1.17
愈合是机体在损伤后恢复受损组织完整性和功能的生理过程。该过程涉及细胞增殖、细胞外基质重塑以及生长因子信号传导的协调作用。组织损伤的程度和性质决定了愈合是通过消退、再生还是替代来完成。
分辨率
完全恢复是愈合最彻底的形式,发生在损伤较轻且组织结构基本保持完整的情况下。受损细胞通过细胞内修复机制恢复其正常结…
愈合是机体在损伤后恢复组织完整性的过程。
根据损伤的严重程度和组织类型,愈合可能通过消退、再生或替代来实现。
消退是愈合的最简单形式。轻度晒伤就是一个典型例子——在这种情况下,损伤程度轻微,受损细胞能够完全恢复,不会留下任何疤痕。
再生是指以结构和功能完全相同的新细胞替代丢失的细胞。
在肝脏等具有再生能力的组织中,肝细胞通过有丝分裂进行增殖以恢复组织功能,尽管在更严重的损伤后也可能发生其他修复途径。
下一种类型是替代性再生,发生在心肌细胞和中枢神经系统中的神经元等组织中,这些细胞分裂能力有限或完全无法分裂。
心肌梗死后,死亡的心肌细胞会被纤维瘢痕组织取代,而非由新的功能性细胞替代。
View the full transcript and gain access to JoVE Core videos
Q1: What are the three main types of tissue healing?
Tissue healing occurs through three pathways: resolution, regeneration, and replacement. Resolution is the simplest form, where minimal damage allows cells to fully recover without scarring, as seen in mild sunburns. Regeneration replaces lost cells with structurally and functionally identical new cells, common in tissues like the liver. Replacement occurs when cells cannot divide, resulting in fibrous scar tissue instead of functional tissue restoration.
Q2: How does resolution differ from other healing pathways?
Resolution represents the most complete healing form, occurring when injury is minimal and tissue architecture remains largely intact. Damaged cells recover their normal structure and function through intracellular repair mechanisms without residual scarring. Once inflammation subsides, the tissue returns to its pre-injury state. This contrasts with regeneration and replacement, which involve more extensive cellular changes and potential permanent alterations.
Q3: Why can the liver regenerate but the heart cannot?
The liver contains hepatocytes that can re-enter the cell cycle under growth factor influence, allowing regeneration of lost tissue. Cardiomyocytes in the heart, however, have little or no capacity for division. After a myocardial infarction, dead cardiomyocytes are replaced by fibrous scar tissue rather than new functional cells, resulting in permanent functional loss despite structural stability.
Q4: What happens to cardiomyocytes after a heart attack?
Following a myocardial infarction, necrotic cardiomyocytes are removed by macrophages and replaced by granulation tissue rich in fibroblasts and new capillaries. Over time, this tissue matures into dense collagenous scar. Although the fibrous matrix maintains structural stability, it lacks the contractile and conductive properties of the original myocardium, resulting in permanent functional loss.
Q5: What role do growth factors play in liver regeneration?
Growth factors such as hepatocyte growth factor and transforming growth factor-alpha stimulate hepatocytes to re-enter the cell cycle during liver regeneration. These signaling molecules coordinate cellular proliferation to restore hepatic mass. However, when the extracellular matrix framework is disrupted or damage is extensive, regeneration may be incomplete, and scar formation often accompanies the repair process.
Q6: How does tissue type determine the healing pathway?
The extent and nature of tissue damage, combined with the tissue's cellular capacity, determine whether healing occurs by resolution, regeneration, or replacement. Tissues with labile or stable cell populations capable of proliferation, like the liver, typically heal through regeneration. Tissues composed of permanent cells with no division capacity, such as cardiac muscle and neurons, heal through replacement by fibrosis.
Q7: What is the difference between scar tissue and original tissue after replacement healing?
Scar tissue formed during replacement healing consists of dense collagenous fibers that provide structural stability but lack the specialized functions of original tissue. In the heart, fibrous scar tissue cannot contract or conduct electrical impulses like cardiomyocytes. This functional deficit is permanent, distinguishing replacement healing from resolution, where tissue returns to its pre-injury state.