of product. Treatments consisted of a daily consumption of 0 or 0.5 g SANG/ewe. Ewes were grouped by weight and assigned to 10 pens (5 pens/treatment), with two ewes per pen. The experimental period lasted 70 days. The mean temperature humidity index during the course of this experiment was $81.7{\pm}1.0$ (severe heat stress). There were no treatment effects on water intake. Dry matter intake was not affected (p = 0.70) by treatments, but the group fed SANG had a numerically (11.2%) higher gain in comparison to the control group, SANG improved gain efficiency (8.3%, p = 0.04), dietary NE (5.2%, p<0.01) and the observed-to-expected NE (5.9%, p<0.01). Supplemental SANG did not affect ($p{\geq}0.12$) carcass characteristics, chemical composition of shoulder, and organ weights (g/kg empty body weight) of stomach complex, intestines, and heart/lung. Supplemental SANG decreased liver weight (10.3%, p = 0.02) and increased visceral fat (16.9%, p = 0.02). Rumen epithelium of ewes fed SANG had lower scores for cellular dropsical degeneration (2.08 vs 2.34, p = 0.02), parakeratosis (1.30 vs 1.82, p = 0.03) and neutrophil infiltration (2.08 vs 2.86, p = 0.05) than controls. It is concluded that SANG supplementation helped ameliorate the negative effects of severe heat on growth performance of feedlot ewes fed high-energy corn-based diets. Improvement in energetic efficiency may have been mediated, in part, by anti-inflammatory effects of supplemental SANG and corresponding enhancement of nutrient uptake.

Cimetidine과 위산도 변화가 $^{99m}Tc-Pertechnetate$의 흰쥐 위벽 집적에 미치는 영향 (Effect of Cimetidine and Gastric Acidity on the Gastric Mucosal Retention of $^{99m}Tc-Pertechnetate$ in Rats)

  • 김성훈;김종우;박용휘
    • 대한핵의학회지
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    • 제23권1호
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    • pp.41-48
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    • 1989
  • $^{99m}Tc-Pertechnetate\;(TcO_4^-)$ is concentrated by the stomach after intravenous injection, allowing the detection of ectopic gastric mucosa. It has been used to develop a noninvasive test of gastric secretion. However the cellular site of concentration is still controversial, that is whether mucin-secreting epithelial cell or acid-secreting parietal cell. This study is planned to investigate the effects of cimetidine and gastric acidity on the retention of $TcO_4^-$ in the gastric wall of the rat. Also we further attempted to clarify the uptake and secreting cell of $TcO_4^-$ in the gastric mucosa. One hundred rats were divided into two groups, preliminary (40 rats) and main examination group (60 rats). Preliminary examination group was composed of fasting group (20 rats) for the detection of the time for reaching stable $TcO_4^-$ retention ratio in gastric wall and post-prandial group (20 rats) for the detection of the time for reaching the maximal gastric acidity. Main examination group was composed of fasting group (30 rats), which was subdivided into control group (10 rats), cimetidine group (10rats), $Mylanta^{(R)}$ group (10 rats) and post?prandial group (30 rats), which was subaivided into 90 min group (10 rats), 90 min cimetidine group (10 rats), and 120 min group (10 rats). Retention ratio (%) of $TcO_4$ in the gastric wall and the pH of the gastric contents were measured in the extracted stomach of the six groups. Gastric wall retention ratio of $TcO_4^-$ was calculated by the gastric wall radioactivity (cpm) divided by total gastric radioactivity (cpm) at 30 mins after intravenous injection of 0.4 mCi of $TcO_4^-$. The results were as follows: 1) The time required for reaching stable $TcO_4$ retention ratio and the lowest gastric PH were 30 min and 90 min, respectively. 2) In the fasting group, the gastric wall retention ratio of $TcO_4^-$ was significantly increased in the cimetidine group, compared with the control group (P < 0.01). However there was no significant difference between the control and $Mylanta^{(R)}$ group 3) The $TcO_4^-$ retention ratios of 90 min and 120 min groups were lower than that of the fasting control group (p < 0.05), either. After administration of cimetidine, the retention ratio was significantly increased in 90 min group (p < 0.01). 4) While $TcO_4^-$ retention ratio and gastric pH were well correlated in the post-prandial 120 min group (r=0.7112, p<0.05), in the post-prandial 90 min and 90 min cimetidine groups correlated poorly. However, there was no correlation in the three fasting groups at all. Referring the above results, we infer that $TcO_4^-$ is secreted into the gastric lumen by both parietal and non-parietal cells, with dominant non-parietal $TcO_4^-$ secretion in the fasting state and dominant parietal $TcO_4^-$ secretion in the stimulated state.

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