Department of Comprehensive Dentistry, University of Texas Health Science Center at San Antonio, San Antonio, TX, USA.
Research Service, South Texas Veterans Health Care System, San Antonio, TX, USA.
Int J Oral Sci. 2023 May 10;15(1):18. doi: 10.1038/s41368-023-00224-5.
Salivary gland (SG) dysfunction, due to radiotherapy, disease, or aging, is a clinical manifestation that has the potential to cause severe oral and/or systemic diseases and compromise quality of life. Currently, the standard-of-care for this condition remains palliative. A variety of approaches have been employed to restore saliva production, but they have largely failed due to damage to both secretory cells and the extracellular matrix (niche). Transplantation of allogeneic cells from healthy donors has been suggested as a potential solution, but no definitive population of SG stem cells, capable of regenerating the gland, has been identified. Alternatively, mesenchymal stem cells (MSCs) are abundant, well characterized, and during SG development/homeostasis engage in signaling crosstalk with the SG epithelium. Further, the trans-differentiation potential of these cells and their ability to regenerate SG tissues have been demonstrated. However, recent findings suggest that the "immuno-privileged" status of allogeneic adult MSCs may not reflect their status post-transplantation. In contrast, autologous MSCs can be recovered from healthy tissues and do not present a challenge to the recipient's immune system. With recent advances in our ability to expand MSCs in vitro on tissue-specific matrices, autologous MSCs may offer a new therapeutic paradigm for restoration of SG function.
唾液腺(SG)功能障碍,由于放疗、疾病或衰老,是一种有潜在严重口腔和/或全身疾病并影响生活质量的临床表现。目前,这种情况的标准治疗仍然是姑息性的。已经采用了多种方法来恢复唾液分泌,但由于对分泌细胞和细胞外基质(基质)的损伤,这些方法在很大程度上都失败了。从健康供体移植同种异体细胞被认为是一种潜在的解决方案,但尚未确定能够再生腺体的 SG 干细胞的明确群体。相反,间充质干细胞(MSCs)丰富、特征明确,并且在 SG 发育/稳态期间与 SG 上皮细胞进行信号串扰。此外,这些细胞的转分化潜力及其再生 SG 组织的能力已经得到证实。然而,最近的发现表明,同种异体成体 MSC 的“免疫特权”状态可能并不反映其移植后的状态。相比之下,自体 MSC 可以从健康组织中回收,并且不会对受者的免疫系统构成挑战。随着我们在组织特异性基质上体外扩增 MSC 能力的最新进展,自体 MSC 可能为恢复 SG 功能提供一种新的治疗范例。