• 제목/요약/키워드: Pharmacodynamic profile

검색결과 9건 처리시간 0.023초

Clinical Evaluation of a Low-pain Long Microneedle for Subcutaneous Insulin Injection

  • Lee, Ghunil;Ma, Yonghao;Lee, Yong-ho;Jung, Hyungil
    • BioChip Journal
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    • 제12권4호
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    • pp.309-316
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    • 2018
  • Microneedles (MNs) are being developed to overcome the limitations of the conventional hypodermic needle, e.g. the injection pain. In this study, we conducted an analysis of clinical pain and bleeding at the site of MN insertion and evaluated the insulin pharmacodynamic profile compared with parameters obtained with a conventional pen needle. MN insertion into the skin of 25 healthy adults or 15 patients with type 2 diabetes (T2D) revealed significantly less pain relative to a conventional hypodermic pen needle, thus reducing pain scores from $2.1{\pm}1.9$ to $21.3{\pm}1.4$ ($mean{\pm}standard$ deviation [SD]). Besides, no bleeding was observed when the MN was used. In the insulin pharmacodynamic assay, no significant differences were observed in the blood glucose-lowering effect between the pen needle and MN. Based on these results, the MN is expected to be a good substitute for conventional hypodermic pen needles and improve the quality of life of patients by significantly reducing the pain associated with insulin treatment.

Importance of Silicon Atom in the Drug Design Process

  • Gadhe, Changdev G.;Cho, Seung Joo
    • 통합자연과학논문집
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    • 제5권4호
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    • pp.229-232
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    • 2012
  • The pharmaceutical industry has an ongoing need for new, safe medicines with genuine biomedical effects. Most of the candidate molecules are far from becomes a drug, because of their pharmacokinetic and pharmacodynamic properties. The introduction of bioisostere to improve properties of molecules and to obtain new class of compound is currently increased. Silicon substitution of carbon of existing drugs is an attractive strategy to search a new candidate with improved biological and physicochemical properties. The fundamental differences between carbon and silicon can lead to improved profile of the silicon containing candidate, and could be exploited to get further benefit in drug design process.

A FRACTIONAL-ORDER TUMOR GROWTH INHIBITION MODEL IN PKPD

  • Byun, Jong Hyuk;Jung, Il Hyo
    • East Asian mathematical journal
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    • 제36권1호
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    • pp.81-90
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    • 2020
  • Many compartment models assume a kinetically homogeneous amount of materials that have well-stirred compartments. However, based on observations from such processes, they have been heuristically fitted by exponential or gamma distributions even though biological media are inhomogeneous in real environments. Fractional differential equations using a specific kernel in Pharmacokinetic/Pharmacodynamic (PKPD) model are recently introduced to account for abnormal drug disposition. We discuss a tumor growth inhibition (TGI) model using fractional-order derivative from it. This represents a tumor growth delay by cytotoxic agents and additionally show variations in the equilibrium points by the change of fractional order. The result indicates that the equilibrium depends on the tumor size as well as a change of the fractional order. We find that the smaller the fractional order, the smaller the equilibrium value. However, a difference of them is the number of concavities and this indicates that TGI over time profile for fitting or prediction should be determined properly either fractional order or tumor sizes according to the number of concavities shown in experimental data.

Ambient Mass Spectrometry in Imaging and Profiling of Single Cells: An Overview

  • Bharath Sampath Kumar
    • Mass Spectrometry Letters
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    • 제14권4호
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    • pp.121-140
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    • 2023
  • It is becoming more and more clear that each cell, even those of the same type, has a unique identity. This sophistication and the diversity of cell types in tissue are what are pushing the necessity for spatially distributed omics at the single-cell (SC) level. Single-cell chemical assessment, which also provides considerable insight into biological, clinical, pharmacodynamic, pathological, and toxicity studies, is crucial to the investigation of cellular omics (genomics, metabolomics, etc.). Mass spectrometry (MS) as a tool to image and profile single cells and subcellular organelles facilitates novel technical expertise for biochemical and biomedical research, such as assessing the intracellular distribution of drugs and the biochemical diversity of cellular populations. It has been illustrated that ambient mass spectrometry (AMS) is a valuable tool for the rapid, straightforward, and simple analysis of cellular and sub-cellular constituents and metabolites in their native state. This short review examines the advances in ambient mass spectrometry (AMS) and ambient mass spectrometry imaging (AMSI) on single-cell analysis that have been authored in recent years. The discussion also touches on typical single-cell AMS assessments and implementations.

