| Literature DB >> 33430984 |
Pei-Hua Wang1, Yufeng Jane Tseng2,3.
Abstract
The first step of automating composition patent drafting is to draft the claims around a Markush structure with substituents. Currently, this process depends heavily on experienced attorneys or patent agents, and few tools are available. IntelliPatent was created to accelerate this process. Users can simply upload a series of analogs of interest, and IntelliPatent will automatically extract the general structural scaffold and generate the patent claim text. The program can also extend the patent claim by adding commonly seen R groups from historical lists of the top 30 selling drugs in the US for all R substituents. The program takes MDL SD file formats as inputs, and the invariable core structure and variable substructures will be identified as the initial scaffold and R groups in the output Markush structure. The results can be downloaded in MS Word format (.docx). The suggested claims can be quickly generated with IntelliPatent. This web-based tool is freely accessible at https://intellipatent.cmdm.tw/.Entities:
Keywords: Markush structure; Pharmaceutical patent; Web server
Year: 2019 PMID: 33430984 PMCID: PMC6907166 DOI: 10.1186/s13321-019-0401-4
Source DB: PubMed Journal: J Cheminform ISSN: 1758-2946 Impact factor: 5.514
The top 10 R groups in library
| R group | SMILES | Occurrence (%) |
|---|---|---|
| Methyl | *C | 19.9 |
| Fluoro | *F | 8.4 |
| Methoxy | *OC | 7.0 |
| Hydroxy | *O | 6.3 |
| Sulfamoyl | *S(=O)(=O)N | 5.6 |
| Chloro | *Cl | 5.1 |
| Hydrogen | *H | 3.8 |
| Ethynyl | *C#C | 2.8 |
| Trifluoromethyl | *C(F)(F)F | 2.2 |
| Carboxy | *C(=O)O | 1.9 |
The top 10 most used R groups from approved drugs
| R group | SMILES | Occurrence (%) | Both top 10 |
|---|---|---|---|
| Methyl | *C | 23.6 | O |
| Hydroxy | *O | 18.2 | O |
| Chloro | *Cl | 6.4 | O |
| Amino | *N | 5.1 | |
| Methoxy | *OC | 5.0 | O |
| Carboxy | *C(=O)O | 3.9 | O |
| Fluoro | *F | 2.9 | O |
| Ethyl | *CC | 2.2 | |
| Hydroxymethyl | *CO | 1.7 | |
| Trifulromethyl | *C(F)(F)F | 1.0 | O |
Fig. 1The chemical structures of compounds generated from the composition patent of bromazine (US2527963A) for demonstration
Fig. 2The output claims using the four example compounds from the patent of bromazine (US2527963A)
Fig. 3The active moieties of orphenadrine
Fig. 4The subset of structures in the claims of orphenadrine that were covered by output claims. The input structures were the example compounds in the patent of bromazine
Fig. 5The output claims using the 30 example compounds from the patent of omeprazole (EP0005129B1)
Fig. 6The claims from timoprazole that were covered by the output using example compounds from omeprazole. The original patent claims of omeprazole (EP0005129B1) did not include the structures shown in the figure. The input structures to IntelliPatent are the example compounds in the patent of omeprazole. The two critical R groups that were absent in the original patent but present in our resulting claims are highlighted in red
Fig. 7The result page of IntelliPatent using the four example compounds from the patent of bromazine