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Featured researches published by Yuchen Sun.


Antimicrobial Agents and Chemotherapy | 2014

Different Interaction Profiles of Direct-Acting Anti-Hepatitis C Virus Agents with Human Organic Anion Transporting Polypeptides

Tomomi Furihata; Shogo Matsumoto; Zhongguo Fu; Akihito Tsubota; Yuchen Sun; Sayaka Matsumoto; Kaoru Kobayashi; Kan Chiba

ABSTRACT Simeprevir (SMV), asunaprevir (ASV), daclatasvir (DCV), and sofosbuvir (SFV), which are newly developed direct-acting antiviral agents (DAAs) against hepatitis C virus (HCV) infection, are among the key components of anti-HCV regimens. Preclinical studies have identified inhibitory properties for some of these DAAs against organic anion transporting polypeptide 1B (OATP1B) functions. However, their details remain mostly uncharacterized. Because OATP1B1 and OATP1B3 play determinant roles in the pharmacokinetics of various drugs via their uptake into human hepatocytes, it is plausible that the inhibition of these OATP1Bs by a DAA would create a potential risk of drug-drug interaction, which has been an emerging concern in anti-HCV therapy. Accordingly, in the present study, we intended to clarify the inhibitory characteristics of newly developed DAAs toward OATP1B1 and -1B3 functions. The results of our coincubation inhibition assays have shown that all tested DAAs could inhibit OATP1B1 functions and that SMV, ASV, and DCV (to a lesser extent), but not SFV, exhibited long-lasting preincubation inhibitory effects on OATP1B1 functions. It was also found that the preincubation inhibitory effects of SMV and ASV could augment their coincubation inhibition potency. Furthermore, significant, but differential, inhibitory effects of the DAAs on the OATP1B3 function were identified. To summarize, our results clearly show that the newly developed DAAs are newly identified OATP1B1 and OATP1B3 inhibitors with distinctive interaction properties. It is believed that these inhibition profiles will provide essential information to all concerned parties with respect to the clinical significance of DAA-mediated inhibition of OATP1Bs in anti-HCV therapy.


Clinical and translational medicine | 2014

Unique expression features of cancer-type organic anion transporting polypeptide 1B3 mRNA expression in human colon and lung cancers.

Yuchen Sun; Tomomi Furihata; Seiya Ishii; Miki Nagai; Manami Harada; Osamu Shimozato; Takehiko Kamijo; Shinichiro Motohashi; Ichiro Yoshino; Atsuko Kamiichi; Kaoru Kobayashi; Kan Chiba

BackgroundWe have previously identified the cancer-type organic anion transporting polypeptide 1B3 (Ct-OATP1B3) mRNA in several human colon and lung cancer tissues. Ct-OATP1B3 is a variant of the liver-type OATP1B3 (Lt-OATP1B3) mRNA, which is a hepatocyte plasma membrane transporter with broad substrate specificity. However, in cancer tissues, both the detailed characteristics of Ct-OATP1B3 mRNA expression and its biological functions remain unclear. With this point in mind, we sought to characterize Ct-OATP1B3 mRNA expression in colon and lung cancer tissues. In addition, we attempted to obtain functional implication of Ct-OATP1B3 in cancer cells.MethodsMatched pairs of cancer and normal tissues were collected from 39 colon cancer and 28 lung cancer patients. The OATP1B3 mRNA expression levels in each of these tissues were separately determined by quantitative real-time polymerase chain reaction. Mann-Whitney U test and Fisher’s exact test were used in statistical analysis. The Ct-OATP1B3 functional expression in colon cancer cells was then examined by Western blotting and transport analyses.ResultsCt-OATP1B3 mRNA, but not Lt-OATP1B3 mRNA, was abundantly expressed in colon cancer tissues at a higher detection frequency (87.2%) than that of the adjacent normal tissues (2.6%). Furthermore, it was found that Ct-OATP1B3 mRNA expression was often detected in early colon cancer stages (88.9%, n = 18), and that its expression was associated with well-differentiated colon cancer statuses. On the other hand, Ct-OATP1B3 mRNA also showed a predominant and cancer-associated expression profile in lung tissues, although at frequencies and expression levels that were lower than those obtained from colon cancer. As for attempts to clarify the Ct-OATP1B3 functions, neither protein expression nor transport activity could be observed in any of the cell lines examined.ConclusionsBased on the unique characteristics of the Ct-OATP1B3 mRNA expression profile identified in this study, Ct-OATP1B3 mRNA can be expected to become a biomarker candidate for use in colon (and lung) cancer diagnosis. Simultaneously, our results advance the possibility that Ct-OATP1B3 might play yet unidentified roles, in addition to transporter function, in cancer cell biology.