A Receptor Tyrosine Kinase Inhibitor, Dovitinib (TKI-258), Enhances BMP-2-Induced Osteoblast Differentiation In Vitro

  • Lee, Yura;Bae, Kyoung Jun;Chon, Hae Jung;Kim, Seong Hwan;Kim, Soon Ae;Kim, Jiyeon
    • Molecules and Cells
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    • 제39권5호
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    • pp.389-394
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    • 2016
  • Dovitinib (TKI258) is a small molecule multi-kinase inhibitor currently in clinical phase I/II/III development for the treatment of various types of cancers. This drug has a safe and effective pharmacokinetic/pharmacodynamic profile. Although dovitinib can bind several kinases at nanomolar concentrations, there are no reports relating to osteoporosis or osteoblast differentiation. Herein, we investigated the effect of dovitinib on human recombinant bone morphogenetic protein (BMP)-2-induced osteoblast differentiation in a cell culture model. Dovitinib enhanced the BMP-2-induced alkaline phosphatase (ALP) induction, which is a representative marker of osteoblast differentiation. Dovitinib also stimulated the translocation of phosphorylated Smad1/5/8 into the nucleus and phosphorylation of mitogen-activated protein kinases, including ERK1/2 and p38. In addition, the mRNA expression of BMP-4, BMP-7, ALP, and OCN increased with dovitinib treatment. Our results suggest that dovitinib has a potent stimulating effect on BMP-2-induced osteoblast differentiation and this existing drug has potential for repositioning in the treatment of bone-related disorders.

누에분말 추출물의 이당류 경구투여에 대한 동력학적 연구 (Pharmacodynamic Study of Silkworm Powder in Mice Administered to Maltose, Sucrose and Lactose)

  • 류강선;이희삼;김선여
    • 한국잠사곤충학회지
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    • 제41권1호
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    • pp.9-13
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    • 1999
  • 누에분말 투여에 따른 시간별 당의 흡수패턴 및 당분해 억제로 당의 손실여부를 알아보기 위하여 12시간동안 절식된 마우스에 이당류(Maltose, Sucrose, Lactose)와 누에분말 메탄올 추출물을 동시에 투여하여 240분동안에 혈당 변화를 측정하였다. 1. Maltose와 누에분말을 투여한 군에서는 투여 30분 후에 69.0%의 혈당상승억제효과를 보였으며, 60분이후에도 당이 서서히 흡수되고 있어 지연흡수가 잘 유도되고 있었다. Maltose 군의 투여 240분까지의 당흡수는 560.7 mg/dl이고, 누에분말군은 534.7 mg/dl로써 Maltose 투여대비 95.4%로 누에분말이 당의 손실없이 당의 흡수를 지연시켰다. 2. Sucrose와 누에분말 투여군은 투여 30분 후 혈당상승억제효과가 59.9%로 maltose과 거의 같은 수준이며, 60분 이후의 당흡수 패턴 또한 maltose과 유사하였다. Sucrose 군의 투여 240분까지의 당흡수는 508.9 mg/dl이고, 누에분말군은 468.8 mg/dl로 Sucrose 투여대비 92.1%로서 누에분말 투여가 당을 지연 흡수시켰다. 3. Lactose와 누에분말 투여군은 투여 30분 후 약간의 혈당상승을 억제하였으나, lactose 투여군과 비슷한 당흡수 패턴을 유지하여 누에분말은 lactose의 흡수를 억제하지 못하였다. 이상의 결과로 누에분말은 ${\alpha}$-glucose를 억제하여 투여 30분 후의 일시적인 혈당상승을 유발하지 않고 또한 당의 손실이 거의 없이 당의 지연흡수를 유도하고 있음이 입증되었다.

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Variability in Drug Interaction According to Genetic Polymorphisms in Drug Metabolizing Enzymes

