ISBN 978-0-07-180215-4
In its natural context, this protein appears to play a role in the stomach's remarkable ability to: Maintain mucosal integrity despite constant acid exposure Rapidly repair minor daily damage to the stomach lining Protect against ulcer formation Coordinate healing responses after injury The synthetic BPC-157 peptide is more stable than the natural compound, allowing for consistent production and research applications
What reconstitution and storage steps preserve peptide integrity in the lab
Analysis of differentially expressed genes in Curcuma amada and Zingiber officinale upon infection with Ralstonia solanacearum by suppression subtractive hybridization

Acknowledgements This work was supported by the Beijing Municipal Science and Technology Commission (Z181100001718208, Z211100002521013), National Key R&D Program of China (2022YFC2504200), the Innovation Research Team Project of Beijing Stomatological Hospital, Capital Medical University (CXTD202201, CXTD202202), the National Natural Science Foundation of China (82030031, 92149301, 81991504, 81974149, 82201053), the Beijing Municipal Government grant (Beijing Laboratory of Oral Health, PXM2021-014226-000041), the Beijing Municipal Education Commission (119207020201), the Beijing Fengtai District Science and Technology Information Bureau (KFS2019-202006), the Chinese Research Unit of Tooth Development and Regeneration, Academy of Medical Sciences (2019-12M-5-031), the Beijing Advanced Innovation Center for Big Data-based Precision Medicine (PXM2021_014226_000026), the Beijing Municipal Government (Beijing Scholar Program, PXM2020_014226_000005 and PXM2021_014226_000020), the Beijing Municipal Colleges and Universities High Level Talents Introduction and Cultivate Project-Beijing Great Wall Scholar Program (CIT&TCD 20180332), the National Key Research and development Program (2022YFA1104401), the Beijing Municipal Administration of Hospitals Clinical Medicine Development of Special Funding Support (ZYLX202121)