Current Drug Metabolism | 2015

Cancer-type Organic Anion Transporting Polypeptide 1B3: Current Knowledge of the Gene Structure, Expression Profile, Functional Implications and Future Perspectives.

Tomomi Furihata; Yuchen Sun; Kan Chiba

Human organic anion transporting polypeptide 1B3 (OATP1B3) is a hepatocyte drug transporter that facilitates uptake of various therapeutic drugs from the circulatory system. Shortly after its initial identification in the liver, OATP1B3 expression was also reported in various solid cancer tissues. In the years since that time, it has been presumed that the OATP1B3 expressed in cancer tissues is identical to that expressed in the liver. However, we have recently identified a new OATP1B3 mRNA variant in cancer tissues, which we have named cancer-type OATP1B3 (Ct-OATP1B3). Given that the identification of Ct-OAT1B3 as a bona fide cancer-associated isoform revises a longstanding study premise, it is essential to fully elucidate the molecular function of Ct-OATP1B3 in cancer cells. Based on the predicted Ct-OATP1B3 protein structure, it is reasonable to assume that it functions as a transporter, but there are a number of ongoing arguments regarding Ct-OATP1B3 protein expression and its functions. With the above points in mind, this review will summarize current knowledge of Ct-OATP1B3 mRNA expression features in cancer tissues and its proposed, yet currently controversial, functions. Based on that background, our future perspectives related to Ct-OATP1B3 studies will also be presented.


Biomarkers in Medicine | 2017

Cancer-type OATP1B3 mRNA has the potential to become a detection and prognostic biomarker for human colorectal cancer

Yuchen Sun; Manami Harada; Osamu Shimozato; Hiroaki Souda; Nobuhiro Takiguchi; Yoshihiro Nabeya; Takehiko Kamijo; Hidetaka Akita; Naohiko Anzai; Kan Chiba; Tomomi Furihata

AIM We aimed to clarify diagnostic and prognostic biomarker potentials of cancer-type organic anion transporting polypeptide 1B3 (Ct-OATP1B3) mRNA in colorectal cancer (CRC) patients. PATIENTS & METHODS Ct-OATP1B3 mRNA levels in 97 CRC and adjacent normal colon tissues were measured by real-time PCR. The receiver operating characteristic curve analysis and the Kaplan-Meier curve analysis were performed to characterize its biomarker potentials. RESULTS Ct-OATP1B3 mRNA showed noticeable diagnostic power (the area under the receiver operating characteristic = 0.91) in the CRC patients. Additionally, the higher/lower mRNA expression was clearly associated with better/poorer overall survival in the CRC patients (p < 0.05). CONCLUSION Ct-OATP1B3 mRNA has the potential to be a tissue-based biomarker for definitive diagnosis and prognostic stratification in CRC.


Cancer Letters | 2018

Cancer-type organic anion transporting polypeptide 1B3 is a target for cancer suicide gene therapy using RNA trans-splicing technology

Yuchen Sun; Josefina Piñón Hofbauer; Manami Harada; Katharina Wöss; Ulrich Koller; Hanae Morio; Anna Stierschneider; Keita Kitamura; Mari Hashimoto; Kan Chiba; Hidetaka Akita; Naohiko Anzai; Julia Reichelt; Johann W. Bauer; Christina Guttmann-Gruber; Tomomi Furihata

Cancer-type organic anion transporting polypeptide 1B3 (Ct-OATP1B3) has been identified as a cancer-specific transcript in various solid cancers, including colorectal cancer. Given its excellent cancer-specific expression profile, we hypothesized that Ct-OATP1B3 could represent a promising target for cancer-specific expression of the suicide gene, herpes simplex virus 1 thymidine kinase (HSV-tk), via a spliceosome-mediated RNA trans-splicing (SMaRT) approach. SMaRT technology is used to recombine two RNA molecules to generate a chimeric transcript. In this study, we engineered an RNA trans-splicing molecule carrying a translation-defective HSV-tk sequence (RTM44), which was capable of inducing its own trans-splicing to the desired Ct-OATP1B3 pre-mRNA target. RTM44 expression in LS180 cells resulted in generation of Ct-OATP1B3/HSV-tk fusion mRNA. A functional translation start site contributed by the target pre-mRNA restored HSV-tk protein expression, rendering LS180 cells sensitive to ganciclovir treatment in vitro and in xenografted mice. The observed effects are ascribed to accurate and efficient trans-splicing, as they were absent in cells carrying a splicing-deficient mutant of RTM44. Collectively, our data highlights Ct-OATP1B3 as an ideal target for the HSV-tk SMaRT suicide system, which opens up new translational avenues for Ct-OATP1B3-targeted cancer therapy.


