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Correction: Dubljević et al. Genotype-Based Housing as a Potential Confounder in Studies Using Transgenic Mouse Models—Insight from the A53T Mouse Model of Parkinson’s Disease. Biomedicines 2025, 13, 1506
 
 
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Correction

Correction: Nishikawa et al. Insulin-like Growth Factor-I Reduces Collagen Production by Hepatic Stellate Cells Through Stimulation of Collagen Degradation System via mTOR-Dependent Signaling Pathway. Biomedicines 2025, 13, 566

1
Department of Gastroenterology, Graduate School of Medicine, The University of Tokyo, Tokyo 113-8655, Japan
2
Center for Epidemiology and Preventive Medicine, The University of Tokyo Hospital, Tokyo 113-8655, Japan
3
Division for Health Service Promotion, The University of Tokyo, Tokyo 113-0033, Japan
4
Department of Clinical Laboratory Medicine, Graduate School of Medicine, The University of Tokyo, Tokyo 113-8655, Japan
5
Kanto Central Hospital, Tokyo 158-8531, Japan
6
Department of Gastroenterology and Hepatology, Saitama Medical University, Saitama 350-0451, Japan
7
Health Promotion Center, Saitama Medical University, Saitama 350-0451, Japan
*
Author to whom correspondence should be addressed.
Biomedicines 2025, 13(12), 3095; https://doi.org/10.3390/biomedicines13123095
Submission received: 2 November 2025 / Accepted: 25 November 2025 / Published: 16 December 2025
(This article belongs to the Section Endocrinology and Metabolism Research)
References
In the original publication [1], citation reference 17 has been retracted; the authors unintentionally cited this retracted reference. The authors have updated the retracted citation reference. The new citation reference appears below.
17. Kunnumakkara, A.B.; Sung, B.; Ravindran, J.; Diagaradjane, P.; Deorukhkar, A.; Dey, S.; Koca, C.; Yadav, V.R.; Tong, Z.; Gelovani, J.G.; et al. γ-tocotrienol inhibits pancreatic tumors and sensitizes them to gemcitabine treatment by modulating the inflammatory microenvironment. Cancer Res. 2010, 70, 8695–8705. Erratum in Cancer Res. 2018, 78, 5181.
The Zip Codes
The zip code for [Center for Epidemiology and Preventive Medicine, The University of Tokyo Hospital, Tokyo 113-0033, Japan] in the author affiliations was inadvertently listed as [113-0033]. This should be corrected to [113-8655].
The zip code for [Division for Health Service Promotion, The University of Tokyo, Tokyo 113-8655, Japan] in the author affiliations was inadvertently listed as [113-8655]. This should be corrected to [113-0033].
The authors state that the scientific conclusions are unaffected. This correction was approved by the Academic Editor. The original publication has also been updated.

Reference

  1. Nishikawa, T.; Ohtomo, N.; Inoue, Y.; Takahashi, M.; Ikeda, H.; Koike, K.; Yamamichi, N.; Fujishiro, M.; Tomiya, T. Insulin-like Growth Factor-I Reduces Collagen Production by Hepatic Stellate Cells Through Stimulation of Collagen Degradation System via mTOR-Dependent Signaling Pathway. Biomedicines 2025, 13, 566. [Google Scholar] [CrossRef] [PubMed]
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MDPI and ACS Style

Nishikawa, T.; Ohtomo, N.; Inoue, Y.; Takahashi, M.; Ikeda, H.; Koike, K.; Yamamichi, N.; Fujishiro, M.; Tomiya, T. Correction: Nishikawa et al. Insulin-like Growth Factor-I Reduces Collagen Production by Hepatic Stellate Cells Through Stimulation of Collagen Degradation System via mTOR-Dependent Signaling Pathway. Biomedicines 2025, 13, 566. Biomedicines 2025, 13, 3095. https://doi.org/10.3390/biomedicines13123095

AMA Style

Nishikawa T, Ohtomo N, Inoue Y, Takahashi M, Ikeda H, Koike K, Yamamichi N, Fujishiro M, Tomiya T. Correction: Nishikawa et al. Insulin-like Growth Factor-I Reduces Collagen Production by Hepatic Stellate Cells Through Stimulation of Collagen Degradation System via mTOR-Dependent Signaling Pathway. Biomedicines 2025, 13, 566. Biomedicines. 2025; 13(12):3095. https://doi.org/10.3390/biomedicines13123095

Chicago/Turabian Style

Nishikawa, Takako, Natsuko Ohtomo, Yukiko Inoue, Mami Takahashi, Hitoshi Ikeda, Kazuhiko Koike, Nobutake Yamamichi, Mitsuhiro Fujishiro, and Tomoaki Tomiya. 2025. "Correction: Nishikawa et al. Insulin-like Growth Factor-I Reduces Collagen Production by Hepatic Stellate Cells Through Stimulation of Collagen Degradation System via mTOR-Dependent Signaling Pathway. Biomedicines 2025, 13, 566" Biomedicines 13, no. 12: 3095. https://doi.org/10.3390/biomedicines13123095

APA Style

Nishikawa, T., Ohtomo, N., Inoue, Y., Takahashi, M., Ikeda, H., Koike, K., Yamamichi, N., Fujishiro, M., & Tomiya, T. (2025). Correction: Nishikawa et al. Insulin-like Growth Factor-I Reduces Collagen Production by Hepatic Stellate Cells Through Stimulation of Collagen Degradation System via mTOR-Dependent Signaling Pathway. Biomedicines 2025, 13, 566. Biomedicines, 13(12), 3095. https://doi.org/10.3390/biomedicines13123095

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