| A General Synthesis of Terminal and Internal Arylalkynes by the Palladium-Catalyzed Reaction of Alkynylzinc Reagents with Aryl Halides by Anthony O. King and Ei-ichi, Negishi, J. Org. Chem., (1978) 43/2: p. 358. |
| Conversion of Methyl Ketones into Terminal Acetylenes and (E)-Tri-substituted Olefins of Terpenoid Origin by Ei-ichi, et al., J. Org. Chem., (1980) 45/12: p.2526. |
| Sporn et al. in J. Amer. Acad. Derm.., (1986) 15:756-764. |
| “A Convenient Synthesis of Ethynylarenes and Diethynylarenes” by S. Takahashi et al. Synthesis (1980) p.627-630. |
| Shudo et al. in Chem. Phar. Bull., (1985) 33:404-407. |
| Kagechika et al. in J. Med. Chem., (1988) 31:2182-2192. |
| Chemistry and Biology of Synthetic Retinoids by Marcia I. Dawson and William H. Okamura, published by CRC Press Inc., 1990, p.334-335, 354. |
| Synthesis of 2,2′-Diacyl-1,1′-Biaryls. Regiocontrolled Protection of . . . by Mervic, et al, J Org. Chem., (1980) No. 45, p.4720-4725. |
| A Dopamine Receptor Model and Its Application in the Design of a New Class of Rigid Pyrrolo[2,3-g]isoquinoline Antipsychotics, Gary L. Olson et al. American Chemical Societe, (1981) 24/9:1026-1031. |
| 6.2.3 Conformational Restriction, Williams, et al., Drug Discovery and Development, The Humana Press, (1987) pp. 54-55. |
| V. Retinoid Structure-Biological Activity Relationships, Chemistry and Biology of Synthetic Retinoids, (1990) pp. 324-356. |
| Davis et al. J. Organomettalic Chem (1990) 387:381-390. |
| “Effects of 13-Cis-Retinoic Acid, All Trans-Retinoic Acid, and Acitretin on the Proliferation, Lipid Synthesis and Keratin Expression of Cultured Human Sebocytes in Vitro” C.C. Zouboulis, The Journal of Investigative Dermatology, (1991) 96/5:792-797. |
| “Organ Maintenance of Human Sebaceous Glands: in Vitro Effects of 13-Cis Retinoic Acid and Testosterone”, John Ridden, et al., Journal of Cell Science (1990) 95:125-136. |
| “Characterization of Human Sebaceous Cells in Vitro”, Thomas I. Doran, et al. The Journal of Investigative Dermatology, (1991) 96/3:. |
| “Synthesis and Evaluation of Stilbene and Dihydrostilbene Derivateives as Potential Anticancer Agents That Inhibit Tubulin Polymerization” by Cushman, Mark et al. J. Med. Chem., (1991), 34:2579-2588. |
| “Synthesis and Evaluatinof New Pretoein Tyrosine Kinase Inhibitors. Part 1. Pyridine-Containing Stilbenes and Amides” by Cushman, Mark et al. Bioorganic & Medicinal Chemistry Letters, (1991) 1/4:211-214. |
| “Di- and Tri-methoxystyryl Derivatives of Heterocyclic Nitrogen Compounds” by Bahner,C. T. et al. Arzneim-Forsch,/Drug Res, (1981)31 (I), Nr. 3. |
| “Retinobenzoic acids. 3. Structure-Activity Relationships of Retinoidal Azobenzene-4-Carboxylic Acids and Stilbene-4- Carboxylic Acids” by H. Kagechika et al., Journal of Medicinal Chemistry, (1989), 32:1098-1108. |
| Eyrolles, L. et al. “Retinoid Antagonists: Molecular Design Based on the Ligand Superfamily Concept” Med. Chem. Res., (1992) 2:361-367. |
| Liu, S. S. et al. “Systemic Pharmacokinetics of Acetylenic Retinoids in Rats”, Drug Metabolism and Disposition, (1990) 18/6: 1071-1077. |