Biological & Pharmaceutical Bulletin | 2018

Cancer-Type OATP1B3 mRNA in Extracellular Vesicles as a Promising Candidate for a Serum-Based Colorectal Cancer Biomarker

Hanae Morio; Yuchen Sun; Manami Harada; Hideyuki Ide; Osamu Shimozato; Xujia Zhou; Kenjirou Higashi; Ryuzaburo Yuki; Naoto Yamaguchi; Josefina Piñón Hofbauer; Christina Guttmann-Gruber; Naohiko Anzai; Hidetaka Akita; Kan Chiba; Tomomi Furihata

Cancer-type organic anion transporting polypeptide 1B3 (Ct-OATP1B3) mRNA is a variant isoform of the liver-type OATP1B3. Because Ct-OATP1B3 mRNA shows an excellent cancer-specific expression profile in colorectal cancer (CRC), and that its expression levels are associated with CRC prognosis, it holds the potential to become a useful CRC detection and diagnosis biomarker. While the potential is currently justified only at the tissue level, if existence of Ct-OATP1B3 mRNA in CRC-derived extracellular vesicles (EVs) is validated, the findings could enhance its translational potential as a CRC detection and diagnosis biomarker. Therefore, this study aims at proving that Ct-OATP1B3 mRNA exists in CRC-derived EVs, and can be detected using serum specimens. To examine the possibility of Ct-OATP1B3 mRNA being existed in extracellular milieu, we isolated EVs from the human CRC (HCT116, HT-29, and SW480) cell lines, and prepared their cDNAs. The RT-PCR results showed that Ct-OATP1B3 mRNA was clearly present in EVs derived from the human CRC cell lines. Then, in order to further explore the possibility that Ct-OATP1B3 mRNA in CRC-derived EVs can be detected in serum, we isolated serum EVs derived from human CRC xenograft mice, and then performed RT-PCR. The results showed that Ct-OATP1B3 mRNA could be found in all serum EV and CRC tissue samples of the mice examined. Collectively, our findings, which show that Ct-OATP1B3 mRNA exists in EVs and can be detected in (at least) mouse serum, strengthen the potential use of Ct-OATP1B3 mRNA as a serum-based CRC biomarker.


Journal of Investigative Dermatology | 2017

Extracellular Vesicles as Biomarkers for the Detection of a Tumor Marker Gene in Epidermolysis Bullosa-Associated Squamous Cell Carcinoma

Yuchen Sun; Katharina Woess; Melanie Kienzl; Victoria M. Leb-Reichl; Andrea Feinle; M. Wimmer; R. Zauner; Verena Wally; Ursula Luetz-Meindl; Jemima E. Mellerio; Ignacia Fuentes; Andrew P. South; Johann W. Bauer; Julia Reichelt; Tomomi Furihata; Christina Guttmann-Gruber; Josefina Piñón Hofbauer


Molecular Neurobiology | 2018

A New Conditionally Immortalized Human Fetal Brain Pericyte Cell Line: Establishment and Functional Characterization as a Promising Tool for Human Brain Pericyte Studies

Kenta Umehara; Yuchen Sun; Satoshi Hiura; Koki Hamada; Motoyuki Itoh; Keita Kitamura; Motohiko Oshima; Atsushi Iwama; Kosuke Saito; Naohiko Anzai; Kan Chiba; Hidetaka Akita; Tomomi Furihata


Journal of Investigative Dermatology | 2018

223 Cancer-type SLCO1B3 as a biomarker for epidermolysis bullosa-associated skin cancer

Christina Guttmann-Gruber; K. Wöss; Yuchen Sun; Tomomi Furihata; Julia Reichelt; J. Piñón Hofbauer


The Japanese Biochemical Society/The Molecular Biology Society of Japan | 2017

Characterization of brain pericyte-specific inflammation properties utilizing the new human brain vascular pericyte cell line

Kenta Umehara; Yuchen Sun; Atsunori Saraya; Motohiko Oshima; Atsushi Iwama; Naohiko Anzai; Kan Chiba; Hidetaka Akita; Tomomi Furihata

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