  • Jang, In-Jin;Yu, Kyung-Sang;Cho, Joo-Youn;Chung, Jae-Yong;Kim, Jung-Ryul;Lim, Hyeong-Seok;Shin, Sang-Goo
    • 한국환경성돌연변이발암원학회지
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    • 제24권1호
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    • pp.15-18
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    • 2004
  • There are significant differences in the extent of drug interactions between subjects. The influence of the genetic make up of drug metabolizing enzyme activities (CYP3A5, CYP2C19 and UDP-glucuronosyl transferase) on the pharmacokinetic drug interaction potential were studied in vivo. Nineteen healthy volunteers were grouped with regard to the $CYP3A5^{*}3$ allele, into homozygous wild-type (CYP3A5^{*}1/1^{*}1$, n=6), heterozygous $(CYP3A5^{*}1/^{*}3$, n=6), and homozygous variant-type $(CYP3A5^{*}3/^{*}3$, n=7) subject groups. The pharmacokinetic profile of intravenous midazolam was characterized before and after itraconazole administration (200 mg once daily for 4 days), and also following rifampin pretreatment (600 mg once daily for 10 days), with a washout period of 2 weeks in between. For omeprazole and moclobemide pharmacokinetic interaction study 16 healthy volunteers were recruited. The volunteer group comprised 8 extensive metabolizers and 8 poor metabolizers of CYP2C19, which was confirmed by genotyping. Subjects were randomly allocated into two sequence groups, and a single-blind, placebo-controlled, two-period crossover study was performed. In study I, a placebo was orally administered for 7 days. On the eighth morning, 300 mg of moclobemide and 40 mg of placebo were coadministered with 200 mL of water, and a pharmacokinetic study was performed. During study n, 40 mg of omeprazole was given each morning instead of placebo, and pharmacokinetic studies were performed on the first and eighth day with 300 mg of moclobemide coadministration. In the UGT study pharmacokinetics and dynamics of 2 mg intravenous lorazepam were evaluated before and after rifampin pretreatment (600 mg once daily for 10 days), with a washout period of 2 weeks in between. The subjective and objective pharmacodynamic tests were done before and 1, 2, 4, 6, 8, and 12 hrs after lorazepam administration. The pharmacokinetic profiles of midazolam and of its hydroxy metabolites did not show differences between the genotype groups under basal and induced metabolic conditions. However, during the inhibited metabolic state, the $CYP3A5^{*}3/^{*}3$ group showed a greater decrease in systemic clearance than the $CYP3A5^{*}1/^{*}1$ group $(8.5\pm3.8$ L/h/70 kg vs. $13.5\pm2.7$ L/h/70 kg, P=0.027). The 1'-hydroxymidazolam to midazolam AUC ratio was also significantly lower in the $CYP3A5^{*}3/^{*}3$,/TEX> group $(0.58\pm0.35,$ vs. $1.09\pm0.37$ for the homozygous wild-type group, P=0.026). The inhibition of moclo-bemide metabolism was significant in extensive metabolizers even after a single dose of omeprazole. After daily administration of omeprazole for 1 week, the pharmacokinetic parameters of moclobemide and its metabolites in extensive metabolizers changed to values similar to those in poor metabolizers. In poor meta-bolizers, no remarkable changes in the pharmacokinetic parameters were observed. The area under the time-effect curves of visual analog scale(VAS), choice reaction time, and continuous line tracking test results of lorazepam was reduced by 20%, 7%, 23% respectively in induced state, and in spite of large interindividual variablity, significant statistical difference was shown in VAS(repeated measures ANOVA, p=0.0027).

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약리 유전학적 방법을 이용한 항우울제 치료반응성의 예측 (The Use of Pharmacogenomic Method for the Prediction of Antidepressant Responsiveness)

  • 김도관;임신원
    • 생물정신의학
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    • 제9권1호
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    • pp.25-33
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    • 2002
  • 우울증 환자들에게 항우울제를 처방하는 임상의들이 흔히 겪게 되는 두 가지 어려움은 약물의 치료 반응 유무를 판단하기 위하여 처음 약물을 투여한 후 4~6주 이상을 기다려야 하는 것과 어떤 종류의 항우울제라도 처음 4~6주 이후에도 반응을 보이지 않는 환자들이 30~40% 이상이 된다는 것이다. 이와 같은 어려움을 극복하기 위해서는 환자 개개인의 항우울제에 대한 반응성을 미리 예측하는 것이 필요하다. 이 논문에서는 연구자들의 과거 실험들과 이미 발표된 연구들을 중심으로 하여 항우울제에 대한 치료 반응성을 예측하는데 약리유전학적 방법을 이용한 현재까지의 연구들과 연구 결과를 해석 할때 고려해야 할 사항을 살펴보고자 한다. 세로토닌 수송체(serotonin transporter, 5-HTT)는 항우울제가 신경세포에 작용하는 주요 작용부위 중 하나이다. 최근의 연구들에 의하면 5-HTT 유전자 promoter 부위의 기능적인 다형성(5-HTT linked polymorphism repetitive element in promoter region, 5-HTTLPR)이 항우울제에 대한 치료 반응성과 관련이 있는 것으로 알려져 있으며, 5-HTTLPR 유전형의 분포빈도는 인종들 간에서 차이가 있는 것으로 알려져 있다. 연구자들은 최근의 실험을 통하여 5-HTTLPR 유전형들의 endophenotype을 혈소판 막에 분포하는 5-HTT의 약동학적 특성으로 측정할 수 있음을 발견하였다. 흥미로운 사실은 5-HTTLPR 유전형의 분포가 인종적으로 다른 양상으로 나타났듯이, 그 endophenotype인 혈소판막의 5-HTT의 약동학적 특성 역시 전혀 반대되는 양상으로 나타났다. 하지만 이 endophenotype의 특성만으로 항우울제의 치료반응을 예측하는 것은 아직까지 한계가 있으며, 향후 이러한 과제를 해결하기 위한 방법중 약리유전학적 방법을 사용할 수 있음을 제안하였다. 예비적으로 시행한 실험을 통하여 연구자들은 세로토닌 수송체의 구조와 특징이 비슷한 생체아민 수송체들의 유전자 다형성들 간에 유의한 상관관계가 있음을 발견하였으며, 이들 유의한 상관관계가 있는 유전자형을 연합하여 조합할 때 세로토닌 수송체의 유전형만의 기여도보다도 항우울제에 대한 반응 예측도의 odds ratio가 유의하게 상승함을 발견하였다. 이러한 연구 결과들은 임상의가 항우울제를 처방 할 때에 환자들의 유전적 그리고 인종적인 배경을 고려하여 개별화된 전략을 사용하여야 한다는 가설을 뒷받침한다. 앞으로 항우울제의 작용기전과 그 대사과정에 관여하는 유전자들들 중심으로 유전자 간의 상호 작용을 밝히고 그 표현형이 약물의 치료 반응도에 미치는 기여도를 평가하는 작업들은 항우울제의 치료 반응과 그 부작용을 미리 예측할 수 있는 평가 도구를 개발할 수 있는 가장 최선의 길이 될 수 있을 것이다.

