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[Journal of Medicinal Natural Products] Documenting the Medicinal Potential of Allophylus dimorphus 🌿🔬From Pharmanza Her...
18/09/2026

[Journal of Medicinal Natural Products] Documenting the Medicinal Potential of Allophylus dimorphus 🌿🔬

From Pharmanza Herbal Pvt. Ltd. and Palacký University et al., this Review provides an update on the ethnopharmacological and medicinal properties of Allophylus dimorphus.

The article summarizes available knowledge on the plant’s distribution, traditional relevance, phytochemistry, and pharmacological properties. Although direct research on A. dimorphus remains limited, related species such as Allophylus cobbe and Allophylus serratus have been studied for bioactive compounds with antioxidant, antimicrobial, and anti-inflammatory activities.

Key points:
• Reviews current knowledge on Allophylus dimorphus.
• Connects ethnomedicinal use with phytochemical and pharmacological evidence.
• Highlights the need for further investigation and conservation of medicinal plant diversity.

DOI: 10.53941/jmnp.2025.100006
Read the full article: https://doi.org/10.53941/jmnp.2025.100006

[International Journal of Automotive Manufacturing and Materials] Finite Element Simulation for More Accurate Blade Forg...
17/09/2026

[International Journal of Automotive Manufacturing and Materials] Finite Element Simulation for More Accurate Blade Forging ⚙️🔧

From AECC South Industry Company Limited et al., this Article investigates springback prediction and die compensation in TC4 alloy blade forging using the finite element method.

The study simulates the forging process of TC4 alloy blades and analyzes how springback varies across blade sections after forging. Results show that springback increases with distance from the tenon, reaching a springback angle of 2.2° at 122 mm. After reverse equal-amount compensation was applied to the forging die, most springback was eliminated, with residual springback reduced to 0.2°–0.4° in sections at distances of 112 mm and above.

Key points:
• Uses finite element simulation to predict post-forging springback.
• Shows how springback changes along different blade sections.
• Demonstrates die compensation as an effective way to improve forging precision.

DOI: 10.53941/ijamm.2025.100015
Read the full article: https://doi.org/10.53941/ijamm.2025.100015

🌟 Big news for the regenerative medicine community! 🌟This October, the Gold Coast becomes the place to be for MedTech, r...
16/09/2026

🌟 Big news for the regenerative medicine community! 🌟

This October, the Gold Coast becomes the place to be for MedTech, regenerative medicine & dentistry! 🦷🔬

📅 23–25 October 2026
📍 Griffith University Gold Coast Campus, Queensland, Australia
🤝 Plus the 12th ACCTERM Forum — two events in one trip!

Organised by Griffith University and ACCTERM, and chaired by Distinguished Professor Yin Xiao, this conference brings together top scientists and industry leaders to share the latest breakthroughs in:

✨ Biomaterials & tissue regeneration
✨ 3D bioprinting & biomanufacturing
✨ Stem cell therapies & nanotechnology
✨ Dental & orthopaedic applications
✨ Turning research into real-world clinical impact

⏰ Abstracts close 20 September (5 PM AEST) — don't miss the extended deadline!
🎫 Early-bird rates: Students AUD 350 | Academics AUD 550 | Industry AUD 880

👉 Register now: https://rmd2026.eventbrite.com.au/

📝 Also open: the journal Regenerative Medicine and Dentistry (RMD) is calling for papers — open access, DOAJ-indexed, fast review!

Submit: https://sciflux.org/authors/submissions/add-submissions?journalCode=1909189148058411009

[International Journal of Drug Discovery and Pharmacology] Nuclear Receptors as Therapeutic Targets for MASLD 🧬🩺From Tem...
16/09/2026

[International Journal of Drug Discovery and Pharmacology] Nuclear Receptors as Therapeutic Targets for MASLD 🧬🩺

From Temple University et al., this Review examines nuclear receptor-targeted therapy for metabolic dysfunction-associated steatotic liver disease and its advanced stage, MASH.

The article explains how nuclear receptors regulate lipid metabolism, glucose homeostasis, inflammation, mitochondrial dysfunction, endoplasmic reticulum stress, and fibrosis—key processes involved in MASLD progression. It focuses on major therapeutic targets including THR-β, PPARs, and FXR, and discusses recent progress in related drug development.

Key points:
• Reviews the role of nuclear receptors in MASLD/MASH pathogenesis.
• Highlights THR-β, PPARs, and FXR as major therapeutic targets.
• Discusses approved and investigational agents such as resmetirom, saroglitazar, lanifibranor, obeticholic acid, and EDP-305.

DOI: 10.53941/ijddp.2025.100024
Read the full article: https://doi.org/10.53941/ijddp.2025.100024

[International Journal of Network Dynamics and Intelligence] Sampled-Data Control for Nonlinear Multiagent Systems 📡⚙️Fr...
15/09/2026

[International Journal of Network Dynamics and Intelligence] Sampled-Data Control for Nonlinear Multiagent Systems 📡⚙️

From University of Huddersfield et al., this Article investigates containment control for nonlinear multiagent systems with dynamic leaders and input saturation.

The proposed sampled-data control protocol requires information exchange and calculation only at sampling instants, helping conserve communication resources. The study also incorporates control saturation and uses algebraic graph theory, M-matrix theory, and Halanay-type inequality to derive criteria ensuring that followers ultimately converge to the convex hull formed by the leaders.

