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Danlian-Tongmai formula improves diabetic vascular calcification by regulating CCN3/NOTCH signal axis to inhibit inflammatory reaction.

Front Pharmacol

January 2025

National Clinical Research Center for TCM Cardiology, Xiyuan Hospital, China Academy of Chinese Medical Sciences, Beijing, China.

Background: Vascular calcification (VC) commonly occurs in diabetes and is associated with cardiovascular disease incidence and mortality. Currently, there is no drug treatment for VC. The Danlian-Tongmai formula (DLTM) is a traditional Chinese medicine (TCM) prescription used for diabetic VC (DVC), but its mechanisms of action remain unclear.

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Anti-Ulcerogenic Activity of the Marine-Pearl Derived Medicine Mukta Pishti in Rat Model of Pylorus Ligation-Induced Peptic Ulcer.

J Ethnopharmacol

January 2025

Drug Discovery and Development Division, Patanjali Research Foundation, Haridwar 249 405, Uttarakhand, India; Special Centre for Systems Medicine, Jawaharlal Nehru University, New Delhi 110 067, India. Electronic address:

Ethnopharmacological Relevance: Mukta Pishti (MKP) is a traditional Ayurvedic medicine described in classical textbook 'Rasatarangini' and synthesized from marine pearls following classical methodology. MKP is used as therapeutic medicine against hyperacidity, irritable bowel syndrome, and gastric ulcers.

Aim Of The Study: Here, we explored the therapeutic properties of MKP in alleviating peptic ulcer in Male Wistar rat model of pylorus ligation.

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An Acellular Platform to Drive Urinary Bladder Tissue Regeneration.

Adv Ther (Weinh)

January 2025

Department of Urology, Feinberg School of Medicine, Northwestern University, Chicago, IL 60611, USA; Division of Pediatric Urology, Department of Surgery, Ann & Robert H. Lurie Children's Hospital of Chicago, Chicago, IL 60611, USA; Center for Regenerative Nanomedicine, Northwestern University, Chicago, IL 60611, USA; Department of Biomedical Engineering, McCormick School of Engineering, Northwestern University, Evanston, IL 60208, USA.

Impaired bladder compliance secondary to congenital or acquired bladder dysfunction can lead to irreversible kidney damage. This is managed with surgical augmentation utilizing intestinal tissue, which can cause stone formation, infections, and malignant transformation. Co-seeded bone marrow mesenchymal stem cell (MSC)/CD34+ hematopoietic stem cell (HSPC) scaffolds (PRS) have been successful in regenerating bladder tissue.

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3D printing, as a layer-by-layer manufacturing technique, enables the customization of tissue engineering scaffolds. Surface modification of biomaterials is a beneficial approach to enhance the interaction with living cells and tissues. In this research, a polylactic acid/polyethylene glycol scaffold containing 30 % bredigite nanoparticles (PLA/PEG/B) was fabricated utilizing fused deposition modeling (FDM) 3D printing.

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