
Peptide Protocols
William A Seeds MD
This first in a series handbook introduces the cellular biology behind peptides, including how peptides can delay cellular senescence, reduce inflammation throughout the body and the brain, and ultimately prevent disease and the effects of aging. Written by William A. Seeds, MD, the foremost authority on peptides.
Duration - 3h 14m.
Author - William A Seeds MD.
Narrator - William A Seeds MD.
Published Date - Wednesday, 17 January 2024.
Copyright - © 2020 Seeds Scientific Performance Research ©.
Location:
United States
Networks:
William A Seeds MD
Seeds Scientific Performance Research
English Audiobooks
INAudio Audiobooks
Description:
This first in a series handbook introduces the cellular biology behind peptides, including how peptides can delay cellular senescence, reduce inflammation throughout the body and the brain, and ultimately prevent disease and the effects of aging. Written by William A. Seeds, MD, the foremost authority on peptides. Duration - 3h 14m. Author - William A Seeds MD. Narrator - William A Seeds MD. Published Date - Wednesday, 17 January 2024. Copyright - © 2020 Seeds Scientific Performance Research ©.
Language:
English
Opening Credits
Duration:00:00:16
Introduction
Duration:00:10:38
Part 1: An Introduction to Cellular Senescence
Duration:00:00:06
1: It's Time to Redefine Aging
Duration:00:22:02
2: The Intelligence of the Cell
Duration:00:27:19
3: Delaying Senescence and Restoring Cellular Efficiency
Duration:00:13:12
4: Harnessing Growth Hormone to Improve Cellular Efficiency
Duration:00:14:20
5: Preparing the Immune System in the Age of Viruses, Bacteria, and Other Pathogens
Duration:00:16:16
Part 2: Peptides to Enhance Cellular Functioning, Regulation, and Efficiency
Duration:00:02:21
6: Targeting Growth Hormone and IGF Pathways to Reenter Cell Cycle
Duration:00:21:42
7: Cellular Repair: Helping Cells Recover
Duration:00:19:23
8: Cellular Enhancement and Immune Modulation
Duration:00:23:57
9: Cellular Efficiency, Metabolic Enhancement, and Weight Loss
Duration:00:09:32
10: Improving Cell Signaling for Cognitive Functioning and Neuroplasticity
Duration:00:12:28
Closing Credits
Duration:00:01:02