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1. Surface modulation of extracellular vesicles with cell-penetrating peptide-conjugated lipids for improvement of intracellular delivery to endothelial cells

2. Comparative computational and experimental analyses of some natural small molecules to restore transcriptional activation function of p53 in cancer cells harbouring wild type and p53Ser46 mutant

3. Caffeic acid phenethyl ester (CAPE) confers wild type p53 function in p53Y220C mutant: bioinformatics and experimental evidence

4. Functional characterization of miR-708 microRNA in telomerase positive and negative human cancer cells

5. Identification of a new member of Mortaparib class of inhibitors that target mortalin and PARP1

6. Molecular dynamics simulations and experimental studies reveal differential permeability of withaferin-A and withanone across the model cell membrane

7. Potential of Withaferin-A, Withanone and Caffeic Acid Phenethyl ester as ATP-competitive inhibitors of BRAF: A bioinformatics study

8. Why is Mortalin a Potential Therapeutic Target for Cancer?

9. Novel role of mortalin in attenuating HIV-1 Tat-mediated astrogliosis

10. Photothermogenetic inhibition of cancer stemness by near-infrared-light-activatable nanocomplexes

11. Mortaparib, a novel dual inhibitor of mortalin and PARP1, is a potential drug candidate for ovarian and cervical cancers

12. Express ELISA for detection of mortalin

13. Wild type p53 function in p53Y220C mutant harboring cells by treatment with Ashwagandha derived anticancer withanolides: bioinformatics and experimental evidence

14. Identification of Caffeic Acid Phenethyl Ester (CAPE) as a Potent Neurodifferentiating Natural Compound That Improves Cognitive and Physiological Functions in Animal Models of Neurodegenerative Diseases

15. Phosphatidylserine Exposed Lipid Bilayer Models for Understanding Cancer Cell Selectivity of Natural Compounds: A Molecular Dynamics Simulation Study

16. Computational Identification of BCR-ABL Oncogenic Signaling as a Candidate Target of Withaferin A and Withanone

17. Integration of conventional cell viability assays for reliable and reproducible read-outs: experimental evidence

18. CARF enrichment promotes epithelial–mesenchymal transition via Wnt/β-catenin signaling: its clinical relevance and potential as a therapeutic target

19. Molecular Insights into the Antistress Potentials of Brazilian Green Propolis Extract and Its Constituent Artepillin C

20. Effect of Ashwagandha Withanolides on Muscle Cell Differentiation

21. Mortalin deficiency suppresses fibrosis and induces apoptosis in keloid spheroids

22. Folic Acid Receptor-Mediated Targeting Enhances the Cytotoxicity, Efficacy, and Selectivity of Withania somnifera Leaf Extract: In vitro and in vivo Evidence

23. Low Dose of Fluoride in the Culture Medium of Cordyceps militaris Promotes Its Growth and Enhances Bioactives with Antioxidant and Anticancer Properties

24. Computational Insights into the Potential of Withaferin-A, Withanone and Caffeic Acid Phenethyl Ester for Treatment of Aberrant-EGFR Driven Lung Cancers

25. Identification and Functional Characterization of Anti-metastasis and Anti-angiogenic Activities of Triethylene Glycol Derivatives

26. Anticancer Activity in Honeybee Propolis: Functional Insights to the Role of Caffeic Acid Phenethyl Ester and Its Complex With γ-Cyclodextrin

27. Organic cultivation of Ashwagandha with improved biomass and high content of active Withanolides: Use of Vermicompost.

28. Triethylene glycol, an active component of Ashwagandha (Withania somnifera) leaves, is responsible for sleep induction.

29. Marine Carotenoid Fucoxanthin Possesses Anti-Metastasis Activity: Molecular Evidence

30. Rat Glioma Cell-Based Functional Characterization of Anti-Stress and Protein Deaggregation Activities in the Marine Carotenoids, Astaxanthin and Fucoxanthin

31. Functional Characterisation of Anticancer Activity in the Aqueous Extract of Helicteres angustifolia L. Roots.

32. Novel Methods to Generate Active Ingredients-Enriched Ashwagandha Leaves and Extracts.

33. Assessment of bio-activities of the crude extract and components of Withania somnifera leaves by bioinformatics

34. Combinations of Ashwagandha leaf extracts protect brain-derived cells against oxidative stress and induce differentiation.

35. Evaluation and selection of candidate reference genes for normalization of quantitative RT-PCR in Withania somnifera (L.) Dunal.

36. Targeting Mortalin by Embelin Causes Activation of Tumor Suppressor p53 and Deactivation of Metastatic Signaling in Human Breast Cancer Cells.

37. An N-terminal Region of Mot-2 Binds to p53 In Vitro

38. Water extract of Ashwagandha leaves has anticancer activity: identification of an active component and its mechanism of action.

40. Withania somnifera water extract as a potential candidate for differentiation based therapy of human neuroblastomas.

41. Water extract from the leaves of Withania somnifera protect RA differentiated C6 and IMR-32 cells against glutamate-induced excitotoxicity.

42. Differential activities of the two closely related withanolides, Withaferin A and Withanone: bioinformatics and experimental evidences.

43. Ashwagandha derived withanone targets TPX2-Aurora A complex: computational and experimental evidence to its anticancer activity.

44. Ashwagandha leaf derived withanone protects normal human cells against the toxicity of methoxyacetic acid, a major industrial metabolite.

45. Protective role of Ashwagandha leaf extract and its component withanone on scopolamine-induced changes in the brain and brain-derived cells.

46. Selective killing of cancer cells by Ashwagandha leaf extract and its component Withanone involves ROS signaling.

49. Three-way Cell-based Screening of Antistress Compounds: Identification, Validation, and Relevance to Old-age Related Pathologies

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