| Literature DB >> 35423065 |
Jinfei Yang1, Xiaolong Wu1, Banghua Yang1, Yirong Liu1, Rui Cheng1, Zijun Gong1, Fei Sun1.
Abstract
A Mn(ii)-catalysed ortho-alkenylation of aromatic amines and its application in reproductive diseases were developed. The use of MnCl2 was critical for the ortho-alkenylation of aromatic amines. The general applicability of this procedure was highlighted by the synthesis of 27 vinylanilines, with good regioselectivities. The value of our approach in practical applications was investigated by studying the effects of one of the compounds 3m on 8 week-old adult male rats with azoospermia as a mammalian model. The results show that a small amount of sperm will gradually be produced in the epididymis and testes by treatment of 8 week-old adult male rats with azoospermia with 1 mg kg-13m after two weeks, while treatment with 10 mg kg-13m led to obvious sperm production. Notably, if we increase the dose to 100 mg kg-1, there will be a lot of sperm production in the epididymis and testes after two weeks of treatment. The results of this study will be of great significance in research on drugs for treating azoospermia and oligospermia diseases. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 35423065 PMCID: PMC8690850 DOI: 10.1039/d0ra10172a
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Scheme 1Drug molecules containing alkenyl arylamine skeleton.
Scheme 2Proposed strategy.
Effects of catalyst, temperature, and solvent. N-Benzylaniline (0.2 mmol), phenylacetylene (0.4 mmol), catalyst (0.04 mmol), solvent (2.0 mL), at 120 °C for 24 h
|
| ||||
|---|---|---|---|---|
| Entry | Catalyst | Solvent |
| Yield 3a |
| 1 | Mn(OAc)2 | Toluene | 120 | 20 |
| 2 | MnO | Toluene | 120 | 0 |
| 3 | MnSO4 | Toluene | 120 | 0 |
| 4 | Mn(acac)2 | Toluene | 120 | 50 |
| 5 | MnBr2 | Toluene | 120 | 73 |
| 6 | MnI2 | Toluene | 120 | 61 |
| 7 |
|
|
|
|
| 8 | MnCl2 | DMF | 120 | 0 |
| 9 | MnCl2 | DMSO | 120 | 0 |
| 10 | MnCl2 | CH3CN | 120 | 3 |
| 11 | MnCl2 | Dioxane | 120 | 28 |
| 12 | MnCl2 | THF | 120 | 14 |
| 13 | MnCl2 | DCE | 120 | 26 |
| 14 | MnCl2 |
| 120 | 50 |
| 15 | MnCl2 | Mesitylene | 120 | 52 |
| 16 | MnCl2 |
| 120 | 10 |
| 17 | MnCl2 | Toluene | 80 | 12 |
| 18 | MnCl2 | Toluene | 90 | 29 |
| 19 | MnCl2 | Toluene | 100 | 51 |
| 20 | MnCl2 | Toluene | 110 | 63 |
| 21 | MnCl2 | Toluene | 130 | 70 |
| 22 | MnCl2 | Toluene | 140 | 63 |
| 23 | None | Toluene | 120 | 0 |
The reactions were carried out in sealed tubes.
Yields were determined by GC analysis.
Without MnCl2.
Scheme 3Reaction conditions: substrate 1 (0.2 mmol), aryl acetylene (0.4 mmol), MnCl2 (0.04 mmol), toluene (2.0 mL), at 120 °C for 24 h, and isolated yields for products.
Scheme 4Gram-scale synthesis.
Scheme 5Biological activity evaluation test in spermatogenesis.