| Chemical Abstracts, vol. 122, No. 13,Mar. 27, 1995 abstract No. 151372m, (S. Kaku et al.). |
| Chemical Abstracts, vol. 117, No. 13, Sep. 28, 1992 abstract No. 124091j, (S. Sun et al.). |
| European Journal of Biochemistry, vol. 212, No. 1, 1993, Berlin, pp. 13-26, XP000618300 (S. Keidel et al.). |
| Journal of Medicinal Chemistry, vol. 39, No. 16, Aug. 2, 1996, pp. 3035-3038, Min Teng et al. |
| Journal of Medicinal Chemistry, vol. 37, No. 10, May 13, 1994, pp. 1508-1517, Laurence Eyrolles. |
| Biochemical and Biophysical Research Communications, vol. 155 No. 1, 1988, pp. 503-508. |
| Chemical Abstracts. vol. 121, No. 9, 1994. |
| Database WPI, Section CH, Week 9416, Derwent Publications Ltd. London, GB; Class B05, AN 94-128759 and JP 6078266A, see English language abstract in Derwent. |
| Journal of Medicinal Chemistry, vol. 38, No. 16, Aug. 4, 1995, pp. 3163-3173. |
| Weiner, et al., “A phase I trial of topically applied trans-retinoic acid in cervical dysplasia-clinical efficacy”, Investigational New Drugs, 4:241-244, 1996. |
| Jones, et al., “A dose-response study of 13-cis-retinoic acid in acne vulgaris”, British Journal of Dermatology, (1983) 108, 333-343. |
| Fekrat, et al., “The Effect of Oral 13-cis-retinoic Acid on Retinal Redetachment after Surgical Repair in Eyes with Proliferative Vitreoretinopathy”, Ophthalmology, vol. 102, No. 3 (Mar. 1995), pp. 412-418. |
| Nagpal, et al., “Separation of Transactivation and AP1 Antagonism Functions of Retinoic Acid Receptor ∝”, The Journal of Biological Chemistry, 270/2(1995): 923-927. |
| Allegretto, et al., “Transactivation Properties of Retinoic Acid and Retinoid X Receptors in Mammalian Cells and Yeast”, The Journal of Biological Chemistry, vol. 268, No. 35 (Dec. 15, 1993), pp. 26625-26633. |
| Gruapner, et al., “6′-Substituted Naphthalene-2-Carboxylic Acid Analogs, A New Class or Retinoic Acid Receptor Subtype-Specific Ligands,” Biochemical and Biophysical Communications, vol. 179, No. 3 (Sep. 30, 1991), pp. 1554-1561. |
| Moore, et al., “Retinoic Acid and Interferon in Human Cancer: Mechanistic and Clinical Studies,” Seminars in Hermatology, 31/4, Suppl 5 (Oct. 1994), pp. 31-37. |
| Mangelesdorf, et al. “The Retinoid Receptors”, Biology, Chemistry and Medicine, 2nd Ed. Chapter 8, pp. 319-349. |
| Nagpal, et al., Cell Growth & Differentiation, vol. 7 (Dec. 1996), pp. 1783-1791. |
| Horlein, et al. Letters to Nature, vol. 377 (Oct. 5, 1995), pp. 397-404. |
| Ishikawa, et al., “A Functional Retinoic Acid Receptor Encoded by the Gene on Human Chromosome 12”, Molecular Endocrinology, vol. 4 No. 6 (1990), pp. 837-844. |
| Campochiaro, et al., Investigative Ophthalmology & Visual Science, vol. 32 No. 1 (Jan. 1991), pp. 65-72. |
| Sen, et al., Arch Ophthalmol, vol. 106 (Sep. 1988), pp. 1291-1294. |
| Peck, et al., The New England Journal of Medicine, vol. 300 No. 7 (Feb. 15, 1979), pp. 329-333. |
| Araiz, et al., Investigative Ophthalmology & Visual Science, vol. 34, No. 3 (Mar. 1993), pp. 522-530). |
