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1. Altered RBP1 Gene Expression Impacts Epithelial Cell Retinoic Acid, Proliferation, and Microenvironment.

2. Influence of all-trans retinoic acid on sperm metabolism and oxidative stress: Its involvement in the physiopathology of varicocele-associated male infertility.

3. 9-cis Retinoic acid modulates myotrophin expression and its miR in physiological and pathophysiological cell models.

4. CrbpI modulates glucose homeostasis and pancreas 9-cis-retinoic acid concentrations.

5. Bid as a potential target of apoptotic effects exerted by low doses of PPARγ and RXR ligands in breast cancer cells.

6. Identification of 9-cis-retinoic acid as a pancreas-specific autacoid that attenuates glucose-stimulated insulin secretion.

7. Proliferative and anti-proliferative effects of retinoic acid at doses similar to endogenous levels in Leydig MLTC-1/R2C/TM-3 cells.

8. Retinoylation reactions are inversely related to the cardiolipin level in testes mitochondria from hypothyroid rats.

9. Combined low doses of PPARgamma and RXR ligands trigger an intrinsic apoptotic pathway in human breast cancer cells.

10. Adrenal glands and testes as steroidogenic tissue are affected by retinoylation reaction.

11. Influence of all-trans-retinoic acid on oxoglutarate carrier via retinoylation reaction.

12. All-trans-retinoic acid induces apoptosis in Leydig cells via activation of the mitochondrial death pathway and antioxidant enzyme regulation.

13. Retinoic acid-induced testosterone production and retinoylation reaction are concomitant and exhibit a positive correlation in Leydig (TM-3) cells.

14. Dietary fatty acid composition differently influences retinoylation reaction in rat testes mitochondria.

15. Binding of all-trans-retinoic acid to MLTC-1 proteins.

16. Accelerated photostability study of tretinoin and isotretinoin in liposome formulations.

17. Retinoylation reaction of proteins in Leydig (TM-3) cells.

18. Characterization of rat testes mitochondrial retinoylating system and its partial purification.

19. Dietary fatty acid composition differently influences retinoylation reaction in rat testes mitochondria

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