Key points:
• Studies containment control in nonlinear multiagent systems.
• Addresses dynamic leaders and input saturation.
• Develops sampled-data criteria and control gain design methods.

DOI: 10.53941/ijndi.2025.100011
Read the full article: https://doi.org/10.53941/ijndi.2025.100011

[eMicrobe] How Pho4 Works with Pho2 at the PHO5 Promoter 🧬🔬From Chiang Mai University et al., this Article applies molec...
14/09/2026

[eMicrobe] How Pho4 Works with Pho2 at the PHO5 Promoter 🧬🔬

From Chiang Mai University et al., this Article applies molecular dynamics simulation to study functional regions involved in Pho4 interaction with the co-activator Pho2 and the PHO5 promoter.

The PHO pathway is essential for fungal transcriptional response to inorganic phosphate starvation. Using simulations of Saccharomyces cerevisiae Pho4 with PHO5 promoter DNA, with and without Pho2, the study shows that the ScPho2–ScPho4 dimer forms a more stable complex at ScPHO5 than ScPho4 alone. It also reveals different conformations of the Pho4 intrinsically disordered region depending on Pho2 interaction.

Key points:
• Uses molecular dynamics simulation to analyze protein-DNA interaction over time.
• Shows that Pho2 stabilizes the Pho4-PHO5 promoter complex.
• Highlights intrinsically disordered regions as important functional elements in transcriptional control.

DOI: 10.53941/emicrobe.2025.100005
Read the full article: https://doi.org/10.53941/emicrobe.2025.100005

[Nano-electrochemistry & Nano-photochemistry] Hybrid Microalgae Systems for Cleaner Wastewater 🌿💧From Yangzhou Universit...
11/09/2026

[Nano-electrochemistry & Nano-photochemistry] Hybrid Microalgae Systems for Cleaner Wastewater 🌿💧

From Yangzhou University et al., this Review examines how microalgae can be integrated with electrocatalytic and photocatalytic technologies to improve wastewater treatment.

The article analyzes three hybrid strategies: microalgal microbial fuel cells, microalgae-electrochemical advanced oxidation processes, and microalgae-photocatalytic systems. It highlights the multifunctional roles of microalgae, including bioelectricity generation, in situ oxygen supply, contaminant biodegradation, and mitigation of radical quenching in advanced oxidation processes.

Key points:
• Reviews hybrid microalgae-electrocatalytic and photocatalytic wastewater treatment systems.
• Compares mechanisms, performance, advantages, and limitations across three technology pathways.
• Discusses scalability, cost-efficiency, and real-world applicability for future wastewater treatment.

DOI: 10.53941/nenp.2025.100004
Read the full article: https://doi.org/10.53941/nenp.2025.100004

11/09/2026

A proximity-mapping atlas defines tumour-associated proximity antigens, revealing disease-associated membrane spatial communities, and identifies EGFR–CDCP1 as a co-target pair that enhances tumour killing by multispecific therapeutics.

[eChem] Designing Electrolytes for Low-Temperature Lithium-Ion Batteries ❄️🔋From China Jiliang University et al., this R...
10/09/2026

[eChem] Designing Electrolytes for Low-Temperature Lithium-Ion Batteries ❄️🔋

From China Jiliang University et al., this Review examines how electrolyte engineering can improve lithium-ion battery performance in subzero environments, especially below −20 °C.

The article summarizes how falling temperature changes electrolyte physicochemical properties and affects battery operation. It reviews four major electrolyte categories—aqueous, organic, solid-state, and ionic liquid-based systems—and discusses how solvation regulation and interfacial chemistry can help overcome low-temperature performance limits.

Key points:
• Reviews electrolyte strategies for low-temperature lithium-ion batteries.
• Connects solvation structure with interphase composition and battery performance.
• Outlines future directions for electrolyte engineering in ultra-low-temperature environments.

DOI: 10.53941/echem.2026.100002
Read the full article: https://doi.org/10.53941/echem.2026.100002

[Highlights in High-Energy Physics] How e⁺e⁻ Collider Physics Took Shape ⚛️🔬From Max Planck Institute for the History of...
09/09/2026

[Highlights in High-Energy Physics] How e⁺e⁻ Collider Physics Took Shape ⚛️🔬

From Max Planck Institute for the History of Science; INFN, Sezione di Roma I at Sapienza University of Rome; and INFN Frascati National Laboratories, this Review explores the collaboration between Raoul Gatto and Bruno Touschek and its role in the rise of electron–positron physics.

The article traces their shared interest in the CPT theorem, the scientific environment in Rome after Fermi’s departure, the development of AdA—the first electron–positron collider built at Frascati National Laboratories in 1960—and the later construction of ADONE. It also highlights their influence as mentors and their lasting impact on students and collaborators.

Key points:
• Revisits the early history of electron–positron collider physics.
• Connects Gatto and Touschek’s work with CPT-related ideas and collider development.
• Follows the path from AdA to ADONE, multi-hadron production, and charm quark confirmation.

DOI: 10.53941/hihep.2025.100015
Read the full article: https://doi.org/10.53941/hihep.2025.100015

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