| Benbrook, et al., “A new retinoic acid receptor identified from a hepatocellular carcinoma”, Letters to Nature, vol. 333, No. 16 (Jun. 1988), pp. 669-672. |
| de Wet, et al., “Firefly Luciferase Gene: Structure and Expression in Mammalian Cells”, Molecular and Cellular Biology, vol. 7 No. 2 (Feb. 1987). |
| Matrisian, et al., Molecular and Cellular Biology, vol. 6, No. 5 (May 1986). |
| Madsen, et al., The Journal of Investigative Dermatology, vol. 99, No. 3 (Sep. 1992), pp. 299-305. |
| Fekrat, et al., Ophthalmology, vol. 102, No. 3 (Mar. 1995), pp. 412-418. |
| Mangelsdorf, et al., “Nuclear receptor that identifies a novel retinoic acid response pathway”, Nature, vol. 345, 17 (May 1990), pp. 224-229. |
| Umesono, et al., “Retinoic acid and thyroid hormone induce gene expression through a common responsive element”, Nature, Vo. 336, 17 (Nov. 1988), pp. 262-265. |
| Ferrara, et al., “Highly Potent Transcriptional Activation by 16-ene Derivatives of 1,25-Dihydroxyvitamin D3,” The Journal of Biological Chemistry, vol. 269, No. 4 (Jan. 28,. |
| Cheng, et al., Reaction, Biochemical Pharmacology, vol. 22, pp. 3099-3108. |
| Agarwal, et al., Cancer Research, 51, pp. 3982-3989. |
| Agarwal, et al., Cancer Research, 54, pp. 2108-2112. |
| Hembree, et al., Cancer Research, 54, pp. 3160-3166. |
| Ellis, et al., Cell, vol. 45 (Jun. 6, 1986), pp. 721-732. |
| Klein-Hitpab, et al., Cell, vol. 46 (Sep. 26, 1986), pp. 1053-1061. |
| Hollenberg, et al., “Multiple and Cooperative Trans-Activation Domains of the Human Glucocorticoid Receptor,” Cell, vol. 55 (Dec. 2, 1988), pp. 899-906. |
| Heyman, et al., “9-Cis Retinoic Acid Is a High Affinity Ligand for the Retinoid X Receptor,” Cell, vol. 68 (Jan. 24, 1992), pp. 397-406. |
| Nicholson, et al., The EMBO Journal, vol. 9, No. 13 (1990), pp. 4443-4454. |
| Nagpal, et al., The EMBO Journal, vol. 12, No. 6 (1993), pp. 2349-2360. |
| Pfahl, Magnus, “Nuclear Receptor/AP-1 Interaction,” Endocrine Reviews, vol. 14, No. 5 (1993), pp. 651-658. |
| Wilkinson, et al., Journal of Cell Science, 91 (1988), pp. 221-230. |
| Andreatta-Van Leyen, et al., Journal of Cellular Physiology, 160:265-274 (1994). |
| Lippman, et al, vol. 84, No. 4 (Feb. 19, 1992), pp. 241-245. |
| Keidel, et al., Molecular and Cellular Biology, vol. 14, No. 1 (Jan. 1994), pp. 287-298. |
| Luckow, et al., Nucleic Acids Research, vol. 15, No. 13 (1987), p. 5490. |
| Chen et al., Nature, vol. 377, 5 (Oct. 1995), pp. 454-457. |
| Felgner, et al., “Lipofection: A highly efficient, lipid-mediated DNA-transfection procedure,” Proc. Natl. Acad. Sci. USA, vol. 84 (Nov. 1987), pp. 7413-7417. |
| Graham, et al., The Western Journal of Medicine, vol. 145, No. 2 (Aug. 1986), pp. 192-195. |
| Kurlandsky, et al., The Journal of Investigative Dermatology, vol. 102, No. 4 (Apr. 1994), SID Abstracts, 611, p. 625. |
| Tahcher, et al., The Journal of Investigative Dermatology, vol. 104 (Apr. 1995), Abstracts, 237, p. 594. |
| Bergmann et al., Synthesis and Antihypertensive Activity, J. Med. Chem., vol. 33, No. 2, pp. 492-504. |