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1. Characterization of prostate macrophage heterogeneity, foam cell markers, and CXCL17 upregulation in a mouse model of steroid hormone imbalance

2. CCR2+ monocytes/macrophages drive steroid hormone imbalance-related prostatic fibrosis

3. The Multifaceted Role of Osteopontin in Prostate Pathologies

4. Osteopontin Deficiency Ameliorates Prostatic Fibrosis and Inflammation

5. Steroid hormone imbalance drives macrophage infiltration andSpp1/osteopontin+foam cell differentiation in the prostate

7. Osteopontin Deficiency Ameliorates Prostatic Fibrosis and Inflammation

8. Synthesis of potent antagonists of receptors for growth hormone-releasing hormone with antitumor and anti-inflammatory activity

9. PD11-04 LOSS OF OSTEOPONTIN LEADS TO THE RESOLUTION OF E. COLI-INDUCED PROSTATIC INFLAMMATION AND FIBROSIS

10. Osteopontin deficiency leads to the resolution of prostatic fibrosis and inflammation

11. MP06-06 INCREASED EXPRESSION OF OSTEOPONTIN IN THE PROSTATE IS ASSOCIATED WITH THE CLINICAL PROGRESSION OF BPH

12. Agonists of growth hormone-releasing hormone (GHRH) inhibit human experimental cancers in vivo by down-regulating receptors for GHRH

13. Prostatic osteopontin expression is associated with symptomatic benign prostatic hyperplasia

14. A new approach to the treatment of acute myeloid leukaemia targeting the receptor for growth hormone-releasing hormone

15. Synthesis and structure-activity studies on novel analogs of human growth hormone releasing hormone (GHRH) with enhanced inhibitory activities on tumor growth

16. Increased nuclear factor I/B expression in prostate cancer correlates with AR expression

17. Phospholipase C-η2 interacts with nuclear and cytoplasmic LIMK-1 during retinoic acid-stimulated neurite growth

18. MP45-05 GROWTH HORMONE-RELEASING HORMONE (GHRH) ANTAGONISTS INHIBIT PROSTATIC ENLARGEMENT AND INFLAMMATION IN ?-CARRAGEENAN-INDUCED EXPERIMENTAL PROSTATITIS

19. Growth hormone-releasing hormone antagonists reduce prostatic enlargement and inflammation in carrageenan-induced chronic prostatitis

20. New therapeutic approach to heart failure due to myocardial infarction based on targeting growth hormone-releasing hormone receptor

21. Targeting the 5′-AMP-activated protein kinase and related metabolic pathways for the treatment of prostate cancer

22. MP17-03 INFLAMMATION-INDUCED PROSTATIC ENLARGEMENT AND PROLIFERATION OF PROSTATE EPITHELIAL CELLS IS REDUCED BY GROWTH HORMONE-RELEASING HORMONE (GHRH) ANTAGONISTS THROUGH THE INHIBITION OF EPITHELIAL-TO-MESENCHYMAL TRANSITION

23. Antagonists of growth hormone-releasing hormone inhibit proliferation induced by inflammation in prostatic epithelial cells

24. Antagonistic analogs of growth hormone-releasing hormone increase the efficacy of treatment of triple negative breast cancer in nude mice with doxorubicin; A preclinical study

25. Targeted cytotoxic analog of luteinizing hormone-releasing hormone (LHRH), AEZS-108 (AN-152), inhibits the growth of DU-145 human castration-resistant prostate cancerin vivoandin vitrothrough elevating p21 and ROS levels

26. Synthesis of new potent agonistic analogs of growth hormone-releasing hormone (GHRH) and evaluation of their endocrine and cardiac activities

27. A Canonical EF-Loop Directs Ca2+-Sensitivity in Phospholipase C-η2

28. Hypothalamo-pituitary and immune-dependent adrenal regulation during systemic inflammation

29. MP44-11 GROWTH HORMONE-RELEASING HORMONE (GHRH) ANTAGONISTS REDUCE INFLAMMATION- AND TRANSFORMING GROWTH FACTOR (TGF)-?2-INDUCED PROLIFERATION OF HUMAN BPH-1 PROSTATE EPITHELIAL CELLS GROWN IN 3D CULTURE

30. GPR39: a Zn2+-activated G protein-coupled receptor that regulates pancreatic, gastrointestinal and neuronal functions

31. Beneficial effects of growth hormone-releasing hormone agonists on rat INS-1 cells and on streptozotocin-induced NOD/SCID mice

32. Potentiation of cytotoxic chemotherapy by growth hormone-releasing hormone agonists

33. A canonical EF-loop directs Ca(2+) -sensitivity in phospholipase C-η2

34. Erratum to: Phospholipase C-η2 interacts with nuclear and cytoplasmic LIMK-1 during retinoic acid-stimulated neurite growth

35. Treatment of urinary bladder cancers by growth hormone-releasing hormone antagonists: A preclinical report

36. Phospholipase C-η2 is required for retinoic acid-stimulated neurite growth

37. Phospholipase C-η activity may contribute to Alzheimer's disease-associated calciumopathy

38. Putative roles for phospholipase Cη enzymes in neuronal Ca2+ signal modulation

39. Phospholipase C-η2 is activated by elevated intracellular Ca(2+) levels

40. Regulation of pituitary inhibin/activin subunits and follistatin gene expression by GnRH in female rats

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