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Variability in Drug Interaction According to Genetic Polymorph isms in Drug Metabolizing Enzymes

  • Jang, In-Jin;Yu, Kyung-Sang;Cho, Joo-Youn;Chung, Jae-Yong;Kim, Jung-Ryul;Lim, Hyeong-Seok;Shin, Sang-Goo
    • 한국환경성돌연변이발암원학회지
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    • 제23권4호
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    • pp.131-134
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    • 2003
  • There are significant differences in the extent of drug interactions between subjects. The influence of the genetic make up of drug metabolizing enzyme activities (CYP3A5, CYP2C19 and UDP-glucuronosyl transferase) on the pharmacokinetic drug interaction potential were studied in vivo. Nineteen healthy volunteers were grouped with regard to the $CYP3A5^{*}3$ allele, into homozygous wild-type (CYP3A5^{*}1/1^{*}1$, n=6), heterozygous $(CYP3A5^{*}1/^{*}3$, n=6), and homozygous variant-type $(CYP3A5^{*}3/^{*}3$, n=7) subject groups. The pharmacokinetic profile of intravenous midazolam was characterized before and after itraconazole administration (200 mg once daily for 4 days), and also following rifampin pretreatment (600 mg once daily for 10 days), with a washout period of 2 weeks in between. For omeprazole and moclobemide pharmacokinetic interaction study 16 healthy volunteers were recruited. The volunteer group comprised 8 extensive metabolizers and 8 poor metabolizers of CYP2C19, which was confirmed by genotyping. Subjects were randomly allocated into two sequence groups, and a single-blind, placebo-controlled, two-period crossover study was performed. In study I, a placebo was orally administered for 7 days. On the eighth morning, 300 mg of moclobemide and 40 mg of placebo were coadministered with 200 mL of water, and a pharmacokinetic study was performed. During study n, 40 mg of omeprazole was given each morning instead of placebo, and pharmacokinetic studies were performed on the first and eighth day with 300 mg of moclobemide coadministration. In the UGT study pharmacokinetics and dynamics of 2 mg intravenous lorazepam were evaluated before and after rifampin pretreatment (600 mg once daily for 10 days), with a washout period of 2 weeks in between. The subjective and objective pharmacodynamic tests were done before and 1, 2, 4, 6, 8, and 12 hrs after lorazepam administration. The pharmacokinetic profiles of midazolam and of its hydroxy metabolites did not show differences between the genotype groups under basal and induced metabolic conditions. However, during the inhibited metabolic state, the $CYP3A5^{*}3/^{*}3$ group showed a greater decrease in systemic clearance than the $CYP3A5^{*}1/^{*}1$ group $(8.5\pm3.8$ L/h/70 kg vs. $13.5\pm2.7$ L/h/70 kg, P=0.027). The 1'-hydroxymidazolam to midazolam AUC ratio was also significantly lower in the $CYP3A5^{*}3/^{*}3$,/TEX> group $(0.58\pm0.35,$ vs. $1.09\pm0.37$ for the homozygous wild-type group, P=0.026). The inhibition of moclo-bemide metabolism was significant in extensive metabolizers even after a single dose of omeprazole. After daily administration of omeprazole for 1 week, the pharmacokinetic parameters of moclobemide and its metabolites in extensive metabolizers changed to values similar to those in poor metabolizers. In poor meta-bolizers, no remarkable changes in the pharmacokinetic parameters were observed. The area under the time-effect curves of visual analog scale(VAS), choice reaction time, and continuous line tracking test results of lorazepam was reduced by 20%, 7%, 23% respectively in induced state, and in spite of large interindividual variablity, significant statistical difference was shown in VAS(repeated measures ANOVA, p=0.0027).

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