In the present study, we employed Hershberger assay to determine possible androgenic or antiandrogenic activities of three di-2-ethylhexyl phthalate (DEHP) substitute candidates. The assay was carried out using immature castrated Sprague-Dawley male rats. After 7 days of the surgery, testosterone propionate (TP, 0.4 mg/kg/day) and test materials (low dose, 40 mg/kg/day; high dose, 400 mg/kg/day) were administered for 10 consecutive days by subcutaneous (s.c.) injection and oral gavage, respectively. Test materials were DEHP, 2-ethylhexyl oleate (IOO), 2-ethylhexyl stearate (IOS) and triethyl 2-acetylcitrate (ATEC). The rats were necropsied, and then the weights of five androgen-dependent tissues [ventral prostate, seminal vesicle, coagulating glands, levator ani-bulbocavernosus (LABC) muscle, paired Cowper's glands, and glans penis] and four androgen-insensitive tissues (kidney, adrenal glands, spleen and liver) were measured. All test materials including DEHP did not exhibit any androgenic activity in the assay. On the contrary, antiandrogen-like activities were found in all test groups, and the order of the intensity was ATEC < DEHP < ISO < IOO in the five androgen-sensitive tissues. There was no statistical difference between low dose treatment and high dose treatment of all replacement candidate groups. In DEHP groups, high dose treatment exhibited significant weight gains in LABC and Glan Penis. There was no statistical difference in androgen-insensitive tissue measurements. Since the effects of ATEC treatment on the accessory sex organs were much less or not present at all when compared to those of DEHP, ATEC could be a strong candidate to replace DEHP. IOO treatment brought most severe weight reduction in all of androgen-sensitive tissues, so this material should be excluded for further screening of DEHP substitute selection.
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http://dx.doi.org/10.12717/DR.2018.22.1.019 | DOI Listing |
ACS Appl Mater Interfaces
January 2025
Institute of Electronics, National Yang Ming Chiao Tung University, Hsinchu 300093, Taiwan.
Ultrathin indium oxide films show great potential as channel materials of complementary metal oxide semiconductor back-end-of-line transistors due to their high carrier mobility, smooth surface, and low leakage current. However, it has severe thermal stability problems (unstable and negative threshold voltage shifts at high temperatures). In this paper, we clarified how the improved crystallinity of indium oxide by using ultrahigh-temperature rapid thermal O annealing could reduce donor-like defects and suppress thermal-induced defects, drastically enhancing thermal stability.
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December 2024
University of Bristol, Bristol, United Kingdom.
Background: We investigate perceptions of soft robotics in individuals with neurodegenerative diseases (NDD) from diverse communities. Soft robotics is made from soft, flexible materials to make it safer for users. It is a fast-emerging medical field with applications ranging from diagnosis to rehabilitation practices.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
National Institute of Mental Health and Neurosciences, Bengaluru, Karnataka, India.
Background: With increased for promoting neuroplasticity in older adults through Cognitive training (CT), the study aimed to develop culturally relevant caregiver-driven model of CT for dementia called the Individualized Cognitive Augmentation Regimen for Elderly (iCARE).
Method: The study has three phases- 1. Development Phase- Included a) literature review, b) item generation, c) expert rating, d) field trial (n = 3), and e) feedback and modification.
Alzheimers Dement
December 2024
George Mason University, Fairfax, VA, USA.
Background: The evaluation of mHealth interventions often lacks detailed process evaluation data. This study presents the design and results of a process evaluation for the Wellness Enhancement for Caregivers (WECARE) program, an mHealth intervention designed to improve caregiving skills and psychosocial wellbeing of Chinese American dementia caregivers. This evaluation focused on understanding the acceptance, engagement, and the barriers and facilitators influencing behavioral changes among participants, offering valuable feedback for program refinement and dissemination.
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December 2025
Biomedical Materials and Devices for Revolutionary Integrative Systems Engineering (BMD-RISE) Research Unit, Faculty of Engineering, Chulalongkorn University, Bangkok, Thailand.
Biopolymers, such as collagens, elastin, silk fibroin, spider silk, fibrin, keratin, and resilin have gained significant interest for their potential biomedical applications due to their biocompatibility, biodegradability, and mechanical properties. This review focuses on the design and integration of biomimetic peptides into these biopolymer platforms to control the release of bioactive molecules, thereby enhancing their functionality for drug delivery, tissue engineering, and regenerative medicine. Elastin-like polypeptides (ELPs) and silk fibroin repeats, for example, demonstrate how engineered peptides can mimic natural protein domains to modulate material properties and drug release profiles.
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